Liu Xiaoqing, Guo Yanxia, Sun Yujie, Chen Yu, Tan Wenzhi, Min Jung-Joon, Zheng Jin Hai
School of Biomedical Sciences, Hunan University, Changsha, China.
Department of Nuclear Medicine, Institute for Molecular Imaging and Theranostics, Chonnam National University Medical School and Hwasun Hospital, Hwasun, South Korea.
Front Microbiol. 2022 Jun 29;13:914575. doi: 10.3389/fmicb.2022.914575. eCollection 2022.
defective in guanosine 5'-diphosphate-3'-diphosphate (ppGpp) synthesis (ΔppGpp) is an attenuated strain with good biosafety and excellent anticancer efficacy. It has been widely applied in preclinical studies of anticancer therapy for various types of solid cancer. VNP20009 is another genetically modified auxotrophic strain with 108-kb deletion, , , and many single nucleotide polymorphisms (SNPs); it has shown promising therapeutic efficacy in various preclinical tumor models and entered phase I clinical trials. Here, the invasion activities and virulence of ΔppGpp were obviously lower than those of the VNP20009 strain when tested with cancer cells . In addition, the MC38 tumor-bearing mice showed comparable cancer suppression when treated with ΔppGpp or VNP20009 intravenously. However, the ΔppGpp-treated mice showed 16.7% of complete cancer eradication and prolonged survival in mice, whereas VNP20009 showed higher toxicity to animals, even with equal tumor size individually. Moreover, we found decreased levels of inflammatory cytokines in circulation but strengthened immune boost in tumor microenvironments of ΔppGpp-treated mice. Therefore, the engineered ΔppGpp has high potential for cancer therapeutics, and it is a promising option for future clinical cancer therapy.
鸟苷5'-二磷酸-3'-二磷酸(ppGpp)合成缺陷型(ΔppGpp)是一种具有良好生物安全性和出色抗癌疗效的减毒株。它已广泛应用于各种实体癌抗癌治疗的临床前研究。VNP20009是另一种基因改造的营养缺陷型菌株,有108-kb的缺失以及许多单核苷酸多态性(SNP);它在各种临床前肿瘤模型中显示出有前景治疗效果,并已进入I期临床试验。在这里,在用癌细胞进行测试时,ΔppGpp的侵袭活性和毒力明显低于VNP20009菌株。此外,用ΔppGpp或VNP20009静脉注射治疗MC38荷瘤小鼠时,显示出相当的癌症抑制效果。然而,用ΔppGpp治疗的小鼠有16.7%的癌症被完全根除且小鼠存活期延长,而VNP20009对动物显示出更高的毒性,即使个体肿瘤大小相同。此外,我们发现用ΔppGpp治疗的小鼠循环中炎症细胞因子水平降低,但肿瘤微环境中的免疫增强作用增强。因此,工程改造的ΔppGpp在癌症治疗方面具有很高潜力,是未来临床癌症治疗的一个有前景的选择。