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Effects of estrogen receptor modulators on cytoskeletal proteins in the central nervous system 被引量:2

Effects of estrogen receptor modulators on cytoskeletal proteins in the central nervous system
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摘要 Estrogen receptor modulators are compounds of interest because of their estrogenic agonistic/antagonistic effects and tissue specificity. These compounds have many clinical applications, particularly for breast cancer treatment and osteoporosis in postmenopausal women, as well as for the treatment of climacteric symptoms. Similar to estrogens, neuroprotective effects of estrogen receptor modulators have been described in different models. However, the mechanisms of action of these compounds in the central nervous system have not been fully described. We conducted a systematic search to investigate the effects of estrogen receptor modulators in the central nervous system, focusing on the modulation of cytoskeletal proteins. We found that raloxifene, tamoxifen, and tibolone modulate some cytoskeletal proteins such as tau, microtuble-associated protein 1(MAP1), MAP2, neurofilament 38(NF38) by different mechanisms of action and at different levels: neuronal microfilaments, intermediate filaments, and microtubule-associated proteins. Finally, we emphasize the importance of the study of these compounds in the treatment of neurodegenerative diseases since they present the benefits of estrogens without their side effects. Estrogen receptor modulators are compounds of interest because of their estrogenic agonistic/antagonistic effects and tissue specificity. These compounds have many clinical applications, particularly for breast cancer treatment and osteoporosis in postmenopausal women, as well as for the treatment of climacteric symptoms. Similar to estrogens, neuroprotective effects of estrogen receptor modulators have been described in different models. However, the mechanisms of action of these compounds in the central nervous system have not been fully described. We conducted a systematic search to investigate the effects of estrogen receptor modulators in the central nervous system, focusing on the modulation of cytoskeletal proteins. We found that raloxifene, tamoxifen, and tibolone modulate some cytoskeletal proteins such as tau, microtuble-associated protein 1(MAP1), MAP2, neurofilament 38(NF38) by different mechanisms of action and at different levels: neuronal microfilaments, intermediate filaments, and microtubule-associated proteins. Finally, we emphasize the importance of the study of these compounds in the treatment of neurodegenerative diseases since they present the benefits of estrogens without their side effects.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第8期1231-1240,共10页 中国神经再生研究(英文版)
基金 supported by FIS/IMSS project No.FIS/IMSS/PROT/G13/1216 CGA received Beca de Excelencia en Investigación by Fundación IMSS,ACS JJSU received financial support from CIS/IMSS CONACy T,RPA received financial support from USC-CONACYT Postdoctoral Scholars Program
关键词 estrogen receptor modulators selective estrogen receptor modulators MICROTUBULES NEUROFILAMENTS TIBOLONE TAMOXIFEN RALOXIFENE estrogen receptor modulators selective estrogen receptor modulators microtubules neurofilaments tibolone tamoxifen raloxifene
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