揭示丹参酮 IIA 的治疗潜力和纳米技术方法

Diya Arora, Vanshita, Keshav Bansal
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引用次数: 0

摘要

引言 植物化学物质作为膳食成分,正被广泛研究用于治疗和预防多种疾病。丹参酮 IIA 是一种从植物中提取的二萜醌,具有多种治疗效果。然而,由于溶解度、生物利用度和稳定性低,靶向生物分布弱,半衰期短,丹参酮 IIA 不太可能成为有效治疗的候选药物。基于天然物质的纳米制剂作为一种治疗各种人类疾病的方法正受到越来越多的关注,因为它们为传统方法提供了一种有效的替代方法,而传统方法往往与一些不良反应和并发症联系在一起。使用 "丹参酮 IIA "或 "二萜 "等关键词,结合 "中药"、"治疗潜力"、"神经保护"、"抗癌"、"心脏保护"、"纳米载体 "或 "脂质体",从 Scopus、Embase、PubMed 和 Google Scholar 等各种数据库中汇编了相关文献。结果研究结果表明,Tan IIA 具有广泛的药理作用,包括抗糖尿病、抗癌、抗氧化和抗炎活性。Tan IIA 纳米制剂具有良好的封装效率、持续释放性、稳定性、延长循环时间、增加在病变部位的蓄积和提高疗效,从而提高了对多种疾病的治疗效果。 讨论纳米结构颗粒通过克服生物障碍,在解决植物化学物质的生物利用度有限和稳定性等问题方面具有多种优势。当然,将纳米药物输送载体用于植物产品是当前的趋势。此外,这些纳米制剂的治疗应用必须在人体中进行研究。此类研究以及全面评估和剂量优化可能会为丹参酮 IIA 的商业可行性铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unveiling the therapeutic potential and nanotechnological approaches for the delivery of tanshinone IIA

Unveiling the therapeutic potential and nanotechnological approaches for the delivery of tanshinone IIA

Introduction

Phytochemicals, as dietary ingredients, are being extensively studied for the treatment and prevention of many illnesses. Tanshinone IIA, a plant-derived diterpene quinone has demonstrated various therapeutic effects. However, limitations like low solubility, bioavailability and stability, weak targeting biodistribution, and short half-life make Tan IIA an unlikely candidate for effective therapy. Nanoformulations based on natural substances are gaining interest as a treatment approach for various human diseases, as they provide an effective alternative to conventional approaches, which are frequently linked with a number of adverse effects and complications.

Methods

The study comprises a thorough assessment of existing research findings from a variety of sources in order to collect data on Tan IIA therapeutic properties and innovative delivery systems. Literature was compiled from various databases, including Scopus, Embase, PubMed, and Google Scholar, using keywords such as "Tanshinone IIA" or "diterpenes" in combination with "Traditional Chinese medicine", "Therapeutic potential", "Neuroprotection", "Anti-cancer", "Cardioprotection", "Nanocarriers", or "Liposomes".

Results

The findings demonstrated that Tan IIA possesses a broad array of pharmacological effects including its antidiabetic, anticancer, antioxidant, and anti-inflammatory activities. Tan IIA nanoformulations have shown good encapsulation efficiency, sustained release, stability, extended circulation duration, increased accumulation at diseased sites, and improved therapeutic efficacy, leading to improved therapeutic effectiveness for a plethora of disorders.

Discussion

Nanostructured particles provide several benefits in addressing issues such as limited bioavailability and the stability of phytochemicals by overcoming biological barriers. Certainly, the use of nano-drug delivery carriers for plant products is the current trend. Furthermore, the therapeutic applications of these nanoformulations must be studied in humans. Such investigation, as well as thorough evaluation and dosage optimization, may pave the way for Tanshinone IIA's commercial feasibility.

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