Jacob Shery, Kather Fathima Sheik, Morsy Mohamed A, Boddu Sai H S, Attimarad Mahesh, Shah Jigar, Shinu Pottathil, Nair Anroop B
Department of Pharmaceutical Sciences, College of Pharmacy, Gulf Medical University, Ajman 4184, United Arab Emirates.
Department of Pharmaceutical Sciences, College of Clinical Pharmacy, King Faisal University, Al-Ahsa 31982, Saudi Arabia.
Nanomaterials (Basel). 2024 Apr 12;14(8):672. doi: 10.3390/nano14080672.
Curcumin, an organic phenolic molecule that is extracted from the rhizomes of Linn, has undergone extensive evaluation for its diverse biological activities in both animals and humans. Despite its favorable characteristics, curcumin encounters various formulation challenges and stability issues that can be effectively addressed through the application of nanotechnology. Nano-based techniques specifically focused on enhancing solubility, bioavailability, and therapeutic efficacy while mitigating toxicity, have been explored for curcumin. This review systematically presents information on the improvement of curcumin's beneficial properties when incorporated, either individually or in conjunction with other drugs, into diverse nanosystems such as liposomes, nanoemulsions, polymeric micelles, dendrimers, polymeric nanoparticles, solid-lipid nanoparticles, and nanostructured lipid carriers. Additionally, the review examines ongoing clinical trials and recently granted patents, offering a thorough overview of the dynamic landscape in curcumin delivery. Researchers are currently exploring nanocarriers with crucial features such as surface modification, substantial loading capacity, biodegradability, compatibility, and autonomous targeting specificity and selectivity. Nevertheless, the utilization of nanocarriers for curcumin delivery is still in its initial phases, with regulatory approval pending and persistent safety concerns surrounding their use.
姜黄素是一种从姜黄根茎中提取的有机酚类分子,其在动物和人类中的多种生物活性已得到广泛评估。尽管姜黄素有诸多优良特性,但它面临着各种制剂挑战和稳定性问题,而通过应用纳米技术可以有效解决这些问题。已针对姜黄素探索了基于纳米的技术,这些技术特别专注于提高其溶解度、生物利用度和治疗效果,同时减轻毒性。本综述系统地介绍了姜黄素单独或与其他药物一起掺入脂质体、纳米乳剂、聚合物胶束、树枝状大分子、聚合物纳米颗粒、固体脂质纳米颗粒和纳米结构脂质载体等各种纳米系统中时,其有益特性的改善情况。此外,该综述还考察了正在进行的临床试验和最近授予的专利,全面概述了姜黄素递送领域的动态发展态势。研究人员目前正在探索具有表面修饰、高负载能力、生物可降解性、相容性以及自主靶向特异性和选择性等关键特性的纳米载体。然而,用于递送姜黄素的纳米载体的应用仍处于初始阶段,有待监管部门批准,并且围绕其使用存在持续的安全担忧。