Written by students who passed Immediately available after payment Read online or as PDF Wrong document? Swap it for free 4.6 TrustPilot
logo-home
Document preview thumbnail
Preview 4 out of 82 pages
Summary

Summary Novel Vaccine Technologies | Delputte | UA | 2025/26

Document preview thumbnail
Preview 4 out of 82 pages

Lecture notes from the Novel Vaccine Technologies and Applications course at Universiteit Antwerpen, taught by Peter Delputte. Covers the history of vaccination from variolation through the first vaccines, including key milestones like Jenner's cowpox inoculation, early vaccine development timelines, and foundational concepts in immunology and disease prevention. Essential reading for understanding vaccine development principles and the evolution of vaccination as a public health intervention—ideal for exam preparation and grasping core concepts in this specialized biomedical sciences course.

Content preview

2025-2026 Vaccine Technologies Peter Delputte




NOVEL VACCINE TECHNOLOGIES AND
APPLICATIONS
INTRODUCTION

A SHORT HISTORY OF VACCINATION

• Vaccines are a ‘recent invention’ compared to the thousands of years that humans have suffered
major epidemics
• Vaccination only started to be effectively used in the 20th century in a structured manner
o Several vaccines developed since
o Routine vaccinations introduced
o Large populations vaccinated
• With the exception of safe water, no other intervention, not even antibiotics, had such a major
effect on mortality reduction and population growth A (short) history of vaccination
• Vaccines are the most controlled intervention in humans, since-we
Epidemics give it to healthy people!
Pandemics
• There have been some huge outbreaks throughout humanity: The Great Plague of London,
Spanish and Russian flu, SARS-CoV-19…
o There’s an introduction of a new pathogen in a population
with no immunity
o A lot of people are killed (steep increase of in deaths)
o The people who survived have immunity (steep decrease in
deaths)
o Epidemic dies out

BEFORE VACCINES

• There was already some knowledge on infectious diseases and protective immunity
o They didn’t know there were pathogens, but they knew that people could get sick in the
vicinity of other sick people
• The practice of quarantine began during the 14th century, to protect coastal cities from plague
epidemics
o Ships arriving in Venice from infected ports needed to sit at anchor for 40 days before
landing
o Quarantine = Quaranta giorni = ’40 days’ in Italian
• One of the first instances of relying on geography and statistical analysis was in mid 19th
century in London, during a cholera outbreak à in 1854 a doctor (John Snow) came to the
conclusion that cholera was spreading via tainted water and decided to display neighborhood
mortality in data directly on a map à revealed a cluster of infections around a specific water
pump à they knew something was up with the water, but were not aware it was a bacterium yet




1

,2025-2026 Vaccine Technologies Peter Delputte

VARIOLATION/INOCULATION

• = no real ‘vaccination’ yet, but it was close
• Many people died of smallpox, but the people that survived and recovered remained healthy in
subsequent outbreaks = they developed immunity
• In China: observed that persons recovered from smallpox were resistant to new outbreaks (in 12th
century) à they started using scabs of the mildest smallpox cases to infect other people by
inoculating/variolating these scabs into small cuts in the skin
• In 16th century: variolation of smallpox in India à introducing dried pus from smallpox pustules
into the skin of a patient
• In 18th century: variolation was documented in China
• In 18th century: variolation was brought in England because Lady Mary Wortley Montagu
frequently observed variolation during her stay in Turkey
• Variolation was effective, but 2-3% died of smallpox contracted from the variolation itself
• The precise origin of variolation remains unknown

FIRST VACCINE

• Vaccine = a biological suspension of a live or inactivated pathogen or fractions/subunits thereof
(i.e. purified protein subunits, conjugated and non-conjugated polysaccharides or split virions)
which can be administered by various routes (IM, SC, ID, oral and intranasal) to induce a specific
long-term immunity (immune memory) and prevent disease caused by a specific pathogen
against which it has been developed.
o ‘Prevent disease’ is not always possible, sometimes it just prevents morbidity/mortality
• Benjamin Jesty was a cattle breeder = he was immune to smallpox after contracting cowpox from
his herd
o He knew that dairymaids seemed to be protected from smallpox after they had
contracted cowpox as well
o He inoculated his wife and children with cowpox to avoid smallpox epidemic =
succeeded
• Jesty’s actions constituted the first known real vaccine – the use of cowpox to protect against
smallpox
• Edward Jenner then did large scale vaccinations with cowpox
o Cowpox was not widespread, so it was difficult to find for use as a vaccine
o They tried to transport cowpox infected cattle (but an infection only lasts for so long) à
we needed susceptible cattle as well à very complex
o They started arm-to-arm transmission (people are easier to transport than cattle) =
providing large-scale inoculation
§ They used orphans/children infected/susceptible to cowpox and brought them
all over the world = seen as hero’s!
o Of course this did not came without risk: this arm-to-arm transmission enhances the
spread of other diseases (like syphilis and tuberculosis)
• The rinderpest was a cattle plague (18th century), for this they also tried inoculation à disastrous
results!
• In 1855, they started to standardize calf-derived vaccines




2

,2025-2026 Vaccine Technologies Peter Delputte

VACCINE TIMELINE

• Louis Pasteur (1879)
o Serendipity = finding something, when looking for something else
o He was investigating fowl cholera (Pasteurella multocida)
A (short) history of vaccination
o Until some student accidentally messed up
§ He forgot to renew Louisthe
Pasteur
bacterial(1879)
culture– serendipity…
over the
weekend = cells died
§ He decided to§use a culture
Louis Pasteur infrom
Francethe week before
investigated fowl (aged
P. multocida) cholera (Pasteurella multocida)
§ He infected a chicken with this culture, but the chicken
§ Accidental aged P. multocida was used, and this
did not die (it was
didhealthy)
not kill chickens, but protected against
§ When a new (fresh) culture
infection with was
fresh given to chickens
P. multocida (Serendipity)
• Chicken previously infected with the aged
culture survived = immunity
• Chickens not previously infected died
• Henry Toussaint (1880)
o Anthrax vaccine 27

o He noted that the blood of bovines, died of anthrax, were full of bacteria
§ He filtered the blood: bacteria could pass through the filter
§ He heated the blood (10min at 55°C to the action of diluted phenol)
à Both techniques resulted in an attenuated vaccine
• At the beginning of 20th century, 5 human vaccines were in use
o Jenner’s original smallpox vaccine
o Pasteur’s rabies vaccine
o 3 bacterial vaccines: typhoid, cholera and plague
o Immunization with diphtheria or tetanus antitoxin was an accepted, unofficial practice!
• At the end of 19th century: the end of arm-to-arm lymph inoculation for smallpox vaccination à
replaced by the use of glycerinated calf lymph in 1898
• End of 19th century: introduction of the fundamental concepts of vaccinology
• Beginning 20th century: refinements to these theoretical underpinnings
o Not until the advent of cell culture 50 years later would the field again become so
dramatically fertile
A (short) history of vaccination
o First animals were used to ‘grow’ viruses, then embryonated chicken eggs were used
Vaccine timeline




32




3

, 2025-2026 Vaccine Technologies Peter Delputte

VACCINES IN THE 20TH CENTURY

• Typhoid vaccines
o Typhoid fever is a bacterial disease caused by Salmonella typhi
o Typhoid fever symptoms are similar to those of other common GI illnesses, including
fever, headache, nausea, constipation or diarrhea, loss of appetite and a rose-colored
rash on the body
o Typhoid fever may lead to intestinal bleeding and perforation, and this may lead to severe
intestinal damage
o Richard Pfeiffer, Wilhelm Kolle and Almroth Wright worked independently on killed
typhoid vaccines
§ Wright proposed ass immunization of British troops with this killed typhoid
vaccine
§ Result was catastrophic: 58,000 typhoid cases with 9000 deaths in the British
army
§ A broad-based trial showed overwhelming effectiveness of the vaccine
• Bacterins
o “bacterins” as human vaccines in early 20th century
o Bacterins = killed bacteria (antigens) injected parentally
o Can be combined with immune serum = serobacterins
o Most bacterins were prepared and sold without clinical trials
o Fell into disuses in late 1930s as more stringent licensing requirements were imposed by
the federal government
• Toxoid vaccines
o Early 20the century: chemical inactivation of diphtheria and other bacterial toxins let to
the development of the first toxoids: diphtheria and tetanus
o 1909: toxoids provide long-lasting immunity against diphtheria in guinea pigs
o 1923: diphtheria toxin could be transformed into a toxoid by formalin, used together with
antitoxin à later, diphtheria toxoid was used on its own (no antitoxin) with adding
formalin = still used
• Rabies
o Rabies = very deadly viral disease of animals and humans
o 1880: Pasteur’s experimental method of attenuation tried on a human disease à efforts
to isolate the rabies virus were unsuccessful (virus remained invisible)
o Passage of rabies virus in animals
§ Inoculation of a part of a dog’s brain into another dog’s brain: inoculated dogs
died à no attenuation, virus remained lethal
§ Serial passage through several rabbits à virus with stable virulence
o Developing a vaccine with attenuated virulence
§ Suspending sections of spinal cord from rabbits inside flasks to dry in a
moisture-free atmosphere
§ Virulence gradually declined until finally disappearing
§ Louis Pasteur injected these spinal cord sections into rabid dogs, followed by
challenge with rabies à no rabies J
o The first live human vaccine




4

Document information

Study
Uploaded on
August 28, 2026
Number of pages
82
Written in
2025/2026
Type
Summary
$13.32

Wrong document? Swap it for free Within 14 days of purchase and before downloading, you can choose a different document. You can simply spend the amount again.
Written by students who passed
Immediately available after payment
Read online or as PDF

Sold
0
Followers
0
Items
11
Last sold
-




Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their tests and reviewed by others who've used these notes.

Didn't get what you expected? Choose another document

No worries! You can instantly pick a different document that better fits what you're looking for.

Pay as you like, start learning right away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and aced it. It really can be that simple.”

Alisha Student

Working on your references?

Create accurate citations in APA, MLA and Harvard with our free citation generator.

Working on your references?

Frequently asked questions