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热量限制作为 VM 小鼠恶性脑癌的抗侵袭治疗方法。

Calorie restriction as an anti-invasive therapy for malignant brain cancer in the VM mouse.

机构信息

Boston College, 140 Commonwealth Avenue, Chestnut Hill, MA 02467, U.S.A.

出版信息

ASN Neuro. 2010 Jul 23;2(3):e00038. doi: 10.1042/AN20100002.

Abstract

GBM (glioblastoma multiforme) is the most aggressive and invasive form of primary human brain cancer. We recently developed a novel brain cancer model in the inbred VM mouse strain that shares several characteristics with human GBM. Using bioluminescence imaging, we tested the efficacy of CR (calorie restriction) for its ability to reduce tumour size and invasion. CR targets glycolysis and rapid tumour cell growth in part by lowering circulating glucose levels. The VM-M3 tumour cells were implanted intracerebrally in the syngeneic VM mouse host. Approx. 12-15 days post-implantation, brains were removed and both ipsilateral and contralateral hemispheres were imaged to measure bioluminescence of invading tumour cells. CR significantly reduced the invasion of tumour cells from the implanted ipsilateral hemisphere into the contralateral hemisphere. The total percentage of Ki-67-stained cells within the primary tumour and the total number of blood vessels was also significantly lower in the CR-treated mice than in the mice fed ad libitum, suggesting that CR is anti-proliferative and anti-angiogenic. Our findings indicate that the VM-M3 GBM model is a valuable tool for studying brain tumour cell invasion and for evaluating potential therapeutic approaches for managing invasive brain cancer. In addition, we show that CR can be effective in reducing malignant brain tumour growth and invasion.

摘要

GBM(多形性胶质母细胞瘤)是最具侵袭性和侵略性的原发性人脑癌。我们最近在近交系 VM 小鼠中开发了一种新型脑癌模型,该模型与人 GBM 具有多种相似特征。我们使用生物发光成像技术测试了 CR(热量限制)的功效,以评估其减少肿瘤大小和侵袭的能力。CR 通过降低循环葡萄糖水平,靶向糖酵解和肿瘤细胞的快速生长。VM-M3 肿瘤细胞被植入同基因 VM 小鼠宿主的脑内。植入后约 12-15 天,取出大脑并对同侧和对侧半球进行成像,以测量侵袭性肿瘤细胞的生物发光。CR 显著降低了肿瘤细胞从植入的同侧半球向对侧半球的侵袭。CR 治疗组小鼠原发肿瘤中 Ki-67 染色细胞的总百分比和血管总数也明显低于自由进食组,这表明 CR 具有抗增殖和抗血管生成作用。我们的研究结果表明,VM-M3GBM 模型是研究脑肿瘤细胞侵袭和评估治疗侵袭性脑癌的潜在治疗方法的有价值的工具。此外,我们表明 CR 可以有效减少恶性脑肿瘤的生长和侵袭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e56e/2908744/c25b5f8e3063/an002e038f01.jpg

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