By the end of this chapter you'll be able to…

  • 1Predict doses, route, contraindications and storage requirements from whether a vaccine is live
  • 2Explain why live vaccines fail from heat and adsorbed vaccines from freezing
  • 3Reproduce India's national immunisation schedule with ages, doses and sites
  • 4Explain why conjugation is necessary for polysaccharide vaccines under two years
  • 5State the cold chain temperatures and identify the equipment used at each level
  • 6Interpret a vaccine vial monitor and perform a shake test
  • 7Apply the open vial policy correctly to liquid and reconstituted vaccines
  • 8Classify an adverse event following immunisation into the five WHO categories
  • 9Distinguish genuine contraindications from false ones that cause missed opportunities
  • 10State the rules for combining live vaccines and for giving immunoglobulin with vaccine
  • 11Calculate vaccine efficacy and explain why most cases occur in vaccinated people at high coverage
  • 12State India's current position on polio, measles-rubella elimination and human papillomavirus vaccination
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Why this chapter matters in NEET PG
Immunisation is usually learned as a set of unconnected rules: this vaccine goes here, that one is stored there, this one must not be given to that patient. One property generates almost all of it. Whether the organism in the vaccine is alive determines how many doses are needed, what route is used, who must not receive it, and crucially what destroys it. Live vaccines are killed by heat while adsorbed killed vaccines are destroyed by freezing, so the two halves of the cold chain guard against opposite dangers. That single distinction replaces a dozen memorised rules.

Immunization & National Vaccine Schedule

1. What this chapter covers, and how NEET PG actually tests it

Immunisation questions ask for a schedule detail, a cold chain rule, a contraindication or the classification of an adverse event.

The organising principle is that one property decides almost everything: is the organism in the vaccine alive?

PropertyLive attenuatedKilled or subunit
Doses neededOften one or twoMultiple, with boosters
ImmunityStrong, long-lasting, both armsWeaker, mainly humoral
Immunocompromised hostContraindicatedSafe
PregnancyGenerally avoidedSafe
Damaged by heatYes, severelyLess so
Damaged by freezingNoYes, for adsorbed vaccines

The last two rows are the ones candidates get wrong. Live vaccines are destroyed by heat, while adsorbed killed vaccines are destroyed by freezing, so the two halves of the cold chain protect against opposite dangers.

2. Types of immunity and vaccine

2.1 Active and passive

Active immunity is produced by the host's own immune response, takes days to weeks to develop, and lasts for years.

Passive immunity is transferred ready-made as antibody, acts immediately, and lasts weeks to months.

Passive immunity is used when there is no time to wait, as in post-exposure rabies or tetanus prophylaxis, and it is given alongside the vaccine rather than instead of it.

Maternal antibody crossing the placenta is natural passive immunity, and its persistence is the reason measles vaccine is not given before nine months.

2.2 Vaccine types

TypeExamples
Live attenuatedBCG, oral polio, measles and rubella, rotavirus, varicella
Killed or inactivatedInjectable polio, rabies, hepatitis A
ToxoidTetanus, diphtheria
Subunit or recombinantHepatitis B, human papillomavirus
ConjugatePneumococcal, Haemophilus influenzae type b, meningococcal

Conjugation exists to solve one specific problem. Polysaccharide capsules provoke a T-independent response, which is poor in children under two and generates no memory, so linking the polysaccharide to a protein converts it into a T-dependent response with memory.

3. India's national schedule

AgeVaccines
BirthBCG, oral polio zero dose, hepatitis B birth dose
6 weeksPentavalent 1, oral polio 1, rotavirus 1, fractional injectable polio 1, pneumococcal conjugate 1
10 weeksPentavalent 2, oral polio 2, rotavirus 2
14 weeksPentavalent 3, oral polio 3, rotavirus 3, fractional injectable polio 2, pneumococcal conjugate 2
9 to 12 monthsMeasles and rubella 1, pneumococcal booster, Japanese encephalitis 1 in endemic districts, vitamin A
16 to 24 monthsMeasles and rubella 2, diphtheria-pertussis-tetanus booster 1, oral polio booster, Japanese encephalitis 2
5 to 6 yearsDiphtheria-pertussis-tetanus booster 2
10 and 16 yearsTetanus and adult diphtheria
PregnancyTetanus and adult diphtheria, two doses or one booster

Pentavalent combines diphtheria, pertussis, tetanus, hepatitis B and Haemophilus influenzae type b in a single injection.

Vitamin A is given with the first measles dose and then six-monthly to five years, making nine doses in all.

Tetanus and adult diphtheria has replaced plain tetanus toxoid throughout, because diphtheria immunity in adolescents and adults had been waning.

3.1 Routes and sites

VaccineDose and routeSite
BCG0.1 mL intradermal, 0.05 mL under one monthLeft upper arm
Measles and rubella0.5 mL subcutaneousRight upper arm
Pentavalent, pneumococcal0.5 mL intramuscularAnterolateral thigh
Fractional injectable polio0.1 mL intradermalRight upper arm
Oral polio2 dropsOral
Rotavirus5 dropsOral

BCG goes intradermally into the left arm by convention, so that the scar can be found reliably when coverage is being assessed years later.

The anterolateral thigh is used in infants rather than the buttock, because gluteal injection risks sciatic nerve injury and deposits vaccine into fat where absorption is poor.

4. The cold chain

4.1 Temperatures

Vaccines are held at two to eight degrees Celsius in an ice-lined refrigerator at primary health centre level.

Oral polio vaccine is held in a deep freezer at minus fifteen to minus twenty-five degrees at district level and above.

Ice packs are frozen in the same deep freezer, and this is the reason freezers exist at that level at all once polio storage requirements changed.

4.2 What damages what

Oral polio vaccine is the most heat-sensitive vaccine in the programme, followed by measles and rubella.

Freezing damages adsorbed vaccines, because the aluminium adjuvant aggregates irreversibly and the antigen is no longer presented properly.

Never freeze
Pentavalent
Hepatitis B
Tetanus and adult diphtheria
Injectable polio
Pneumococcal conjugate

The shake test detects freeze damage: a frozen and thawed adsorbed vaccine settles rapidly into a granular sediment, while an undamaged vial stays uniformly cloudy.

The vaccine vial monitor is a heat-sensitive square inside a printed circle, and the rule is simple. While the square is lighter than the circle, the vaccine may be used; once it matches or is darker, the vial is discarded.

4.3 Open vial policy

Multi-dose vials of oral polio, hepatitis B, pentavalent and tetanus and adult diphtheria may be kept and reused for up to twenty-eight days if the cold chain has been maintained and the vaccine vial monitor is acceptable.

Reconstituted BCG, measles and rubella, and Japanese encephalitis must be discarded within four hours, because they contain no preservative and the diluent supports bacterial growth.

That distinction is between vaccines supplied as liquid with preservative and those requiring reconstitution, not between live and killed.

4.4 The equipment at each level

EquipmentLevelPurpose
Walk-in coolerRegional and stateBulk storage at two to eight degrees
Walk-in freezerRegional and stateBulk storage of oral polio vaccine
Deep freezerDistrict and primary health centreFreezing ice packs, oral polio storage
Ice-lined refrigeratorPrimary health centreVaccine storage at two to eight degrees
Cold boxTransport and power failureHolds vaccine for several days
Vaccine carrierSession sitesHolds vaccine for one session

An ice-lined refrigerator holds temperature for many hours after a power cut, because the water jacket surrounding the chamber freezes and then releases its latent heat slowly, which is why it is chosen for places with unreliable electricity.

A vaccine carrier is packed with four conditioned ice packs and carries enough vaccine for one immunisation session.

Conditioning means leaving frozen ice packs out until water droplets appear, and it exists specifically to prevent freeze damage to adsorbed vaccines sitting against them.

5. Passive immunisation and combining vaccines

Immunoglobulin is given when protection is needed immediately and there is no time for an active response.

PreparationSituation
Tetanus immunoglobulinContaminated wound in an unimmunised person
Rabies immunoglobulinCategory III exposure, infiltrated into the wound
Hepatitis B immunoglobulinNewborn of a carrier mother, needlestick injury
Anti-D immunoglobulinRhesus-negative mother after a sensitising event

Vaccine and immunoglobulin are given at different sites with different syringes, because the antibody would neutralise the vaccine antigen if they mixed.

Two live parenteral vaccines are given either on the same day or at least four weeks apart, because the interferon response to the first blunts the take of a second given a few days later.

Oral live vaccines and inactivated vaccines carry no such restriction and may be given at any interval.

Immunoglobulin delays the response to live parenteral vaccines for several months, so measles vaccine after blood products must be deferred, though this does not apply to oral polio or yellow fever.

6. Vaccines outside the national programme

Several vaccines are recommended by professional bodies but are not supplied free under the national programme, and the exam expects the distinction.

Typhoid conjugate vaccine, varicella, hepatitis A, influenza and measles-mumps-rubella all fall into this category.

The absence of mumps from the national programme is the one most often asked about, since India uses measles and rubella rather than the triple vaccine.

Judging any candidate vaccine for programme inclusion turns on disease burden, vaccine efficacy, cost per case averted, cold chain feasibility and the ability to sustain supply, not on efficacy alone.

7. Adverse events following immunisation

The World Health Organization classification has five categories, and the value of it is that only two of them reflect a problem with the vaccine itself.

CategoryMeaning
Vaccine product-relatedCaused by the vaccine's inherent properties
Vaccine quality defect-relatedCaused by a manufacturing fault
Immunisation error-relatedCaused by incorrect handling or administration
Immunisation anxiety-relatedCaused by anxiety about the injection
CoincidentalWould have happened anyway

Immunisation error is the largest preventable category, covering wrong diluent, contaminated multi-dose vials, wrong route and reuse of syringes, and it is the category a district investigation is most likely to find.

Immunisation anxiety includes vasovagal fainting and hyperventilation, which cluster in adolescents and can spread through a group.

Coincidental events matter disproportionately, because a vaccine given to millions of healthy children will inevitably be followed by unrelated illness, and confusing that with causation has repeatedly damaged coverage.

Every serious event is reported and investigated at district level, and the investigation asks specifically whether other children from the same vial or session were affected, since clustering points to an error or a quality defect rather than to the product itself.

8. Special situations

Live vaccines are contraindicated in significant immunodeficiency, in high-dose corticosteroid therapy and in pregnancy.

Human immunodeficiency virus infection is a partial exception, and asymptomatic children still receive measles vaccine because measles in an infected child is far more dangerous than the vaccine.

Bacille Calmette-Guerin is withheld in symptomatic infection because it is a live bacterial vaccine capable of disseminating.

Mild illness, low-grade fever, malnutrition, breastfeeding and antibiotic treatment are not contraindications, and treating them as such is a major cause of missed opportunity.

An interrupted schedule is resumed rather than restarted, because immunological memory persists, and no dose already given is wasted.

Preterm infants are immunised according to chronological age rather than corrected age, since the immune response depends on time since birth rather than on gestational maturity.

A previous severe allergic reaction to a vaccine component is a genuine contraindication to further doses of that vaccine, and it is one of very few absolute ones.

Encephalopathy within seven days of a pertussis-containing vaccine is the classical contraindication to further pertussis doses, and the acellular preparation is used instead where available.

Egg allergy no longer excludes measles-containing vaccines, since these are grown in chick embryo fibroblast culture and contain negligible egg protein.

9. Programmes and current position

Mission Indradhanush was launched in 2014 to reach children who had been missed, and successive intensified rounds have extended the target age and added district-level micro-planning.

India was certified polio-free in 2014, and injectable polio vaccine was introduced alongside the oral vaccine to eliminate the residual risk of vaccine-derived paralytic disease.

The measles and rubella elimination target is 2026, pursued through a national campaign seeking coverage above ninety-five per cent in every district.

India launched a nationwide human papillomavirus vaccination programme in February 2026, offering a single dose free of charge to girls aged fourteen, with roughly 1.15 crore girls targeted each year.

The single-dose schedule reflects evidence that one dose gives protection comparable to two in this age group, and it makes a programme of this scale logistically feasible.

The vaccine is delivered through government facilities including community health centres, district hospitals and government medical colleges.

9.1 Measuring coverage and efficacy

Coverage is assessed by the thirty-cluster survey, in which thirty clusters are chosen with probability proportional to population size and seven children are surveyed in each.

The design exists because a full census of immunisation status in a district is impossible, and simple random sampling across a scattered rural population is logistically unworkable.

Vaccine efficacy is measured by comparing attack rates in vaccinated and unvaccinated groups.

Here ARU is the attack rate in the unvaccinated and ARV is the attack rate in the vaccinated, so the expression states the proportion of disease prevented among those vaccinated.

A common and instructive trap follows from this. In a population with very high coverage, most cases of a disease will occur in vaccinated people simply because almost everyone is vaccinated, and this does not mean the vaccine has failed.

The herd immunity threshold is the proportion of a population that must be immune to interrupt transmission, and it rises with the basic reproduction number.

Measles, being among the most transmissible infections known, requires coverage above ninety-five per cent, which is precisely why elimination campaigns set that figure as their target.

10. Worked examples

Example 1. A vial of pentavalent vaccine has been kept in the freezer compartment overnight. Can it be used?

No. Pentavalent is an adsorbed vaccine and freezing irreversibly aggregates the aluminium adjuvant. The shake test would confirm it, showing rapid granular sedimentation instead of a uniform suspension.

Example 2. A vaccine vial monitor shows the inner square lighter than the outer circle. What is the action?

Use the vaccine. The monitor is read by comparison, and only when the square matches or becomes darker than the circle has cumulative heat exposure made the vial unusable.

Example 3. A child received the first two pentavalent doses eight months ago and has missed the third. Should the course be restarted?

No. Resume where the schedule was interrupted and give the third dose. Immunological memory persists, so no previously given dose is wasted and restarting only delays protection.

Summary

Ask first whether the organism is alive, because that decides doses, route, contraindications and storage.

Live vaccines are destroyed by heat and killed adsorbed vaccines by freezing, so the cold chain guards against opposite dangers.

Active immunity is slow and lasting; passive is immediate and temporary, and the two are given together after exposure.

Maternal antibody is why measles vaccine waits until nine months.

Conjugation converts a T-independent polysaccharide response into a T-dependent one with memory, which is why it works under two years.

Pentavalent covers diphtheria, pertussis, tetanus, hepatitis B and Haemophilus influenzae type b.

Vitamin A begins with the first measles dose and continues six-monthly to five years, nine doses in all.

Tetanus and adult diphtheria has replaced plain tetanus toxoid because adult diphtheria immunity was waning.

BCG is 0.1 mL intradermal into the left arm, halved under one month, so the scar can be found later.

Measles and rubella is subcutaneous into the right arm; pentavalent is intramuscular into the anterolateral thigh.

The gluteal site is avoided in infants because of sciatic nerve risk and poor absorption from fat.

Vaccines are stored at two to eight degrees, and oral polio at minus fifteen to minus twenty-five.

Oral polio is the most heat-sensitive vaccine, followed by measles and rubella.

Pentavalent, hepatitis B, tetanus and adult diphtheria, injectable polio and pneumococcal must never be frozen.

The shake test detects freeze damage by rapid granular sedimentation.

A vaccine vial monitor is usable while the inner square remains lighter than the outer circle.

Liquid multi-dose vials last twenty-eight days; reconstituted vaccines are discarded within four hours.

Adverse events fall into five categories, and immunisation error is the largest preventable one.

Coincidental events are inevitable at population scale and have repeatedly been mistaken for vaccine harm.

Live vaccines are avoided in immunodeficiency and pregnancy, but asymptomatic children with human immunodeficiency virus still receive measles vaccine.

Mild illness, fever, malnutrition and breastfeeding are not contraindications.

An interrupted schedule is resumed, never restarted.

India was certified polio-free in 2014 and targets measles and rubella elimination by 2026.

A nationwide single-dose human papillomavirus programme for fourteen-year-old girls began in February 2026.

Two live parenteral vaccines go on the same day or four weeks apart; oral live and inactivated vaccines have no such restriction.

Vaccine and immunoglobulin are given at separate sites with separate syringes, since antibody would neutralise the antigen.

Ice packs are conditioned until droplets appear, specifically to protect adsorbed vaccines from freezing against them.

Coverage is assessed by the thirty-cluster survey, and vaccine efficacy compares attack rates in the unvaccinated and vaccinated.

In a highly vaccinated population most cases occur in vaccinated people, which reflects arithmetic rather than vaccine failure.

Key formulas & results

Everything to memorise for the exam hall, in one card. Screenshot this for revision.

The organising tool
ONE PROPERTY DECIDES ALMOST EVERYTHING: IS THE ORGANISM IN THE VACCINE ALIVE? LIVE ATTENUATED: often ONE OR TWO doses, STRONG LONG-LASTING immunity in BOTH ARMS, CONTRAINDICATED in the immunocompromised and generally in PREGNANCY, DESTROYED BY HEAT, NOT harmed by freezing. KILLED or SUBUNIT: MULTIPLE doses with BOOSTERS, WEAKER MAINLY HUMORAL immunity, SAFE in the immunocompromised and in pregnancy, LESS heat-sensitive, but ADSORBED ONES ARE DESTROYED BY FREEZING.
THE HEAT AND FREEZING ROWS ARE THE ONES CANDIDATES GET WRONG. The two halves of the cold chain guard against OPPOSITE DANGERS.
Active, passive and vaccine types
ACTIVE immunity: host's own response, DAYS TO WEEKS to develop, lasts YEARS. PASSIVE: ready-made ANTIBODY, IMMEDIATE, lasts WEEKS TO MONTHS. LIVE ATTENUATED: BCG, oral polio, measles and rubella, rotavirus, varicella. KILLED: injectable polio, rabies, hepatitis A. TOXOID: tetanus, diphtheria. SUBUNIT or RECOMBINANT: hepatitis B, human papillomavirus. CONJUGATE: pneumococcal, Haemophilus influenzae type b, meningococcal.
MATERNAL ANTIBODY CROSSING THE PLACENTA IS NATURAL PASSIVE IMMUNITY, and its persistence is why MEASLES VACCINE WAITS UNTIL NINE MONTHS. CONJUGATION CONVERTS A T-INDEPENDENT POLYSACCHARIDE RESPONSE INTO A T-DEPENDENT ONE WITH MEMORY, which is why plain polysaccharide vaccines fail under two years.
India's national schedule
BIRTH: BCG, ORAL POLIO ZERO DOSE, HEPATITIS B BIRTH DOSE. 6 WEEKS: pentavalent 1, oral polio 1, rotavirus 1, FRACTIONAL INJECTABLE POLIO 1, pneumococcal 1. 10 WEEKS: pentavalent 2, oral polio 2, rotavirus 2. 14 WEEKS: pentavalent 3, oral polio 3, rotavirus 3, fractional injectable polio 2, pneumococcal 2. 9 TO 12 MONTHS: MEASLES AND RUBELLA 1, pneumococcal booster, Japanese encephalitis 1 in endemic districts, VITAMIN A. 16 TO 24 MONTHS: measles and rubella 2, DPT booster 1, oral polio booster, Japanese encephalitis 2. 5 TO 6 YEARS: DPT booster 2. 10 AND 16 YEARS: Td. PREGNANCY: Td, two doses or one booster.
PENTAVALENT combines DIPHTHERIA, PERTUSSIS, TETANUS, HEPATITIS B and HAEMOPHILUS INFLUENZAE TYPE B. VITAMIN A begins with the first measles dose and continues SIX-MONTHLY TO FIVE YEARS, NINE DOSES IN ALL. Td HAS REPLACED PLAIN TETANUS TOXOID because ADULT DIPHTHERIA IMMUNITY WAS WANING.
Routes, doses and sites
BCG: 0.1 mL INTRADERMAL, 0.05 mL UNDER ONE MONTH, LEFT UPPER ARM. MEASLES AND RUBELLA: 0.5 mL SUBCUTANEOUS, RIGHT UPPER ARM. PENTAVALENT and PNEUMOCOCCAL: 0.5 mL INTRAMUSCULAR, ANTEROLATERAL THIGH. FRACTIONAL INJECTABLE POLIO: 0.1 mL INTRADERMAL, RIGHT UPPER ARM. ORAL POLIO: 2 DROPS. ROTAVIRUS: 5 DROPS.
BCG GOES INTO THE LEFT ARM BY CONVENTION so the SCAR CAN BE FOUND RELIABLY when coverage is assessed years later. THE ANTEROLATERAL THIGH IS USED IN INFANTS RATHER THAN THE BUTTOCK, because gluteal injection risks SCIATIC NERVE INJURY and deposits vaccine into FAT WHERE ABSORPTION IS POOR.
Cold chain temperatures and damage
STORAGE at TWO TO EIGHT DEGREES CELSIUS in an ICE-LINED REFRIGERATOR at primary health centre level. ORAL POLIO in a DEEP FREEZER at MINUS FIFTEEN TO MINUS TWENTY-FIVE at district level and above. MOST HEAT-SENSITIVE VACCINE IS ORAL POLIO, followed by MEASLES AND RUBELLA. NEVER FREEZE: PENTAVALENT, HEPATITIS B, Td, INJECTABLE POLIO, PNEUMOCOCCAL CONJUGATE.
FREEZING DAMAGES ADSORBED VACCINES BECAUSE THE ALUMINIUM ADJUVANT AGGREGATES IRREVERSIBLY and the antigen is no longer presented properly. THE SHAKE TEST detects it: a frozen and thawed vial settles into a RAPID GRANULAR SEDIMENT while an undamaged vial stays UNIFORMLY CLOUDY.
Vaccine vial monitor and open vial policy
The VVM is a HEAT-SENSITIVE SQUARE INSIDE A PRINTED CIRCLE. WHILE THE SQUARE IS LIGHTER THAN THE CIRCLE, USE IT; ONCE IT MATCHES OR IS DARKER, DISCARD. OPEN VIAL POLICY: multi-dose vials of ORAL POLIO, HEPATITIS B, PENTAVALENT and Td may be reused for UP TO TWENTY-EIGHT DAYS. RECONSTITUTED BCG, MEASLES AND RUBELLA, and JAPANESE ENCEPHALITIS must be DISCARDED WITHIN FOUR HOURS.
THE DISTINCTION IS BETWEEN LIQUID VACCINES WITH PRESERVATIVE AND THOSE REQUIRING RECONSTITUTION, NOT BETWEEN LIVE AND KILLED. Reconstituted vaccines contain no preservative and the DILUENT SUPPORTS BACTERIAL GROWTH.
Cold chain equipment
WALK-IN COOLER and WALK-IN FREEZER: REGIONAL AND STATE bulk storage. DEEP FREEZER: DISTRICT and PHC, for FREEZING ICE PACKS and oral polio. ICE-LINED REFRIGERATOR: PHC, two to eight degrees. COLD BOX: TRANSPORT and POWER FAILURE, holds vaccine for SEVERAL DAYS. VACCINE CARRIER: SESSION SITES, holds vaccine for ONE SESSION with FOUR CONDITIONED ICE PACKS.
AN ILR HOLDS TEMPERATURE FOR MANY HOURS AFTER A POWER CUT because the WATER JACKET FREEZES AND RELEASES LATENT HEAT SLOWLY, which is why it suits places with unreliable electricity. CONDITIONING MEANS LEAVING FROZEN ICE PACKS OUT UNTIL DROPLETS APPEAR, and it exists specifically to PREVENT FREEZE DAMAGE to adsorbed vaccines resting against them.
Passive immunisation and combining vaccines
TETANUS IMMUNOGLOBULIN: contaminated wound in an unimmunised person. RABIES IMMUNOGLOBULIN: CATEGORY III exposure, INFILTRATED INTO THE WOUND. HEPATITIS B IMMUNOGLOBULIN: newborn of a carrier mother, needlestick. ANTI-D: rhesus-negative mother after a sensitising event. TWO LIVE PARENTERAL VACCINES GO ON THE SAME DAY OR AT LEAST FOUR WEEKS APART.
VACCINE AND IMMUNOGLOBULIN GO AT DIFFERENT SITES WITH DIFFERENT SYRINGES, because the ANTIBODY WOULD NEUTRALISE THE ANTIGEN. The four-week rule exists because the INTERFERON RESPONSE TO THE FIRST BLUNTS THE TAKE OF A SECOND given a few days later. ORAL LIVE AND INACTIVATED VACCINES CARRY NO SUCH RESTRICTION. IMMUNOGLOBULIN DELAYS LIVE PARENTERAL VACCINES FOR MONTHS, though NOT oral polio or yellow fever.
Adverse events following immunisation
FIVE WHO CATEGORIES: VACCINE PRODUCT-RELATED (inherent properties), VACCINE QUALITY DEFECT-RELATED (manufacturing fault), IMMUNISATION ERROR-RELATED (handling or administration), IMMUNISATION ANXIETY-RELATED (anxiety about the injection), COINCIDENTAL (would have happened anyway).
ONLY TWO OF THE FIVE REFLECT A PROBLEM WITH THE VACCINE ITSELF. IMMUNISATION ERROR IS THE LARGEST PREVENTABLE CATEGORY — wrong diluent, contaminated multi-dose vials, wrong route, reused syringes. CLUSTERING AMONG CHILDREN FROM THE SAME VIAL OR SESSION POINTS TO ERROR OR QUALITY DEFECT RATHER THAN THE PRODUCT. COINCIDENTAL EVENTS ARE INEVITABLE AT POPULATION SCALE and have repeatedly damaged coverage when mistaken for harm.
Contraindications, true and false
TRUE: significant IMMUNODEFICIENCY and HIGH-DOSE CORTICOSTEROIDS (live vaccines), PREGNANCY (live vaccines), PREVIOUS SEVERE ALLERGIC REACTION to a component, ENCEPHALOPATHY WITHIN SEVEN DAYS of a pertussis-containing vaccine. FALSE: MILD ILLNESS, LOW-GRADE FEVER, MALNUTRITION, BREASTFEEDING, ANTIBIOTIC TREATMENT, EGG ALLERGY for measles-containing vaccines.
HIV INFECTION IS A PARTIAL EXCEPTION — ASYMPTOMATIC CHILDREN STILL RECEIVE MEASLES VACCINE because measles in an infected child is far more dangerous than the vaccine, while BCG IS WITHHELD IN SYMPTOMATIC INFECTION because it is a LIVE BACTERIAL vaccine capable of disseminating. AN INTERRUPTED SCHEDULE IS RESUMED, NEVER RESTARTED. PRETERM INFANTS ARE IMMUNISED BY CHRONOLOGICAL AGE, not corrected age.
Coverage and efficacy
COVERAGE is assessed by the THIRTY-CLUSTER SURVEY: THIRTY clusters chosen with PROBABILITY PROPORTIONAL TO POPULATION SIZE and SEVEN children surveyed in each. Vaccine efficacy = (ARU minus ARV) divided by ARU, multiplied by 100, where ARU is the ATTACK RATE IN THE UNVACCINATED and ARV the ATTACK RATE IN THE VACCINATED.
IN A POPULATION WITH VERY HIGH COVERAGE, MOST CASES WILL OCCUR IN VACCINATED PEOPLE SIMPLY BECAUSE ALMOST EVERYONE IS VACCINATED, AND THIS DOES NOT MEAN THE VACCINE HAS FAILED. The HERD IMMUNITY THRESHOLD rises with the BASIC REPRODUCTION NUMBER, and MEASLES REQUIRES ABOVE NINETY-FIVE PER CENT, which is why elimination campaigns set that target.
Programmes and current position
MISSION INDRADHANUSH launched 2014 to reach MISSED CHILDREN, with intensified rounds extending target age and adding DISTRICT-LEVEL MICRO-PLANNING. INDIA CERTIFIED POLIO-FREE IN 2014, with INJECTABLE POLIO added to remove the risk of VACCINE-DERIVED PARALYTIC DISEASE. MEASLES AND RUBELLA ELIMINATION TARGET IS 2026. NATIONWIDE HPV PROGRAMME LAUNCHED FEBRUARY 2026: SINGLE DOSE, FREE, GIRLS AGED FOURTEEN, roughly 1.15 CRORE targeted each year.
THE SINGLE-DOSE HPV SCHEDULE reflects evidence that ONE DOSE GIVES PROTECTION COMPARABLE TO TWO in this age group, and it is what makes a programme of this scale LOGISTICALLY FEASIBLE. Delivery is through COMMUNITY HEALTH CENTRES, DISTRICT HOSPITALS and GOVERNMENT MEDICAL COLLEGES.
Vaccines outside the national programme
RECOMMENDED BY PROFESSIONAL BODIES BUT NOT SUPPLIED FREE: TYPHOID CONJUGATE, VARICELLA, HEPATITIS A, INFLUENZA, and MEASLES-MUMPS-RUBELLA. INDIA USES MEASLES AND RUBELLA, NOT THE TRIPLE VACCINE, so MUMPS IS NOT COVERED by the national programme.
Judging any candidate vaccine for programme inclusion turns on DISEASE BURDEN, VACCINE EFFICACY, COST PER CASE AVERTED, COLD CHAIN FEASIBILITY and SUSTAINABLE SUPPLY — NOT ON EFFICACY ALONE. The absence of mumps is the point most often examined.
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Traps NEET PG sets — and how to dodge them

These are the exact option-traps and misreads that cost marks under negative marking.

WATCH OUT
Assuming freezing preserves all vaccines
Freezing irreversibly aggregates the aluminium adjuvant in adsorbed vaccines, so pentavalent, hepatitis B, Td, injectable polio and pneumococcal conjugate are destroyed by it. Only oral polio is deliberately stored frozen, and only at district level and above.
WATCH OUT
Discarding a vial because the vaccine vial monitor square has darkened at all
The monitor is read by comparison, not by absolute colour. As long as the inner square remains lighter than the outer circle the vaccine is usable, and discarding usable vials wastes supply and causes stockouts.
WATCH OUT
Applying the twenty-eight day open vial policy to reconstituted vaccines
The policy covers liquid vaccines containing preservative. Reconstituted BCG, measles and rubella and Japanese encephalitis have no preservative and their diluent supports bacterial growth, so they must be discarded within four hours.
WATCH OUT
Deferring immunisation for mild illness or low-grade fever
Mild illness, fever, malnutrition, breastfeeding and antibiotic treatment are not contraindications. Deferring for them is the commonest cause of missed opportunity, and a malnourished child in particular has the most to gain from vaccination.
WATCH OUT
Restarting a schedule that has been interrupted
Immunological memory persists indefinitely, so doses already given are never wasted. The course is resumed from where it stopped, and restarting only delays protection and consumes extra vaccine.
WATCH OUT
Withholding measles vaccine from a child with HIV
Asymptomatic children with HIV should receive measles vaccine, because measles in an infected child carries far greater risk than the vaccine does. BCG is the vaccine withheld in symptomatic infection, because it is a live bacterial vaccine that can disseminate.
WATCH OUT
Giving the second live parenteral vaccine a week after the first
The interferon response to the first vaccine blunts the take of a second given a few days later. Two live parenteral vaccines are given either on the same day or at least four weeks apart. Oral live vaccines and inactivated vaccines have no such restriction.
WATCH OUT
Mixing vaccine and immunoglobulin in one syringe or site
The immunoglobulin would neutralise the vaccine antigen directly. They are given at different sites with different syringes, which is exactly why rabies immunoglobulin is infiltrated into the wound while the vaccine goes into the deltoid.
WATCH OUT
Concluding a vaccine has failed because most cases are in vaccinated people
When coverage approaches universal, the vaccinated group is so much larger that even a small failure rate produces more cases in absolute numbers than a high failure rate does in the tiny unvaccinated group. Efficacy is judged by comparing attack rates, not case counts.
WATCH OUT
Using corrected age for immunising a preterm infant
The immune response depends on time since birth rather than on gestational maturity, so preterm infants are immunised at the same chronological ages as term infants and at full doses. Delaying leaves the most vulnerable infants unprotected for longest.
WATCH OUT
Giving BCG into the buttock or intramuscularly
BCG is intradermal into the left upper arm, and the site is conventional so that the scar can be located reliably during coverage assessment. Intramuscular or subcutaneous injection produces abscess formation and regional lymphadenitis.

Exam-pattern practice

PYQ-style questions with full solutions. Work through them as a readiness check — mark yourself honestly and get your gap report at the end.

Readiness check

Are you exam-ready for Immunization & National Vaccine Schedule?

9 problems from this chapter. Try each one, reveal the worked solution, mark yourself honestly — get your gap report at the end.

9 questions~6 min

5-minute revision

The whole chapter, distilled. Read this the night before the exam.

  • Ask whether the organism is alive; that decides doses, route, contraindications and storage.
  • Live vaccines die from heat; adsorbed killed vaccines die from freezing.
  • Passive immunity is immediate and temporary; active is slow and lasting.
  • Maternal antibody is why measles vaccine waits until nine months.
  • Conjugation converts a T-independent response into a T-dependent one with memory.
  • Birth doses are BCG, oral polio zero dose and hepatitis B.
  • Pentavalent covers diphtheria, pertussis, tetanus, hepatitis B and Haemophilus influenzae type b.
  • Fractional injectable polio is given at 6 and 14 weeks, intradermally.
  • Measles and rubella is given at 9 to 12 months and again at 16 to 24 months.
  • Vitamin A starts with the first measles dose and continues six-monthly to five years, nine doses.
  • Td has replaced plain tetanus toxoid at 10 years, 16 years and in pregnancy.
  • BCG is 0.1 mL intradermal into the left arm, halved under one month.
  • Measles and rubella is subcutaneous into the right arm; pentavalent intramuscular into the thigh.
  • The gluteal site is avoided in infants for sciatic nerve risk and poor absorption.
  • Vaccines are stored at two to eight degrees; oral polio at minus fifteen to minus twenty-five.
  • Oral polio is the most heat-sensitive vaccine, then measles and rubella.
  • Never freeze pentavalent, hepatitis B, Td, injectable polio or pneumococcal conjugate.
  • The shake test shows rapid granular sedimentation after freeze damage.
  • A vaccine vial monitor is usable while the inner square stays lighter than the outer circle.
  • Liquid multi-dose vials last twenty-eight days; reconstituted vaccines four hours.
  • An ice-lined refrigerator holds temperature through power cuts via its frozen water jacket.
  • Ice packs are conditioned until droplets appear, to protect adsorbed vaccines.
  • Two live parenteral vaccines go same day or four weeks apart.
  • Vaccine and immunoglobulin go at different sites with different syringes.
  • There are five categories of adverse event, and only two implicate the product.
  • Immunisation error is the largest preventable category; clustering points to it.
  • Coincidental events are inevitable at scale and have repeatedly damaged coverage.
  • Live vaccines are avoided in immunodeficiency and pregnancy.
  • Asymptomatic HIV-positive children still receive measles vaccine; BCG is withheld if symptomatic.
  • Mild illness, fever, malnutrition, breastfeeding and antibiotics are not contraindications.
  • Preterm infants are immunised by chronological age at full dose.
  • An interrupted schedule is resumed, never restarted.
  • Coverage is measured by the thirty-cluster survey with seven children per cluster.
  • Vaccine efficacy compares attack rates in the unvaccinated and vaccinated.
  • Measles needs above ninety-five per cent coverage because of its high reproduction number.
  • India was certified polio-free in 2014 and targets measles-rubella elimination by 2026.
  • A nationwide single-dose HPV programme for fourteen-year-old girls began in February 2026.
  • Mumps is not in the national programme, since India uses measles and rubella rather than the triple vaccine.

NEET PG question blueprint

How this topic is asked, tier by tier — so you can prep to the pattern.

Typical weightage: Each NEET PG question is worth +4/-1; immunisation contributes 2-3 questions per attempt and overlaps heavily with Pediatrics

Question styleMarks eachTypical countWhat it tests
Schedule and routes4~1Ages and vaccines in the national schedule, doses, routes and sites, pentavalent composition, vitamin A, and resuming interrupted schedules
Cold chain4~1Storage temperatures, heat-sensitive against freeze-sensitive vaccines, shake test, vaccine vial monitor, open vial policy and equipment at each level
Adverse events and contraindications4~1The five WHO categories, immunisation error and clustering, true against false contraindications, and immunisation in HIV and immunodeficiency
Coverage and efficacy4~1Thirty-cluster survey, vaccine efficacy calculation, herd immunity thresholds and why most cases occur in vaccinated people at high coverage
Programmes and policy4~1Mission Indradhanush, polio-free certification, measles-rubella elimination target, the 2026 human papillomavirus programme, and vaccines outside the national schedule
Prep strategy
  • First pass: write out the schedule table from memory including routes and sites, since it is the single most examined item in the chapter.
  • Second pass: build two lists, heat-sensitive and freeze-sensitive, and attach the test that detects each failure.
  • Final pass: drill the false contraindications and the coverage arithmetic, because both are conceptual traps rather than recall and are missed by well-prepared candidates.

Exam-hall strategy

Battle-tested tips from mentors and toppers for this topic under the sectional clock.

  1. Decide first whether the vaccine in the stem is live, since that resolves most contraindication and storage questions immediately.
  2. For cold chain questions, identify whether the insult described is heat or cold before choosing.
  3. Read vaccine vial monitor questions as a comparison between square and circle, never as an absolute colour.
  4. For open vial questions, check whether the vaccine was reconstituted or supplied as liquid.
  5. In adverse event stems, look for clustering, which points to error or quality defect rather than product.
  6. Treat mild illness, fever and malnutrition as false contraindications unless the stem says otherwise.
  7. With NEET PG's +4/-1 marking, the schedule table and cold chain temperatures are pure recall and should be secured quickly.
  8. Under the 5-group, 42-minute time-bound format, these are fast questions; clear them early to protect time for clinical stems, since a closed group cannot be reopened.

Beyond the exam

Where this skill shows up in the job you're competing for — and in life.

Running an immunisation session

Conditioning ice packs, reading vaccine vial monitors and applying the open vial policy correctly are the routine decisions that determine whether a session delivers potent vaccine or wasted doses.

Avoiding missed opportunities

Recognising that mild illness, fever and malnutrition are not contraindications is what converts an incidental clinic visit into a completed immunisation, and it is the largest single lever on coverage.

Investigating an adverse event

The five-category classification directs the investigation, and asking whether other children from the same vial were affected is what distinguishes an error from a product problem within hours.

Responding to vaccine hesitancy

Explaining why most cases occur in vaccinated people at high coverage, and why coincidental events are inevitable at population scale, addresses the two arguments that most often drive refusal.

Where else this topic is tested

Prepare once, score in every exam that asks it.

FMGE / NExTVery high overlap — the national schedule, cold chain and adverse event classification are examined repeatedly with the same Indian programme detail
USMLE Step 1 and Step 2 CKModerate overlap — vaccine types, contraindications and herd immunity are shared, but the schedule and programme structure differ entirely
MD Pediatrics and MD Community Medicine entranceFoundational — assumed working knowledge, with vaccine immunology, programme logistics and new vaccine introduction examined far more deeply

Questions aspirants ask

Pulled from the Q&A community and mentor sessions.

Because the two vaccine classes fail for opposite reasons. Live vaccines contain organisms that must remain viable, and heat kills them, which is why oral polio and measles are the most heat-sensitive items in the programme. Adsorbed killed vaccines contain antigen bound to an aluminium adjuvant, and the adjuvant is a colloidal gel that aggregates irreversibly when frozen, so the antigen is no longer presented to the immune system properly. A refrigerator running too cold destroys pentavalent just as surely as a failed one destroys measles, and freeze damage is more common in practice because it is invisible unless someone performs a shake test.

Because it makes a scarce and expensive vaccine go much further. Injectable polio vaccine is costly and global supply has been constrained, and a fifth of the full dose given intradermally produces an immune response close to a full intramuscular dose because the dermis is rich in antigen-presenting cells. Giving two fractional doses at six and fourteen weeks therefore delivers seroconversion at a fraction of the cost and antigen. The oral vaccine continues alongside because it produces gut mucosal immunity that the injectable vaccine does not, and gut immunity is what interrupts community transmission.

Ask two questions in order. First, is the vaccine live? If it is not, there are almost no contraindications beyond a previous severe allergic reaction to a component. If it is live, then immunodeficiency, high-dose steroids and pregnancy become genuine concerns. Second, is the stem describing something that only sounds like a reason? Mild illness, fever under thirty-eight and a half degrees, malnutrition, breastfeeding, antibiotic treatment, prematurity and a family history of adverse events are all false contraindications, and the exam includes them precisely to see whether you will withhold a vaccine unnecessarily.

Because the evidence supports it and the arithmetic demands it. Trial and observational data show that one dose in adolescent girls produces antibody levels and protection against persistent infection comparable to two doses, and the World Health Organization revised its position accordingly. For a programme targeting roughly 1.15 crore fourteen-year-old girls every year, halving the doses halves the vaccine cost, the cold chain volume, the session load and, most importantly, removes the problem of tracking adolescents for a second visit months later. Second-dose dropout is the single largest failure point in adolescent vaccination anywhere, and a one-dose schedule eliminates it entirely.

Because the risk being managed is bacterial contamination, not loss of potency. Liquid multi-dose vials of oral polio, hepatitis B, pentavalent and tetanus and adult diphtheria contain a preservative that suppresses bacterial growth if a needle introduces organisms, so they can safely be kept for up to twenty-eight days provided the cold chain and vaccine vial monitor are satisfactory. Reconstituted BCG, measles and rubella and Japanese encephalitis are mixed with a diluent containing no preservative, and that diluent is an excellent bacterial culture medium at ambient temperature. The four-hour limit exists to prevent toxic shock from a contaminated vial, and there have been fatal incidents where it was ignored.
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