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探究云克对前列腺癌骨转移的潜在分子机制

Investigating the Underlying Molecular Mechanisms of Yunke on Bone Metastases from Prostate Cancer.

作者信息

Liu Simin, Tian Zhiyuan, Zhang Taiming, Zhang Jirong, Huo Yanlei, Ma Chao

机构信息

Department of Nuclear Medicine, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, People's Republic of China.

Department of Nuclear Medicine, Zibo Ninth People's Hospital, Zibo, Shandong, People's Republic of China.

出版信息

Biologics. 2024 Jul 22;18:195-206. doi: 10.2147/BTT.S457188. eCollection 2024.

Abstract

OBJECTIVE

To explore analgesic effect and bone repair mechanism of non-radioactive technetium-99 conjugated with methylene diphosphonate (Tc-MDP, brand name, Yunke) on bone metastases (BM).

PROCEDURES

In vivo experiment, mouse BM models of prostate cancer RM-1 cell were constructed and divided into Control, Yunke, Tc+SnCl and MDP groups based on medicine composition. Tumor specimens were inspected for size, X-ray, microCT and histopathology. In vitro experiment, with Cell Counting Kit-8 (CCK8), scratch, clone, apoptosis, Polymerase Chain Reaction (PCR) and Western Blot experiments, effects of Yunke on RM-1 cells and osteoclast-related cells were observed.

RESULTS

In vivo experiment, there was no difference in tumor size between Yunke and control group. Contrasted with control group, in Yunke group, trabecular spacing (Tb.Sp) of tumor bone was lower, bone volume/total volume (BV/TV) on marrow cavity and bone cortex were higher. Tunnel staining showed that positive rate of apoptosis in Yunke group was higher than that in control group. Ki67 staining showed that Yunke could not inhibit proliferation of tumor cells. In vitro experiment, CCK8 and scratch experiments showed that Yunke neither can inhibit proliferation nor can inhibit migration of RM-1 cells. High concentration of Yunke promoted late apoptosis of RM-1 cells. Yunke could inhibit BMM cell proliferation, differentiation of osteoclasts, and osteoclast-related transcription factors. Yunke displayed different degrees of inhibitory effects on MAPKs signaling pathway during osteoclast differentiation. It had obvious inhibitory effects on osteoclast-related transcription factors, such as cFOS, NFATC1, ACP-5, CTSK, D2 and MMP-9, the strongest inhibitory effects were observed with ACP-5, CTSK and D2. Yunke also displayed different degrees of inhibitory effects on protein activities of JNK, pERK, ERK and pP38.

CONCLUSION

Yunke cannot inhibit the proliferation and migration of RM-1 cells, so we think it is not recommended for the treatment of primary tumors and prevention of occurrence of tumors metastatic to bones. The mechanism of therapeutic effect of Yunke on BM by inhibiting proliferation of BMM, inhibiting MAPKs signal transduction and activation of transcription factors during differentiation process of BMM-derived osteoclasts, inhibiting number and size of osteoclasts, inhibiting bone resorption and protecting bone destruction through enhancing bone hardness and bone mass. Thereby, we believe that Yunke is more suitable for promoting the repair induced by BMs, delaying its progression and reducing the occurrence of SREs.

摘要

目的

探讨非放射性锝-99与亚甲基二膦酸盐(锝[99mTc]亚甲基二膦酸盐,商品名:云克)结合对骨转移瘤(BM)的镇痛作用及骨修复机制。

方法

体内实验,构建前列腺癌RM-1细胞小鼠BM模型,根据药物成分分为对照组、云克组、锝+氯化亚锡组和亚甲基二膦酸盐组。对肿瘤标本进行大小、X线、显微CT及组织病理学检查。体外实验,通过细胞计数试剂盒-8(CCK8)、划痕、克隆、凋亡、聚合酶链反应(PCR)及蛋白质免疫印迹实验,观察云克对RM-1细胞及破骨细胞相关细胞的作用。

结果

体内实验,云克组与对照组肿瘤大小无差异。与对照组相比,云克组肿瘤骨小梁间距(Tb.Sp)较低,骨髓腔及骨皮质的骨体积/总体积(BV/TV)较高。隧道染色显示,云克组凋亡阳性率高于对照组。Ki67染色显示,云克不能抑制肿瘤细胞增殖。体外实验,CCK8及划痕实验显示,云克既不能抑制RM-1细胞增殖,也不能抑制其迁移。高浓度云克促进RM-1细胞晚期凋亡。云克可抑制骨髓巨噬细胞(BMM)细胞增殖、破骨细胞分化及破骨细胞相关转录因子。云克在破骨细胞分化过程中对丝裂原活化蛋白激酶(MAPKs)信号通路表现出不同程度的抑制作用。对破骨细胞相关转录因子如cFOS、活化T细胞核因子1(NFATC1)、抗酒石酸酸性磷酸酶5(ACP-5)、组织蛋白酶K(CTSK)、组织蛋白酶D2(D2)和基质金属蛋白酶9(MMP-9)有明显抑制作用,对ACP-5、CTSK和D2的抑制作用最强。云克对c-Jun氨基末端激酶(JNK)、磷酸化细胞外信号调节激酶(pERK)、细胞外信号调节激酶(ERK)和磷酸化p38蛋白活性也表现出不同程度的抑制作用。

结论

云克不能抑制RM-1细胞增殖和迁移,因此我们认为不推荐用于治疗原发性肿瘤及预防骨转移瘤的发生。云克对BM的治疗作用机制是通过抑制BMM增殖、抑制MAPKs信号转导及BMM来源破骨细胞分化过程中转录因子的激活,抑制破骨细胞数量和大小,抑制骨吸收并通过增加骨硬度和骨量保护骨破坏。由此,我们认为云克更适合促进BM诱导的修复,延缓其进展并减少骨相关事件(SREs)的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46f7/11278808/64e7e5ec8239/BTT-18-195-g0001.jpg

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