4.5 Article

The Th9 Axis Reduces the Oxidative Stress and Promotes the Survival of Malignant T Cells in Cutaneous T-Cell Lymphoma Patients

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MOLECULAR CANCER RESEARCH
卷 18, 期 4, 页码 657-668

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1541-7786.MCR-19-0894

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资金

  1. Department of Science and Technology (DST) [RD/0119-DST0000-10]
  2. Indian Council of Medical Research (ICMR) [RD/0119-ICMR000-001]
  3. Tata Trust Fund [RD/0117TATAE00-001]
  4. IIT Bombay
  5. Department of Biotechnology, Government of India [BT/INF/22/SP23026/2017]
  6. Bristol-Myers Squibb [15BMS001]

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Immune dysfunction is critical in pathogenesis of cutaneous T-cell lymphoma (CTCL). Few studies have reported abnormal cytokine profile and dysregulated T-cell functions during the onset and progression of certain types of lymphoma. However, the presence of IL9-producing Th9 cells and their role in tumor cell metabolism and survival remain unexplored. With this clinical study, we performed multidimensional blood endotyping of CTCL patients before and after standard photo/chemotherapy and revealed distinct immune hallmarks of the disease. Importantly, there was a higher frequency of skin homing Th9 cells in CTCL patients with early (T1 and T2) and advanced-stage disease (T3 and T4). However, advanced-stage CTCL patients had severely impaired frequency of skin-homing Th1 and Th17 cells, indicating attenuated immunity. Treatment of CTCL patients with standard photo/chemotherapy decreased the skin-homing Th9 cells and increased the Th1 and Th17 cells. Interestingly, T cells of CTCL patients express IL9 receptor (IL9R), and there was negligible IL9R expression on T cells of healthy donors. Mechanistically, IL9/IL9R interaction on CD3(+) T cells of CTCL patients and Jurkat cells reduced oxidative stress, lactic acidosis, and apoptosis and ultimately increased their survival. In conclusion, coexpression of IL9 and IL9R on T cells in CTCL patients indicates the autocrine-positive feedback loop of Th9 axis in promoting the survival of malignant T cells by reducing the oxidative stress.

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