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米托蒽醌在SH-SY5Y人细胞中比阿霉素毒性更大:一项“化疗脑”体外研究。

Mitoxantrone is More Toxic than Doxorubicin in SH-SY5Y Human Cells: A 'Chemobrain' In Vitro Study.

作者信息

Almeida Daniela, Pinho Rita, Correia Verónica, Soares Jorge, Bastos Maria de Lourdes, Carvalho Félix, Capela João Paulo, Costa Vera Marisa

机构信息

UCIBIO, REQUIMTE, Laboratory of Toxicology, Faculty of Pharmacy, University of Porto, Rua de Jorge Viterbo Ferreira, 228, 4050-313 Porto, Portugal.

FP-ENAS (Unidade de Investigação UFP em Energia, Ambiente e Saúde), CEBIMED (Centro de Estudos em Biomedicina), Faculdade de Ciências da Saúde, Universidade Fernando Pessoa, 4249-004 Porto, Portugal.

出版信息

Pharmaceuticals (Basel). 2018 May 5;11(2):41. doi: 10.3390/ph11020041.

Abstract

The potential neurotoxic effects of anticancer drugs, like doxorubicin (DOX) and mitoxantrone (MTX; also used in multiple sclerosis), are presently important reasons for concern, following epidemiological data indicating that cancer survivors submitted to chemotherapy may suffer cognitive deficits. We evaluated the in vitro neurotoxicity of two commonly used chemotherapeutic drugs, DOX and MTX, and study their underlying mechanisms in the SH-SY5Y human neuronal cell model. Undifferentiated human SH-SY5Y cells were exposed to DOX or MTX (0.13, 0.2 and 0.5 μM) for 48 h and two cytotoxicity assays were performed, the 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium (MTT) reduction and the neutral red (NR) incorporation assays. Phase contrast microphotographs, Hoechst, and acridine orange/ethidium bromide stains were performed. Mitochondrial membrane potential was also assessed. Moreover, putative protective drugs, namely the antioxidants -acetyl-l-cysteine (NAC; 1 mM) and 100 μM tiron, the inhibitor of caspase-3/7, Ac-DEVD-CHO (100 μM), and a protein synthesis inhibitor, cycloheximide (CHX; 10 nM), were tested to prevent DOX- or MTX-induced toxicity. The MTT reduction assay was also done in differentiated SH-SY5Y cells following exposure to 0.2 μM DOX or MTX. MTX was more toxic than DOX in both cytotoxicity assays and according to the morphological analyses. MTX also evoked a higher number of apoptotic nuclei than DOX. Both drugs, at the 0.13 μM concentration, caused mitochondrial membrane potential depolarization after a 48-h exposure. Regarding the putative neuroprotectors, 1 mM NAC was not able to prevent the cytotoxicity caused by either drug. Notwithstanding, 100 μM tiron was capable of partially reverting MTX-induced cytotoxicity in the NR uptake assay. One hundred μM Ac-DEVD-CHO and 10 nM cycloheximide (CHX) also partially prevented the toxicity induced by DOX in the NR uptake assay. MTX was more toxic than DOX in differentiated SH-SY5Y cells, while MTX had similar toxicity in differentiated and undifferentiated SH-SY5Y cells. In fact, MTX was the most neurotoxic drug tested and the mechanisms involved seem dissimilar among drugs. Thus, its toxicity mechanisms need to be further investigated as to determine the putative neurotoxicity for multiple sclerosis and cancer patients.

摘要

抗癌药物如阿霉素(DOX)和米托蒽醌(MTX;也用于治疗多发性硬化症)的潜在神经毒性作用,是目前令人担忧的重要原因,流行病学数据表明接受化疗的癌症幸存者可能会出现认知缺陷。我们评估了两种常用化疗药物DOX和MTX的体外神经毒性,并在SH-SY5Y人神经元细胞模型中研究其潜在机制。将未分化的人SH-SY5Y细胞暴露于DOX或MTX(0.13、0.2和0.5μM)48小时,并进行两种细胞毒性试验,即3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐(MTT)还原试验和中性红(NR)摄取试验。进行了相差显微镜照片、Hoechst染色和吖啶橙/溴化乙锭染色。还评估了线粒体膜电位。此外,测试了假定的保护药物,即抗氧化剂N-乙酰-L-半胱氨酸(NAC;1 mM)和100μM替诺,半胱天冬酶-3/7抑制剂Ac-DEVD-CHO(100μM),以及蛋白质合成抑制剂环己酰亚胺(CHX;10 nM),以预防DOX或MTX诱导的毒性。在分化的SH-SY5Y细胞暴露于0.2μM DOX或MTX后,也进行了MTT还原试验。在两种细胞毒性试验以及根据形态学分析中,MTX比DOX毒性更大。MTX诱导的凋亡细胞核数量也比DOX多。两种药物在0.13μM浓度下,暴露48小时后均导致线粒体膜电位去极化。关于假定的神经保护剂,1 mM NAC不能预防两种药物引起的细胞毒性。尽管如此,100μM替诺在NR摄取试验中能够部分逆转MTX诱导的细胞毒性。100μM Ac-DEVD-CHO和10 nM环己酰亚胺(CHX)在NR摄取试验中也部分预防了DOX诱导的毒性。在分化的SH-SY5Y细胞中,MTX比DOX毒性更大,而MTX在分化和未分化的SH-SY5Y细胞中的毒性相似。事实上,MTX是所测试的最具神经毒性的药物,并且所涉及的机制在不同药物之间似乎不同。因此,需要进一步研究其毒性机制,以确定对多发性硬化症患者和癌症患者的假定神经毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d1c/6027466/6887705cf858/pharmaceuticals-11-00041-g001.jpg

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