RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Pseudocowpox virus, a novel vector to enhance the therapeutic efficacy of antitumor vaccination.
Pseudocowpox virus, a novel vector to enhance the therapeutic efficacy of antitumor vaccination.
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我们提出 PCPV 作为一种适用于个性化癌症疫苗领域的病毒载体,特别是用于异源 prime-boost 方案。
抗肿瘤病毒疫苗,尤其是痘病毒疫苗,是临床开发和转化研究的一个活跃领域。为了提高疗效和治疗结果,人们正在寻找新的病毒载体,重点在于其刺激先天免疫、展示肿瘤抗原和诱导特异性T细胞反应的能力。
我们以感染PBMC培养物中IFN-α分泌水平为筛选标准,筛选具有增强固有免疫和适应性免疫刺激作用的新型痘病毒载体。在体外和体内评估了病毒的有效性。
牛假牛痘病毒(PCPV)在几种痘病毒中脱颖而出,因其能够诱导显著的IFN-α分泌。PCPV能有效激活人单核细胞和树突状细胞、促进NK细胞脱颗粒,并逆转MDSC诱导的T细胞抑制,同时对活化T细胞无攻击性。一种基于PCPV的疫苗,编码HPV16 E7蛋白(PCPV-E7),在TC1荷瘤小鼠中激发了强烈的抗原特异性T细胞应答。在瘤内注射PCPV-E7后,继以静脉注射癌症疫苗MVA-E7,获得了以CD8+ T细胞依赖方式的肿瘤完全消退。PCPV在MC38荷瘤小鼠中反复瘤内注射也证明具有活性,在不编码特定MC38抗原的情况下产生了肿瘤特异性T细胞应答。从转化角度来看,我们证明PCPV-E7能有效刺激HPV+感染癌症患者肿瘤引流淋巴结T细胞产生IFN-γ。
Antitumor viral vaccines, and more particularly poxviral vaccines, represent an active field for clinical development and translational research. To improve the efficacy and treatment outcome, new viral vectors are sought, with emphasis on their abilities to stimulate innate immunity, to display tumor antigens and to induce a specific T-cell response.
We screened for a new poxviral backbone with improved innate and adaptive immune stimulation using IFN-α secretion levels in infected PBMC cultures as selection criteria. Assessment of virus effectiveness was made in vitro and in vivo .
The bovine pseudocowpox virus (PCPV) stood out among several poxviruses for its ability to induce significant secretion of IFN-α. PCPV produced efficient activation of human monocytes and dendritic cells, degranulation of NK cells and reversed MDSC-induced T-cell suppression, without being offensive to activated T cells. A PCPV-based vaccine, encoding the HPV16 E7 protein (PCPV-E7), stimulated strong antigen-specific T-cell responses in TC1 tumor-bearing mice. Complete regression of tumors was obtained in a CD8 + T-cell-dependent manner after intratumoral injection of PCPV-E7, followed by intravenous injection of the cancer vaccine MVA-E7. PCPV also proved active when injected repeatedly intratumorally in MC38 tumor-bearing mice, generating tumor-specific T-cell responses without encoding a specific MC38 antigen. From a translational perspective, we demonstrated that PCPV-E7 effectively stimulated IFN-γ production by T cells from tumor-draining lymph nodes of HPV + -infected cancer patients.
We propose PCPV as a viral vector suitable for vaccination in the field of personalised cancer vaccines, in particular for heterologous prime-boost regimens.
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