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https://e-catalogs.taat-africa.org/gov/technologies/eradication-through-thermostable-peste-des-petits-ruminants-vaccine
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Eradication through Thermostable Peste des Petits Ruminants Vaccine

Reliable, Effective, and Accessible Disease Control for Small Ruminants.

The solution is a homologous live attenuated vaccine that effectively guards small ruminants against Peste des Petits Ruminants (PPR). The vaccine is proven to remain stable at ambient temperatures for extended periods, even withstanding spikes of 38°C for 9 days and 40°C for 7 days.

2

This technology is TAAT1 validated.

8•7

Scaling readiness: idea maturity 8/9; level of use 7/9

Adults 18 and over: Positive high

Others: No impact

The poor: Positive low

Under 18: Positive low

Women: Positive medium

Climate adaptability: Highly adaptable

Farmer climate change readiness: Significant improvement

Biodiversity: Positive impact on biodiversity

Environmental health: Moderately improves environmental health

Water use: Same amount of water used

Problem

  • High Mortality Rates: PPR is a fast-spreading viral disease of sheep and goats with high mortality rates, especially among younger animals.
  • Limited Vaccine Storage: The requirement for cold storage has limited the widespread use of the current available vaccine within eradication programs.
  • Economic Losses: Economic losses from PPR across Africa and Asia are estimated to be USD 2.1 billion per year.
  • Vaccine Stability: Previous constraints included maintaining vaccine stability, especially in areas with limited access to cold storage.
  • Limited Coverage: The need for cold storage restricted the adequate coverage of vaccination campaigns, limiting the protection of animals.
  • Outbreak Reporting: PPR is a notifiable disease, necessitating the reporting of outbreaks to national veterinary authorities.
  • Disease Surveillance: Disease surveillance, including animal movement monitoring and quarantine measures, is crucial for controlling outbreaks and preventing spread.
  • Biosecurity Measures: Identification of high-risk areas with inadequate biosecurity measures is essential to prevent infection and spread.

Solution

  • Stability at Ambient Temperatures: Eliminates the need for cold storage for a given number of days, making the vaccine widely accessible and reducing logistical challenges.
  • Extended Shelf Life: Remains effective for up to one week at ambient temperatures, ensuring vaccines remain potent even in areas with limited refrigeration facilities.
  • Proven Effectiveness: Demonstrated efficacy during field trials, providing reliable protection against PPR in small ruminants.
  • Cost-Effective: Reduces storage costs associated with cold chain maintenance, making the vaccine a more affordable solution for farmers.
  • Improved Coverage: Enables vaccination of a larger number of animals in less time, contributing to more comprehensive disease control efforts.
  • Lifetime Immunity for Most Animals: Offers long-term protection, reducing mortality rates and economic losses associated with PPR outbreaks.
  • Compliance with Eradication Efforts: Aligns with international standards set by organizations like the World Organization for Animal Health and the Food and Agriculture Organization, supporting global efforts to eradicate PPR.

Key points to design your project

The technology reduces economic losses and poverty among small ruminant farmers by preventing PPR outbreaks and enhancing food security. It improves animal health, reduces disease spread, and fosters economic growth in the agricultural sector. Additionally, its innovation in vaccine technology promotes sustainability and contributes to climate action efforts.

To incorporate this technology into your project, the following steps and considerations are recommended:

  • Ensure the availability and affordability of thermostable vaccines for small ruminant producers.
  • Educate producers about the advantages of PPR vaccination and ensure their willingness to invest in vaccine administration.
  • Encourage adherence to instructions provided by animal health professionals regarding vaccine administration.
  • Provide training and certification to animal health professionals in accordance with national regulatory standards to ensure proficient vaccine administration.
  • Ensure vaccine quality meets national or regional standards to achieving good immunity of herds
  • Calculate the required quantity of products needed for your project based on an initial cost ranging from 0.3-0.5 USD per animal. Consider additional expenses such as delivery costs, import clearance, and duties, particularly if the technology is sourced from other countries.

A team of trainers can offer support and training during the installation phase of the project. Budget for training and post-training support for utilizing the technology effectively.

Consider collaborating with agricultural development institutes to facilitate the implementation of the technology within your country.

Cost: $$$ 0.3—1.0 USD

Vaccine dose cost per animal

ROI: $$$

IP

Open source / open access

Countries with a green colour
Tested & adopted
Countries with a bright green colour
Adopted
Countries with a yellow colour
Tested
Countries with a blue colour
Testing ongoing
Egypt Equatorial Guinea Ethiopia Algeria Angola Benin Botswana Burundi Burkina Faso Democratic Republic of the Congo Djibouti Côte d’Ivoire Eritrea Gabon Gambia Ghana Guinea Guinea-Bissau Cameroon Kenya Libya Liberia Madagascar Mali Malawi Morocco Mauritania Mozambique Namibia Niger Nigeria Republic of the Congo Rwanda Zambia Senegal Sierra Leone Zimbabwe Somalia South Sudan Sudan South Africa Eswatini Tanzania Togo Tunisia Chad Uganda Western Sahara Central African Republic Lesotho
Countries where the technology is being tested or has been tested and adopted
Country Testing ongoing Tested Adopted
Mali No ongoing testing Tested Adopted

This technology can be used in the colored agro-ecological zones. Any zones shown in white are not suitable for this technology.

Agro-ecological zones where this technology can be used
AEZ Subtropic - warm Subtropic - cool Tropic - warm Tropic - cool
Arid
Semiarid
Subhumid
Humid

Source: HarvestChoice/IFPRI 2009

The United Nations Sustainable Development Goals that are applicable to this technology.

Sustainable Development Goal 1: no poverty
Goal 1: no poverty
Sustainable Development Goal 2: zero hunger
Goal 2: zero hunger
Sustainable Development Goal 3: good health and well-being
Goal 3: good health and well-being
Sustainable Development Goal 8: decent work and economic growth
Goal 8: decent work and economic growth
Sustainable Development Goal 9: industry, innovation and infrastructure
Goal 9: industry, innovation and infrastructure
Sustainable Development Goal 12: responsible production and consumption
Goal 12: responsible production and consumption
Sustainable Development Goal 13: climate action
Goal 13: climate action

  1. Report outbreaks of PPR to national veterinary authorities as PPR is a notifiable disease.
  2. Implement disease surveillance considering animal movement, farm quarantine, and identification of high-risk areas.
  3. Source vaccines from reliable suppliers and ensure proper cold chain management.
  4. Administer vaccines through trained and certified vaccinators, ensuring correct dosage.
  5. Monitor vaccinated animals for signs of immunity and address any concerns promptly.

Last updated on 26 November 2024