Nano-biotechnology: a new approach to treat and prevent malaria

Malaria, the exterminator of ~1.5 to 2.7 million human lives yearly, is a notorious disease known throughout the world. The eradication of this disease is difficult and a challenge to scientists. Vector elimination and effective chemotherapy for the patients are key tactics to be used in the fight a...

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Veröffentlicht in:International journal of nanomedicine 2019-01, Vol.14, p.1401-1410
Hauptverfasser: Rahman, Khaista, Khan, Shahid Ullah, Fahad, Shah, Chang, Ming Xian, Abbas, Aqleem, Khan, Wasim Ullah, Rahman, Lutfur, Haq, Zaheer Ul, Nabi, Ghulam, Khan, Dilfaraz
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Sprache:eng
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Zusammenfassung:Malaria, the exterminator of ~1.5 to 2.7 million human lives yearly, is a notorious disease known throughout the world. The eradication of this disease is difficult and a challenge to scientists. Vector elimination and effective chemotherapy for the patients are key tactics to be used in the fight against malaria. However, drug resistance and environmental and social concerns are the main hurdles in this fight against malaria. Overcoming these limitations is the major challenge for the 21st-century malarial researchers. Adapting the principles of nano-biotechnology to both vector control and patient therapy is the only solution to the problem. Several compounds such as lipids, proteins, nucleic acid and metallic nanoparticles (NPs) have been successfully used for the control of this lethal malaria disease. Other useful natural reagents such as microbes and their products, carbohydrates, vitamins, plant extracts and biodegradable polymers, are also used to control this disease. Among these particles, the plant-based particles such as leaf, root, stem, latex, and seed give the best antagonistic response against malaria. In the present review, we describe certain efforts related to the control, prevention and treatment of malaria. We hope that this review will open new doors for malarial research.
ISSN:1178-2013
1176-9114
1178-2013
DOI:10.2147/IJN.S190692