干细胞研究的协同效应:整合技术、策略和生物纳米材料创新

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Sharda Bharti, Awanish Kumar
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引用次数: 0

摘要

自20世纪60年代以来,已经有大量的研究指向调查几种类型的干细胞的生物学,包括胚胎干细胞、脑细胞和间充质干细胞。在当代,广泛的干细胞已被用于治疗多种疾病,包括骨髓移植。近年来,干细胞治疗已发展成为一个非常有前途和先进的科学研究领域。治疗方法的进步导致了大量的期待和期望。近年来,在分离和发展干细胞的实验方法中出现了显著的扩散。干细胞具有显著的生命力和旺盛的增殖能力,使其成为体外修饰的合适人选。本文研究了干细胞分离的进展,并探讨了几种促进干细胞分化的方法。本研究还探讨了生物纳米材料的分离方法,并在干细胞研究的背景下讨论了它们的观点。它还涵盖了研究干细胞在生物打印中的应用以及生物纳米材料在干细胞相关技术和研究中的使用的潜力。总之,这篇综述文章强调了将最先进的方法和技术突破纳入干细胞研究未来的重要性。如此强调不断的创新,凸显了科学的不断变化的特征,以及释放干细胞最大治疗潜力的永无止境的动力。这篇综述将为干细胞研究领域的研究人员、临床医生和政策制定者提供有用的资源,指导这一快速发展的科学关注的下一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergies in stem cell research: Integrating technologies, strategies, and bionanomaterial innovations

Since the 1960 s, there has been a substantial amount of research directed towards investigating the biology of several types of stem cells, including embryonic stem cells, brain cells, and mesenchymal stem cells. In contemporary times, a wide array of stem cells has been utilized to treat several disorders, including bone marrow transplantation. In recent years, stem cell treatment has developed as a very promising and advanced field of scientific research. The progress of therapeutic methodologies has resulted in significant amounts of anticipation and expectation. Recently, there has been a notable proliferation of experimental methodologies aimed at isolating and developing stem cells, which have emerged concurrently. Stem cells possess significant vitality and exhibit vigorous proliferation, making them suitable candidates for in vitro modification. This article examines the progress made in stem cell isolation and explores several methodologies employed to promote the differentiation of stem cells. This study also explores the method of isolating bio-nanomaterials and discusses their viewpoint in the context of stem cell research. It also covers the potential for investigating stem cell applications in bioprinting and the usage of bionanomaterial in stem cell-related technologies and research. In conclusion, the review article concludes by highlighting the importance of incorporating state-of-the-art methods and technological breakthroughs into the future of stem cell research. Putting such an emphasis on constant innovation highlights the ever-changing character of science and the never-ending drive toward unlocking the maximum therapeutic potential of stem cells. This review would be a useful resource for researchers, clinicians, and policymakers in the stem cell research area, guiding the next steps in this fast-developing scientific concern.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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