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相关概念视频

Antigens Involved in Adaptive Immunity01:26

Antigens Involved in Adaptive Immunity

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An antigen is any substance the immune system identifies as foreign and potentially harmful to the body, prompting an immune response. Antigens have two functional properties: immunogenicity and reactivity. Immunogenicity is the ability of an antigen to stimulate a specific immune response. At the same time, reactivity describes the antigen's ability to react with the cells and antibodies produced in response to it.
Complete Antigens
Complete antigens possess both immunogenicity and...
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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...
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Antigen Processing Pathways01:31

Antigen Processing Pathways

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MHC molecules are key players in the immune response, enabling T cells to recognize and respond to specific antigens. They are present on the surface of all nucleated cells in the body and are instrumental in presenting antigens to T cells and activating them. T cells recognize the MHC-antigen complex and initiate an immune response. MHC class I and MHC class II are two main types of MHC molecules, each associated with a distinct antigen processing pathway.
MHC Class I: Presenting Endogenous...
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T Cell Activation and Clonal Selection01:22

T Cell Activation and Clonal Selection

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T cells are integral to our adaptive immune system, recognizing and effectively responding to foreign antigens. T cell activation and clonal selection are pivotal in orchestrating this immune response. This article elucidates these mechanisms, detailing the roles of cluster of differentiation (CD) markers, major histocompatibility complex (MHC) molecules, costimulatory signals, and the process of clonal selection.
Naive T cells that have not yet encountered an antigen express two primary CD...
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Multipotency of Hematopoietic Stem Cells01:19

Multipotency of Hematopoietic Stem Cells

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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...
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Diversity in Cell Signaling Responses01:22

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The physiological function of a cell and cellular communication are outcomes of a range of extrinsic signals, intracellular signaling pathways, and cellular responses. No two cell types express the same repertoire of signaling components. Receptors are highly selective for their cognate ligands, but once activated, they can alter multiple cellular processes such as DNA transcription, protein synthesis, and metabolic activity. 
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相关实验视频

Updated: May 9, 2025

Tailoring In Vivo Cytotoxicity Assays to Study Immunodominance in Tumor-specific CD8+ T Cell Responses
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跨越时间和空间的MHC多样性

Maria Cortazar-Chinarro1,2,3, Kayla C King4,5,6, Mette Lillie3

  • 1MEMEG/Department of Biology Faculty of Science, Lund University Lund Sweden.

Ecology and evolution
|April 29, 2025
PubMed
概括

具有较低免疫遗传多样性的野生动物种群,特别是在地理极端地区,面临气候变化和新出现的疾病导致的灭绝风险增加. 了解主要基因相容性复合体 (MHC) 多样性对于保护至关重要.

关键词:
在MHC中,MHC是最重要的.气候变化 气候变化 气候变化进化过程中的进化过程.遗传多样性 遗传多样性主体寄生虫的相互作用

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Use of Single Chain MHC Technology to Investigate Co-agonism in Human CD8+ T Cell Activation
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科学领域:

  • 生态生态学 生态生态学
  • 进化生物学 进化生物学
  • 免疫遗传学 免疫遗传学

背景情况:

  • 遗传多样性对于人口适应和生存至关重要.
  • 免疫遗传多样性,特别是主要组织相容性复合体 (MHC) 基因,对于抵抗传染病至关重要.
  • 在宿主-寄生虫相互作用和局部适应中,MHC基因起着关键作用.

研究的目的:

  • 审查野生种群中MHC多样性的地理和时间模式.
  • 探索选择性和人口因素如何塑造MHC多样性.
  • 评估气候变化对免疫遗传多样性和人口弹性的影响.

主要方法:

  • 审查有关MHC多样性模式的现有文献.
  • 分析MHC变化的度和高度梯度.
  • 整合诸如度多样性梯度和中央边际理论等理论.

主要成果:

  • 在物种分布的边缘,包括高度和高海拔地区,MHC的多样性往往会减少.
  • 这些模式受到环境梯度和人口统计过程的影响.
  • 气候变化和寄生虫的传播对MHC多样性较低的种群构成重大威胁.

结论:

  • 免疫遗传多样性的减少可能会危及野生动物群体的性和生存.
  • 将免疫遗传数据与环境和寄生虫数据相结合,对于理解共进化至关重要.
  • 这种方法可以为脆弱的野生动物群体的保护策略提供信息.