γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:Prostaglandin D2 axis impairs immunity against melanoma via dendritic cells and γδ T cells in middle-aged mice.
Prostaglandin D2 axis impairs immunity against melanoma via dendritic cells and γδ T cells in middle-aged mice.
我们的研究结果强调了靶向 PLA2G2D-PGD2/PTGDR 轴重编程衰老树突状细胞的有效性,从而抑制黑色素瘤进展,并提供了一个有前景的治疗靶点,尤其对老年患者而言。
患黑色素瘤的风险随年龄增长而增加。尽管免疫检查点阻断(ICB)治疗已取得相当大的成功,但相当一部分黑色素瘤患者要么对ICB无应答,要么最终产生耐药性。这导致迫切需要探索新的治疗方法。磷脂酶A2 group IID(PLA2G2D)是一种存在于髓系细胞中的诱导型酶,尤其是在衰老的树突状细胞(DCs)中,其通过产生抗炎或促炎小脂质分子(包括前列腺素D2(PGD2))发挥免疫抑制作用。PLA2G2D-PGD2表达的衰老相关增加使该信号通路成为治疗衰老相关疾病的有前景的靶点。在人类和小鼠黑色素瘤组织中均发现的造血型PGD2合酶过表达进一步凸显了靶向PLA2G2D-PGD2治疗的潜力。在本研究中,我们展示,PLA2G2D或PGD2受体PTGDR的缺失可限制皮下植入黑色素瘤的原发肿瘤生长和肺转移,这一点通过使用中年Pla2g2d-/-和Ptgdr-/-小鼠得到证实。这些治疗获益与活化的γδ T细胞向肿瘤浸润增加有关,而在B16F10荷瘤野生型小鼠中,通过过继转移Ptgdr-/- DCs可扩增这种效应。这些抑制肿瘤的效应也在DC特异性PTGDR缺陷(zDCcrePtgdrfloxp)小鼠中得到证实。在机制上,Ptgdr-/- DCs产生IL-1β增强,促进了γδ T细胞在肿瘤组织中的活化和积聚。总之,我们的研究结果强调了靶向 PLA2G2D-PGD2/PTGDR 轴重编程衰老树突状细胞的有效性,从而抑制黑色素瘤进展,并提供了一个有前景的治疗靶点,尤其对老年患者而言。
The risk of developing melanoma increases with age. Although immune checkpoint blockade (ICB) therapy has shown considerable success, a significant portion of melanoma patients either fail to respond to ICB or eventually develop resistance. This leads to the urgent need for exploring novel treatments. Phospholipase A2 group IID (PLA2G2D) is an inducible enzyme found in myeloid cells, especially in aging dendritic cells (DCs), that exert an immunosuppressive effect by producing anti- or proinflammatory small lipid molecules, including prostaglandin D2 (PGD2). An aging-related increase of PLA2G2D-PGD2 expression makes this signaling a promising target for treating aging-associated diseases. The overexpression of hematopoietic PGD2 synthase identified in both human and mouse melanoma tissue further highlights the potential of PLA2G2D-PGD2-targeting therapy. In this study, we show that the absence of PLA2G2D or the PGD2 receptor, PTGDR, restricts primary tumor growth and lung metastasis of subcutaneously implanted melanoma, as demonstrated using middle-aged Pla2g2d-/- and Ptgdr-/- mice. These therapeutic benefits are linked to increased tumor infiltration of activated γδ T cells, which can be amplified in B16F10-bearing wild-type mice through the adoptive transfer of Ptgdr-/- DCs. These tumor-restraining effects were also confirmed in DC-specific PTGDR-deficient (zDCcrePtgdrfloxp) mice. Mechanistically, the enhanced production of IL-1β by Ptgdr-/- DCs contributes to the activation and accumulation of γδ T cells in tumor tissue. In summary, our findings highlight the effectiveness of targeting the PLA2G2D-PGD2/PTGDR axis to reprogram aging dendritic cells, thereby inhibiting melanoma progression and presenting a promising therapeutic target, particularly for elderly patients.
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