具有生物医学应用的天然、合成和复合水凝胶设计的新研究

Claudia Gabriela Cuéllar Gaona, María Cristina Ibarra Alonso, Rosa Idala Narro Céspedes, María Maura Téllez Rosas, Ricardo Reyna Martínez, Miriam Paulina Luévanos Escareño
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引用次数: 0

摘要

水凝胶由于其非凡的特性,如生物相容性、生物降解性、零毒性、易于加工以及与生理组织相似,在生物医学领域越来越受欢迎。它们在药物控制释放、伤口敷料、组织工程和再生医学中有应用。在这些应用中,水凝胶作为一种可控的药物递送系统脱颖而出,它能在特定时间精确释放活性物质。为了探索水凝胶设计的最新进展,对Scopus和Science Direct索引科学期刊上发表的文章进行了文献综述。这篇综述旨在发现和描述在生物医学领域应用的最具创新性的水凝胶研究;选择了由不同来源的聚合物合成的水凝胶,例如;i.天然(葡聚糖、琼脂糖、壳聚糖等);ii。合成(聚丙烯酰胺、聚乙二醇、聚乙烯醇等);iii.复合材料(互穿剂、杂化交联剂、纳米复合材料等)。比较分析表明,水凝胶与复合材料最有前景。这些复合水凝胶结合了不同聚合物的优点或加入了额外的成分,提供了增强的性能和功能。总之,水凝胶是一种在生物医学中具有巨大潜力的多功能生物材料。它们独特的特性使其适用于各种应用。然而,必须继续探索创新的设计和配方,以进一步提高水凝胶的能力并扩大其生物医学应用。
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Novel Studies in the Designs of Natural, Synthetic, and Compound Hydrogels with Biomedical Applications
Hydrogels are gaining widespread popularity in the biomedical field due to their extraordinary properties, such as biocompatibility, biodegradability, zero toxicity, easy processing, and similarity to physiological tissue. They have applications in controlled drug release, wound dressing, tissue engineering, and regenerative medicine. Among these applications, hydrogels as a controlled drug delivery system stands out, which releases active substances in precise amounts and at specific times. To explore the latest advances in the design of hydrogels, a literature review of articles published in indexed scientific journals, in Scopus and Science Direct, was carried out. This review aimed to discover and describe the most innovative hydrogel research with applications in the biomedical field; hydrogels synthesized with polymers of different origins were selected, such as; i. Natural (dextran, agarose, chitosan, etc.); ii. Synthetic (polyacrylamide, polyethylene glycol, polyvinyl alcohol, etc.); iii. Composites (interpenetrants, hybrid crosslinkers, nanocomposites, etc.). Comparative analysis revealed that hydrogels with composite materials show the most promise. These composite hydrogels combine the advantages of different polymers or incorporate additional components, offering enhanced properties and functionalities. In summary, hydrogels are versatile biomaterials with immense potential in biomedicine. Their unique properties make them suitable for diverse applications. However, innovative designs and formulations must continue to be explored to further advance the capabilities of hydrogels and expand their biomedical applications.
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来源期刊
Revista Mexicana de Ingenieria Biomedica
Revista Mexicana de Ingenieria Biomedica Engineering-Biomedical Engineering
CiteScore
0.60
自引率
0.00%
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0
期刊介绍: La Revista Mexicana de Ingeniería Biomédica (The Mexican Journal of Biomedical Engineering, RMIB, for its Spanish acronym) is a publication oriented to the dissemination of papers of the Mexican and international scientific community whose lines of research are aligned to the improvement of the quality of life through engineering techniques. The papers that are considered for being published in the RMIB must be original, unpublished, and first rate, and they can cover the areas of Medical Instrumentation, Biomedical Signals, Medical Information Technology, Biomaterials, Clinical Engineering, Physiological Models, and Medical Imaging as well as lines of research related to various branches of engineering applied to the health sciences.
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