1: Blueprint and Roadmap on the Possible Development of a Vaccine for African Swine Fever Prepared by the African Swine Fever EU Reference Laboratory on Commission Request . Working Document, SANTE-2017-10272, EC Directorate-General for Health and Food Safety, 31 Jan. 2017, https://ec.europa.eu/food/system/files/2017-02/cff_animal_vet-progs_asf_blue-print-road-map.pdf.
2: Borca, Manuel V., et al. “Development of a Highly Effective African Swine Fever Virus Vaccine by Deletion of the I177L Gene Results in Sterile Immunity against the Current Epidemic Eurasia Strain.” Journal of Virology, vol. 94, no. 7, pp. e02017-19, doi:10.1128/JVI.02017-19.
3: Kendall, Sue. “Advancements Against African Swine Fever Virus.” USDA ARS AgResearch Magazine, 11 Jan. 2021, https://tellus.ars.usda.gov/stories/articles/advancements-against-african-swine-fever-virus/.
4: “Made-in-Vietnam Vaccine against African Swine Fever Effective.” Voice of Vietnam, 18 Jan. 2021, https://english.vov.vn/en/society/made-in-vietnam-vaccine-against-african-swine-fever-effective-831305.vov.
5: Nguyen, Oanh. “Vietnam Closer to ASF Vaccine Launch.” Vietnam Investment Review - VIR, 23 June 2021, https://vir.com.vn/vietnam-closer-to-asf-vaccine-launch-85047.html.
6: Barasona, Jose A., et al. “First Oral Vaccination of Eurasian Wild Boar Against African Swine Fever Virus Genotype II.” Frontiers in Veterinary Science, vol. 6, Apr. 2019, p. 137, doi:10.3389/fvets.2019.00137. https://asf-referencelab.info/asf/en/asf-info/publications.
7: Ter Beek, Vincent. “Moderate Optimism about Chinese ASF Vaccine.” PigProgress, 5 Mar. 2020, https://www.pigprogress.net/F2R/?returnurl=%2fHealth%2fArticles%2f2020%2f3%2fModerate-optimism-about-Chinese-ASF-vaccine-551287E%2f.
8: “China Isn’t Even Close to Swine Fever Cure as Virus Resurfaces.” Bloomberg, 25 Feb. 2021, https://www.bloomberg.com/news/articles/2021-02-25/china-isn-t-even-close-to-swine-fever-jab-as-virus-resurfaces.
9: Rathakrishnan, Anusyah, et al. “Production of Recombinant African Swine Fever Viruses: Speeding Up the Process.” Viruses, vol. 12, no. 6, June 2020, p. 615, doi:10.3390/v12060615. https://www.pirbright.ac.uk/publications/production-recombinant-african-swine-fever-viruses-speeding-process.
10: Portugal, Raquel, et al. “A Porcine Macrophage Cell Line That Supports High Levels of Replication of OURT88/3, an Attenuated Strain of African Swine Fever Virus.” Emerging Microbes & Infections, vol. 9, no. 1, Jan. 2020, pp. 1245–53. https://www.pirbright.ac.uk/publications/porcine-macrophage-cell-line-supports-high-levels-replication-ourt883-attenuated-strain, doi:10.1080/22221751.2020.1772675.
11: Blueprint and Roadmap on the Possible Development of a Vaccine for African Swine Fever Prepared by the African Swine Fever EU Reference Laboratory on Commission Request . Working Document, SANTE-2017-10272, EC Directorate-General for Health and Food Safety, 31 Jan. 2017, https://ec.europa.eu/food/system/files/2017-02/cff_animal_vet-progs_asf_blue-print-road-map.pdf.
12: Bosch-Camós, Laia, et al. “African Swine Fever Vaccines: A Promising Work Still in Progress.” Porcine Health Management, vol. 6, no. 1, Dec. 2020, p. 17, doi:10.1186/s40813-020-00154-2, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7329361/pdf/40813_2020_Article_154.pdf.

