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相关概念视频

Forced Transdifferentiation01:28

Forced Transdifferentiation

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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...
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Tissue Renewal without Stem Cells01:23

Tissue Renewal without Stem Cells

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After cellular or tissue damage, the resident stem cells present in the human body can locally repair and regenerate the damaged tissue or organ. However, even though some tissues do not have stem cells, they can repair and regenerate with the help of pre-existing cells. For example, beta cells of the pancreas and hepatocytes of the liver can divide to renew and regenerate the tissue. Here, both cell division and cell death are well regulated by homeostasis.
However, failure of such a system...
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Diversity of Antigen Receptors01:28

Diversity of Antigen Receptors

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Antigen receptors are essential components of the immune system crucial in defending the body against foreign invaders. These receptors are present on the surface of B and T cells, enabling them to recognize antigens and mount an appropriate immune response.
Before encountering any antigen, lymphocytes express these receptors. On B cells, the antigen receptor is a membrane-bound antibody molecule called BCR; on T cells, it is a T cell receptor or TCR. B and T cell receptors are composed of two...
541
Glucose Homeostasis: Pancreatic Islets and Insulin Secretion01:27

Glucose Homeostasis: Pancreatic Islets and Insulin Secretion

1.2K
The pancreatic islets comprising only 1%-2% of the volume are highly vascularized and innervated mini-organs. They contain five endocrine cell types, including β cells that secrete insulin, which is synthesized as a single polypeptide chain, preproinsulin, processed to proinsulin, and finally to insulin and C-peptide. This process is complex and regulated, involving the Golgi complex, the endoplasmic reticulum, and the secretory granules of the β cell.
Insulin and C-peptide are...
1.2K
B Cell Activation and Differentiation01:24

B Cell Activation and Differentiation

1.6K
The adaptive immune response, a sophisticated defense mechanism, relies on the activation and differentiation of B lymphocytes, or B cells. These processes enable our bodies to mount a tailored response against specific pathogens such as bacteria, free virus particles, toxins, and parasites.
When naive B cells encounter a specific antigen that can bind to the B cell receptor (BCR) on their surface, they undergo sensitization to respond to the antigen's presence. Sensitization begins with...
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iPS Cell Differentiation01:22

iPS Cell Differentiation

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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.
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相关实验视频

Updated: Jun 13, 2025

Differentiation of Human Pluripotent Stem Cells Into Pancreatic Beta-Cell Precursors in a 2D Culture System
10:12

Differentiation of Human Pluripotent Stem Cells Into Pancreatic Beta-Cell Precursors in a 2D Culture System

Published on: December 16, 2021

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β细胞的异质性和可塑性

Hyo Jeong Yong1, Yue J Wang2

  • 1Department of Biomedical Sciences, College of Medicine, Florida State University, Tallahassee, FL, USA.

Advances in anatomy, embryology, and cell biology
|September 16, 2024
PubMed
概括

胰腺β细胞表现出功能多样性和可塑性,适应环境挑战,保持葡萄糖平衡. 糖尿病破坏了这种平衡,增加了β细胞的压力和异质性,影响了胰岛素分泌.

科学领域:

  • 内分泌学 在内分泌学.
  • 细胞生物学 细胞生物学
  • 代谢研究研究 代谢研究

背景情况:

  • 胰腺β细胞在功能上有多样性和可塑性,这一概念自20世纪80年代以来就已得到认可.
  • 高分辨率技术的近期进展加深了对β细胞异质性和可塑性的理解.
  • 贝塔细胞可塑性是指细胞表型的动态变化,而异质性则包括细胞行为上的差异.

研究的目的:

  • 定义和评估β细胞应激及其在糖尿病中的作用.
  • 探索适应性β细胞反应,包括增殖,脱差,成熟和胰岛素分泌.
  • 讨论不同β细胞子组的特征以及其他胰腺细胞的可塑性.

主要方法:

  • 对研究β细胞功能的最新高分辨率技术的审查.
  • 评估β细胞应激及其对异质性的影响.
  • 对适应性β细胞反应和子组特征的分析.

主要成果:

  • 单个β细胞对环境挑战的反应不同,有助于整体恒温.
  • 糖尿病的进展会破坏β细胞平衡,导致增加压力和异质性.
  • 观察到适应性反应,如增殖和胰岛素分泌的变化.
关键词:
糖尿病 糖尿病 糖尿病异质性 异质性 异质性兰格兰汉斯小岛的小岛胰腺是什么? 胰腺是什么?塑性是一种可塑性.这种细胞是β细胞.

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Efficient Generation of Pancreas/Duodenum Homeobox Protein 1+ Posterior Foregut/Pancreatic Progenitors from hPSCs in Adhesion Cultures
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Efficient Generation of Pancreas/Duodenum Homeobox Protein 1+ Posterior Foregut/Pancreatic Progenitors from hPSCs in Adhesion Cultures

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Differentiation of Human Pluripotent Stem Cells into Insulin-Producing Islet Clusters
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Differentiation of Human Pluripotent Stem Cells into Insulin-Producing Islet Clusters

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Efficient Generation of Pancreas/Duodenum Homeobox Protein 1+ Posterior Foregut/Pancreatic Progenitors from hPSCs in Adhesion Cultures
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Efficient Generation of Pancreas/Duodenum Homeobox Protein 1+ Posterior Foregut/Pancreatic Progenitors from hPSCs in Adhesion Cultures

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结论:

  • 贝塔细胞的异质性和可塑性对于维持葡萄糖平衡 (70-140毫克/分升) 是至关重要的.
  • 糖尿病引起的压力加剧了β细胞的异质性,并破坏了补偿机制.
  • 了解β细胞的可塑性和非β细胞的合作对于治疗糖尿病至关重要.