医学革命:干细胞治疗的最新进展和未来前景.
Bashdar M Hussen1,2, Mohammad Taheri3, Raya Kh Yashooa4
1Department of Biomedical Sciences, Cihan University-Erbil.
International journal of surgery (London, England)
|November 5, 2024
概括
干细胞疗法提供了通过再生和分化治疗疾病和伤害的变革潜力. 本综述探讨了其在再生医学中的应用,挑战和未来方向.
科学领域:
- 再生医学是一种再生医学.
- 细胞生物学 细胞生物学
- 生物技术是生物技术.
背景情况:
- 干细胞治疗代表了医学上的重大进步.
- 干细胞具有独特的再生和分化能力.
- 历史上的突破包括胚胎干细胞 (ESC) 隔离和诱导多能干细胞 (iPSC) 的发现.
研究的目的:
- 审查干细胞治疗过程,应用和挑战.
- 为了指导研究人员,医生和相关领域的利益相关者.
- 提供对基于干细胞的再生医学的细微了解.
主要方法:
- 审查历史贡献和最近的突破.
- 对干细胞类型的检查 (胚胎,成年,iPSC,围产).
- 对生物技术进步,临床试验和新兴技术的分析.
主要成果:
- 干细胞为癌症,神经退行性疾病,心血管疾病,脊髓损伤,糖尿病和组织损伤提供治疗机会.
- 挑战包括免疫性排斥,瘤发生和精确的干细胞操纵.
- 最近的进展和试验表明干细胞应用的进展.
结论:
- 干细胞疗法在治疗衰弱性疾病方面具有重大前景.
- 未来的方向包括精密医学,免疫调制,基因编辑和生物工程.
- 预计个性化再生疗法可以缓解许多医学疾病.
相关概念视频
Stem Cell Therapy for Tissue Regeneration
4.0K
Stem cell therapy is a method used in regenerative medicine to repair and restore function to damaged tissues and organs. Stem cells have the potential to proliferate and differentiate into various tissue types, making them ideal candidates for tissue regeneration. For example, hematopoietic stem cell transplants are commonly used in blood cancer treatment to replenish damaged bone marrow and restore healthy blood cells.
Types of Stem Cells used in Stem Cell Therapy
The two main cell...
Types of Stem Cells used in Stem Cell Therapy
The two main cell...
4.0K
Embryonic Stem Cells
3.4K
Embryonic stem (ES) cells were first discovered in mice in 1981 by Martin Evans. In 1998, James Thomson identified a method to isolate embryonic stem cells from humans. Human embryonic stem cells (hESCs) are obtained from 3-5 day old embryos that remain unused after an in vitro fertilization procedure.
ES cells are grown in a culture medium where they can divide indefinitely, creating ES cell lines. Under certain conditions, ES cells can differentiate, either spontaneously into a variety of...
ES cells are grown in a culture medium where they can divide indefinitely, creating ES cell lines. Under certain conditions, ES cells can differentiate, either spontaneously into a variety of...
3.4K
Stem Cell Culture
5.1K
Stem cell research aims to find ways to use stem cells to regenerate and repair cellular damage. Over time, most adult cells undergo the wear and tear of aging and lose their ability to divide and repair themselves. Stem cells do not display a particular morphology or function. Adult stem cells, which exist as a small subset of cells in most tissues, keep dividing and can differentiate into a number of specialized cells generally formed by that tissue. These cells enable the body to renew and...
5.1K
Source And Potency Of Stem Cells
4.7K
Stem cells are undifferentiated cells with extensive self-renewal properties that help them maintain their population during the fetal and adult stages of life. They can specialize in all cell types of the human body. However, their differential potential may vary and can be classified into five types. Stem cells can be (1) Totipotent, (2) Pluripotent, (3) Multipotent, (4) Oligopotent, and (5) Unipotent. Each stem cell has a specific origin; the fertilized egg or zygote is a totipotent cell and...
4.7K
Mesenchymal Stem Cells
4.6K
Mesenchymal stem cells (MSCs) are adult stem cells that can differentiate into most connective tissue cell types, except for hematopoietic cells, depending upon the source of MSCs. For example, bone-marrow-derived MSCs (BM-MSCs) can differentiate into osteocytes, hepatocytes, and pancreatic and neuronal cells. MSCs can be isolated from various sources such as bone marrow, placenta, adipose tissue, teeth, and Wharton’s jelly, a gelatinous substance in the umbilical cord. The ease of their...
4.6K
Induced Pluripotent Stem Cells
21.8K
Stem cells are undifferentiated cells that divide and produce different types of cells. Ordinarily, cells that have differentiated into a specific cell type are post-mitotic—that is, they no longer divide. However, scientists have found a way to reprogram these mature cells so that they “de-differentiate” and return to an unspecialized, proliferative state. These cells are also pluripotent like embryonic stem cells—able to produce all cell types—and are therefore...
21.8K


