Raina Neha, Pahwa Rakesh, Bhattacharya Jaydeep, Paul Alok K, Nissapatorn Veeranoot, de Lourdes Pereira Maria, Oliveira Sonia M R, Dolma Karma G, Rahmatullah Mohammed, Wilairatana Polrat, Gupta Madhu
Department of Pharmaceutics, Delhi Pharmaceutical Sciences and Research University, New Delhi 110017, India.
Institute of Pharmaceutical Sciences, Kurukshetra University, Kurukshetra 136119, India.
Pharmaceutics. 2022 Mar 5;14(3):574. doi: 10.3390/pharmaceutics14030574.
Hydrogels are a promising and attractive option as polymeric gel networks, which have immensely fascinated researchers across the globe because of their outstanding characteristics such as elevated swellability, the permeability of oxygen at a high rate, good biocompatibility, easy loading, and drug release. Hydrogels have been extensively used for several purposes in the biomedical sector using versatile polymers of synthetic and natural origin. This review focuses on functional polymeric materials for the fabrication of hydrogels, evaluation of different parameters of biocompatibility and stability, and their application as carriers for drugs delivery, tissue engineering and other therapeutic purposes. The outcome of various studies on the use of hydrogels in different segments and how they have been appropriately altered in numerous ways to attain the desired targeted delivery of therapeutic agents is summarized. Patents and clinical trials conducted on hydrogel-based products, along with scale-up translation, are also mentioned in detail. Finally, the potential of the hydrogel in the biomedical sector is discussed, along with its further possibilities for improvement for the development of sophisticated smart hydrogels with pivotal biomedical functions.
水凝胶作为聚合物凝胶网络是一种很有前景且颇具吸引力的选择,由于其具有诸如高膨胀性、高氧气渗透率、良好的生物相容性、易于负载和药物释放等突出特性,在全球范围内极大地吸引了研究人员。水凝胶已在生物医学领域广泛用于多种目的,使用了合成和天然来源的多种聚合物。本综述重点关注用于制造水凝胶的功能性聚合物材料、生物相容性和稳定性的不同参数评估,以及它们作为药物递送、组织工程和其他治疗目的载体的应用。总结了关于水凝胶在不同领域使用的各种研究结果,以及它们如何以多种方式进行适当改变以实现治疗剂的靶向递送。还详细提及了基于水凝胶产品的专利和临床试验以及放大转化。最后,讨论了水凝胶在生物医学领域的潜力,以及其进一步改进以开发具有关键生物医学功能的复杂智能水凝胶的可能性。