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穿透素-OLFM4 致敏的树突状细胞抑制小鼠黑色素瘤的生长和转移

英文原题:Dendritic cells pulsed with penetratin-OLFM4 inhibit the growth and metastasis of melanoma in mice.

查看英文原题

Dendritic cells pulsed with penetratin-OLFM4 inhibit the growth and metastasis of melanoma in mice.

PubMed 2024/07/04(内容时间) Biomed Pharmacother

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中文摘要

癌症干细胞(CSCs)能够自我更新和分化,导致肿瘤异质性、转移和复发。其对包括免疫治疗在内的治疗手段的耐药性,凸显了靶向CSCs以实现完全缓解和预防复发的重要性。Olfactomedin 4(OLFM4)是一种与结直肠癌等多种癌症相关的标志物,表达于CSCs上,促进免疫逃逸和肿瘤发生。

然而,其作为CSC特异性免疫治疗靶点的潜力仍未被充分探索。本研究的主要目的是评估以树突状细胞(DC)为基础的疫苗靶向OLFM4在抑制肿瘤生长和转移方面的有效性。为改善抗原递送和免疫应答,将OLFM4与来自果蝇触角足蛋白的蛋白转导结构域(PTD)——穿透肽(penetratin)偶联,构建融合蛋白(P-OLFM4)。将负载P-OLFM4的DCs(DCs [P-OLFM4])与负载OLFM4的DCs(DCs [OLFM4])及PBS(DCs [PBS])的疗效进行比较。与DCs [PBS]相比,DCs [P-OLFM4]抑制肿瘤生长达91.2 %,并显著减少OLFM4+黑色素瘤细胞的肺转移达97 %。与DCs [PBS]相比,DCs [OLFM4]也显示肺转移减少59.7 %。用DCs [P-OLFM4]免疫可增强小鼠中OLFM4特异性T细胞增殖、干扰素-γ产生和细胞毒性T细胞活性。

结果表明,OLFM4是CSC聚焦免疫治疗的可行靶点。DC [P-OLFM4]疫苗可引发强效免疫应答,显著抑制肿瘤生长和转移。该策略有望开发出更有效地针对CSC的癌症治疗方法,通过降低肿瘤复发和转移的可能性,可能带来更好的患者结局。

展开英文摘要原文

Cancer stem cells (CSCs) can self-renew and differentiate, contributing to tumor heterogeneity, metastasis, and recurrence. Their resistance to therapies, including immunotherapy, underscores the importance of targeting them for complete remission and relapse prevention. Olfactomedin 4 (OLFM4), a marker associated with various cancers such as colorectal cancer, is expressed on CSCs promoting immune evasion and tumorigenesis.

However, its potential as a target for CSC-specific immunotherapy remains underexplored. The primary aim of this study is to evaluate the effectiveness of targeting OLFM4 with dendritic cell (DC)-based vaccines in inhibiting tumor growth and metastasis. To improve antigen delivery and immune response, OLFM4 was conjugated with a protein-transduction domain (PTD) from the antennapedia of Drosophila called penetratin, creating a fusion protein (P-OLFM4). The efficacy of DCs pulsed with P-OLFM4 (DCs [P-OLFM4]) was compared to DCs pulsed with OLFM4 (DCs [OLFM4]) and PBS (DCs [PBS]). DCs [P-OLFM4] inhibited tumor growth by 91. 2 % and significantly reduced lung metastasis of OLFM4+ melanoma cells by 97 %, compared to the DCs [PBS].

DCs [OLFM4] also demonstrated a reduction in lung metastasis by 59. 7 % compared to DCs [PBS]. Immunization with DCs [P-OLFM4] enhanced OLFM4-specific T-cell proliferation, interferon-γ production, and cytotoxic T cell activity in mice. The results indicate that OLFM4 is a viable target for CSC-focused immunotherapy.

DC [P-OLFM4] vaccines can elicit robust immune responses, significantly inhibiting tumor growth and metastasis. This strategy holds promise for developing more effective cancer treatments that specifically target CSCs, potentially leading to better patient outcomes by reducing the likelihood of tumor relapse and metastasis.

论文信息

作者
Baek BS、Park H、Choi JW、Lee EY、Youn JI、Seong SY
第一作者单位
Wide River Institute of Immunology, Seoul National University College of Medicine, Hongcheon, Gangwon Province, South Korea; Department of Biomedical Sciences, South Korea.South Korea
通讯作者单位
Wide River Institute of Immunology, Seoul National University College of Medicine, Hongcheon, Gangwon Province, South Korea; Department of Biomedical Sciences, South Korea; Department of Microbiology and Immunology, Seoul National University College of Medicine, Seoul, Republic of Korea; Shaperon Inc. Ltd, Seoul, South Korea. Electronic address: seongsy@snu.ac.kr.South Korea
期刊
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie2024 Aug
原文标识
PubMed 38968793 · DOI 10.1016/j.biopha.2024.117083