Hypophyseal lipoapoptosis: Diabetes (db/db) mutation-associated cytolipidemia promotes pituitary cellular disruption and dysfunction

被引:9
作者
Garris B.L. [1 ]
Novikova L. [2 ]
Lau Y.-S. [2 ]
Garris D.R. [3 ]
机构
[1] Division of Cell Biology/Biophysics, School of Medicine, University of Missouri-Kansas City, Kansas City, MO 64110
[2] Division of Pharmacology, School of Pharmacy, University of Missouri-Kansas City, Kansas City, MO 64110
[3] Division of Cell Biology/Biophysics, School of Biological Sciences, University of Missouri-Kansas City, Kansas City, MO 64110
关键词
C57BL/KsJ mice; Cellular apoptosis; Diabetes (db/db) mutation; Diabetes-obesity syndrome; Hypercytolipidemia; Hypopituitary syndrome; Pituitary gland;
D O I
10.1023/B:PITU.0000044628.84041.99
中图分类号
学科分类号
摘要
Expression of the diabetes (db/db) mutation in C57BL/KsJ mice suppresses the female pituitary-gonadal axis via progressive cytolipidemic disruption of hypophyseal gonadotropin release, culminating in premature involution of the reproductive tract and manifest infertility. The current studies define the systemic, endocrine, cytochemical and structural apoptotic changes that result from pituitary hypercytolipidemia induced by db/db mutation expression in this Type II diabetes-obesity syndrome (DOS) model. Adult female C57BL/KsJ control (+/? genotype) and db/db littermates were monitored for systemic and cellular alterations in LH-, FSH- and gonadal steroid-secretion, and coincident pituitary apoptosis, as indexed by TUNEL labeled 3′ nuclear DNA-fragmentation, associated with cytolipid depositions. Obesity, hyperglycemia and hyperinsulinemia characterized all db/db-mutants relative to +/? groups. Serum progesterone (P) and estradiol (E2) concentrations were suppressed in db/db mutants coincident with decreased plasma LH and FSH concentrations relative to +/? values. Cytochemical analysis of anterior (AP) pituitary cell subtypes indicated that db/db mutants demonstrated prominent hypercytolipidemia relative to +/? pituitary cytoarchitecture. Cytolipidemic vacuoles were localized within protein vesiculateddb/db hypophyseal basophilic and acidophilic cell populations. Hypophyseal cytoadiposity in db/db AP cells was co-localized with prominent cellular apoptotic TUNEL labeling of nuclear 3′-DNA fragments in cells demonstrating vesicular depopulation and cytolytic vacuolization. These data represent the first demonstration of co-localized hypercytolipidemic and cytoapoptotic disruptive events occurring concurrently in a hypopituitary-hypogonadal syndrome model following expression of the Type II (NIDDM) diabetes-obesity syndrome in db/db-mutants. The coincident and progressive vascular-, interstitial- and cyto-lipidemic alterations in hypophyseal cytoarchitecture correlated with the concurrent apoptotic disruption of pituitary endocrine cytoarchitecture and supressed gonadal steroid synthesis, influences which collectively contribute to the premature involution of the pituitary-gonadal axis in C57BL/KsJ-db/db mice. © 2004 Kluwer Academic Publishers.
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页码:5 / 14
页数:9
相关论文
共 38 条
[1]  
Garris D.R., Estrogenic stimulation of hypothalamic-limbic system metabolism in ageing diabetic C57BL/KsJ mice, Neuroendocrinology, 68, pp. 424-429, (1998)
[2]  
Garris D.R., Depressed progesterone accumulation by brain and peripheral tissues of diabetic C57BL/KsJ mice: Normalization by estrogen therapy, Horm. Res., 25, pp. 37-48, (1987)
[3]  
Garris D.R., Obese (ob/ob) and diabetes (db/db) mutations: Two factors modulating brain and peripheral tissue uptake of estradiol in C57BL/KsJ mice, Dev. Brain Res., 35, pp. 153-157, (1987)
[4]  
Garris D.R., Age and diabetes-associated alterations in regional brain norepinephrine concentrations and adrenergic receptor populations in C57BL/KsJ mice, Dev. Brain Res., 51, pp. 161-166, (1990)
[5]  
Garris D.R., Morphometric analysis of obesity (ob/ob) and diabetes (db/db) associated hypothalamic neuronal degeneration in C57BL/KsJ mice, Brain Res., 501, pp. 162-170, (1989)
[6]  
Garris D.R., Developmental and regional changes in brain norepinephrine levels in diabetic C57BL/KsJ mice: Effects of estradiol and progesterone, Dev. Brain Res., 89, pp. 314-319, (1995)
[7]  
Garris D.R., Coleman D.L., Diabetes-associated changes in estradiol accumulation in the aging C57BL/KsJ mouse brain, Neurosci. Lett., 49, pp. 285-290, (1985)
[8]  
Garris D.R., Michael M.E., Regional glucose uptake in genetically diabetic C57BL/KsJ mice: Modulation by the opiate antagonist, Nalmefene, Brain Res., 445, pp. 262-267, (1988)
[9]  
Garris D.R., West R.L., Coleman D.L., Morphometric analysis of medial basal hypothalamic neuronal degeneration in diabetes db/db) mutant C57BL/KS mice: Relation to age and hyperglycemia, Dev. Brain Res., 20, pp. 161-168, (1985)
[10]  
Garris D.R., Williams S.K., Coleman D.L., Morgan C.R., Glucose utilization by the mouse brain: Influence of age and diabetes, Dev. Brain Res., 15, pp. 141-146, (1984)