Characterization, Cytotoxicity and Anti-oxidant Studies of Phytoniosome Loaded with Ethanolic Leaf Extract of Tinospora Cordifolia.

Q3 Biochemistry, Genetics and Molecular Biology Avicenna journal of medical biotechnology Pub Date : 2023-07-01 DOI:10.18502/ajmb.v15i3.12930
Sri Devi Masilamani, Priya Chokkalingam, Rajeswary Hari
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Abstract

Background: From time immemorial herbal preparations are been employed for the treatment of several ailments. In recent years due to poor bioavailability the conventional herbal preparations are replaced by phytoniosomes, an advanced novel drug delivery system in which the herbal extracts are incorporated into a non-ionic surfactant to yield higher absorption and remarkable desired pharmacological activity. The present study is aimed to prepare and characterize the ethanolic leaf extract of Tinospora cordifolia (nELETC) loaded phytoniosome and to compare its antioxidant properties with ethanolic leaf extract of Tinospora cordifolia (ELETC).

Methods: The ethanolic leaf extract and ethanolic leaf extract of Tinospora cordifolia loaded phytoniosome (ELETC and nELETC) were prepared. The characterization of the prepared phytoniosomes were performed by UV-Visible spectroscopy, FTIR, XRD, SEM, TEM, DLS and zeta potential. The nontoxic nature of the prepared phytoniosomes was analyzed using MTT assay in vero cell line. The antioxidant potential of ELETC and nELETC were compared by the scavenging activity of DPPH, Hydrogen peroxide and Superoxide radicals.

Results: The formation of ethanolic leaf extract of Tinospora cordifolia loaded phytoniosome (nELETC) was confirmed with UV-Vis spectroscopy. The SEM and TEM images confirmed the spherical shape of the nELETC with average size ranging from 600 to 1800 nm. The zeta potential showed magnitude of -65.55 to -77.83 mV and its crystalline structure was confirmed by XRD analysis. Through the FTIR spectrum presence of alcohols, alkanes, phenols, esters, aliphatic and aromatic compounds as well as alkenes and carbolic acids were identified. MTT assay establishes the non-toxic nature of the synthesized nELETC and excellent antioxidant potential was observed for nELETC than ELETC.

Conclusion: In conclusion, the ethanolic leaf extract of Tinospora cordifolia loaded phytoniosome (nELETC) will serve as a promising drug carrier in scavenging the free radicals and can be used in various biological applications.

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天蛾乙醇叶提取物负载植物体的特性、细胞毒性和抗氧化性研究。
背景:自古以来,草药制剂就被用于治疗几种疾病。近年来,由于生物利用度低,传统的草药制剂被植物泌体取代,植物泌体是一种先进的新型药物递送系统,其中草药提取物被掺入非离子表面活性剂中,以产生更高的吸收率和显著的所需药理活性。本研究旨在制备和表征负载型天顶藻的叶提取物,并将其与负载型天底藻的叶乙醇提取物(ELETC)的抗氧化性能进行比较。通过紫外-可见光谱、红外光谱、XRD、SEM、TEM、DLS和ζ电位对所制备的植物甾体进行了表征。用MTT法在vero细胞系中分析了所制备的植物泌醇体的无毒性。通过对DPPH、过氧化氢和超氧化物自由基的清除活性,比较了ELETC和nELETC的抗氧化潜力。结果:紫外-可见光谱法证实了心叶天蛾载植体乙醇叶提取物(nELETC)的形成。SEM和TEM图像证实了nELETC的球形,其平均尺寸范围为600至1800nm。ζ电位的大小为-65.55至-77.83mV,其晶体结构通过XRD分析得到证实。通过红外光谱鉴定了醇类、烷烃、酚类、酯类、脂肪族和芳香族化合物以及烯烃和羧酸的存在。MTT法测定了所合成的nELETC的无毒性,并观察到其比ELETC具有优异的抗氧化潜力。
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来源期刊
Avicenna journal of medical biotechnology
Avicenna journal of medical biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
2.90
自引率
0.00%
发文量
43
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