thymocyte
Sign in to saveA thymocyte is an immune cell present in the thymus, before it undergoes transformation into a T cell. Thymocytes are produced as stem cells in the bone marrow and reach the thymus via the blood.
Research
23,640 papers- Thymocyte migration and emigration.Immunology letters · 2024
- GRP75-dependent mitochondria-ER contacts ensure cell survival during early mouse thymocyte development.Developmental cell · 2024
- Cholinergic regulation of thymocyte negative selection.Nature immunology · 2025
- The Role of CD8 Downregulation during Thymocyte Differentiation.Trends in immunology · 2020
- Functional Role of MicroRNAs in Thymocyte Development.International archives of allergy and immunology · 2019
via PubMed
~15 min read
Article
11 sectionsContents
- Stages of maturation
- In mice
- In humans
- Events during maturation
- Thymus settling
- β-selection
- Positive selection and lineage commitment
- Negative selection
- Cancer
- Alternative lineages
- References
A thymocyte is an immune cell present in the thymus, before it undergoes transformation into a T cell. Thymocytes are produced as stem cells in the bone marrow and reach the thymus via the blood.
Thymopoiesis describes the process which turns thymocytes into mature T cells according to either negative or positive selection. This selection process is vitally important in shaping the population of thymocytes into a peripheral pool of T cells that are able to respond to foreign pathogens but remain tolerant towards the body's own antigens. Positive selection selects cells which are able to bind MHC class I or II molecules with at least a weak affinity. This eliminates (by a process called "death by neglect") those T cells which would be non-functional due to an inability to bind MHC. Negative selection destroys thymocytes with a high affinity for self peptides or MHC. This eliminates cells which would direct immune responses towards self-proteins in the periphery. Negative selection is not 100% effective, and some autoreactive T cells escape and are released into the circulation. Additional mechanisms of peripheral tolerance exist to silence these cells, but if these fail, autoimmunity may arise.