2.T cell receptor-based immunotherapy: a review.
Yuan CHEN ; George F GAO ; Shuguang TAN
Chinese Journal of Biotechnology 2023;39(10):4004-4028
T cells play central roles in anti-tumor immune responses. Immune checkpoint therapy, which is based on modulation of T cell reactivity, has achieved breakthrough in clinical treatment of multiple tumors. Moreover, adoptive T cell therapy, which includes mainly genetically engineered T cells, has shown substantial treatment efficacy in hematoma. Immune therapy has tremendously changed the scenario of clinical tumor treatment and become critical strategies for treating multiple tumors. T cell receptor (TCR) is the fundamental molecule responsible for the specificity of T cell recognition. TCRs could recognize peptides, which are derived from intracellular or extracellular tumor antigens, presented by major histocompatibility complex (MHC) and are therefore highly sensitive to low antigen level. Thereby, TCRs are broadly recognized as promising molecules for the development of anti-tumor drugs. The approval of the first TCR drug in 2022 has initiated a new era for TCR-based therapeutics and since then, multiple TCR drugs have shown substantial treatment efficacy in multiple tumors. This review summarizes the progress of TCR-based immune therapeutic strategies, including T cell receptor-engineered T cell (TCR-T), TCR-based protein drugs, and other cell therapies based on TCR signaling, providing useful information for future design of immune therapeutics based on TCR.
Humans
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Receptors, Antigen, T-Cell/metabolism*
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T-Lymphocytes/metabolism*
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Neoplasms/metabolism*
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Immunotherapy
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Antigens, Neoplasm
4.Proapoptotic protein Bim regulates the suppressive function of Treg cells.
Journal of Zhejiang University. Science. B 2023;24(12):1180-1184
Regulatory T (Treg) cells are a special immunosuppressive subset of cluster of differentiation 4-positive (CD4+)-T lymphocytes and play a pivotal role in the establishment of immune homeostasis in vivo (Zhang et al., 2021). The transcription factor forkhead box protein P3 (Foxp3) is the master marker of Treg cells, which is highly expressed in Treg cells and is also essential for their suppressive function (Hori et al., 2003). In addition to Foxp3, other regulators of Treg cells have been discovered (Wu et al., 2017, 2022; Wu and Sun, 2023a, 2023b); however, a deeper understanding of the regulation of these cells is required.
T-Lymphocytes, Regulatory
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Gene Expression Regulation
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Forkhead Transcription Factors/metabolism*
5.Effect of IL-15 addition on asbestos-induced suppression of human cytotoxic T lymphocyte induction.
Naoko KUMAGAI-TAKEI ; Yasumitsu NISHIMURA ; Hidenori MATSUZAKI ; Suni LEE ; Kei YOSHITOME ; Tatsuo ITO ; Takemi OTSUKI
Environmental Health and Preventive Medicine 2021;26(1):50-50
BACKGROUND:
Asbestos fibers possess tumorigenicity and are thought to cause mesothelioma. We have previously reported that exposure to asbestos fibers causes a reduction in antitumor immunity. Asbestos exposure in the mixed lymphocyte reaction (MLR) showed suppressed induction of cytotoxic T lymphocytes (CTLs), accompanied by a decrease in proliferation of CD8
METHODS:
For MLR, human peripheral blood mononuclear cells (PBMCs) were cultured with irradiated allogenic PBMCs upon exposure to chrysotile B asbestos at 5 μg/ml for 7 days. After 2 days of culture, IL-15 was added at 1 ng/ml. After 7 days of MLR, PBMCs were collected and analyzed for phenotypic and functional markers of CD8
RESULTS:
IL-15 addition partially reversed the decrease in CD3
CONCLUSION
These findings indicate that CTLs induced upon exposure to asbestos possess dysfunctional machinery that can be partly compensated by IL-15 supplementation, and that IL-15 is more effective in the recovery of proliferation and granzyme B levels from asbestos-induced suppression of CTL induction compared with IL-2.
Asbestos/adverse effects*
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CD8-Positive T-Lymphocytes/metabolism*
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Humans
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Interleukin-15/pharmacology*
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Lymphocyte Activation/immunology*
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T-Lymphocytes, Cytotoxic/metabolism*
7.Primary bone marrow CD8 cytotoxic T-cell lymphoma coexpressed CD20: a case report and literatures review.
Xin JIN ; Ya-Qin ZHI ; Yong YU ; Yi-zhuo ZHANG ; Ling ZHANG
Chinese Journal of Hematology 2013;34(3):229-232
OBJECTIVETo report the diagnosis, differential diagnosis and treatment of a rare case of primary bone marrow CD8+ cytotoxic T-cell lymphoma coexpressed CD20.
METHODSThe clinical characteristics, therapeutic course and the outcome of this patient were reviewed. Meanwhile, a series of examinations including morphology, flow cytometry, immunohistochemistry and molecular biology of bone marrow and skin samples were also performed.
RESULTSBone marrow biopsy showed an extensive involvement by abnormal T lymphocytes. Flow cytometry and immunohistochemistry showed weakly positive CD20, CD8(+), CD2(+), CD3(+), CD5(+), TIA(+), PAX-5(-), CD4(-), CD56(-), CD57(-), CD30(-), ALK-1(-), P53(-), TdT(-), Ki-67≈5%. A final diagnosis of primary bone marrow CD8+ cytotoxic T-cell lymphoma coexpressed CD20 was made. The patient initially presented a relatively indolent course was, but he was expired in the end 3 years later due to extensive involvements of skin and other organs though timely therapy was administrated.
CONCLUSIONPrimary bone marrow CD8 cytotoxic T-cell lymphoma coexpressed CD20 was encountered rarely in clinical practice, which might be a challenging in terms of diagnosis and differential diagnosis. Further investigation of pathogenesis and therapeutic strategies of this rare disease was warranted.
Antigens, CD20 ; metabolism ; CD8-Positive T-Lymphocytes ; metabolism ; pathology ; Humans ; Lymphoma, T-Cell ; diagnosis ; pathology ; Male ; Middle Aged ; T-Lymphocytes, Cytotoxic ; metabolism ; pathology
8.T-cell receptor-engineered T cells for cancer treatment: current status and future directions.
Yu PING ; Chaojun LIU ; Yi ZHANG
Protein & Cell 2018;9(3):254-266
T-cell receptor (TCR)-engineered T cells are a novel option for adoptive cell therapy used for the treatment of several advanced forms of cancer. Work using TCR-engineered T cells began more than two decades ago, with numerous preclinical studies showing that such cells could mediate tumor lysis and eradication. The success of these trials provided the foundation for clinical trials, including recent clinical successes using TCR-engineered T cells to target New York esophageal squamous cell carcinoma (NY-ESO-1). These successes demonstrate the potential of this approach to treat cancer. In this review, we provide a perspective on the current and future applications of TCR-engineered T cells for the treatment of cancer. Our summary focuses on TCR activation and both pre-clinical and clinical applications of TCR-engineered T cells. We also discuss how to enhance the function of TCR-engineered T cells and prolong their longevity in the tumor microenvironment.
Animals
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Antigens, Neoplasm
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immunology
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metabolism
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Humans
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Neoplasms
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immunology
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metabolism
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Receptors, Antigen, T-Cell
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genetics
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metabolism
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T-Lymphocytes
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immunology
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metabolism
9.Understanding endometriosis from an immunomicroenvironmental perspective.
Dian FAN ; Xu WANG ; Zhixian SHI ; Yuting JIANG ; Bohao ZHENG ; Lian XU ; Shengtao ZHOU
Chinese Medical Journal 2023;136(16):1897-1909
Endometriosis, a heterogeneous, inflammatory, and estrogen-dependent gynecological disease defined by the presence and growth of endometrial tissues outside the lining of the uterus, affects approximately 5-10% of reproductive-age women, causing chronic pelvic pain and reduced fertility. Although the etiology of endometriosis is still elusive, emerging evidence supports the idea that immune dysregulation can promote the survival and growth of retrograde endometrial debris. Peritoneal macrophages and natural killer (NK) cells exhibit deficient cytotoxicity in the endometriotic microenvironment, leading to inefficient eradication of refluxed endometrial fragments. In addition, the imbalance of T-cell subtypes results in aberrant cytokine production and chronic inflammation, which contribute to endometriosis development. Although it remains uncertain whether immune dysregulation represents an initial cause or merely a secondary enhancer of endometriosis, therapies targeting altered immune pathways exhibit satisfactory effects in preventing disease onset and progression. Here, we summarize the phenotypic and functional alterations of immune cells in the endometriotic microenvironment, focusing on their interactions with microbiota and endocrine and nervous systems, and how these interactions contribute to the etiology and symptomology of endometriosis.
Female
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Humans
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Endometriosis/metabolism*
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Killer Cells, Natural/metabolism*
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T-Lymphocytes/metabolism*
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Estrogens
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Endometrium/metabolism*
10.T cell receptor Vbeta gene bias in rheumatoid arthritis.
Zhuoli ZHANG ; Guozhu ZHANG ; Yi DONG
Chinese Medical Journal 2002;115(6):856-859
OBJECTIVETo explore the pathogenesis of rheumatoid arthritis (RA) by studying the expression of T cell receptors (TCRs).
METHODST cell receptor Vbeta (TCR Vbeta) gene usage and expression were analyzed from synovial membrane and peripheral blood of 8 RA patients, 2 osteoarthritis patients and 2 accident amputees. The complementary determining region 3 (CDR3) of 25 TCR Vbeta subfamily genes in unselected T cell populations were amplified semi-quantitatively by reverse transcription-polymerase chain reaction (RT-PCR). The products were further studied by genescan for frequency of Vbeta usage.
RESULTSThe numbers of Vbeta subfamilies expressed by T cells from RA peripheral blood and synovial membrane were not significantly restricted. More importantly, biased Vbeta gene expression in RA synovium was observed and Vbeta6, Vbeta17, and Vbeta22 genes were the predominant subfamilies. It was noteworthy that the expression of Vbeta17 in RA synovium was significantly increased.
CONCLUSIONOur data were consistent with the hypothesis that several antigen or superantigen-driven processes may be involved in the pathogenesis of RA.
Arthritis, Rheumatoid ; genetics ; immunology ; Genes, T-Cell Receptor beta ; Humans ; Synovial Membrane ; metabolism ; T-Lymphocytes ; immunology