Geo-environmental factors and the effectiveness of mulberry leaf extract in managing malaria

Author:

Pradhan Sayantan,Hore Samrat,Roy Stabak,Manna Simi,Dam Paulami,Mondal Rittick,Ghati Amit,Biswas Trishanjan,Shaw Subhajit,Sharma Supriya,Singh Waikhom Somraj,Maji Suman Kumar,Roy Sankarsan,Basu Aparajita,Pandey Kailash C.,Samanta Soumadri,Vashisht Kapil,Dolai Tuphan Kanti,Kundu Pratip Kumar,Mitra Saptarshi,Biswas Debasish,Sadat Abdul,Shokriyan Masuma,Maity Amit Bikram,Mandal Amit Kumar,İnce İkbal Agah

Abstract

AbstractMalaria prevalence has become medically important and a socioeconomic impediment for the endemic regions, including Purulia, West Bengal. Geo-environmental variables, humidity, altitude, and land use patterns are responsible for malaria. For surveillance of the endemic nature of Purulia’s blocks, statistical and spatiotemporal factors analysis have been done here. Also, a novel approach for the Pf malaria treatment using methanolic leaf extract of Morus alba S1 has significantly reduced the parasite load. The EC50 value (1.852) of the methanolic extract of M. alba S1 with P. falciparum 3D7 strain is close to the EC50 value (0.998) of the standard drug chloroquine with the same chloroquine-sensitive strain. Further studies with an in-silico model have shown successful interaction between DHFR and the phytochemicals. Both 1-octadecyne and oxirane interacted favourably, which was depicted through GC–MS analysis. The predicted binary logistic regression model will help the policy makers for epidemiological surveillance in malaria-prone areas worldwide when substantial climate variables create a circumstance favourable for malaria. From the in vitro and in silico studies, it can be concluded that the methanolic extract of M. alba S1 leaves were proven to have promising antiplasmodial activity. Thus, there is a scope for policy-driven approach for discovering and developing these lead compounds and undermining the rising resistance to the frontline anti-malarial drugs in the world.

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Antimalarial Drug Discovery from Natural and Synthetic Sources;Current Medicinal Chemistry;2024-05-30

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