Shukla Atharva, Syaifie Putri Hawa, Rochman Nurul Taufiqu, Jaya Syaifullah Syahnanda, Jauhar Muhammad Miftah, Mardliyati Etik
ACS (Anglo Chinese School) Jakarta-Cilangkap, Jl. Bantar Jati, Setu, Kec. Cipayung, Kota Jakarta Timur, Daerah Khusus Ibukota, Jakarta 13880, Indonesia.
Center of Excellence Life Sciences, Nano Center Indonesia, South Tangerang, Banten 15314, Indonesia.
Biomed Mater. 2025 Mar 11;20(2). doi: 10.1088/1748-605X/adb2cd.
Natural polymer-based hydrogels, generally composed of hydrophilic polymers capable of absorbing large amounts of water, have garnered attention for biomedical applications because of their biocompatibility, biodegradability, and eco-friendliness. Natural polymer-based hydrogels derived from alginate, starch, cellulose, and chitosan are particularly valuable in fields such as drug delivery, wound dressing, and tissue engineering. However, compared with synthetic hydrogels, their poor mechanical properties limit their use in load-bearing applications. This review explores recent advancements in the enhancement of the mechanical strength of natural hydrogels while maintaining their biocompatibility for biomedical applications. Strategies such as chemical modification, blending with stronger materials, and optimized cross-linking are discussed. By improving their mechanical resilience, natural hydrogels can become more suitable for demanding biomedical applications, like tissue scaffolding and cartilage repair. Additionally, this review identifies the ongoing challenges and future directions for maximizing the potential of natural polymer-based hydrogels in advanced medical therapies.
基于天然聚合物的水凝胶通常由能够吸收大量水分的亲水性聚合物组成,由于其生物相容性、生物降解性和生态友好性,在生物医学应用中受到了关注。源自藻酸盐、淀粉、纤维素和壳聚糖的基于天然聚合物的水凝胶在药物递送、伤口敷料和组织工程等领域特别有价值。然而,与合成水凝胶相比,它们较差的机械性能限制了它们在承重应用中的使用。本综述探讨了在保持天然水凝胶生物相容性以用于生物医学应用的同时增强其机械强度方面的最新进展。讨论了诸如化学改性、与更强材料共混以及优化交联等策略。通过提高其机械弹性,天然水凝胶可以变得更适合要求苛刻的生物医学应用,如组织支架和软骨修复。此外,本综述确定了在先进医学疗法中最大化基于天然聚合物的水凝胶潜力所面临的持续挑战和未来方向。