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贝沙罗汀可使化疗引起的髓鞘松解正常化,并逆转小鼠的认知和感觉运动缺陷。

Bexarotene normalizes chemotherapy-induced myelin decompaction and reverses cognitive and sensorimotor deficits in mice.

机构信息

Division of Internal Medicine, Department of Symptom Research, University of Texas M.D. Anderson Cancer Center, 6355 MD Anderson Blvd, Unit 1055, Houston, TX, 77030, USA.

Department of Cancer Biology, University of Texas M.D. Anderson Cancer Center, Houston, TX, 77030, USA.

出版信息

Acta Neuropathol Commun. 2020 Nov 12;8(1):193. doi: 10.1186/s40478-020-01061-x.

Abstract

Frequently reported neurotoxic sequelae of cancer treatment include cognitive deficits and sensorimotor abnormalities that have long-lasting negative effects on the quality of life of an increasing number of cancer survivors. The underlying mechanisms are not fully understood and there is no effective treatment. We show here that cisplatin treatment of mice not only caused cognitive dysfunction but also impaired sensorimotor function. These functional deficits are associated with reduced myelin density and complexity in the cingulate and sensorimotor cortex. At the ultrastructural level, myelin abnormalities were characterized by decompaction. We used this model to examine the effect of bexarotene, an agonist of the RXR-family of nuclear receptors. Administration of only five daily doses of bexarotene after completion of cisplatin treatment was sufficient to normalize myelin density and fiber coherency and to restore myelin compaction in cingulate and sensorimotor cortex. Functionally, bexarotene normalized performance of cisplatin-treated mice in tests for cognitive and sensorimotor function. RNAseq analysis identified the TR/RXR pathway as one of the top canonical pathways activated by administration of bexarotene to cisplatin-treated mice. Bexarotene also activated neuregulin and netrin pathways that are implicated in myelin formation/maintenance, synaptic function and axonal guidance. In conclusion, short term treatment with bexarotene is sufficient to reverse the adverse effects of cisplatin on white matter structure, cognitive function, and sensorimotor performance. These encouraging findings warrant further studies into potential clinical translation and the underlying mechanisms of bexarotene for chemobrain.

摘要

经常报道的癌症治疗后的神经毒性后遗症包括认知缺陷和感觉运动异常,这些问题对越来越多的癌症幸存者的生活质量产生了持久的负面影响。其潜在机制尚未完全了解,也没有有效的治疗方法。我们在这里表明,顺铂治疗不仅会导致小鼠认知功能障碍,还会损害感觉运动功能。这些功能缺陷与扣带和感觉运动皮层中的髓鞘密度和复杂性降低有关。在超微结构水平上,髓鞘异常表现为解压缩。我们使用该模型来研究倍他罗汀(RXR 家族核受体的激动剂)的作用。在顺铂治疗完成后仅给予每日五次倍他罗汀治疗,就足以使扣带和感觉运动皮层中的髓鞘密度和纤维连贯性正常化,并恢复髓鞘的紧密性。在功能上,倍他罗汀使顺铂处理的小鼠在认知和感觉运动功能测试中的表现正常化。RNAseq 分析确定 TR/RXR 途径是倍他罗汀给药后顺铂处理小鼠中激活的顶级经典途径之一。倍他罗汀还激活了神经调节素和网蛋白途径,这些途径与髓鞘形成/维持、突触功能和轴突导向有关。总之,短期使用倍他罗汀足以逆转顺铂对大脑白质结构、认知功能和感觉运动表现的不良影响。这些令人鼓舞的发现值得进一步研究,以探讨倍他罗汀治疗化疗脑的潜在临床转化和作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60b8/7661216/77dd7605caff/40478_2020_1061_Fig1_HTML.jpg

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