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Structural and functional damage to the hippocampal neurovascular unit in diabetes-related depression 被引量:24

Structural and functional damage to the hippocampal neurovascular unit in diabetes-related depression
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摘要 Previous studies have shown that models of depression exhibit structural and functional changes to the neurovascular unit. Thus, we hypothesized that diabetes-related depression might be associated with damage to the hippocampal neurovascular unit. To test this hypothesis, neurons, astrocytes and endothelial cells were isolated from the brain tissues of rat embryos and newborn rats. Hippocampal neurovascular unit co-cultures were produced using the Transwell chamber co-culture system. A model of diabetes-related depression was generated by adding 150 mM glucose and 200 μM corticosterone to the culture system and compared with the neuron + astrocyte and astrocyte + endothelial cell co-culture systems. Western blot assay was used to measure levels of structural proteins in the hippocampal neurovascular unit co-culture system. Levels of basic fibroblast growth factor, angiogenic factor 1, glial cell line–derived neurotrophic factor, transforming growth factor β1, leukemia inhibitory factor and 5-hydroxytryptamine in the hippocampal neurovascular unit co-culture system were measured by enzyme-linked immunosorbent assay. Flow cytometry and terminal deoxynucleotidyl transferase(TdT)-mediated dUTP nick end labeling staining was used to assess neuronal apoptosis in the hippocampal neurovascular unit. The neurovascular unit triple cell co-culture system had better barrier function and higher levels of structural and secretory proteins than the double cell co-culture systems. In comparison, in the model of diabetes-related depression, the neurovascular unit was damaged with decreased barrier function, poor structural integrity and impaired secretory function. Moreover, neuronal apoptosis was markedly increased, and 5-hydroxytryptamine levels were reduced. These results suggest that diabetes-related depression is associated with structural and functional damage to the neurovascular unit. Our findings provide a foundation for further studies on the pathogenesis of diabetes-related depression. Previous studies have shown that models of depression exhibit structural and functional changes to the neurovascular unit. Thus, we hypothesized that diabetes-related depression might be associated with damage to the hippocampal neurovascular unit. To test this hypothesis, neurons, astrocytes and endothelial cells were isolated from the brain tissues of rat embryos and newborn rats. Hippocampal neurovascular unit co-cultures were produced using the Transwell chamber co-culture system. A model of diabetes-related depression was generated by adding 150 mM glucose and 200 μM corticosterone to the culture system and compared with the neuron + astrocyte and astrocyte + endothelial cell co-culture systems. Western blot assay was used to measure levels of structural proteins in the hippocampal neurovascular unit co-culture system. Levels of basic fibroblast growth factor, angiogenic factor 1, glial cell line–derived neurotrophic factor, transforming growth factor β1, leukemia inhibitory factor and 5-hydroxytryptamine in the hippocampal neurovascular unit co-culture system were measured by enzyme-linked immunosorbent assay. Flow cytometry and terminal deoxynucleotidyl transferase(TdT)-mediated dUTP nick end labeling staining was used to assess neuronal apoptosis in the hippocampal neurovascular unit. The neurovascular unit triple cell co-culture system had better barrier function and higher levels of structural and secretory proteins than the double cell co-culture systems. In comparison, in the model of diabetes-related depression, the neurovascular unit was damaged with decreased barrier function, poor structural integrity and impaired secretory function. Moreover, neuronal apoptosis was markedly increased, and 5-hydroxytryptamine levels were reduced. These results suggest that diabetes-related depression is associated with structural and functional damage to the neurovascular unit. Our findings provide a foundation for further studies on the pathogenesis of diabetes-related depression.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第2期289-297,共9页 中国神经再生研究(英文版)
基金 supported by the National Natural Science Foundation of China,No.81373578(to YHW),81573965(to YHW) the Natural Science Foundation of Hunan Province of China,No.2017JJ3241(to JL) the Education Department Scientific Research Foundation of Hunan Province of China,No.17C1229(to JL)
关键词 nerve REGENERATION hippocampus neurovascular unit neurons astrocytes brain microvascular cells cell culture co-culture diabetes-related DEPRESSION hyperglycemia corticosterone neural REGENERATION nerve regeneration hippocampus neurovascular unit neurons astrocytes brain microvascular cells cell culture co-culture diabetes-related depression hyperglycemia corticosterone neural regeneration
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  • 1韩冬,冯加纯,邓方,杨艺敏.缝隙连接对大鼠脑缺血再灌注后血脑屏障通透性的影响[J].中华神经科杂志,2007,40(7):447-451. 被引量:15
  • 2Egede L E, Ellis C. Diabetes and depression: global perspectives [ J ]. Diabetes Res Clin Pract, 2010,87 ( 3 ) : 302-312.
  • 3Tiziana L, Ernestina C, Shilpa N, et al. Diabetes and depression comorbidity and socio-economic status in low and middle income countries (LMICs) : a mapping of the evidence[J]. Global Health, 2012, 8:39.
  • 4Franqois Pouwer. Should we screen for emotional distress in type 2 diabetes mellitus [ J ]. Nat Rev Endocrinol, 2009, 5(12):665-671.
  • 5Prestele S, Aldenhoff J,Reiff J, et al. The HPA-axis as a possible link between depression, diabetes mellitus and cognitive dysfunction [ J ]. Fortsehr Neurol Psychiatr, 2003, 71 ( 1 ) :24-36.
  • 6Heim C, Nemeroff C B. Neurobiology of posttraumatic stress disorder[ J]. CNS Spectr, 2009 ; 14 ( Suppl 1 ) : 13-24.
  • 7McEwen B S. Stress and hippocampal plasticity [ J ]. Annu Rev Neurosci, 1999,22 ( Suppl 1 ) : 105-22.
  • 8Rosse T, Olivier R, Monney L, et al. Bcl-2 prolongs cell survial after Bax-induced release of cytochrome c [ J]. Nature, 1998, 391 (6666) :496-499.
  • 9Hui H,Dotta F, Di Mario U,et al. Role of easpases in the reglulation of apototic pancreatic islet beta-cells death [ J ]. J Cell Physiol, 2004,200 ( 2 ) : 177-200.
  • 10Li H,Zhu H, Xu C,et al. Cleavage of Bid by easpase 8 mediates the mitochondrial damage in the Fas pathway of apoptosis [J]. Ce11,1998;94(4):491-501.

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