Page 21 - GHES-3-3
P. 21

Global Health Economics and
            Sustainability
                                                                                      Sustainable therapeutic Artemisia


               annua L. as a plant with potential use in the treatment of   Elfawal, M.A., Towler, M.J., Reich, N.G., Weathers, P.J., &
               acanthamoebiasis. Parasitology Research, 115(4):1635-1639.  Rich, S.M. (2015). Dried whole-plant  Artemisia annua
               https://doi.org/10.1007/s00436-016-4902-z.         slows evolution of malaria drug resistance and overcomes
                                                                  resistance to artemisinin.  Proceedings of the National
            Desrosiers, M.R., & Weathers, P.J. (2016). Effect of leaf digestion   Academy of Sciences, 112(3):821-826.
               and  artemisinin  solubility  for  use in  oral  consumption  of
               dried  Artemisia  annua leaves to treat malaria.  Journal  of      https://doi.org/10.1073/pnas.1413127112
               Ethnopharmacology, 190:313-318.                 Ellman, A. (2010). Cultivation of Artemisia annua in Africa and
                                                                  Asia. Outlooks on Pest Management, 21(2):84-88.
               https://doi.org/10.1016/j.jep.2016.06.041
            Desrosiers, M.R., & Weathers, P.J. (2018). Artemisinin      https://doi.org/10.1564/21apr08
               permeability via Caco-2  cells increases after simulated   Feeney, A.J., Goad, J.A., & Flaherty, G.T. (2024) Global perspective
               digestion of  Artemisia annua leaves.  Journal of   of the risks of falsified and counterfeit medicines: A critical
               Ethnopharmacology, 210:254-259.                    review of the literature.  Travel Medicine and Infectious
                                                                  Disease, 61:102758.
               https://doi.org/10.1016/j.jep.2017.08.038
                                                               Feng, J., Li, T., Yee, R., Yuan, Y., Bai, C., Cai, M., et al. (2019).
            Desrosiers, M.R., Mittelman, A., & Weathers, P.J. (2020). Dried
               leaf Artemisia annua improves bioavailability of artemisinin   Stationary phase persister/biofilm microcolony of Borrelia
               via cytochrome P450 inhibition and enhances artemisinin   burgdorferi causes more severe disease in a mouse model of
               efficacy downstream. Biomolecules, 10(2):254.      Lyme arthritis: Implications for understanding persistence,
                                                                  post-treatment lyme disease syndrome (PTLDS), and
               https://doi.org/10.3390/biom10020254               treatment failure. Discovery Medicine, 27(148):125-138.
            Devaraj, A., & Roelofson, M.F. (2015). Artemisia annua tea as a   Feng, J., Shi, W., Zhang, S., & Zhang, Y. (2015). Identification of
               rejuvenative therapy for HIV infected non ART AIDS patients.   new compounds with high activity against stationary phase
               World Journal Pharmaceutical Research, 4(6):941-946.  Borrelia burgdorferi from the NCI compound collection.
            Dhorda, M., Kaneko, A., Komatsu, R., Kc, A., Mshamu, S.,   Emerging Microbes and Infections, 4(1):e31.
               Gesase, S.,  et al. (2024). Artemisinin-resistant malaria in      https://doi.org/10.1038/emi.2015.31
               Africa demands urgent action. Science, 385(6706):252-254.
                                                               Feng, J., Wang, T., Shi, W., Zhang, S., Sullivan, D., Auwaerter, P.G.,
               https://doi.org/10.1126/science.adp5137            et al. (2014). Identification of novel activity against Borrelia
            Diaz, K. (2023). Freight Container Farms: A  Feasibility and   burgdorferi persisters using an FDA approved drug library.
               Sustainability Assessment. Champaign: University of Illinois   Emerging Microbes and Infections, 3(1):1-8.
               at Urbana-Champaign.                            Ferreira, J.F., Benedito, V.A., Sandhu, D., Marchese, J.A., &
            Ding, F., Ma, T., Hao, M., Wang, Q., Chen, S., Wang, D., et al.   Liu,  S. (2018).  Seasonal  and differential sesquiterpene
               (2020).  Mapping  worldwide  environmental  suitability  for   accumulation in Artemisia annua suggest selection based on
               Artemisia annua L. Sustainability, 12(4):1309.     both artemisinin and dihydroartemisinic acid may increase
                                                                  artemisinin in planta. Frontiers in Plant Science, 9:1096.
               https://doi.org/10.3390/su12041309
                                                                  https://doi.org/10.3389/fpls.2018.01096
            Dolivo, D., Weathers, P., & Dominko, T. (2021). Artemisinin and
               artemisinin derivatives as anti-fibrotic therapeutics.  Acta   Ferreira, J.F., Peaden, P., & Keiser, J. (2011). In vitro trematocidal
               Pharmaceutica Sinica B, 11(2):322-339.             effects  of  crude  alcoholic  extracts  of  Artemisia annua,
                                                                  A. absinthium,  Asimina triloba, and  Fumaria officinalis.
               https://doi.org/10.1016/j.apsb.2020.09.001
                                                                  Parasitology Research, 109(6):1585-1592.
            Efferth, T. (2009). Artemisinin: A versatile weapon from traditional      https://doi.org/10.1007/s00436-011-2418-0
               Chinese medicine. In: Herbal Drugs: Ethnomedicine to
               Modern Medicine. Germany: Springer, p.173-194.  Ganfon, H., Yemoa, A., Assanhou, A.G., N’oueni, K., Amoussa, A.,
                                                                  Morimont, L., et al. (2019). Pilot study of quality control of
            Efferth,  T.  (2018). Beyond malaria: The  inhibition of  viruses   Artemisia annua-based herbal medicine sold in Benin. Journal
               by artemisinin-type compounds.  Biotechnology Advances,   of Pharmacognosy and Phytochemistry, 8(6):1817-1822.
               36:1730-1737.
                                                               Ghaffarifar, F., Heydari, F.E., Dalimi, A., Hassan, Z.M.,
               https://doi.org/10.1016/j.biotechadv.2018.01.001
                                                                  Delavari,  M., & Mikaeiloo, H. (2015). Evaluation of
            Elfawal, M.A., Towler, M.J., Reich, N.G.,  Golenbock, D.,   apoptotic and antileishmanial activities of Artemisinin on
               Weathers,  P J., & Rich, S.M. (2012). Dried whole plant   promastigotes and BALB/C mice infected with Leishmania
               Artemisia annua as an antimalarial therapy.  PLoS One,   major. Iranian Journal of Parasitology, 10(2):258.
               7(12):e52746.
                                                               Goel, R., Kumari, R., Singh, V., Kumari, R., Srivastava, S., &
               https://doi.org/10.1371/journal.pone.0052746       Kumar, S. (2018). Perspectives of the Artemisia annua dry


            Volume 3 Issue 3 (2025)                         13                       https://doi.org/10.36922/ghes.4927
   16   17   18   19   20   21   22   23   24   25   26