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相关概念视频

Morphogenesis02:19

Morphogenesis

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Plant morphogenesis—the development of a plant’s form and structure—involves several overlapping developmental processes, including growth and cell differentiation. Precursor cells differentiate into specific cell types, which are organized into the tissues and organ systems that make up the functional plant.
24.5K
Gastrulation01:56

Gastrulation

56.0K
Gastrulation establishes the three primary tissues of an embryo: the ectoderm, mesoderm, and endoderm. This developmental process relies on a series of intricate cellular movements, which in humans transforms a flat, “bilaminar disc” composed of two cell sheets into a three-tiered structure. In the resulting embryo, the endoderm serves as the bottom layer, and stacked directly above it is the intermediate mesoderm, and then the uppermost ectoderm. Respectively, these tissue strata...
56.0K
Embryonic Connective Tissues01:20

Embryonic Connective Tissues

4.1K
During early development, the embryo forms two types of connective tissues— the mesenchyme and mucoid connective tissue.
The mesenchyme is the first connective tissue that emerges in the developing embryo. It consists of loosely arranged multipotent mesenchymal cells and reticular fibers in the extracellular matrix. This loose arrangement allows easy migration of cells, which is essential for germ layer positioning, patterning, and organ morphogenesis during embryonic development.
4.1K
Zygotic Development And Stem Cell Formation01:10

Zygotic Development And Stem Cell Formation

5.0K
The development of all multicellular organisms starts with the fusion of haploid cells called sperm and egg to form a diploid zygote. A zygote is a totipotent cell that can develop into a complete organism. The zygote undergoes cell division or cleavage to form an 8-cell mass. Until this stage, the cells are spherical, loosely attached, and remain totipotent. Totipotent cells are capable of developing both the embryonic and the extraembryonic tissues. However, as they continue to divide, they...
5.0K
Regulation of Angiogenesis and Blood Supply01:24

Regulation of Angiogenesis and Blood Supply

2.5K
Rapidly dividing tumors, embryos, and wounded tissues require more oxygen than usual, lowering the oxygen concentration in the blood. At low oxygen or hypoxic conditions, an oxygen-sensitive transcription factor called the hypoxia-inducible factor 1 or HIF1 is activated. HIF1 is a dimeric protein of alpha (ɑ) and beta (β) subunits.  Under optimal oxygen conditions, HIF1β is present in the nucleus while HIF1ɑ remains in the cytosol. HIF1ɑ is hydroxylated by prolyl...
2.5K
TGF - β Signaling Pathway01:16

TGF - β Signaling Pathway

7.2K
The TGF-β signaling pathway regulates cell growth, differentiation, adhesion, motility, and development. TGF-β ligands that induce TGF-β signaling are synthesized in their latent form. Several proteases or cell surface receptors such as integrins act upon the latent form, releasing the active ligand. There are three types of mammalian TGF-βs: (TGF-β1, TGF-β2, and TGF-β3) that bind as homodimers or heterodimers to TGF-β receptors. The TGF-β receptors...
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相关实验视频

Updated: May 23, 2025

Engineering Three-dimensional Epithelial Tissues Embedded within Extracellular Matrix
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Engineering Three-dimensional Epithelial Tissues Embedded within Extracellular Matrix

Published on: July 10, 2016

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全球形态发生调节组织结构和器官发生.

Ugo Ripamonti1

  • 1The Department of internal Medicine, School of Clinical Medicine, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

Biomaterials advances
|March 7, 2025
PubMed
概括

重组骨形态遗传蛋白 (hBMP) 和转化生长因子-β3 (hTGF-β3) 可以通过在异型位点重复胚胎发育来诱导骨. 然而,由于缺乏发育途径,它们在正位点失败,阻碍了临床翻译.

科学领域:

  • 生物技术是生物技术.
  • 发展生物学 发展生物学
  • 再生医学是一种再生医学.

背景情况:

  • 再组合的人类骨形态遗传蛋白 (hBMP) 和转化生长因子-β3 (hTGF-β3) 正在研究它们的骨诱导能力.
  • 骨形成是一个复杂的过程,涉及介质细胞和内分泌骨质生成,回顾胚胎发育.

研究的目的:

  • 提出hBMPs和hTGF-β3的成功骨诱导依赖于回顾胚胎发育.
  • 为了解释 hBMP-2,hBMP-7 和 hTGF-β3 在正形人类下缺陷中的失败,由于缺乏这种发育回顾.

主要方法:

  • 这篇透视性文章回顾了关于重组形态原诱导骨形成的现有生物和临床数据.
  • 它将异型与正型位点的骨诱导进行对比,重点关注发育途径.

主要成果:

  • 由hBMPs和hTGF-β3诱导的异型骨形成成功地重现了胚胎发育,从软骨原和血管入侵开始.
  • 在人类下缺陷中,对hBMP-2,hBMP-7和hTGF-β3的正位体植入未能诱导显著的骨形成.
  • 这种失败归因于在正位点缺少必要的胚胎发育平台.

结论:

  • "骨诱导原理"在临床上只有在重组形态原体通过胚胎发育的重复诱导骨时才可翻译.
关键词:
骨头诱导 诱导 骨头诱导骨形态遗传蛋白质 骨形态遗传蛋白质细胞工程是细胞工程.发育与内分泌骨质生成的对比.人类的骨质诱导缺乏临床翻译的情况.转化生长因子-β蛋白质的转化

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  • 顺利的骨再生需要一个支持胚胎发育途径的生物环境,这是目前临床应用中缺乏的.