用干细胞治疗治疗八半综合症:我们还在那里吗? 一个案例报告
Salmarezka Dewiputri1, Annisa C Permadi1, Ajeng S Kirana1
1Department of Ophthalmology, Dr Cipto Mangunkusumo Hospital, Faculty of Medicine, Universitas Indonesia, Jakarta, Indonesia.
Case reports in ophthalmology
|October 9, 2025
概括
干细胞疗法对治疗八半综合征,一种罕见的神经眼科疾病,通常由中风引起的治疗有前途. 这种情况表明,在干细胞治疗后,视力,视野和运动功能显著改善.
科学领域:
- 神经科学是一个神经科学.
- 眼科医生 眼科 眼科
- 再生医学是一种再生医学.
背景情况:
- 八半综合症是一种罕见的神经眼科疾病,通常是由中风引起的.
- 管理需要综合眼科和神经科护理.
- 干细胞疗法是治疗中风相关疾病的新兴疗法.
研究的目的:
- 介绍一项关于干细胞疗法对缺血性中风继发的八半综合征疗效的案例研究.
- 突出再生医学在神经眼科医学的潜力.
主要方法:
- 一名65岁的男性有心房动史,在两次缺血性中风后出现了八半综合征的症状.
- 标准治疗包括血栓溶解和血栓切除,但没有完全消除症状.
- 随后,该患者接受了静脉内和静脉内干细胞治疗.
主要成果:
- 患者在水平视力麻,视野缺陷 (右下同名四角眼视) 和运动功能在干细胞治疗后一个月内显著改善.
- 磁力共振成像 (MRI) 证实了左側側頭和骨梗塞是該症候群的原因.
- 该疗法对神经眼科和运动缺陷产生了积极影响.
结论:
- 干细胞治疗可能在缺血性中风后的亚急性和慢性阶段为八半综合征提供有益的治疗选择.
- 这种方法有可能改善复杂的神经眼科中风病例的结果.
相关概念视频
iPS Cell Differentiation
3.0K
The ability of induced pluripotent stem cells or iPSCs to differentiate into most body cell types has stimulated repair and regenerative medicine research over the past few decades. iPSC-derived blood cells, hepatocytes, beta islet cells, cardiomyocytes, neurons, and other cell types can repair injuries or regenerate damaged tissue in diseases such as diabetes and neurodegenerative disorders.
3.0K
Stem Cell Therapy for Tissue Regeneration
4.6K
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...
4.6K
Forced Transdifferentiation
2.3K
Transdifferentiation, also known as lineage reprogramming, was first discovered by Selman and Kafatos in 1974 in silkmoths. They observed that the moths’ cuticle-producing cells transformed into salt-producing cells. Many such cases of natural transdifferentiation occur in organisms. In humans, pancreatic alpha cells can become beta cells. In newts, the loss of the eye’s lens causes the pigmented epithelial cells to transdifferentiate into the lens cells.
Artificial...
Artificial...
2.3K
Adult Stem Cells
33.4K
Stem cells are undifferentiated cells that divide and produce more stem cells or progenitor cells that differentiate into mature, specialized cell types. All the cells in the body are generated from stem cells in the early embryo, but small populations of stem cells are also present in many adult tissues including the bone marrow, brain, skin, and gut. These adult stem cells typically produce the various cell types found in that tissue—to replace cells that are damaged or to continuously...
33.4K
Stem Cell Culture
6.0K
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...
6.0K
Multipotency of Hematopoietic Stem Cells
3.8K
The hematopoietic stem cells or HSCs are multipotent, meaning they can differentiate and give rise to all blood and immune cells. HSCs are maintained in the quiescent stage until an external stimulus initiates their differentiation. The multipotent HSCs exist as two heterogeneous populations, long-term repopulating cells (LTRC) and short-term repopulating cells (STRC). The two HSC populations have different surface markers or receptors and are classified based on quiescence and long-term...
3.8K


