Li Wen, Fan Jin-Xuan, Zheng Di-Wei, Zhang Xian-Zheng
Key Laboratory of Biomedical Polymers of Ministry of Education, & Department of Chemistry, Wuhan University, Wuhan, 430072, P. R. China.
Department of Traditional Chinese Medicine, Zhongnan Hospital of Wuhan University, Wuhan, 430071, P. R. China.
Small. 2022 Dec;18(49):e2205193. doi: 10.1002/smll.202205193. Epub 2022 Oct 26.
Although anticancer vaccines have achieved certain effects in early clinical practice, T cell immunity as the most common responsive pattern of anticancer vaccines is still limited by unsatisfied tumor recognition and inhibition efficiency. As the critical step of T cell immunity, uptake and presentation of specific antigen by antigen-presenting cells (APC) can be activated by inflammation for enhancing the response of T cells to the antigen source. Here, a hybrid nanovaccine named PTh/MnO @M activated with a near-infrared ray (NIR) is prepared by coating an autologous tumor cell membrane on the surface of a polythiophene/MnO composite core. The photoelectrical material polythiophene can produce local microinflammation under NIR radiation and activate specific T cell antitumor immunity by promoting APC maturation and autologous tumor antigens presentation. Moreover, the synthesized nanovaccine PTh/MnO @M is shown to induce a significant antitumor immune response, effectively inhibit the progression of melanoma in mice, and significantly prolong the survival time of mice in vivo. This strategy aims to enhance T-cell immune responses by promoting antigen presentation, leading to effective and specific cancer therapy.
尽管抗癌疫苗在早期临床实践中已取得一定效果,但作为抗癌疫苗最常见反应模式的T细胞免疫,仍受肿瘤识别和抑制效率不尽人意的限制。作为T细胞免疫的关键步骤,抗原呈递细胞(APC)对特定抗原的摄取和呈递可被炎症激活,以增强T细胞对抗抗原源的反应。在此,通过在聚噻吩/MnO复合核表面包覆自体肿瘤细胞膜,制备了一种用近红外光(NIR)激活的名为PTh/MnO@M的混合纳米疫苗。光电材料聚噻吩在近红外辐射下可产生局部微炎症,并通过促进APC成熟和自体肿瘤抗原呈递来激活特异性T细胞抗肿瘤免疫。此外,合成的纳米疫苗PTh/MnO@M显示出能诱导显著的抗肿瘤免疫反应,有效抑制小鼠黑色素瘤的进展,并显著延长小鼠的体内存活时间。该策略旨在通过促进抗原呈递来增强T细胞免疫反应,从而实现有效且特异性的癌症治疗。