Registered Kenya · PPB

INACTIVATED POLIOMYELITIS VACCINE

INACTIVATED POLIOMYELITIS VIRUS TYPE 1 INACTIVATED POLIOMYELITIS VIRUS TYPE 2 INACTIVATED POLIOMYELITIS VIRUS TYPE 3

What it does

Inactivated vaccines help your body build protection against certain diseases without causing the disease itself.

Commonly used for: prevention of infectious diseases

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Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Registration & product details

Registration no.
H2021/CTD3113/82ER
Registration date
2021-02-09 00:00:00
Expiry date
-
Status
Registered
Active ingredient
INACTIVATED POLIOMYELITIS VIRUS TYPE 1 INACTIVATED POLIOMYELITIS VIRUS TYPE 2 INACTIVATED POLIOMYELITIS VIRUS TYPE 3
Strength
-
Pack size
1-DOSE PRESENTATION: THE VACCINE IS FILLED IN 2 ML VIALS OF COLOURLESS SILICONIZED NEUTRAL HYDROLYTIC TYPE 1 GLASS, CLOSED WITH A LATEX-FREE SILICONIZED BROMOBUTYL RUBBER STOPPER AND ALUMINIUM CRIMP CAP WITH POLYPROPYLENE FLIP-OFF CAP AND CONTAINS
Therapeutic class
NEW/INNOVATOR
Manufacturer / MAH
Sai Pharmaceuticals
Applicant / LTR
BILTHOVEN BIOLOGICALS B.V
Country of origin
FOREIGN
Manufacturer location
Whitefield Edge, Junction of James Gichuru Road and Olengurone Road Lavington Nairobi KE, Nairobi, Kenya

Source: Pharmacy and Poisons Board · fetched 2026-01-28 19:36:22 · updated 2026-08-03 02:23:14

Disclaimer: This information is sourced from Pharmacy and Poisons Board (Kenya). Always consult a qualified healthcare professional before using any medication.

About inactivated

Inactivated vaccines help your body build protection against certain diseases without causing the disease itself.

What it treats

  • prevention of infectious diseases

How it works

Inactivated vaccines contain viruses or bacteria that have been killed or inactivated, so they cannot cause disease. They stimulate your immune system to recognize and fight off the real infection if you are exposed in the future.

Who it's for

These vaccines are generally given to people of all ages, based on specific health recommendations.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About poliomyelitis

Poliomyelitis is a viral disease that can cause paralysis. Vaccination is key to prevention.

What it treats

  • poliomyelitis (polio)

How it works

Vaccines stimulate the immune system to recognize and fight the poliovirus, preventing infection.

Who it's for

The vaccine is recommended for children and individuals at risk of exposure to the virus.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About virus

Viruses are microscopic organisms that can cause infections in humans, animals, and plants.

What it treats

  • viral infections
  • common cold
  • influenza (flu)
  • HIV/AIDS
  • hepatitis

How it works

Viruses invade living cells and use them to reproduce, which can lead to illness.

Who it's for

Viruses can affect anyone, but some groups, like those with weakened immune systems, are more at risk.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: inactivated

Inactivated vaccines are a type of immunization that use pathogens that have been killed or inactivated through physical or chemical processes. Unlike live vaccines, inactivated vaccines do not replicate in the host but still stimulate an immune response. These vaccines are generally considered safe and are commonly used to prevent various infectious diseases.

Indications

  • Hepatitis A
  • Hepatitis B
  • Influenza
  • Polio
  • Rabies
  • Typhoid fever

Dosage

Children: Refer to specific product guidelines for paediatric dosing, as it varies by vaccine type and indication.

Adults: Refer to specific product guidelines for adult dosing, as it varies by vaccine type and indication.

Mechanism of action

Inactivated vaccines work by introducing a form of the pathogen that cannot cause disease into the body. This stimulates the immune system to produce antibodies and memory cells specific to the pathogen, allowing for a robust immune response upon future exposure. The immune system recognizes the inactivated pathogen as foreign, leading to the activation of T-cells and B-cells, which are crucial for long-term immunity.

Pharmacodynamics

The pharmacodynamics of inactivated vaccines involve the generation of an adaptive immune response. After vaccination, the body produces specific antibodies against the inactivated pathogen. The response typically includes both humoral immunity, characterized by antibody production, and cellular immunity, involving T-cell activation. The duration of immunity can vary, and booster doses may be required to maintain adequate protection.

Pharmacokinetics

Inactivated vaccines do not have a pharmacokinetic profile like traditional drugs since they do not enter systemic circulation in the same manner. Following administration, the vaccine components are taken up by antigen-presenting cells, which process and present the antigens to T-cells. The immune response is initiated locally at the site of injection and can be influenced by factors such as the route of administration and the presence of adjuvants that enhance the immune response.

Adverse effects

  • Injection site reactions (pain, swelling, redness)
  • Fever
  • Fatigue
  • Headache
  • Myalgia
  • Chills

Precautions

  • Assess for allergies to vaccine components
  • Monitor for allergic reactions post-administration
  • Consider underlying health conditions that may affect immune response

Pregnancy

Inactivated vaccines are generally considered safe during pregnancy, but individual risk-benefit assessment is recommended.

Breast-feeding

Inactivated vaccines can be administered during breastfeeding without concern for adverse effects in the infant.

Storage

Store in a refrigerator at 2°C to 8°C. Do not freeze.

Formulations

  • Inactivated viral vaccines
  • Inactivated bacterial vaccines

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: poliomyelitis

Poliomyelitis, commonly known as polio, is an infectious disease caused by the poliovirus. It primarily affects children under five years of age and can lead to paralysis, respiratory issues, and in severe cases, death. The virus is transmitted through the fecal-oral route or, less commonly, through contaminated water or food. Vaccination has significantly reduced the incidence of polio worldwide. The disease can manifest in various forms, including asymptomatic, non-paralytic, and paralytic poliomyelitis.

Indications

  • Prevention of poliomyelitis infection
  • Vaccination in children and high-risk populations

Dosage

Children: Refer to the BNF for Children for specific dosages and recommendations for vaccination schedules.

Adults: Refer to specific vaccination guidelines for adults, as dosages may vary based on risk factors and prior vaccination history.

Mechanism of action

Poliovirus enters the body through the oral route, replicating in the oropharynx and gastrointestinal tract before spreading to the central nervous system via the bloodstream. Once inside the CNS, the virus selectively infects motor neurons in the anterior horn of the spinal cord, leading to cell lysis and resulting in muscle weakness or paralysis. The immune response to the virus contributes to inflammation and further neuronal damage.

Pharmacodynamics

The poliovirus's pathogenicity is primarily due to its ability to evade the host's immune response and its selective neurotropism. The destruction of motor neurons leads to flaccid paralysis, with recovery possible in some cases as the motor neurons may regenerate. The severity of the disease correlates with the extent of neuronal involvement, which can vary widely among individuals.

Pharmacokinetics

Poliovirus is an RNA virus that does not undergo traditional pharmacokinetic processes as it is not treated with drugs. Instead, the prevention of polio relies on vaccination strategies. The inactivated poliovirus vaccine (IPV) and the oral poliovirus vaccine (OPV) are used to induce immunity. After administration, the vaccines promote the development of antibodies against the virus without causing disease.

Contra-indications

  • Hypersensitivity to the vaccine component
  • Severe immunodeficiency
  • Acute febrile illness

Adverse effects

  • Pain at injection site
  • Fever
  • Fatigue
  • Headache
  • Nausea
  • Allergic reactions

Interactions

  • Immunosuppressive therapies may reduce vaccine efficacy
  • Concomitant administration with other vaccines may affect immune response

Precautions

  • Use with caution in individuals with moderate to severe acute illness
  • Consider history of allergic reactions
  • Monitor for signs of anaphylaxis after administration

Pregnancy

Poliomyelitis vaccination is generally considered safe during pregnancy, but consult a healthcare professional.

Breast-feeding

The vaccine is considered safe for breastfeeding mothers.

Storage

Store at 2 to 8 degrees Celsius. Do not freeze. Protect from light.

Formulations

  • Inactivated poliovirus vaccine (IPV)
  • Oral poliovirus vaccine (OPV)

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: virus

Viruses are submicroscopic infectious agents that replicate only inside the living cells of an organism. They are composed of genetic material (either DNA or RNA) surrounded by a protein coat and, in some cases, an outer lipid envelope. Viruses can infect all types of life forms, from animals and plants to microorganisms, including bacteria (bacteriophages). They are responsible for a wide range of diseases, from the common cold to serious conditions such as HIV/AIDS, influenza, and COVID-19.

Indications

  • Influenza
  • HIV/AIDS
  • Hepatitis B and C
  • Herpes simplex virus infections
  • Cytomegalovirus infections
  • COVID-19
  • Respiratory syncytial virus infections

Dosage

Children: Refer to specific antiviral agents for dosing guidance.

Adults: Refer to specific antiviral agents for dosing guidance.

Mechanism of action

Viruses infect host cells by attaching to specific receptors on the cell surface. Once inside, they hijack the host cell's machinery to replicate their genetic material and produce viral proteins. New viral particles are assembled and released from the host cell, often destroying the cell in the process. The specific mechanism can vary depending on the virus type, including integration into the host genome in retroviruses or utilizing specific pathways for replication.

Pharmacodynamics

The pharmacodynamics of antiviral agents depend on the specific virus and the mechanism of action. Antiviral drugs may inhibit viral entry into host cells, block viral replication, or prevent the assembly of new virions. The effectiveness of antiviral therapy often relates to the stage of viral replication and the immune response of the host.

Pharmacokinetics

Pharmacokinetics of antiviral drugs varies widely based on the specific medication used. Generally, antiviral agents are absorbed through the gastrointestinal tract and distributed throughout the body. They may undergo hepatic metabolism and are often excreted through the kidneys. The half-life of these drugs can range from a few hours to several days, influencing dosing schedules.

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

This drug in other countries

The same active ingredient registered across other registries we cover - including different brands.