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:Redefining Dendritic Cell Vaccines: Synergistically Co-priming DC and B Cells With Nanoparticles Loading Whole Cell Antigens Maximizes the Efficacy of DC Vaccines.
本研究提供了一种新型DC-BC疫苗,其治疗效果显著更优,并探讨了DC与B细胞共孵育提高治疗效果的潜在机制。
树突状细胞(DC)在诱导抗原特异性T细胞中发挥核心作用。然而,有限的有效性阻碍了其作为疫苗的应用。为提高传统DC疫苗的疗效,本研究从肿瘤抗原、细胞来源和共孵育分子三个方面进行了优化,从而提出了一种新型DC-BC疫苗:以精确比例共致敏B细胞和DC。通过共孵育DC和B细胞,治疗效果显著提高。在肿瘤抗原方面,利用负载全肿瘤裂解物的纳米颗粒优于利用负载多种新抗原的纳米颗粒、或仅负载水溶性裂解物的纳米颗粒、或游离全肿瘤裂解物。此外,添加IL-15和αPD-L1抗体进一步改善了DC-BC疫苗。最优DC-BC疫苗表现出优异的治疗效果,响应率达100%,并能在多种不同的癌症模型中治愈大多数荷瘤小鼠,包括黑色素瘤、肺癌和原位胰腺癌。机制研究表明,包括Ticam1(TRIF)、Traf3、Mavs和Ifnar2在内的多种分子通过激活先天免疫通路(TLR/NLR/RLR)参与促进APC成熟并提高疫苗的治疗效果。总之,本研究提供了一种治疗效果更好的新型DC-BC疫苗,并探索了共孵育DC和B细胞为何能提高治疗效果的潜在机制。
Dendritic cells (DC) play core roles in inducing antigen-specific T cells. However, limited effectiveness hinders their applications as vaccines. To improve the efficacy of traditional DC vaccines, this study optimized three aspects: tumor antigens, cell sources and co-incubating molecules, and thus proposed a new DC-BC vaccine: co-priming B cells and DC at a precise ratio. The therapeutic efficacy was significantly improved by co-incubating DC and B cells. Regarding tumor antigens, utilizing nanoparticles loading whole-tumor lysates performed better than utilizing nanoparticles loading multiple neo-antigens, or nanoparticles loading only water-soluble lysates, or free whole-tumor lysates. Moreover, adding IL-15 and αPD-L1 antibody further bettered DC-BC vaccines. The optimal DC-BC vaccines showed excellent therapeutic efficacy with a 100% response rate and could cure most tumor-bearing mice on several different cancer models, including melanoma, lung cancer and orthotopic pancreatic cancer. The mechanism investigation demonstrated that several molecules, including Ticam1 (TRIF), Traf3, Mavs, and Ifnar2, were involved in promoting APC maturation and improving therapeutic efficacy of vaccines by activating innate immune pathways (TLR/NLR/RLR). In summary, this study provides a new DC-BC vaccine that has much better therapeutic efficacy and explores the underlying mechanism of why co-incubating DC and B cells improved the therapeutic efficacy.
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