锌-酞菁负载plga - pva -壳聚糖纳米体系的抗糖尿病活性增强。

IF 4.5 2区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Sharayu Govardhane,  and , Pravin Shende*, 
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引用次数: 0

摘要

锌是最常见的营养保健品之一,它通过抑制胰高血糖素的分泌来调节血糖水平,被证明对糖尿病有效。10 μg/kg浓度的锌可引起肝细胞坏死、肝糖原耗竭和细胞凋亡。酞菁是一种蓝色的芳香族大环化合物,由于其杂环氮偶联而具有良好的抗氧化能力。锌与酞菁偶联的目的是在低剂量下降低锌的毒性,增强抗糖尿病活性。因此,本研究对锌与酞菁的合成及其在聚乳酸-羟基乙酸(PLGA)-壳聚糖纳米体系中的包封,通过口服给药治疗糖尿病具有重要意义。采用纳米沉淀法合成了PLGA壳聚糖纳米颗粒,并采用中心复合设计进一步优化了配方。通过软件提供的20个实验选择了PLGA、聚乙烯醇(PVA)和壳聚糖的最佳粒径为335.6 nm, zeta电位为27.87 mV,包封效率为75.67±8.13%。在纳米载体体系中加入壳聚糖控制药物释放3天后,血糖水平在28天内得到改善。纳米颗粒的递送显示出胆固醇、甘油三酯、碱性磷酸酶(ALP)、尿液参数和促炎细胞因子的增强。采用DoE(实验设计)对纳米颗粒进行优化,建立了糖尿病控释配方,该配方在链脲佐菌素(STZ)诱导的糖尿病大鼠中显示出安全性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Zinc–Phthalocyanine Loaded PLGA–PVA–Chitosan Nanosystem for the Enhancement of Antidiabetic Activity

Zinc–Phthalocyanine Loaded PLGA–PVA–Chitosan Nanosystem for the Enhancement of Antidiabetic Activity

Zinc–Phthalocyanine Loaded PLGA–PVA–Chitosan Nanosystem for the Enhancement of Antidiabetic Activity

Zinc, one of the most common nutraceutical agents, proved to be effective for diabetes as it regulates the blood glucose level by inhibiting glucagon secretion. However, the hepatotoxicity of zinc creates necrosis, hepatic glycogen depletion, and apoptosis of hepatocytes at the concentration of 10 μg/kg. Phthalocyanine, a blue-colored compound, is an aromatic macrocyclic compound with good antioxidant ability owing to its heterocyclic nitrogen conjugation. The conjugation of zinc with phthalocyanine aimed to reduce the toxicity associated with zinc and enhance the antidiabetic activity at a lower dose. Hence, the present research work possessed the insights of the synthetic aspect of zinc with phthalocyanine along with its entrapment in the poly(lactic-co-glycolic acid) (PLGA)–chitosan nanosystem via oral administration in the treatment of diabetes. A nanoprecipitation technique was implemented for the synthesis of PLGA chitosan nanoparticles, and formulation was further optimized using a central composite design. Twenty trials provided by the software selected optimum concentrations of PLGA, poly(vinyl alcohol) (PVA), and chitosan in consideration with particle size up to 335.6 nm, zeta potential 27.87 mV, and entrapment efficiency of 75.67 ± 8.13%. Addition of chitosan to the nanocarrier system for controlling the release of the drug for 3 days was accompanied by the improvement in the glucose level within 28 days. The delivery of the nanoparticles showed enhancement in the cholesterol, triglyceride, alkaline phosphatase (ALP), urine parameters, and pro-inflammatory cytokines. The application of DoE (design of experiments) for the optimization of the nanoparticles established a controlled release formulation for diabetes, which displayed safety and effectiveness in streptozotocin (STZ)-induced diabetic rats.

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来源期刊
Molecular Pharmaceutics
Molecular Pharmaceutics 医学-药学
CiteScore
8.00
自引率
6.10%
发文量
391
审稿时长
2 months
期刊介绍: Molecular Pharmaceutics publishes the results of original research that contributes significantly to the molecular mechanistic understanding of drug delivery and drug delivery systems. The journal encourages contributions describing research at the interface of drug discovery and drug development. Scientific areas within the scope of the journal include physical and pharmaceutical chemistry, biochemistry and biophysics, molecular and cellular biology, and polymer and materials science as they relate to drug and drug delivery system efficacy. Mechanistic Drug Delivery and Drug Targeting research on modulating activity and efficacy of a drug or drug product is within the scope of Molecular Pharmaceutics. Theoretical and experimental peer-reviewed research articles, communications, reviews, and perspectives are welcomed.
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