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Published on: June 16, 2018
Jinfukang inhibits lung cancer metastasis by regulating T cell receptors
Bin Luo1, Panpan Wang2, Jianhui Tian2
1Clinical Oncology Center, Shanghai Municipal Hospital of Traditional Chinese Medicine, Shanghai University of Traditional Chinese Medicine, 200071, Shanghai, China; Department of Oncology, Longhua Hospital, Shanghai University of Traditional Chinese Medicine, 200032, Shanghai, China.
Ethnopharmacological Relevance:
Metastasis is the leading cause of death in lung cancer worldwide, and immune escape plays a vital role in the process of metastasis. Clinical studies have proven that Jinfukang (JFK) can effectively treat lung cancer metastasis by regulating T lymphocytes. However, it is still unknown whether JFK plays a role in treating lung cancer metastasis by regulating T-cell receptors (TCRs).
Aim Of The Study:
To explore the effect of JFK in inhibiting lung cancer metastasis by regulating TCR.
Materials And Methods:
A lung metastasis model was established in C57BL/6J and BALB/c-nude mice by tail vein injection of Lewis lung cancer cells. JFK was given by continuous intragastric administration. Anatomical observation combined with hematoxylin-eosin staining was used to evaluate lung metastasis. T cells, MDSCs, and macrophages in the peripheral blood were detected by flow cytometry, and the proliferation and immune cell infiltration of lung metastases were observed by immunohistochemistry and immunofluorescence. The diversity and gene expression of TCR in peripheral blood and lung tissues were detected by immune repertoire sequencing, and bioinformatics analysis was carried out.
Results:
Compared with the control group, the number of pulmonary metastatic nodules in JFK-treated mice showed a decreasing trend, and it significantly reduced the burden of lung tumor metastasis in mice. We found that the expression level of Ki-67 protein in lung metastatic tumor tissues of mice treated with JFK was significantly reduced, while the infiltration level of CD8+ T lymphocytes and NK cells was significantly increased. In addition, we also found that JFK could significantly increase the proportion of CD4+ T, CD8+ T and NKT cells in the peripheral blood of mice. Moreover, JFK reduced the ratio of M-MDSCs and increased the ratio of PMN-MDSCs in the peripheral blood of mice. JFK increased the ratio of M1 macrophages in the peripheral blood of Lewis tumor-bearing mice. The sequencing of TCR in the peripheral blood and lung tissue of mice indicated that there was no notable difference in TCR diversity as the tumor progressed and JFK treatment was administered. However, the downregulation of TRBV16, TRBV17, TRBV1 and the upregulation of the TRBV12-2 gene in the TCR caused by tumor progression can be reversed by JFK.
Conclusion:
These results suggest that JFK may upregulate the proportion of CD4+ T, CD8+ T and NKT cells in peripheral blood, reverse the TCR changes caused by tumor metastasis, and promote the infiltration of CD8+ T and NK cells in tumor tissues, thereby inhibiting the growth of tumors and ultimately reducing the burden of lung cancer metastasis. This will provide new strategies for developing Chinese herbal medicine to treat metastasis by regulating TCR.
Insights
Jinfukang (JFK) treatment reduced lung cancer metastasis in mice by increasing beneficial immune cells like CD8+ T lymphocytes and NK cells. JFK also reversed T-cell receptor (TCR) gene expression changes associated with tumor progression, offering new strategies for treating lung cancer metastasis.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Metastasis is a primary cause of lung cancer mortality, with immune escape being a critical factor.
- Jinfukang (JFK) has shown efficacy in treating lung cancer metastasis by modulating T lymphocytes.
- The specific role of JFK in regulating T-cell receptors (TCRs) during lung cancer metastasis remains unexplored.
Purpose of the Study:
- To investigate the anti-metastatic effects of JFK in lung cancer.
- To determine if JFK inhibits lung cancer metastasis through the regulation of TCRs.
- To elucidate the impact of JFK on immune cell populations and TCR gene expression in a lung metastasis model.
Main Methods:
- Established a lung metastasis model in mice using Lewis lung cancer cells.
- Administered JFK via continuous intragastric gavage.
- Evaluated lung metastasis using anatomical observation and hematoxylin-eosin staining.
- Analyzed immune cell populations (T cells, MDSCs, macrophages) via flow cytometry.
- Assessed tumor proliferation and immune cell infiltration using immunohistochemistry and immunofluorescence.
- Performed immune repertoire sequencing for TCR diversity and gene expression analysis in peripheral blood and lung tissues, followed by bioinformatics analysis.
Main Results:
- JFK treatment significantly reduced the number of pulmonary metastatic nodules and overall lung tumor burden.
- JFK increased the infiltration of CD8+ T lymphocytes and NK cells in lung metastatic tissues.
- JFK elevated the proportion of CD4+ T, CD8+ T, and NKT cells in peripheral blood.
- JFK modulated MDSC ratios and increased M1 macrophage proportions in peripheral blood.
- While TCR diversity remained unchanged, JFK reversed specific TCR gene expression alterations (downregulation of TRBV16, TRBV17, TRBV1; upregulation of TRBV12-2) induced by tumor progression.
Conclusions:
- JFK inhibits lung cancer metastasis by enhancing CD4+, CD8+ T, and NKT cell proportions in peripheral blood.
- JFK promotes CD8+ T and NK cell infiltration into tumor tissues.
- JFK reverses tumor-induced TCR gene expression changes, suggesting a novel mechanism for its anti-metastatic effects.
- These findings support the development of JFK and similar Chinese herbal medicines as therapeutic strategies targeting TCRs for lung cancer metastasis.
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