Isolation, Characterization and Antitrypanosomal Evaluation of a Proposed Pentaglycosylated-7,4’Dimethoxy Kaempferol Derivative from Ethanol Extract of Vernonia Perrottettii Promising Against Trypanosoma Parasite.
Keywords:
Human African trypanomiasis, Phytochemical screening, Chromatographed, Structurally elucidated, Biological activity.Abstract
Human African Trypanosomiasis (HAT) remains a significant public health challenge despite
considerable progress in disease control and management. The continued emergence of drug
resistant Trypanosoma strains, coupled with the severe adverse effects associated with
many existing chemotherapeutic agents, has limited the long-term effectiveness of current
treatment strategies. Resistance mechanisms have been linked to mutations in P2 and AQP2
transporters, deletion or modification of genes encoding these transport proteins, and, in
some cases, enhanced drug efflux mechanisms. Consequently, the search for novel, safe, and
effective antitrypanosomal agents from natural sources remains an important area of
research. This study investigated the phytochemical composition and trypanocidal potential
of Vernonia perrottettii leaf extract, a medicinal plant traditionally employed in Northern
Nigeria for the treatment of HAT. Fresh leaves were collected, authenticated, air-dried,
pulverized, and extracted by ethanol maceration. Qualitative phytochemical screening of the
crude extract was conducted using standard analytical procedures. The results revealed the
presence of alkaloids, flavonoids, terpenoids, phenols, tannins, saponins, and cardiac
glycosides. Bioactive constituents were isolated through silica gel (200 mesh) column
chromatography, leading to the purification of a compound structurally characterized and
predicted as a pentaglycosylated-7,4′-dimethoxy kaempferol derivative. The isolated
compound was subsequently evaluated for in vitro trypanocidal activity using the Nigerian
Institute for Trypanosomiasis Research (NITR) assay protocol. The compound exhibited
significant antitrypanosomal activity with an IC₅₀ value of 0.335 μM, demonstrating potency
comparable to the reference drug, Diminazene diaceturate (IC₅₀ = 0.24 μM). These findings
highlight the therapeutic potential of the isolated flavonoid derivative as a promising lead
compound for HAT drug development and warrant further investigation through in vivo
efficacy, toxicity, and cytotoxicity studies.
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