Please use this identifier to cite or link to this item: http://ir.futminna.edu.ng:8080/jspui/handle/123456789/17427
Title: Ganoderma lucidum Chitosan Nanoparticles-encapsulated Senna occidentalis Root phenolics attenuates Lead-induced Haematological Toxicity in Wistar Rats
Authors: Busari, M.B
Yakubu, M.T
Keywords: Lead toxicity, Senna occidentalis, Phenolics, Chitosan nanoparticles, Haematological paramtres
Issue Date: 8-Aug-2021
Publisher: Book of Abstract, 20th NISEB Annual Scientific Conference & General Meeting, University of Ilorin, Ilorin, Nigeria.
Citation: Busari et al.,2021
Series/Report no.: ;p 52
Abstract: The study investigated the effects of Ganoderma lucidum chitosan nanoparticles-encapsulated Senna occidentalis root phenolics (ChNPs-PSOR) on lead-induced haematological alteration in rats. Eight groups (I, II, III, IV, V, VI, VII and VIII) of Wistar rats comprising of 6 rats each were used for the study. Haematological alteration was induced in group I-VII by administering lead acetate (2ml/kg) thereafter, group I, II, III, IV, V, VI, VII and VIII 10 mg/kg body weight (bw.) of ChNPs-PSOR, 20 mg/ kg bw. of both chitosan nanoparticles-encapsulated Senna occidentalis root phenolic (PSOR), 10 mg/ kg bw. of both chitosan nanoparticles-encapsulated, 20 non-encapsulated standard drug calcium disodium edetate (CaNa2-Edetate.ChNPs and CaNa2-Edetate) and normal saline (2mg/mL) naïve control group for 60 days. The study revealed the phenolic contents (mg/g) of extracts showed total phenols (26.82 mg/g), flavonoids (15.84) and tannins (12.15) with LD 50 > 2000 mg/kg bw. Significant depression of PCV, RBC, MCHC, HB, MCV, MCH, neutrophils and lymphocytes counts with elevation of WBC, PLC and RDWC were observed in negative control group when compared with naive control group. The administration of ChNPs-PSOR and CaNa2-Edetate were able to significantly (p < 0.05) revert the haematological changes in lead induced toxicity rats when compared with other groups. Therefore, ChNPs-PSOR restore the haematological abnormalities arise from lead-induce toxicity in rats and chitosan nanoparticles-encapsulation improves the standard drug efficacy. Hence, ChNPs-PSOR can be exploited further for drug development for the management of lead toxicity.
Description: NISEB CONFERENCE, 2021
URI: http://repository.futminna.edu.ng:8080/jspui/handle/123456789/17427
Appears in Collections:Biochemistry

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