脑液屏障的DCE-MRI:人脉络膜丛体内水循环。

IF 3.6 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Tissue Barriers Pub Date : 2022-01-02 Epub Date: 2021-09-18 DOI:10.1080/21688370.2021.1963143
Valerie C Anderson, Ian J Tagge, Aaron Doud, Xin Li, Charles S Springer, Joseph F Quinn, Jeffrey A Kaye, Katherine V Wild, William D Rooney
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引用次数: 5

摘要

脑液屏障处的代谢缺陷是老年人认知能力下降的一个日益被认识的特征。在血-脑脊液屏障处,水通过与钠/钾泵活性紧密耦合的过程沿脉络膜丛(CP)上皮沿大渗透梯度输送。在这里,我们使用动态对比增强MRI量化CP稳态水交换,并研究老年人水流出速率常数(kco)与认知功能障碍的关系。在11名轻度认知功能障碍的参与者中,研究人员测量了注射造影剂后纵向弛缓速率常数(R1)的时间变化[CI;73±6岁]和28例健康对照[CN];72±7年]。kco是通过改进的R1时间过程的两位点药代动力学交换分析确定的。Ktrans,对比剂外渗到间隙的测量也被确定。以神经心理测试成绩评估认知功能。CN组的kco平均为5.8±2.7 s-1, CI组降低2.4 s-1[约40%]。kco与全局认知和多认知领域有显著的关联。Ktrans平均为0.13±0.07 min-1,随着年龄的增长而下降[-0.006±0.002 min-1 year -1],但在CI和CN个体之间没有差异,也与认知表现没有关联。我们的研究结果表明,CP水流出率常数与认知功能障碍有关,并在晚年表现出与年龄相关的下降,这与大脑衰老特征的代谢紊乱一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

DCE-MRI of Brain Fluid Barriers: <i>In Vivo</i> Water Cycling at the Human Choroid Plexus.

DCE-MRI of Brain Fluid Barriers: <i>In Vivo</i> Water Cycling at the Human Choroid Plexus.

DCE-MRI of Brain Fluid Barriers: <i>In Vivo</i> Water Cycling at the Human Choroid Plexus.

DCE-MRI of Brain Fluid Barriers: In Vivo Water Cycling at the Human Choroid Plexus.

Metabolic deficits at brain-fluid barriers are an increasingly recognized feature of cognitive decline in older adults. At the blood-cerebrospinal fluid barrier, water is transported across the choroid plexus (CP) epithelium against large osmotic gradients via processes tightly coupled to activity of the sodium/potassium pump. Here, we quantify CP homeostatic water exchange using dynamic contrast-enhanced MRI and investigate the association of the water efflux rate constant (kco) with cognitive dysfunction in older individuals. Temporal changes in the longitudinal relaxation rate constant (R1) after contrast agent bolus injection were measured in a CP region of interest in 11 participants with mild cognitive dysfunction [CI; 73 ± 6 years] and 28 healthy controls [CN; 72 ± 7 years]. kco was determined from a modified two-site pharmacokinetic exchange analysis of the R1 time-course. Ktrans, a measure of contrast agent extravasation to the interstitial space was also determined. Cognitive function was assessed by neuropsychological test performance. kco averages 5.8 ± 2.7 s-1 in CN individuals and is reduced by 2.4 s-1 [ca. 40%] in CI subjects. Significant associations of kco with global cognition and multiple cognitive domains are observed. Ktrans averages 0.13 ± 0.07 min-1 and declines with age [-0.006 ± 0.002 min-1 yr-1], but shows no difference between CI and CN individuals or association with cognitive performance. Our findings suggest that the CP water efflux rate constant is associated with cognitive dysfunction and shows an age-related decline in later life, consistent with the metabolic disturbances that characterize brain aging.

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来源期刊
Tissue Barriers
Tissue Barriers MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
6.60
自引率
6.50%
发文量
25
期刊介绍: Tissue Barriers is the first international interdisciplinary journal that focuses on the architecture, biological roles and regulation of tissue barriers and intercellular junctions. We publish high quality peer-reviewed articles that cover a wide range of topics including structure and functions of the diverse and complex tissue barriers that occur across tissue and cell types, including the molecular composition and dynamics of polarized cell junctions and cell-cell interactions during normal homeostasis, injury and disease state. Tissue barrier formation in regenerative medicine and restoration of tissue and organ function is also of interest. Tissue Barriers publishes several categories of articles including: Original Research Papers, Short Communications, Technical Papers, Reviews, Perspectives and Commentaries, Hypothesis and Meeting Reports. Reviews and Perspectives/Commentaries will typically be invited. We also anticipate to publish special issues that are devoted to rapidly developing or controversial areas of research. Suggestions for topics are welcome. Tissue Barriers objectives: Promote interdisciplinary awareness and collaboration between researchers working with epithelial, epidermal and endothelial barriers and to build a broad and cohesive worldwide community of scientists interesting in this exciting field. Comprehend the enormous complexity of tissue barriers and map cross-talks and interactions between their different cellular and non-cellular components. Highlight the roles of tissue barrier dysfunctions in human diseases. Promote understanding and strategies for restoration of tissue barrier formation and function in regenerative medicine. Accelerate a search for pharmacological enhancers of tissue barriers as potential therapeutic agents. Understand and optimize drug delivery across epithelial and endothelial barriers.
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