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Updated: Jul 15, 2026

Investigating Aortic Valve Calcification via Isolation and Culture of T Lymphocytes using Feeder Cells from Irradiated Buffy Coat
Published on: February 4, 2021
The lymphocytic infiltration in calcific aortic stenosis predominantly consists of clonally expanded T cells
Henry D Wu1, Mathew S Maurer, Richard A Friedman
1Division of Cardiology, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.
Insights
Degenerative calcific aortic stenosis (CAS) involves T lymphocytes. Studies show expanded T cell clones, not a general inflammatory response, are involved in valvular injury.
Area of Science:
- Immunology
- Cardiovascular Disease
- T Cell Biology
Background:
- Degenerative calcific aortic stenosis (CAS) affects 3% of individuals over 75.
- Valve lesions in CAS are infiltrated by T lymphocytes.
Purpose of the Study:
- To investigate the T cell receptor (TCR) repertoire of T lymphocytes infiltrating aortic valves in CAS.
- To determine if the T cell response is polyclonal or oligoclonal, indicating a specific immune process.
Main Methods:
- Analysis of TCR beta-chain CDR3-length distribution using PCR primers for 23 Vbeta families in eight CAS patients.
- Nucleotide sequencing of beta-chains in selected Vbeta families to identify expanded T cell clones.
Main Results:
- Significant oligoclonal T cell expansion was observed in valve-infiltrating lymphocytes.
- An average of 92% of the T cell repertoire consisted of expanded clones, differing from peripheral T cells.
- Shared T cell clones between valves and blood were identified, with 22 of 24 being CD8 lineage.
Conclusions:
- The findings suggest a specific immune process rather than a nonselective inflammatory response in CAS.
- Clonally expanded alphabeta T cells are implicated in mediating valvular injury in degenerative calcific aortic stenosis.
Abstract:
Valve lesions in degenerative calcific aortic stenosis (CAS), a disorder affecting 3% of those older than 75 years, are infiltrated by T lymphocytes. We sought to determine whether the alphabeta TCR repertoire of these valve-infiltrating lymphocytes exhibited features either of a polyclonal nonselective response to inflammation or contained expanded clones suggesting a more specific immune process. TCR beta-chain CDR3-length distribution analysis using PCR primers specific for 23 Vbeta families performed in eight individuals with CAS affecting tri- or bileaflet aortic valves revealed considerable oligoclonal T cell expansion. In five cases, beta-chain nucleotide sequencing in five selected Vbeta families showed that an average of 92% of the valve-infiltrating T cell repertoire consisted of expanded T cell clones, differing markedly in composition from the relatively more polyclonal peripheral CD8 or CD4 T cell subsets found even in this elderly population. Twenty-four of the valve-infiltrating T cell clones also had the same clone identified in blood, some of which were highly expanded. Interestingly, 22 of these 24 shared clones were CD8 in lineage (p = 1.5 x 10(-12)), suggesting a possible relationship to the expanded CD8(+)CD28(-) T cell clones frequently present in the elderly. Additionally, the sequences of several TCR beta-chain CDR3 regions were homologous to TCR beta-chains identified previously in allograft arteriosclerosis. We infer that these findings are inconsistent with a nonselective secondary response of T cells to inflammation and instead suggest that clonally expanded alphabeta T cells are implicated in mediating a component of the valvular injury responsible for CAS.
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