干细胞:治疗方法和潜在的未来

Yuming Lu
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摘要

干细胞疗法能带来众多医学突破,这使得干细胞研究大受欢迎。因此,随着现代科技的发展,干细胞研究可能成为医学领域的一个转折点。与外科手术等传统疗法相比,干细胞疗法具有风险低、无手术伤口、无创伤等优势。此外,与传统药物相比,未分化有机体疗法在治疗各种疾病方面更具潜力。这篇调查报告探讨了许多种未成熟微生物的最新发现,研究了它们的来源、目前的临床意义以及预期的潜在结果。特别是,本报告探讨了未发育细胞研究的相关领域:再生医学中的未分化细胞治疗;诱导多能未分化细胞(iPSCs)和疾病演示;未发育细胞和神经退行性感染;未发育细胞和免疫疗法;再生医学中的未发育细胞;以及,更多,未成熟微生物和成熟。通过研究,本文发现未成熟微生物在缓解传统药物无法治愈的感染方面具有非凡的潜力。无论如何,道德方面的考虑仍然令人担忧,该领域还有许多困难需要克服。本报告旨在总结和展望未成熟微生物研究的发展势头,同时介绍未分化细胞运动在药物治疗方面的深远能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stem cell: Therapeutic approach and potential future
The numerous medical breakthroughs stem cell therapy can provide have led to stem cell research experiencing a surge in popularity. Thus, as modern technology develops, stem cell research may become a turning point for the medical field. Stem cell therapy provides several advantages over traditional treatments like surgical procedures, including lower risks, the absence of surgical wounds, and a non-invasive approach. Besides, undifferentiated organism treatment holds more potential to treat a more extensive assortment of illnesses compared with conventional medicines. This writing survey talks about late discoveries on numerous kinds of immature microorganisms, examining their sources, current clinical relevance, and expected potential outcomes. In particular, this audit looks at the accompanying areas of undeveloped cell research: undifferentiated cell treatment in regenerative medication; instigated pluripotent undifferentiated cells (iPSCs) and sickness demonstration; undeveloped cells and neurodegenerative infection; undeveloped cells and immunotherapy; undeveloped cells in regenerative medication; and, whats more, immature microorganisms and maturing. Through our examination, the paper has found that immature microorganisms have extraordinary potential for relieving infections that are impervious to conventional medicines. In any case, moral contemplations remain a worry, and there are as yet many difficulties to beat in the field. This audit means to sum up and look at the momentum of immature microorganism research while likewise featuring the far-reaching capability of undifferentiated cell movement in medication.
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