CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Fully synthetic Tn-based three-component cancer vaccine using covalently linked TLR4 ligand MPLA and iNKT cell agonist KRN-7000 as built-in adjuvant effectively protects mice from tumor development.
Fully synthetic Tn-based three-component cancer vaccine using covalently linked TLR4 ligand MPLA and iNKT cell agonist KRN-7000 as built-in adjuvant effectively protects mice from tumor development.
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我们提出了一种新型自佐剂疫苗开发策略,该策略以不同类型的共价连接免疫刺激剂作为载体分子。以Tn抗原为模型,设计并合成了包含TLR4配体MPLA和iNKT细胞激动剂KRN7000的三组分疫苗(MPLA-Tn-KRN7000)。这将使用单一载体的全合成自佐剂疫苗研究扩展到了使用两种不同类型载体的研究。
同时合成了相应的两组分偶联疫苗Tn-MPLA、Tn-KRN7000和Tn-CRM197作为对照。免疫学评价发现,MPLA-Tn-KRN7000能引发强效的Tn特异性T细胞依赖性免疫。抗体能特异性识别、结合Tn阳性癌细胞并表现出补体依赖性细胞毒性。
此外,MPLA-Tn-KRN7000提高了肿瘤攻击小鼠的存活率和存活时间,且存活小鼠在无需任何额外治疗的情况下能排斥再次肿瘤攻击。与糖蛋白疫苗Tn-CRM197、两组分偶联疫苗Tn-MPLA和Tn-KRN7000、以及Tn-MPLA和Tn-KRN7000的物理混合物相比,MPLA-Tn-KRN7000在体外和体内均表现出最强的抗肿瘤细胞效果。野生型与TLR4敲除小鼠的免疫学研究比较,以及CD1d蛋白结合亲和力测试表明,共价连接的MPLA-KRN7000免疫刺激剂诱导了TLR4和iNKT细胞的协同激活,从而提高了Tn的免疫原性。这项工作证明MPLA-Tn-KRN7000有潜力成为候选疫苗,并为全合成疫苗设计提供了新方向。
We present a new strategy for self-adjuvanting vaccine development that has different types of covalently-linked immunostimulants as the carrier molecule. Using Tn antigen as the model, a three-component vaccine (MPLA-Tn-KRN7000) containing the TLR4 ligand MPLA and the iNKT cell agonist KRN7000 was designed and synthesized. This expands fully synthetic self-adjuvanting vaccine studies that use a single carrier to one with two different types of carriers.
The corresponding two-component conjugate vaccines Tn-MPLA, Tn-KRN7000 and Tn-CRM197 were also synthesized, as controls. The immunological evaluation found that MPLA-Tn-KRN7000 elicits robust Tn-specific and T cell-dependent immunity. The antibodies specifically recognized, bound to and exhibited complement-dependent cytotoxicity against Tn-positive cancer cells.
In addition, MPLA-Tn-KRN7000 increased the survival rate and survival time of tumor-challenged mice, and surviving mice reject further tumor attacks without any additional treatment. Compared to the glycoprotein vaccine Tn-CRM197, the two-component conjugate vaccines, Tn-MPLA and Tn-KRN7000, and the physical mixture of Tn-MPLA and Tn-KRN7000, MPLA-Tn-KRN7000 showed the most effect at combating tumor cells both in vitro and in vivo .
The comparison of immunological studies in wild-type and TLR4 knockout mice, along with the test of binding affinity to CD1d protein suggests that the covalently linked MPLA-KRN7000 immunostimulant induces a synergistic activation of TLR4 and iNKT cell that improves the immunogenicity of Tn. This work demonstrates that MPLA-Tn-KRN7000 has the potential to be a vaccine candidate and provides a new direction for fully synthetic vaccine design.
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