课题基金 / 基金详情

Increased Prenatal Glucocorticoids on Vascularization in the Paraventricular Nucl

Increased Prenatal Glucocorticoids on Vascularization in the Paraventricular Nucl
产前糖皮质激素增加对室旁核血管化的影响
批准号:
8529734
负责人:
Krystle Anne Frahm
金额:
$2.69万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-01 至 2014-05-31

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中文摘要
翻译
描述(申请人提供):到2020年,患有重度抑郁症(MDD)和心血管疾病(CVD)的人将成为导致残疾的头号原因(NIMH)。重度抑郁症和心血管疾病对人类痛苦和经济造成的单独和集体的毁灭性损失使我们认识到,我们需要了解这些疾病的潜在机制,以减少其发病率。下丘脑室旁核(PVN)的功能障碍由于其包含的神经元类型而为其机制提供了一个可能的位点。PVN的神经元整合来自大脑多个区域和样本激素和情绪状态的信息,通过其各种细胞类型产生有组织的输出。与周围的大脑相比,PVN也含有致密的血管基质。我一开始发现这个密度很容易改变,但是
英文摘要
DESCRIPTION (provided by applicant): By 2020, people suffering from both major depressive disorder (MDD) and cardiovascular disease (CVD) will be the number one cause of disability (NIMH). The devastating toll MDD and CVD have independently and collectively on human suffering and the economy drives home the fact we need to understand the mechanisms underlying these disorders to reduce their incidence. Dysfunction in the paraventricular nucleus of the hypothalamus (PVN) provides one possible site for mechanisms due to the type of neurons it encompasses. The neurons of the PVN integrate information from multiple brain regions and sample hormone and emotional status to produce an organized output through its various cell types. The PVN also contains a dense matrix of blood vessels compared to surrounding brain. I originally discovered that this density is susceptible to alterations, but the roles of the dense vasculature and the mechanisms for their development are still unknown. This proposal consists of two specific aims testing the hypotheses that increased prenatal glucocorticoids will 1) change the permeability blood-brain barrier through altering its molecular components in vivo and in vitro, and 2) this will result in depressive-like behaviors and alter autonomic function in adulthood. Real time analyses using organotypic brain slices from mice fluorescently expressing GFP under the control of the Tie2 promoter selectively in endothelial cells will help determine if excess glucocorticoids inhibit angiogenesis and increase proteins important for forming the blood-brain barrier. Changes in the neurovascular relationships in the PVN may be an important locus for understanding disorders of the hypothalamic-pituitary-adrenal axis with potential impact for mood disorders and other comorbid disorders including cardiovascular disease. All studies will investigate both male and female mice. This training plan was created jointly by Ms. Frahm and Dr. Tobet and will provide the necessary tools for Ms. Frahm to become an independent scientist.
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