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Blood-brain barrier pathology in cerebral small vessel disease 被引量:5
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作者 ruxue jia Gemma Solé-Guardia Amanda J.Kiliaan 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第6期1233-1240,共8页
Cerebral small vessel disease is a neurological disease that affects the brain microvasculature and which is commonly observed among the elderly.Although at first it was considered innocuous,small vessel disease is no... Cerebral small vessel disease is a neurological disease that affects the brain microvasculature and which is commonly observed among the elderly.Although at first it was considered innocuous,small vessel disease is nowadays regarded as one of the major vascular causes of dementia.Radiological signs of small vessel disease include small subcortical infarcts,white matter magnetic resonance imaging hyperintensities,lacunes,enlarged perivascular spaces,cerebral microbleeds,and brain atrophy;however,great heterogeneity in clinical symptoms is observed in small vessel disease patients.The pathophysiology of these lesions has been linked to multiple processes,such as hypoperfusion,defective cerebrovascular reactivity,and blood-brain barrier dysfunction.Notably,studies on small vessel disease suggest that blood-brain barrier dysfunction is among the earliest mechanisms in small vessel disease and might contribute to the development of the hallmarks of small vessel disease.Therefore,the purpose of this review is to provide a new foundation in the study of small vessel disease pathology.First,we discuss the main structural domains and functions of the blood-brain barrier.Secondly,we review the most recent evidence on blood-brain barrier dysfunction linked to small vessel disease.Finally,we conclude with a discussion on future perspectives and propose potential treatment targets and interventions. 展开更多
关键词 blood-brain barrier dysfunction cerebral blood flow cerebral hypoperfusion endothelial dysfunction HYPERTENSION inflammation magnetic resonance imaging neurovascular unit oxidative stress small vessel disease tight junctions TRANSCYTOSIS
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低渗透油藏缓释型表面活性剂纳米载体研究 被引量:1
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作者 康万利 王康辉 +4 位作者 李哲 吕伟 杨红斌 贾茹雪 何瑛琦 《日用化学工业(中英文)》 CAS 北大核心 2022年第11期1147-1154,共8页
为解决低渗透油藏表面活性剂驱吸附严重的问题,以蜂蜡、TX-10和去离子水分别为油相、表面活性剂和水相,采用超声乳化法在高于蜂蜡熔点温度(61℃)下制备纳米乳液,进一步降低温度将TX-10固定在油相内部,得到一种缓释型表面活性剂纳米载体... 为解决低渗透油藏表面活性剂驱吸附严重的问题,以蜂蜡、TX-10和去离子水分别为油相、表面活性剂和水相,采用超声乳化法在高于蜂蜡熔点温度(61℃)下制备纳米乳液,进一步降低温度将TX-10固定在油相内部,得到一种缓释型表面活性剂纳米载体。借助紫外可见分光光度计、粒度分析仪、界面张力仪、接触角测量仪等测定了纳米载体的包裹率以及驱油有关性能。结果表明,随着TX-10质量浓度的增加,纳米载体的平均粒径先减小后增加,在5000 mg/L时粒径最小约105 nm,且对TX-10的包裹率约为90%;在地层温度(65℃)下,纳米载体可降低模拟油/水界面张力至3.24×10^(-2) mN/m,降低表面张力至23.3 mN/m,优于TX-10溶液,并在降低界面张力过程中表现出缓释性;此外,纳米载体可使亲油岩心表面发生润湿反转,与TX-10溶液性能相似,静吸附损失率小于0.1%,较TX-10溶液降低10倍以上;在30和65℃下,纳米载体的洗油效率分别是87.7%和92.3%,较TX-10溶液提高约4%。本研究制备的纳米载体可携带表面活性剂在地层孔隙中运移,与原油接触缓慢释放表面活性剂,在保证表面活性剂自身性能的同时具备抗吸附能力,对于低渗透油藏提高采收率表现出较好的应用前景。 展开更多
关键词 低渗透油藏 提高采收率 表面活性剂 纳米载体 缓释性
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