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在α型-1 细胞因子存在下,联合 TLR-3/TLR-8 信号传导代表了一种新型且强效的树突状细胞 1 型抗癌成熟方案

英文原题:Combined TLR-3/TLR-8 Signaling in the Presence of α-Type-1 Cytokines Represents a Novel and Potent Dendritic Cell Type-1, Anti-Cancer Maturation Protocol.

查看英文原题

Combined TLR-3/TLR-8 Signaling in the Presence of α-Type-1 Cytokines Represents a Novel and Potent Dendritic Cell Type-1, Anti-Cancer Maturation Protocol.

PubMed 2022/02/28(内容时间) Cells Q2 · IF 6(JCR 2025)

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中文摘要

在基于抗肿瘤树突状细胞(DC)疫苗的体外制备过程中,其成熟仍然代表着生产过程中最关键的步骤之一。一种优越的DC疫苗应具备:广泛表达共刺激分子,具有卓越的1型极化能力,其特征是在与应答T细胞接触时能够产生IL-12p70,能有效地向趋化因子受体7(CCR7)配体迁移,并具有优越的激活细胞毒性T细胞应答的能力。随着下一代成熟方案的发现,已取得了重大进展,该方案涉及TLR-3激动剂(poly I:C)、肿瘤坏死因子(TNF)-α、白细胞介素(IL)-1β、干扰素(IFN)-γ和IFN-α,此后被称为α型-1成熟混合物。

我们展示了如何通过纳入TLR-8刺激(R848)来极大地增强这种组合,从而促进不同TLR信号通路之间的协同增强。为获得最大效率,TLR-3刺激应先于(称为pre I:C)R848/TNF-α/IL-1β/IFN-α/IFN-γ混合物的刺激。与用α型-1成熟混合物成熟的DCs(αDCs)相比,用pre I:C/R848/TNF-α/IL-1β/IFN-α/IFN-γ(称为zDCs)成熟的DCs显示出更高的CD80和CD86共刺激分子表达。

重要的是,在CD40配体刺激后(模拟DC-T细胞接触),zDCs在IL-12p70产生方面更为高效。与αDCs相比,zDCs还显示出对趋化因子配体(CCL)19和CCL21显著更强的迁移能力,并具有显著更强的同种异体刺激能力。

最后,zDCs在诱导黑色素瘤特异性CD8+ T细胞、CD8+ T细胞增殖和细胞毒性T细胞方面的能力也优于αDCs刺激的细胞,产生的IFN-γ约为后者的两倍,颗粒酶B也更多。

总之,我们提出了一种新颖且更优的DC成熟鸡尾酒,可轻松应用于未来试验中下一代DC疫苗的生产方案。

展开英文摘要原文

During the ex vivo generation of anti-cancer dendritic cell (DC)-based vaccines, their maturation still represents one of the most crucial steps of the manufacturing process. A superior DC vaccine should: possess extensive expression of co-stimulatory molecules, have an exceptional type-1 polarization capacity characterized by their ability to produce IL-12p70 upon contact with responding T cells, migrate efficiently toward chemokine receptor 7 (CCR7) ligands, and have a superior capacity to activate cytotoxic T cell responses.

A major advance has been achieved with the discovery of the next generation maturation protocol involving TLR-3 agonist (poly I:C), tumor necrosis factor (TNF)-α, interleukin (IL)-1β, interferon (IFN)-γ, and IFN-α, and has since been known as α-type-1 maturation cocktail.

We demonstrate how this combination can be greatly enhanced by the inclusion of a TLR-8 stimulation (R848), thereby contributing to potentiation between different TLR signaling pathways. For maximum efficiency, TLR-3 stimulation should precede (termed pre I:C) the stimulation with the R848/TNF-α/IL-1β/IFN-α/IFN-γ cocktail. When compared to DCs matured with α-type-1 maturation cocktail (αDCs), DCs matured with pre I:C/R848/TNF-α/IL-1β/IFN-α/IFN-γ (termed zDCs) displayed higher expression of CD80 and CD86 co-stimulatory molecules.

Importantly, after CD40-ligand stimulation, which simulates DC-T cell contact, zDCs were much more proficient in IL-12p70 production. In comparison to αDCs, zDCs also displayed a significantly greater migratory capacity toward chemokine ligands (CCL)19 and CCL21, and had a significantly greater allo-stimulatory capacity.

Finally, zDCs were also superior in their capacity to induce melanoma-specific CD8+ T cells, CD8+ T cell proliferation, and cytotoxic T cells, which produced approximately two times more IFN-γ and more granzyme B, than those stimulated with αDCs.

In conclusion, we present a novel and superior DC maturation cocktail that could be easily implemented into next generation DC vaccine manufacturing protocols in future trials.

论文信息

作者
Fevžer T、Poženel P、Zajc K、Tešić N、Švajger U
第一作者单位
Division of Gynaecology and Obstetrics, University Clinical Center Ljubljana, Šlajmerjeva 3, SI-1000 Ljubljana, Slovenia.Slovenia
通讯作者单位
Blood Transfusion Center of Slovenia, Šlajmerjeva 6, SI-1000 Ljubljana, Slovenia.Slovenia
文献类型
非美国政府资助研究
期刊
Cells2022 Feb 28
原文标识
PubMed 35269457 · DOI 10.3390/cells11050835