S Ferozekhan, Umashankar Marakanam S, Narayanasamy Damodharan
Department of Pharmaceutics, SRM College of Pharmacy, Faculty of Medicine and Health Science, SRM Institute of Science and Technology, Chengalpattu, IND.
Cureus. 2024 Sep 4;16(9):e68633. doi: 10.7759/cureus.68633. eCollection 2024 Sep.
Polymers can be crosslinked chemically or physically to create three-dimensional hydrogel particles with sub-micron dimensions, known as nanogels. Their customizable size, ease of manufacture, expansion potential, bio-integration, water affinity, and reactivity to various stimuli, including temperature, pH, light, and biological agents, provide them with considerable advantages over conventional drug delivery techniques. Nanogels possess properties of both hydrogels and nanoparticles and can be categorized into nanohydrogels and nano-organogels. These systems exhibit exceptional drug-loading capability, stability, biological consistency, and environmental responsiveness. Their hallmark lies in their swelling behavior, enabling substantial water absorption while maintaining structural integrity. Preparation methods involve polymer precursors or heterogeneous polymerization of monomers. Nanogels are promising for various drug administration techniques, including local anesthetics, vaccines, and transdermal drug delivery, due to their ability to encapsulate multiple bioactive ingredients, enhancing therapeutic efficacy and stability.
聚合物可以通过化学或物理方式交联,以形成具有亚微米尺寸的三维水凝胶颗粒,即纳米凝胶。它们可定制的尺寸、易于制造、膨胀潜力、生物整合性、亲水性以及对各种刺激(包括温度、pH值、光和生物制剂)的反应性,使其相对于传统药物递送技术具有相当大的优势。纳米凝胶兼具水凝胶和纳米颗粒的特性,可分为纳米水凝胶和纳米有机凝胶。这些系统具有出色的载药能力、稳定性、生物相容性和环境响应性。它们的特点在于其溶胀行为,能够在保持结构完整性的同时大量吸水。制备方法包括使用聚合物前体或单体的非均相聚合。由于纳米凝胶能够包裹多种生物活性成分,提高治疗效果和稳定性,因此在包括局部麻醉剂、疫苗和透皮给药等各种药物给药技术方面具有广阔前景。