Prevalence of intratumoral regulatory T cells expressing neuropilin-1 is associated with poorer outcomes in patients with cancer.
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- Record sourced from PubMed, PMID 34878821.
- Also identified by DOI 10.1126/scitranslmed.abf8495 and PMC identifier 9022491.
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Abstract
Despite the success of immune checkpoint blockade therapy, few strategies sufficiently overcome immunosuppression within the tumor microenvironment (TME). Targeting regulatory T cells (T<sub>regs</sub>) is challenging, because perturbing intratumoral T<sub>reg</sub> function must be specific enough to avoid systemic inflammatory side effects. Thus, no T<sub>reg</sub>-targeted agents have proven both safe and efficacious in patients with cancer. Neuropilin-1 (NRP1) is recognized for its role in supporting intratumoral T<sub>reg</sub> function while being dispensable for peripheral homeostasis. Nonetheless, little is known about the biology of human NRP1<sup>+</sup> T<sub>regs</sub> and the signals that regulate NRP1 expression. Here, we report that NRP1 is preferentially expressed on intratumoral T<sub>regs</sub> across six distinct cancer types compared to healthy donor peripheral blood [peripheral blood lymphocyte (PBL)] and site-matched, noncancer tissue. Furthermore, NRP1<sup>+</sup> T<sub>reg</sub> prevalence is associated with reduced progression-free survival in head and neck cancer. Human NRP1<sup>+</sup> T<sub>regs</sub> have broad activation programs and elevated suppressive function. Unlike mouse T<sub>regs</sub>, we demonstrate that NRP1 identifies a transient activation state of human T<sub>regs</sub> driven by continuous T cell receptor (TCR) signaling through the mitogen-activated protein kinase pathway and interleukin-2 exposure. The prevalence of NRP1<sup>+</sup> T<sub>regs</sub> in patient PBL correlates with the intratumoral abundance of NRP1<sup>+</sup> T<sub>regs</sub> and may indicate higher disease burden. These findings support further clinical evaluation of NRP1 as a suitable therapeutic target to enhance antitumor immunity by inhibiting T<sub>reg</sub> function in the TME.
Medical subject headings
- Head and Neck Neoplasms
- Neuropilin-1