Sharma Rishav, Malviya Rishabha, Singh Sudarshan, Prajapati Bhupendra
Department of Pharmacy, School of Medical and Allied Sciences, Galgotias University, Greater Noida 203201, India.
Department of Pharmaceutical Sciences, Faculty of Pharmacy, Chiang Mai University, Chiang Mai 50200, Thailand.
Gels. 2023 May 22;9(5):430. doi: 10.3390/gels9050430.
Alginates are polysaccharides that are produced naturally and can be isolated from brown sea algae and bacteria. Sodium alginate (SA) is utilized extensively in the field of biological soft tissue repair and regeneration owing to its low cost, high biological compatibility, and quick and moderate crosslinking. In addition to their high printability, SA hydrogels have found growing popularity in tissue engineering, particularly due to the advent of 3D bioprinting. There is a developing curiosity in tissue engineering with SA-based composite hydrogels and their potential for further improvement in terms of material modification, the molding process, and their application. This has resulted in numerous productive outcomes. The use of 3D scaffolds for growing cells and tissues in tissue engineering and 3D cell culture is an innovative technique for developing in vitro culture models that mimic the in vivo environment. Especially compared to in vivo models, in vitro models were more ethical and cost-effective, and they stimulate tissue growth. This article discusses the use of sodium alginate (SA) in tissue engineering, focusing on SA modification techniques and providing a comparative examination of the properties of several SA-based hydrogels. This review also covers hydrogel preparation techniques, and a catalogue of patents covering different hydrogel formulations is also discussed. Finally, SA-based hydrogel applications and future research areas concerning SA-based hydrogels in tissue engineering were examined.
海藻酸盐是天然产生的多糖,可从褐藻和细菌中分离得到。海藻酸钠(SA)因其成本低、生物相容性高以及交联快速且适度,而在生物软组织修复与再生领域得到广泛应用。除了具有高可打印性外,SA水凝胶在组织工程中越来越受欢迎,特别是由于3D生物打印的出现。基于SA的复合水凝胶在组织工程中的应用及其在材料改性、成型工艺和应用方面进一步改进的潜力,引发了人们越来越浓厚的兴趣。这已经产生了许多丰硕的成果。在组织工程和3D细胞培养中使用3D支架来培养细胞和组织,是一种开发模拟体内环境的体外培养模型的创新技术。特别是与体内模型相比,体外模型更符合伦理且成本效益更高,并且能促进组织生长。本文讨论了海藻酸钠(SA)在组织工程中的应用,重点介绍了SA改性技术,并对几种基于SA的水凝胶的性能进行了比较研究。本综述还涵盖了水凝胶制备技术,并讨论了涵盖不同水凝胶配方的专利目录。最后,研究了基于SA的水凝胶在组织工程中的应用以及有关基于SA的水凝胶的未来研究领域。