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眼疾中的生物力学动态平衡:小型综述。

Biomechanical homeostasis in ocular diseases: A mini-review.

机构信息

Beijing Ophthalmology and Visual Sciences Key Laboratory, Beijing Tongren Eye Center, Beijing Institute of Ophthalmology, Beijing Tongren Hospital, Capital Medical University, Beijing, China.

Collaborative Innovation Center for Brain Disorders, Beijing Institute of Brain Disorders, Capital Medical University, Beijing, China.

出版信息

Front Public Health. 2023 Jan 17;11:1106728. doi: 10.3389/fpubh.2023.1106728. eCollection 2023.

Abstract

Diabetes mellitus-induced hyperglycemia is responsible for multiple pathological ocular alternations from vasculopathy to biomechanical dyshomeostasis. Biomechanical homeostasis is crucial to maintain the normal physiological condition of the eyes. Biomechanical features vary in eye tissues regarding different anatomical positions, tissue components, and cellular functions. The disturbance in biomechanical homeostasis may result in different ocular diseases. In this review, we provide a preliminary sketch of the latest evidence on the mechano-environment of the eyeball and its possible influencing factors, thereby underscoring the relationship between the dyshomeostasis of ocular biomechanics and common eye diseases (e.g., diabetic retinopathy, keratoconus, glaucoma, spaceflight-associated neuro-ocular syndrome, retinal vein occlusion and myopia, etc.). Together with the reported evidence, we further discuss and postulate the potential role of biomechanical homeostasis in ophthalmic pathology. Some latest strategies to investigate the biomechanical properties in ocular diseases help unveil the pathological changes at multiple scales, offering references for making new diagnostic and treatment strategies targeting mechanobiology.

摘要

糖尿病引起的高血糖是导致多种眼部病变的原因,包括血管病变和生物力学失衡。生物力学平衡对于维持眼睛的正常生理状态至关重要。眼部组织的生物力学特性因解剖位置、组织成分和细胞功能的不同而有所差异。生物力学平衡的紊乱可能导致不同的眼部疾病。在这篇综述中,我们提供了眼球力学环境及其可能影响因素的最新证据的初步概述,强调了眼生物力学失衡与常见眼病(如糖尿病视网膜病变、圆锥角膜、青光眼、航天相关神经眼综合征、视网膜静脉阻塞和近视等)之间的关系。结合已报道的证据,我们进一步讨论并推测了生物力学平衡在眼部病理学中的潜在作用。一些研究眼部疾病生物力学特性的最新策略有助于揭示多个尺度的病理变化,为针对机械生物学的新诊断和治疗策略提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd33/9886686/43ee223485d0/fpubh-11-1106728-g0001.jpg

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