Kumari Alpana, Bhardwaj Kamini, Mishra Supriya, Singh Lubhan, Pottoo Faheem Hyder, Yasir Mohd
Sunderdeep Pharmacy College, Delhi-Hapur Road, Dasna, Ghaziabad, 201002, UP, India.
Raj Kumar Goel Institute of Technology (Pharmacy), Delhi-Meerut Road, Ghaziabad, 201003, UP, India.
Curr Pharm Biotechnol. 2025;26(7):1027-1049. doi: 10.2174/0113892010281504240403053144.
Under the umbrella of targeted drug delivery systems, several techniques are unleashed in the market that allow a drug or other pharmacologically active material to be delivered to the target cell to treat a condition or health problem. The improvement of the pharmaceutical delivery systems' effectiveness, safety, and stability is accomplished through the Formulation of the nano-gel-based delivery system. Nanogels are aqueous dispersions of submicronsized, three-dimensional, strongly cross-linked networks of hydrophilic polymers that are inflated by water. Through a variety of delivery routes, such as oral, pulmonary, nasal, parenteral, and intraocular, an active pharmaceutical agent or therapeutic agent with a high or low molecular weight can be easily encapsulated into nanogels. Nanogels have been researched as drug delivery systems due to their beneficial qualities, such as biocompatibility, high stability, flexible particle size, drug loading capacity, and potential surface modification for active targeting by attaching ligands that recognize cognate receptors on target cells or tissues. By responding to internal or external stimuli, including pH, temperature, light, and redox, nano gels can be made to be stimulus-responsive, allowing for regulated drug release. Thus, in the fact of said characteristics' of nano gels, this review manuscript aims to provide an overview of characterization, evaluation, formulation technique, recent applications, and patents of nano gels.
在靶向给药系统的范畴内,市场上涌现出多种技术,可将药物或其他药理活性物质输送至靶细胞,以治疗某种病症或健康问题。基于纳米凝胶的给药系统配方实现了药物递送系统有效性、安全性和稳定性的提升。纳米凝胶是由亲水性聚合物构成的亚微米级三维强交联网络的水分散体,因水而膨胀。通过口服、肺部、鼻腔、肠胃外和眼内等多种给药途径,高分子量或低分子量的活性药物制剂或治疗剂均可轻松封装于纳米凝胶中。由于纳米凝胶具有生物相容性、高稳定性、灵活的粒径、载药能力以及通过连接识别靶细胞或组织上同源受体的配体进行主动靶向的潜在表面修饰等有益特性,其已被作为药物递送系统展开研究。通过对包括pH值、温度、光和氧化还原反应在内 的内部或外部刺激做出响应,纳米凝胶可制成刺激响应型,实现药物的可控释放。因此,鉴于纳米凝胶的上述特性,本综述旨在概述纳米凝胶的表征、评估、配方技术、近期应用及专利情况。