Harmon Jennifer N, Chandran Preeja, Chandrasekaran Abarajithan, Hyde Jeffrey E, Hernandez Gustavo J, Reed May J, Bruce Matthew F, Khaing Zin Z
Department of Neurological Surgery, University of Washington, Seattle, Washington, USA.
Department of Gerontology and Geriatric Medicine, University of Washington, Seattle, Washington, USA.
J Gerontol A Biol Sci Med Sci. 2024 Dec 11;80(1). doi: 10.1093/gerona/glae215.
Normal aging is associated with significant deleterious cerebrovascular changes; these have been implicated in disease pathogenesis and increased susceptibility to ischemic injury. Although these changes are well documented in the brain, few studies have been conducted in the spinal cord. Here, we utilize specialized contrast-enhanced ultrasound (CEUS) imaging to investigate age-related changes in cervical spinal vascular anatomy and hemodynamics in male Fisher 344 rats, a common strain in aging research. Aged rats (24-26 months, N = 6) exhibited significant tortuosity in the anterior spinal artery and elevated vascular resistance compared to adults (4-6 months, N = 6; tortuosity index 2.20 ± 0.15 vs 4.74 ± 0.45, p < .05). Baseline blood volume was lower in both larger vessels and the microcirculation in the aged cohort, specifically in white matter (4.44e14 ± 1.37e13 vs 3.66e14 ± 2.64e13 CEUS bolus area under the curve, p < .05). To elucidate functional differences, animals were exposed to a hypoxia challenge, whereas adult rats exhibited significant functional hyperemia in both gray matter (GM) and white matter (WM) (GM: 1.13 ± 0.10-fold change from normoxia, p < .05; WM: 1.16 ± 0.13, p < .05), aged rats showed no response. Immunohistochemistry revealed reduced pericyte coverage and activated microglia behavior in aged rats, which may partially explain the lack of vascular response. This study provides the first in vivo description of age-related hemodynamic differences in the cervical spinal cord.
正常衰老与显著的有害脑血管变化相关;这些变化与疾病发病机制以及缺血性损伤易感性增加有关。尽管这些变化在大脑中已有充分记录,但在脊髓方面的研究较少。在此,我们利用专门的对比增强超声(CEUS)成像来研究雄性Fisher 344大鼠(衰老研究中常用的品系)颈段脊髓血管解剖结构和血流动力学的年龄相关变化。与成年大鼠(4 - 6个月,N = 6)相比,老年大鼠(24 - 26个月,N = 6)的脊髓前动脉出现显著迂曲,血管阻力升高(迂曲指数2.20 ± 0.15 vs 4.74 ± 0.45,p < 0.05)。老年组较大血管和微循环的基线血容量均较低,特别是在白质中(曲线下CEUS团注面积4.44e14 ± 1.37e13 vs 3.66e14 ± 2.64e13,p < 0.05)。为阐明功能差异,对动物进行缺氧挑战,成年大鼠在灰质(GM)和白质(WM)中均表现出显著的功能性充血(GM:相对于常氧的变化倍数为1.13 ± 0.10,p < 0.05;WM:1.16 ± 0.13,p < 0.05),而老年大鼠无反应。免疫组织化学显示老年大鼠的周细胞覆盖率降低,小胶质细胞行为激活,这可能部分解释了血管反应的缺乏。本研究首次在体内描述了颈段脊髓与年龄相关的血流动力学差异。