Menu
Peptide Database
Results
No peptides found
Featured

Use search to browse all 100+ peptides

Thymosin-alpha-1

Thymalfasin, Zadaxin, Thymosin α1

Quick Stats
Studies 759
Trials 63
Score 3
2023 pubmed 2 citations

Thymosin α1 modulated the immune landscape of COVID-19 patients revealed by single-cell RNA and TCR sequencing.

Bai. Han H; Liang. Liyuan L; Qi. Xin X; Xu. Yao Y; Liu. Yijia Y; Ren. Doudou D; Cai. Zeqiong Z; Mao. Weikang W; Wang. Xiaorui X; Qin. Hongyu H; Hu. Fang F; Shi. Bingyin B

Key Findings

  • Tα1 treatment raised the proportion of CD3+KLRD1+ NKT and TBX21+CD8+ NKT cells in both COVID‑19 patients and healthy controls.
  • Genes and pathways linked to immune activation (e.g., PRF1, NK cytotoxicity, chemokine, JAK‑STAT) were more active after Tα1.
  • Tα1 increased T‑cell receptor diversity, shown by new TRBV9‑TRBJ1‑1 pairings and broader CDR3 repertoires.

Practical Outcomes

  • For biohackers, the data hint that low‑dose thymosin‑alpha‑1 could be used as an immune‑support supplement during viral infections to enhance NKT cell activity and T‑cell diversity. However, the study is small and does not define optimal dosing or safety, so any self‑experiment should start with conservative doses and monitor immune markers where possible.

Summary

The study found that giving thymosin‑alpha‑1 (Tα1) to COVID‑19 patients and healthy people boosted certain immune cells (NKT cells) and increased the variety of T‑cell receptors, suggesting it can help the immune system fight the virus.

Abstract

The Coronavirus disease-19 (COVID-19) pandemic has posed a serious threat to global health. Thymosin α1 (Tα1) was considered to be applied in COVID-19 therapy. However, the data remains limited. Participants with or without Tα1 treatment were recruited. Single cell RNA-sequencing (scRNA-seq) and T cell receptor-sequencing (TCR-seq) of the peripheral blood mononuclear cell (PBMC) samples were done to analyze immune features. The differential expression analysis and functional enrichment analysis were performed to explore the mechanism of Tα1 therapy. 33 symptomatic SARS-CoV-2-infected individuals (COV) and 11 healthy controls (HC) were enrolled in this study. The proportion of CD3+ KLRD1+ NKT, TBX21+ CD8+ NKT was observed to increase in COVID-19 patients with Tα1 treatment (COVT) than those without Tα1 (COV) (p = 0.024; p = 0.010). These two clusters were also significantly higher in Health controls with Tα1 treatment (HCT) than those without Tα1 (HC) (p = 0.016; p = 0.031). Besides, a series of genes and pathways related to immune responses were significantly higher enriched in Tα1 groups TBX21+ CD8+ NKT, such as KLRB1, PRF1, natural killer cell-mediated cytotoxicity pathway, chemokine signaling pathway, JAK-STAT signaling pathway. The increased TRBV9-TRBJ1-1 pair existed in both HCs and COVID-19 patients after Tα1 treatment. 1389 common complementarity determining region 3 nucleotides (CDR 3 nt) were found in COV and HC, while 0 CDR 3 nt was common in COVT and HCT. Tα1 increased CD3+ KLRD1+ NKT, TBX21+ CD8+ NKT cell proportion and stimulated the diversity of TCR clones in COVT and HCT. And Tα1 could regulate the expression of genes associated with NKT activation or cytotoxicity to promote NKT cells. These data support the use of Tα1 in COVID-19 patients.

Study Information

Provider

pubmed

Year

2023

Date

2023-09-26T00:00:00.000Z

DOI

10.1016/j.intimp.2023.110983

Citations

2

References

46