PO.CL06.02 · 临床研究
从遗传学和药理学角度抑制pink1可延长音猬因子(Sonic Hedgehog)驱动的髓母细胞瘤及相关小鼠模型的生存期
Genetic and pharmacologic suppression of pink1 prolongs survival in sonic hedgehog driven medulloblastoma and related mouse model
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摘要 Abstract
中文摘要
线粒体质量控制在帮助癌细胞存活方面发挥关键作用,但其对髓母细胞瘤的影响仍未充分了解。在此,我们通过药理学阻断其活性以及遗传功能丧失方法,在小鼠脑肿瘤模型中研究了线粒体激酶PINK1如何促进髓母细胞瘤生长。人髓母细胞瘤细胞MB004和D425在原位植入前用PINK1抑制剂预处理。Kaplan-Meier分析表明,与对照相比,接受PINK1抑制肿瘤细胞的小鼠生存期显著延长(MB004:p = 0.0288;D425:p = 0.0284),表明破坏PINK1可增强治疗易感性。为进一步评估Pink1在体内的作用,我们在Trp53-/-; Ptch1+/-背景下构建了不含Pink1的基因工程小鼠模型。这是一个成瘤率达90%的自发肿瘤形成模型。与Pink1活性的Trp53-/-; Ptch1+/-小鼠相比,Pink1缺失显著延长了生存期(p = 0.0491),支持Pink1在音猬因子(Sonic Hedgehog)驱动的髓母细胞瘤中的促肿瘤作用。苏木精-伊红染色脑切片的组织病理学分析显示对照动物脑结构正常,而Trp53-/-; Ptch1+/-小鼠发生高级别肿瘤。有趣的是,Trp53-/-; Ptch1+/-; Pink1-/-小鼠脑显示肿瘤负荷减少并保留了更多组织结构,与所观察到的生存优势一致。总之,这些发现表明PINK1是髓母细胞瘤高效生长所必需的,并且无论通过急性药理学靶向还是永久性遗传破坏对其进行抑制,均可改善生存并减轻肿瘤病理。因此,靶向线粒体自噬通路(如破坏PINK1活性)可能代表髓母细胞瘤一种有前景的治疗策略,尤其是在耐药或高危疾病中。
查看英文原文 English abstract
Mitochondrial quality control plays a key role in helping cancer cells survive, but its impact on medulloblastoma is still not well understood. Here, we examined how the mitochondrial kinase PINK1 contributes to medulloblastoma growth by blocking its activity pharmacologically and by genetic loss-of-function approaches in mouse brain tumor models. Human medulloblastoma cells, MB004 and D425, were pretreated with a PINK1 inhibitor prior to orthotopic implantation. Kaplan-Meier analysis demonstrated significantly prolonged survival in mice receiving PINK1-inhibited tumor cells compared with controls (MB004: p = 0.0288; D425: p = 0.0284), indicating that disruption of PINK1 enhances therapeutic vulnerability. To further assess the role of Pink1 in vivo, we generated a genetically engineered mouse model without Pink1 in a Trp53-/-; Ptch1+/- background. This is a spontaneous tumor formation model at 90% rate. Pink1 deletion significantly increased survival compared with Pink1-active Trp53-/-; Ptch1+/- mice ( p = 0.0491), supporting a tumor-promoting role for Pink1 in Sonic Hedgehog-driven medulloblastoma. Histopathological analysis of hematoxylin and eosin stained brain sections presented normal brain structure in the control animals, while Trp53-/-; Ptch1+/- mice developed high-grade tumors. Interestingly, Trp53-/-; Ptch1+/-; Pink1-/- brains showed reduced tumor burden and retained more tissue structure, consistent with the observed survival advantage. Together, these findings demonstrate that PINK1 is required for efficient medulloblastoma growth and that its inhibition-either through acute pharmacologic targeting or permanent genetic disruption-improves survival and reduces tumor pathology. Targeting mitophagy pathways such as disruption of PINK1 activity may therefore represent a promising therapeutic strategy for medulloblastoma, particularly in resistant or high-risk disease.
利益披露 Disclosure
B. M. Alrfaei, None..
A. Almuaysib, None..
A. Aloraidi, None..
A. Assiri, None.