Small Animal Clinic, University of Veterinary Medicine Hannover, 30559 Hannover, Germany.
Division of Medicine, Haematology, Oncology and Palliative Medicine, University of Rostock, 18057 Rostock, Germany.
Int J Mol Sci. 2021 Nov 13;22(22):12289. doi: 10.3390/ijms222212289.
Claudin (CLDN) proteins are commonly expressed in cancers and targeted in novel therapeutic approaches. The C-terminal of enterotoxin (C-CPE) efficiently binds several claudins. In this study, recombinant C-CPE conjugated to gold nanoparticles (AuNPs) has been used for prostate adenocarcinoma (PAC) and transitional cell carcinoma (TCC) cell killing in vitro using gold-nanoparticle-mediated laser perforation (GNOME-LP). A PAC and TCC cell lines, as well as red fluorescence variants, allowing deep tissue imaging, were used. CLDN-3, -4, and -7 expression was confirmed by qPCR and immunofluorescences. The binding of C-CPE-AuNPs complexes on the cell surface was examined by scanning electron microscopy (SEM). Further, transcriptome analysis was carried out to evaluate the effect of C-CPE binder on the biological response of treated cells. Directed C-CPE-AuNP binding verified the capability to target CLDN receptors. Transcriptome analysis showed that C-CPE binding may activate immune and inflammatory responses but does not directly affect cell survival. Cancer cells ablation was demonstrated using a combination of GNOME-LP and C-CPE-AuNPs treatment reducing tumor cell viability to less than 10% depending on cell line. The fluorescent cell lines and the verified proof of concept in vitro provide the basis for perspective xenograft studies in an animal model.
紧密连接蛋白(CLDN)在癌症中广泛表达,并成为新的治疗方法的靶向目标。肠毒素 C 端(C-CPE)能够有效地结合多种紧密连接蛋白。在这项研究中,使用了与金纳米粒子(AuNPs)偶联的重组 C-CPE,通过金纳米粒子介导的激光穿孔(GNOME-LP)进行体外前列腺腺癌(PAC)和移行细胞癌(TCC)细胞杀伤。使用了 PAC 和 TCC 细胞系以及红色荧光变体,以允许进行深层组织成像。通过 qPCR 和免疫荧光证实了 CLDN-3、-4 和 -7 的表达。通过扫描电子显微镜(SEM)检查 C-CPE-AuNPs 复合物在细胞表面的结合情况。进一步进行了转录组分析,以评估 C-CPE 结合物对处理细胞的生物学反应的影响。定向 C-CPE-AuNP 结合验证了靶向 CLDN 受体的能力。转录组分析表明,C-CPE 结合可能会激活免疫和炎症反应,但不会直接影响细胞存活。使用 GNOME-LP 和 C-CPE-AuNPs 联合治疗,证明了癌细胞消融,根据细胞系的不同,将肿瘤细胞活力降低至低于 10%。荧光细胞系和已验证的体外概念验证为在动物模型中进行异种移植研究提供了基础。