蚊子的那些隱秘武器與修煉秘籍
經過數億年的演化,蚊子始終伴隨著人類的進化歷程,可以預見的是,它們將繼續影響我們的生存。因此,如何有效減少蚊蟲對人類的威脅,以及如何與蚊蟲和平共處,將是我們未來持續探索的重要課題。我們需要進壹步探究蚊蟲與病原體之間的相互作用機制,從而開發更有效的控制和預防策略。
此外,加強公眾健康教育,提高人們對蚊媒病毒傳播的認識,也是預防的關鍵。在面對這些挑戰時,科學家、醫生和社會各界都扮演著重要的角色。合作和創新將是解決這些問題的關鍵。通過共同努力,我們有望在保障人類健康的同時,與蚊蟲建立壹種更加和諧的共存關系。
參考文獻:
[1] Organization, W.H. (2022). World malaria report 2022 (World Health Organization).
[2] Whitfield, J. (2002). Portrait of a serial killer. Nature 3.
[3] Bruce-Chwatt, L.J. (1981). Alphonse Laveran's discovery 100 years ago and today's global fight against malaria. Journal of the Royal Society of Medicine 74, 531-536.
[4] Cox, F.E. (2010). History of the discovery of the malaria parasites and their vectors. Parasites & vectors 3, 1-9.
[5] Varo, R., Chaccour, C., and Bassat, Q. (2020). Update on malaria. Medicina Clínica (English Edition) 155, 395-402.
[6] Barrett, A.D., and Higgs, S. (2007). Yellow fever: a disease that has yet to be conquered. Annu. Rev. Entomol. 52, 209-229.
[7] Douam, F., and Ploss, A. (2018). Yellow fever virus: knowledge gaps impeding the fight against an old foe. Trends in microbiology 26, 913-928.
[8] Staples, J.E., and Monath, T.P. (2008). Yellow fever: 100 years of discovery. Jama 300, 960-962.
[9] Monath, T.P. (2005). Yellow fever vaccine. Expert review of vaccines 4, 553-574.
[10] Pierson, T.C., and Diamond, M.S. (2020). The continued threat of emerging flaviviruses. Nature microbiology 5, 796-812.
[11] Organization, W.H. (2022). Virtual Meeting of Regional Technical Advisory Group for dengue and other arbovirus diseases, New Delhi, India, 4-6 October 2021. World Health Organization. Regional Office for South-East Asia.
[12] Misra, U.K., and Kalita, J. (2010). Overview: japanese encephalitis. Progress in neurobiology 91, 108-120.
[13] Campbell, G.L., Hills, S.L., Fischer, M., Jacobson, J.A., Hoke, C.H., Hombach, J.M., Marfin, A.A., Solomon, T., Tsai, T.F., and Tsu, V.D. (2011). Estimated global incidence of Japanese encephalitis: a systematic review. Bulletin of the World Health Organization 89, 766-774.
[14] Mlakar, J., Korva, M., Tul, N., Popovi?, M., Polj?ak-Prijatelj, M., Mraz, J., Kolenc, M., Resman Rus, K., Vesnaver Vipotnik, T., and Fabjan Vodu?ek, V. (2016). Zika virus associated with microcephaly. New England Journal of Medicine 374, 951-958.
[15] Musso, D., Ko, A.I., and Baud, D. (2019). Zika virus infection—after the pandemic. New England Journal of Medicine 381, 1444-1457.
[16] Zhang, H., Zhu, Y., Liu, Z., Peng, Y., Peng, W., Tong, L., Wang, J., Liu, Q., Wang, P., and Cheng, G. (2022). A volatile from the skin microbiota of flavivirus-infected hosts promotes mosquito attractiveness. Cell 185, 2510-2522. e2516.
[17] Zhu, Y., Tong, L., Nie, K., Wiwatanaratanabutr, I., Sun, P., Li, Q., Yu, X., Wu, P., Wu, T., and Yu, C. (2019). Host serum iron modulates dengue virus acquisition by mosquitoes. Nature Microbiology 4, 2405-2415.
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此外,加強公眾健康教育,提高人們對蚊媒病毒傳播的認識,也是預防的關鍵。在面對這些挑戰時,科學家、醫生和社會各界都扮演著重要的角色。合作和創新將是解決這些問題的關鍵。通過共同努力,我們有望在保障人類健康的同時,與蚊蟲建立壹種更加和諧的共存關系。
參考文獻:
[1] Organization, W.H. (2022). World malaria report 2022 (World Health Organization).
[2] Whitfield, J. (2002). Portrait of a serial killer. Nature 3.
[3] Bruce-Chwatt, L.J. (1981). Alphonse Laveran's discovery 100 years ago and today's global fight against malaria. Journal of the Royal Society of Medicine 74, 531-536.
[4] Cox, F.E. (2010). History of the discovery of the malaria parasites and their vectors. Parasites & vectors 3, 1-9.
[5] Varo, R., Chaccour, C., and Bassat, Q. (2020). Update on malaria. Medicina Clínica (English Edition) 155, 395-402.
[6] Barrett, A.D., and Higgs, S. (2007). Yellow fever: a disease that has yet to be conquered. Annu. Rev. Entomol. 52, 209-229.
[7] Douam, F., and Ploss, A. (2018). Yellow fever virus: knowledge gaps impeding the fight against an old foe. Trends in microbiology 26, 913-928.
[8] Staples, J.E., and Monath, T.P. (2008). Yellow fever: 100 years of discovery. Jama 300, 960-962.
[9] Monath, T.P. (2005). Yellow fever vaccine. Expert review of vaccines 4, 553-574.
[10] Pierson, T.C., and Diamond, M.S. (2020). The continued threat of emerging flaviviruses. Nature microbiology 5, 796-812.
[11] Organization, W.H. (2022). Virtual Meeting of Regional Technical Advisory Group for dengue and other arbovirus diseases, New Delhi, India, 4-6 October 2021. World Health Organization. Regional Office for South-East Asia.
[12] Misra, U.K., and Kalita, J. (2010). Overview: japanese encephalitis. Progress in neurobiology 91, 108-120.
[13] Campbell, G.L., Hills, S.L., Fischer, M., Jacobson, J.A., Hoke, C.H., Hombach, J.M., Marfin, A.A., Solomon, T., Tsai, T.F., and Tsu, V.D. (2011). Estimated global incidence of Japanese encephalitis: a systematic review. Bulletin of the World Health Organization 89, 766-774.
[14] Mlakar, J., Korva, M., Tul, N., Popovi?, M., Polj?ak-Prijatelj, M., Mraz, J., Kolenc, M., Resman Rus, K., Vesnaver Vipotnik, T., and Fabjan Vodu?ek, V. (2016). Zika virus associated with microcephaly. New England Journal of Medicine 374, 951-958.
[15] Musso, D., Ko, A.I., and Baud, D. (2019). Zika virus infection—after the pandemic. New England Journal of Medicine 381, 1444-1457.
[16] Zhang, H., Zhu, Y., Liu, Z., Peng, Y., Peng, W., Tong, L., Wang, J., Liu, Q., Wang, P., and Cheng, G. (2022). A volatile from the skin microbiota of flavivirus-infected hosts promotes mosquito attractiveness. Cell 185, 2510-2522. e2516.
[17] Zhu, Y., Tong, L., Nie, K., Wiwatanaratanabutr, I., Sun, P., Li, Q., Yu, X., Wu, P., Wu, T., and Yu, C. (2019). Host serum iron modulates dengue virus acquisition by mosquitoes. Nature Microbiology 4, 2405-2415.
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蚊子的那些隱秘武器與修煉秘籍