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Single-cell transcriptomic analysis reveals that the APP-CD74 axis promotes immunosuppression and progression of testicular tumors. | LitMetric

Single-cell transcriptomic analysis reveals that the APP-CD74 axis promotes immunosuppression and progression of testicular tumors.

J Pathol

Department of Urology/Pelvic Floor and Andrology, West China School of Public Health and West China Fourth Hospital, Sichuan University, Chengdu, PR China.

Published: November 2024

AI Article Synopsis

  • Testicular tumors are the most common cancer in young men, but their development mechanisms are not well understood, prompting research into their cellular diversity and communication.
  • An analysis of over 40,000 single-cell transcriptomes revealed five malignant subclusters, with certain subclusters linked to a worse immune response and lower disease-free survival rates.
  • The study also highlighted disrupted interactions between spermatogonial stem cells and Sertoli cells in seminoma testes, shedding light on the tumor environment for potential new therapies.

Article Abstract

Testicular tumors represent the most common malignancy among young men. Nevertheless, the pathogenesis and molecular underpinning of testicular tumors remain largely elusive. We aimed to delineate the intricate intra-tumoral heterogeneity and the network of intercellular communication within the tumor microenvironment. A total of 40,760 single-cell transcriptomes were analyzed, encompassing samples from six individuals with seminomas, two patients with mixed germ cell tumors, one patient with a Leydig cell tumor, and three healthy donors. Five distinct malignant subclusters were identified in the constructed landscape. Among them, malignant 1 and 3 subclusters were associated with a more immunosuppressive state and displayed worse disease-free survival. Further analysis identified that APP-CD74 interactions were significantly strengthened between malignant 1 and 3 subclusters and 14 types of immune subpopulations. In addition, we established an aberrant spermatogenesis trajectory and delineated the global gene alterations of somatic cells in seminoma testes. Sertoli cells were identified as the somatic cell type that differed the most from healthy donors to seminoma testes. Cellular communication between spermatogonial stem cells and Sertoli cells is disturbed in seminoma testes. Our study delineates the intra-tumoral heterogeneity and the tumor immune microenvironment in testicular tumors, offering novel insights for targeted therapy. © 2024 The Author(s). The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.

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Source
http://dx.doi.org/10.1002/path.6343DOI Listing

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