PROTAC 工程化蛋白/DNA 纳米抗原是癌症免疫治疗中树突状细胞疫苗的有效增强剂
PROTAC-Engineered Protein/DNA Nanoantigen is a Potent Booster for Dendritic Cell Vaccines in Cancer Immunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Anti-Tumor Potency of Short-Term Interleukin-15 Dendritic Cells Is Potentiated by In Situ Silencing of Programmed-Death Ligands.
Anti-Tumor Potency of Short-Term Interleukin-15 Dendritic Cells Is Potentiated by In Situ Silencing of Programmed-Death Ligands.
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树突状细胞(DC)疫苗已被证明是癌症免疫治疗中一种有价值的工具。随着多种DC疫苗目前正在临床试验中进行测试,过去十年中关于其治疗价值的知识已显著增加。尽管其安全性已得到确立,但客观临床应答尚不够强,仍需进一步优化。对这种先进疗法 medicinal 产品的改进包括:通过原位基因工程调控其免疫刺激能力,以及将其纳入联合治疗方案等。此前,我们曾报道过一种优化的单核细胞来源的DC制备方法,在培养过程中加入了白介素-15、促炎细胞因子和免疫学危险信号。这些所谓的IL-15 DC已被证明作为癌症疫苗具有多种优良特性。针对可进一步调节抗肿瘤免疫应答机制的研究不断深入,指向程序性死亡受体-1(programmed death-1)是抑制抗肿瘤免疫的重要参与者。为增强DC疫苗的免疫原性,我们假设在IL-15 DC疫苗中额外沉默抑制性免疫检查点分子程序性死亡配体(PD-L)1和PD-L2将表现出更优的刺激潜力。在本文中,我们成功地在3天IL-15 DC培养方案的单核细胞阶段实现了PD-L沉默,使PD-L1和PD-L2均显著下调至30%以下的水平。
此外,我们验证了这些DC在表型和干扰素γ分泌水平上均保持其特异性特征。在评估其功能特征时,我们证明PD-L沉默不影响诱导同种异体增殖的能力。最终旨在诱导持久的肿瘤抗原特异性免疫反应,PD-L沉默的IL-15 DCs能够超越抗原特异性T细胞介导的PD-1抑制。
进一步证实短期IL-15 DCs的优越效力,DC分化和成熟过程中免疫刺激组分的组合与原位检查点抑制支持进一步的临床转化。
Dendritic cell (DC) vaccines have proven to be a valuable tool in cancer immune therapy. With several DC vaccines being currently tested in clinical trials, knowledge about their therapeutic value has been significantly increased in the past decade. Despite their established safety, it has become clear that objective clinical responses are not yet robust enough, requiring further optimization. Improvements of this advanced therapy medicinal product encompass, among others, regulating their immune stimulating capacity by in situ gene engineering, in addition to their implementation in combination therapy regimens. Previously, we have reported on a superior monocyte-derived DC preparation, including interleukin-15, pro-inflammatory cytokines and immunological danger signals in the culture process.
These so-called IL-15 DCs have already proven to exhibit several favorable properties as cancer vaccine. Evolving research into mechanisms that could further modulate the immune response towards cancer, points to programmed death-1 as an important player that dampens anti-tumor immunity.
Aiming at leveraging the immunogenicity of DC vaccines, we hypothesized that additional implementation of the inhibitory immune checkpoint molecules programmed death-ligand (PD-L)1 and PD-L2 in IL-15 DC vaccines would exhibit superior stimulatory potential. In this paper, we successfully implemented PD-L silencing at the monocyte stage in the 3-day IL-15 DC culture protocol resulting in substantial downregulation of both PD-L1 and PD-L2 to levels below 30%.
Additionally, we validated that these DCs retain their specific characteristics, both at the level of phenotype and interferon gamma secretion. Evaluating their functional characteristics, we demonstrate that PD-L silencing does not affect the capacity to induce allogeneic proliferation. Ultimately designed to induce a durable tumor antigen-specific immune response, PD-L silenced IL-15 DCs were capable of surpassing PD-1-mediated inhibition by antigen-specific T cells.
Further corroborating the superior potency of short-term IL-15 DCs, the combination of immune stimulatory components during DC differentiation and maturation with in situ checkpoint inhibition supports further clinical translation.
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