Elmowafy Mohammed, Shalaby Khaled, Elkomy Mohammed H, Alsaidan Omar Awad, Gomaa Hesham A M, Abdelgawad Mohamed A, Mostafa Ehab M
Department of Pharmaceutics, College of Pharmacy, Jouf University, Sakaka P.O. Box 2014, Saudi Arabia.
Department of Pharmacology, College of Pharmacy, Jouf University, Sakaka P.O. Box 2014, Saudi Arabia.
Polymers (Basel). 2023 Feb 23;15(5):1123. doi: 10.3390/polym15051123.
In the last few decades, several natural bioactive agents have been widely utilized in the treatment and prevention of many diseases owing to their unique and versatile therapeutic effects, including antioxidant, anti-inflammatory, anticancer, and neuroprotective action. However, their poor aqueous solubility, poor bioavailability, low GIT stability, extensive metabolism as well as short duration of action are the most shortfalls hampering their biomedical/pharmaceutical applications. Different drug delivery platforms have developed in this regard, and a captivating tool of this has been the fabrication of nanocarriers. In particular, polymeric nanoparticles were reported to offer proficient delivery of various natural bioactive agents with good entrapment potential and stability, an efficiently controlled release, improved bioavailability, and fascinating therapeutic efficacy. In addition, surface decoration and polymer functionalization have opened the door to improving the characteristics of polymeric nanoparticles and alleviating the reported toxicity. Herein, a review of the state of knowledge on polymeric nanoparticles loaded with natural bioactive agents is presented. The review focuses on frequently used polymeric materials and their corresponding methods of fabrication, the needs of such systems for natural bioactive agents, polymeric nanoparticles loaded with natural bioactive agents in the literature, and the potential role of polymer functionalization, hybrid systems, and stimuli-responsive systems in overcoming most of the system drawbacks. This exploration may offer a thorough idea of viewing the polymeric nanoparticles as a potential candidate for the delivery of natural bioactive agents as well as the challenges and the combating tools used to overcome any hurdles.
在过去几十年中,几种天然生物活性剂因其独特且多样的治疗作用,包括抗氧化、抗炎、抗癌和神经保护作用,已被广泛用于多种疾病的治疗和预防。然而,它们的水溶性差、生物利用度低、胃肠道稳定性差、代谢广泛以及作用持续时间短是阻碍其生物医学/制药应用的最主要不足。在这方面已经开发了不同的药物递送平台,其中一个引人注目的工具是纳米载体的制备。特别是,据报道聚合物纳米颗粒能够有效地递送各种天然生物活性剂,具有良好的包封潜力和稳定性、可控的释放、提高的生物利用度以及显著的治疗效果。此外,表面修饰和聚合物功能化开启了改善聚合物纳米颗粒特性并减轻所报道毒性的大门。在此,本文对负载天然生物活性剂的聚合物纳米颗粒的知识现状进行综述。该综述重点关注常用的聚合物材料及其相应的制备方法、此类系统对天然生物活性剂的需求、文献中负载天然生物活性剂的聚合物纳米颗粒,以及聚合物功能化、混合系统和刺激响应系统在克服大多数系统缺点方面的潜在作用。这一探索可能会提供一个全面的思路,将聚合物纳米颗粒视为递送天然生物活性剂的潜在候选物,以及所面临的挑战和用于克服任何障碍的应对工具。