CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Peptidic microarchitecture-trapped tumor vaccine combined with immune checkpoint inhibitor or PI3Kγ inhibitor can enhance immunogenicity and eradicate tumors.
Peptidic microarchitecture-trapped tumor vaccine combined with immune checkpoint inhibitor or PI3Kγ inhibitor can enhance immunogenicity and eradicate tumors.
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我们开发了一种肿瘤疫苗递送系统,并提出了一种有前景的基于个性化肿瘤疫苗的治疗方案,其中肿瘤疫苗递送系统与 aPD-L1 或 PI3Kγ抑制剂联合使用,以改善肿瘤免疫治疗的效果。
随着免疫检查点抑制剂和基于新抗原(NeoV)的个性化肿瘤疫苗的快速发展,肿瘤免疫治疗已显示出令人鼓舞的治疗效果。然而,现有肿瘤疫苗疗效有限,阻碍了个性化肿瘤免疫治疗的发展。在本研究中,我们开发了一种新型肿瘤疫苗系统,并提出了联合治疗策略以提高治疗效果。
我们开发了一种新型肿瘤疫苗系统,由新合成的具有高组装效能的肽微结构(PMA)组成。PMA捕获的新抗原疫苗被开发用于共递送肿瘤新抗原和Toll样受体9激动剂CpG(NeoV),简称为PMA-NeoV。使用微流控芯片以均匀且精确的方式生产PMA颗粒。在体外和体内研究了疫苗有效性。在MC38小鼠肿瘤模型中进一步测试了PMA-NeoV与抗程序性细胞死亡配体1抗体(aPD-L1)或与磷脂酰肌醇3-激酶γ(PI3Kγ)抑制剂IPI-549的联合免疫治疗效果。
PMA-NeoV不仅促进了肿瘤疫苗的共递送,还增强了疫苗的免疫原性。此外,与游离NeoV相比,PMA-NeoV显著增加了TIL(肿瘤浸润淋巴细胞)的数量,促进了新抗原特异性全身免疫应答,并抑制了小鼠结肠MC38肿瘤的生长。进一步地,PMA-NeoV增加了T淋巴细胞上程序性细胞死亡受体-1的表达,并与aPD-L1联合通过挽救耗竭的T淋巴细胞根除了八例MC38肿瘤中的七例。此外,我们将PMA-NeoV与IPI-549(一种控制免疫抑制的分子开关)联合使用,发现这种联合治疗通过将抑制性巨噬细胞转变为活性状态并激活T细胞以启动强大的肿瘤免疫微环境,显著抑制了肿瘤生长并根除了八例接种肿瘤中的五例。
With the rapid development of immune checkpoint inhibitors and neoantigen (NeoV)-based personalized tumor vaccines, tumor immunotherapy has shown promising therapeutic results. However, the limited efficacy of available tumor vaccines impedes the development of personalized tumor immunotherapy. In this study, we developed a novel tumor vaccine system and proposed combined therapeutic strategies for improving treatment effects.
We developed a novel tumor vaccine system comprising a newly synthesized peptidic microarchitecture (PMA) with high assembly efficacy. The PMA-trapped neoantigen vaccine was developed to codeliver tumor neoantigen and the Toll-like receptor 9 agonist CpG (NeoV), abbreviated as PMA-NeoV. A microfluidic chip was used to produce PMA particles in a uniform and precise manner. Vaccine effectiveness was investigated both in vitro and in vivo. The combined immunotherapeutic effect of PMA-NeoV with anti-programmed cell death ligand 1 antibody (aPD-L1) or with the phosphatidylinositol 3‑kinase γ (PI3Kγ) inhibitor IPI-549 was further tested in MC38 mouse tumor model.
PMA-NeoV not only promoted codelivery of the tumor vaccine but also potentiated vaccine immunogenicity. Moreover, compared with free NeoV, PMA-NeoV significantly increased the number of tumor-infiltrating lymphocytes, promoted the neoantigen-specific systemic immune response, and suppressed murine colon MC38 tumor growth. Furthermore, PMA-NeoV increased the expression of programmed cell death receptor-1 on T lymphocytes, and in combination with aPD-L1 eradicated seven of eight MC38 tumors by rescuing exhausted T lymphocytes. Moreover, we combined the PMA-NeoV with the IPI-549, a molecular switch that controls immune suppression, and found that this combination significantly suppressed tumor growth and eradicated five of eight inoculated tumors, by switching suppressive macrophages to their active state and activating T cells to prime a robust tumor immune microenvironment.
We developed a tumor vaccine delivery system and presented a promising personalized tumor vaccine-based therapeutic regimen in which a tumor vaccine delivery system is combined with an aPD-L1 or PI3Kγ inhibitor to improve tumor immunotherapy outcomes.
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