研究概要
体外研究显示,HB1.F3.CD.IFN-β细胞的存在促进了LAKs向MKN45细胞的迁移能力,并激活了其细胞毒性潜力。在MKN45异种移植的HIS小鼠中,用HB1.F3.CD.IFN-β细胞治疗导致细胞毒性T淋巴细胞(CTL)在整个肿瘤中的浸润增加,包括中央区域。此外,接受HB1.F3.CD.IFN-β治疗的组显示肿瘤中颗粒酶B表达增加,最终增强了CTLs的杀肿瘤潜力,并显著延缓了肿瘤生长。意义:这些结果表明,HB1.F3.CD.IFN-β细胞通过促进T细胞介导的免疫反应对GC发挥抗癌作用,而GENSTECs是GC的一种有前景的治疗策略。
研究思路结论见上方概要
目的
胃癌(GC)是一种侵袭性、致命性疾病,预后较差。通过基因工程神经干细胞(GENSTECs)进行的基因导向酶前药治疗已在多种恶性肿瘤中广泛研究,如乳腺癌、卵巢癌和肾癌。在本研究中,应用表达胞嘧啶脱氨酶和干扰素β的人神经干细胞(HB1.F3.CD.IFN-β)将无毒的5-氟胞嘧啶转化为细胞毒性5-氟尿嘧啶并分泌IFN-β。
方法
人淋巴因子激活的杀伤细胞(LAKs)通过白细胞介素-2刺激人外周血单个核细胞(PBMCs)生成,我们在体外评估了LAKs与GNESTECs或其条件培养基共培养后的细胞毒活性和迁移能力。通过移植人PBMCs,随后在NSG-B2m小鼠皮下接种MKN45细胞,构建了携带GC的人免疫系统(HIS)小鼠模型,以评估GENSTECs中T细胞介导的抗癌免疫活性的参与。
结果
体外研究显示,HB1.F3.CD.IFN-β细胞的存在促进了LAKs向MKN45细胞的迁移能力,并激活了其细胞毒性潜力。在MKN45异种移植的HIS小鼠中,用HB1.F3.CD.IFN-β细胞治疗导致细胞毒性T淋巴细胞(CTL)在整个肿瘤中的浸润增加,包括中央区域。此外,接受HB1.F3.CD.IFN-β治疗的组显示肿瘤中颗粒酶B表达增加,最终增强了CTLs的杀肿瘤潜力,并显著延缓了肿瘤生长。意义:这些结果表明,HB1.F3.CD.IFN-β细胞通过促进T细胞介导的免疫反应对GC发挥抗癌作用,而GENSTECs是GC的一种有前景的治疗策略。
展开英文摘要原文
AIMS: Gastric cancer (GC) is an invasive, fatal disease with a poor prognosis. Gene-directed enzyme prodrug therapy via genetically engineered neural stem cells (GENSTECs) has been widely studied in various malignancies, such as breast, ovarian, and renal cancer. In this study, the human neural stem cells expressing cytosine deaminase and interferon beta (HB1.F3.CD.IFN-β) cells were applied to convert non-toxic 5-fluorocytosine to cytotoxic 5-fluorouracil and secrete IFN-β.
MATERIALS AND METHODS: Human lymphokine-activated killer cells (LAKs) were generated by stimulating human peripheral blood mononuclear cells (PBMCs) by interleukin-2, and we evaluated the cytotoxic activity and migratory ability of LAKs co-cultured with GNESTECs or their conditioned media in vitro. A GC-bearing human immune system (HIS) mouse model was generated by transplanting human PBMCs followed by subcutaneous engraftment of MKN45 cells in NSG-B2m mice to evaluate the involvement of T cell-mediated anti-cancer immune activity of GENSTECs.
KEY FINDINGS: In vitro studies showed the presence of HB1.F3.CD.IFN-β cells facilitated the migration ability of LAKs to MKN45 cells and activated their cytotoxic potential. In MKN45-xenografted HIS mice, treatment with HB1.F3.CD.IFN-β cells resulted in increased cytotoxic T lymphocyte (CTL) infiltration throughout the tumor, including the central area. Moreover, the group treated to HB1.F3.CD.IFN-β showed increased granzyme B expression in the tumor, eventually enhancing the tumor-killing potential of CTLs and significantly delaying tumor growth.
SIGNIFICANCE: These results indicate that the HB1.F3.CD.IFN-β cells exert anti-cancer effects on GC by facilitating the T cell-mediated immune response, and GENSTECs are a promising therapeutic strategy for GC.
论文信息
- 作者
- Choi Y、Lee HK、Ahn D、Nam MW、Go RE、Choi KC
- 第一作者单位
- Laboratory of Biochemistry and Immunology, College of Veterinary Medicine, Chungbuk National University, Cheongju, Chungbuk, Republic of Korea.South Korea
- 通讯作者单位
- Laboratory of Biochemistry and Immunology, College of Veterinary Medicine, Chungbuk National University, Cheongju, Chungbuk, Republic of Korea. Electronic address: kchoi@cbu.ac.kr.South Korea
- 期刊
- Life sciences2023 Sep 1