Vitis Pedata Nanoformulation in the Management of Alloxan Induced Experimental Diabetes

Q3 Pharmacology, Toxicology and Pharmaceutics Biomedical and Pharmacology Journal Pub Date : 2023-09-30 DOI:10.13005/bpj/2715
Suvadra Das, Joyeeta Bhattacharya, Srija Sur, Subhasis Chakraborty, Aparna Lakshmi, Tanay Pramanik, Partha Roy
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Abstract

Vitis pedata is a woody climber of the Vitaceae family with a multitude of pharmacological effects like anti-inflammatory, antibacterial, anti-nociceptive, anti-arthritic, anti-oxidant, astringent, and hemostatic qualities. The research targets to assess the anti-diabetic efficacy of Vitis pedata aqueous extract nanoformulation in alloxan-induced diabetes rats. Biocompatible polycationic polymer chitosan is used for nanoformulation development. The aqueous extract loaded chitosan nanoparticle formulation displayed a particle size of 186± 5.37 nm with a polydispersity index of 0.226 and zeta potential value of 23 ± 1.93 mV. The nanoformulations were assessed for its anti-diabetic properties in comparison to aqueous extracts for the first time by in- vivo methodologies. Several parameters like body weight, blood glucose level, blood and serum biomarkers, were examined. Changes in tissue histoarchitecture, liver glycogen content, oxidative stress response and antioxidant status were also studied. In diabetic rats, the nano-scale formulation significantly reduced blood glucose levels, glucose tolerance, lipid profiles, and serum biomarkers, comparable to the oral hypoglycemic medication glibenclamide. The restoration of antioxidant status and pancreatic histoarchitecture through by size assisted delivery may be related to the improved control of diabetes by the nanoformulation than the extract alone. The work marks the first report of Vitis pedata nanoformulation for diabetes management and can serve as a prelude for further preclinical/clinical evaluations.
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Vitis Pedata纳米制剂在四氧嘧啶诱导的实验性糖尿病治疗中的应用
葡萄是一种藤本植物,具有多种药理作用,如抗炎、抗菌、抗伤害、抗关节炎、抗氧化、收敛和止血。研究目的是评价葡萄水提物纳米制剂对四氧嘧啶诱导的糖尿病大鼠的抗糖尿病作用。利用生物相容性聚阳离子聚合物壳聚糖进行纳米配方的研制。水提物负载壳聚糖纳米颗粒的粒径为186±5.37 nm,多分散指数为0.226,zeta电位值为23±1.93 mV。该纳米制剂的抗糖尿病特性首次通过体内方法与水提取物进行了比较。研究人员检查了一些参数,如体重、血糖水平、血液和血清生物标志物。研究了组织结构、肝糖原含量、氧化应激反应和抗氧化状态的变化。在糖尿病大鼠中,纳米级制剂显著降低血糖水平、葡萄糖耐量、脂质谱和血清生物标志物,与口服降糖药格列本脲相当。通过大小辅助分娩恢复抗氧化状态和胰腺组织结构可能与纳米配方比单独提取物改善糖尿病控制有关。这项工作标志着Vitis pedata纳米配方用于糖尿病管理的第一份报告,可以作为进一步临床前/临床评估的前奏。
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来源期刊
Biomedical and Pharmacology Journal
Biomedical and Pharmacology Journal Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
1.20
自引率
0.00%
发文量
189
期刊介绍: Biomedical and Pharmacology Journal (BPJ) is an International Peer Reviewed Research Journal in English language whose frequency is quarterly. The journal seeks to promote research, exchange of scientific information, consideration of regulatory mechanisms that affect drug development and utilization, and medical education. BPJ take much care in making your article published without much delay with your kind cooperation and support. Research papers, review articles, short communications, news are welcomed provided they demonstrate new findings of relevance to the field as a whole. All articles will be peer-reviewed and will find a place in Biomedical and Pharmacology Journal based on the merit and innovativeness of the research work. BPJ hopes that Researchers, Research scholars, Academician, Industrialists etc. would make use of this journal for the development of science and technology. Topics of interest include, but are not limited to: Biochemistry Genetics Microbiology and virology Molecular, cellular and cancer biology Neurosciences Pharmacology Drug Discovery Cardiovascular Pharmacology Neuropharmacology Molecular & Cellular Mechanisms Immunology & Inflammation Pharmacy.
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