Microvascular Contribution to Late-Onset Depression: Mechanisms, Current Evidence, Association With Other Brain Diseases, and Therapeutic Perspectives

被引:44
作者
Empana, Jean-Philippe [1 ]
Boutouyrie, Pierre [1 ]
Lemogne, Cedric [2 ]
Jouven, Xavier [1 ]
van Sloten, Thomas T. [1 ,3 ,4 ]
机构
[1] Univ Paris, Paris Cardiovasc Res Ctr, U970, INSERM, Paris, France
[2] Univ Paris, Hop Hotel Dieu,INSERM, AP HP,Inst Psychiat & Neurosci Paris,UMR S1266, DMU Psychiat & Addictol,Serv Psychiat Adulte, Paris, France
[3] Maastricht Univ, Sch Cardiovasc Dis Maastricht, Med Ctr, Maastricht, Netherlands
[4] Maastricht Univ, Dept Internal Med TTvS, Med Ctr, Maastricht, Netherlands
关键词
SMALL VESSEL DISEASE; LATE-LIFE DEPRESSION; CEREBRAL-BLOOD-FLOW; INTERCELLULAR-ADHESION MOLECULE-1; NITRIC-OXIDE SYNTHASE; MAJOR DEPRESSION; CEREBROVASCULAR REACTIVITY; INCIDENT DEPRESSION; ARTERIAL STIFFNESS; VASCULAR RISK;
D O I
10.1016/j.biopsych.2021.04.012
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Depression is common in older individuals and is associated with high disability and mortality. A major problem is treatment resistance: .50% of older patients do not respond to current antidepressants. Therefore, new effective interventions for prevention and treatment of depression in older individuals need to be developed, which requires a better understanding of the mechanisms underlying depression. The pathophysiology of depression is multifactorial and complex. Microvascular dysfunction may be an early and targetable mechanism in the development of depression, notably depression that initiates in late life (late-onset depression). Late-onset depression commonly cooccurs with other diseases or syndromes that may share a microvascular origin, including apathy, cognitive impairment, dementia, and stroke. Together, these disabilities may all be part of one large phenotype resulting from global cerebral microvascular dysfunction. In this review, we discuss the pathophysiology of microvascular dysfunction-related late-onset depression, summarize recent epidemiological evidence on the association between cerebral microvascular dysfunction and depression, and indicate potential drivers of cerebral microvascular dysfunction. We also propose the hypothesis that depression may be a manifestation of a larger phenotype of cerebral microvascular dysfunction, highlight potential therapeutic targets and interventions, and give directions for future research.
引用
收藏
页码:214 / 225
页数:12
相关论文
共 139 条
[1]   The association of antihypertensive use and depressive symptoms in a large older population with hypertension living in Australia and the United States: a cross-sectional study [J].
Agustini, Bruno ;
Mohebbi, Mohammadreza ;
Woods, Robyn L. ;
McNeil, John J. ;
Nelson, Mark R. ;
Shah, Raj C. ;
Murray, Anne M. ;
Ernst, Michael E. ;
Reid, Christopher M. ;
Tonkin, Andrew ;
Lockery, Jessica E. ;
Berk, Michael .
JOURNAL OF HUMAN HYPERTENSION, 2020, 34 (11) :787-794
[2]   Integration of cerebrovascular CO2 reactivity and chemoreflex control of breathing: mechanisms of regulation, measurement, and interpretation [J].
Ainslie, Philip N. ;
Duffin, James .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2009, 296 (05) :R1473-R1495
[3]   Vascular depression consensus report - a critical update [J].
Aizenstein, Howard J. ;
Baskys, Andrius ;
Boldrini, Maura ;
Butters, Meryl A. ;
Diniz, Breno S. ;
Jaiswal, Manoj Kumar ;
Jellinger, Kurt A. ;
Kruglov, Lev S. ;
Meshandin, Ivan A. ;
Mijajlovic, Milija D. ;
Niklewski, Guenter ;
Pospos, Sarah ;
Raju, Keerthy ;
Richter, Kneginja ;
Steffens, David C. ;
Taylor, Warren D. ;
Tene, Oren .
BMC MEDICINE, 2016, 14
[4]   Mechanisms and treatment of late-life depression [J].
Alexopoulos, George S. .
TRANSLATIONAL PSYCHIATRY, 2019, 9 (1)
[5]  
Alexopoulos GS, 1997, ARCH GEN PSYCHIAT, V54, P915
[6]   Reduced cerebral perfusion predicts greater depressive symptoms and cognitive dysfunction at a 1-year follow-up in patients with heart failure [J].
Alosco, Michael L. ;
Spitznagel, Mary Beth ;
Cohen, Ronald ;
Raz, Naftali ;
Sweet, Lawrence H. ;
Josephson, Richard ;
Hughes, Joel ;
Rosneck, Jim ;
Gunstad, John .
INTERNATIONAL JOURNAL OF GERIATRIC PSYCHIATRY, 2014, 29 (04) :428-436
[7]   Angiotensin II AT1 receptor blockade reverses pathological hypertrophy and inflammation in brain microvessels of spontaneously hypertensive rats [J].
Ando, H ;
Zhou, J ;
Macova, M ;
Imboden, H ;
Saavedra, JM .
STROKE, 2004, 35 (07) :1726-1731
[8]   Imaging markers of small vessel disease and brain frailty, and outcomes in acute stroke [J].
Appleton, Jason P. ;
Woodhouse, Lisa J. ;
Adami, Alessandro ;
Becker, Jennifer L. ;
Berge, Eivind ;
Cala, Lesley A. ;
Casado, Ana M. ;
Caso, Valeria ;
Christensen, Hanne K. ;
Dineen, Robert A. ;
Gommans, John ;
Koumellis, Panos ;
Szatmari, Szabolcs ;
Sprigg, Nikola ;
Bath, Philip M. ;
Wardlaw, Joanna M. .
NEUROLOGY, 2020, 94 (05) :E439-E452
[9]   Cardiovascular risk factors and risk of incident depression throughout adulthood among men: The Johns Hopkins Precursors Study [J].
Armstrong, Nicole M. ;
Meoni, Lucy A. ;
Carlson, Michelle C. ;
Xue, Qian-Li ;
Bandeen-Roche, Karen ;
Gallo, Joseph J. ;
Gross, Alden L. .
JOURNAL OF AFFECTIVE DISORDERS, 2017, 214 :60-66
[10]   Automated Assessment of Cerebral Arterial Perforator Function on 7TMRI [J].
Arts, Tine ;
Siero, Jeroen C. W. ;
Biessels, Geert Jan ;
Zwanenburg, Jaco J. M. .
JOURNAL OF MAGNETIC RESONANCE IMAGING, 2021, 53 (01) :234-241