Select estrogens within the complex formulation of conjugated equine estrogens (Premarin®) are protective against neurodegenerative insults:: Implications for a composition of estrogen therapy to promote neuronal function and prevent Alzheimer's disease

被引:76
作者
Zhao, LQ [1 ]
Brinton, RD [1 ]
机构
[1] Univ So Calif, Dept Mol Pharmacol & Toxicol, Norris Fdn Lab Neurosci Res, Pharmaceut Sci Ctr, Los Angeles, CA 90089 USA
关键词
D O I
10.1186/1471-2202-7-24
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Results of the Women's Health Initiative Memory Study ( WHIMS) raised concerns regarding the timing and formulation of hormone interventions. Conjugated equine estrogens (CEE), used as the estrogen therapy in the WHIMS trial, is a complex formulation containing multiple estrogens, including several not secreted by human ovaries, as well as other biologically active steroids. Although the full spectrum of estrogenic components present in CEE has not yet been resolved, 10 estrogens have been identified. In the present study, we sought to determine which estrogenic components, at concentrations commensurate with their plasma levels achieved following a single oral dose of 0.625 mg CEE ( the dose used in the WHIMS trial) in women, are neuroprotective and whether combinations of those neuroprotective estrogens provide added benefit. Further, we sought, through computer-aided modeling analyses, to investigate the potential correlation of the molecular mechanisms that conferred estrogen neuroprotection with estrogen interactions with the estrogen receptor (ER). Results: Cultured basal forebrain neurons were exposed to either beta-amyloid(25-35) or excitotoxic glutamate with or without pretreatment with estrogens followed by neuroprotection analyses. Three indicators of neuroprotection that rely on different aspects of neuronal damage and viability, LDH release, intracellular ATP level and MTT formazan formation, were used to assess neuroprotective efficacy. Results of these analyses indicate that the estrogens, 17 alpha-estradiol, 17 beta-estradiol, equilin, 17 alpha-dihydroequilin, equilinen, 17 alpha-dihydroequilenin, 17 beta-dihydroequilenin, and. 8,9-dehydroestrone were each significantly neuroprotective in reducing neuronal plasma membrane damage induced by glutamate excitotoxicity. Of these estrogens, 17 beta-estradiol and Delta(8,9)-dehydroestrone were effective in protecting neurons against beta-amyloid(25-35)- induced intracellular ATP decline. Coadministration of two out of three neuroprotective estrogens, 17 beta-estradiol, equilin and Delta(8,9)-dehydroestrone, exerted greater neuroprotective efficacy than individual estrogens. Computer-aided analyses to determine structure/function relationships between the estrogenic structures and their neuroprotective activity revealed that the predicted intermolecular interactions of estrogen analogues with ER correlate to their overall neuroprotective efficacy. Conclusion: The present study provides the first documentation of the neuroprotective profile of individual estrogens contained within the complex formulation of CEE at concentrations commensurate with their plasma levels achieved after an oral administration of 0.625 mg CEE in women. Our analyses demonstrate that select estrogens within the complex formulation of CEE contribute to its neuroprotective efficacy. Moreover, our data predict that the magnitude of neuroprotection induced by individual estrogens at relatively low concentrations may be clinically undetectable and ineffective, whereas, a combination of select neuroprotective estrogens could provide an increased and clinically meaningful efficacy. More importantly, these data suggest a strategy for determining neurological efficacy and rational design and development of a composition of estrogen therapy to alleviate climacteric symptoms, promote neurological health, and prevent age-related neurodegeneration, such as AD, in postmenopausal women.
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共 57 条
[1]   Anti-oxidative neuroprotection by estrogens in mouse cortical cultures [J].
Bae, YH ;
Hwang, JY ;
Kim, YH ;
Koh, JY .
JOURNAL OF KOREAN MEDICAL SCIENCE, 2000, 15 (03) :327-336
[2]   Estrogen-replacement therapy and Alzheimer's disease in the Italian longitudinal study on aging [J].
Baldereschi, M ;
Di Carlo, A ;
Lepore, V ;
Bracco, L ;
Maggi, S ;
Grigoletto, F ;
Scarlato, C ;
Amaducci, L .
NEUROLOGY, 1998, 50 (04) :996-1002
[3]   Neuroprotection against oxidative stress by estrogens: Structure-activity relationship [J].
Behl, C ;
Skutella, T ;
Lezoualch, F ;
Post, A ;
Widmann, M ;
Newton, CJ ;
Holsboer, F .
MOLECULAR PHARMACOLOGY, 1997, 51 (04) :535-541
[4]  
Bhavnani BR, 1998, P SOC EXP BIOL MED, V217, P6
[5]   INTERACTION OF RING-B UNSATURATED ESTROGENS WITH ESTROGEN-RECEPTORS OF HUMAN ENDOMETRIUM AND RAT UTERUS [J].
BHAVNANI, BR ;
WOOLEVER, CA .
STEROIDS, 1991, 56 (04) :201-210
[6]   The women's health initiative estrogen replacement therapy is neurotrophic and neuroprotective [J].
Brinton, RD ;
Chen, SH ;
Montoya, M ;
Hsieh, D ;
Minaya, J ;
Kim, J ;
Chu, HP .
NEUROBIOLOGY OF AGING, 2000, 21 (03) :475-496
[7]   Impact of estrogen therapy on Alzheimer's disease - A fork in the road? [J].
Brinton, RD .
CNS DRUGS, 2004, 18 (07) :405-422
[8]   Equilin, a principal component of the estrogen replacement therapy premarin, increases the growth of cortical neurons via an NMDA receptor-dependent mechanism [J].
Brinton, RD ;
Proffitt, P ;
Tran, J ;
Luu, R .
EXPERIMENTAL NEUROLOGY, 1997, 147 (02) :211-220
[9]   17 beta-estradiol enhances the outgrowth and survival of neocortical neurons in culture [J].
Brinton, RD ;
Tran, J ;
Proffitt, P ;
Montoya, M .
NEUROCHEMICAL RESEARCH, 1997, 22 (11) :1339-1351
[10]  
Brinton RD, 2003, JAMA-J AM MED ASSOC, V290, P1706, DOI 10.1001/jama.290.13.1706-a