在存在biglycan表达的情况下,Decorin敲低对衰老肌腱有益

Q1 Medicine Matrix Biology Plus Pub Date : 2022-08-01 DOI:10.1016/j.mbplus.2022.100114
Zakary M. Beach , Mihir S. Dekhne , Ashley B. Rodriguez , Stephanie N. Weiss , Thomas H. Adams , Sheila M. Adams , Mei Sun , David E. Birk , Louis J. Soslowsky
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引用次数: 2

摘要

Decorin和biglycan是存在于肌腱细胞外基质中的两种主要的富含亮氨酸的小蛋白聚糖(slrp),它们促进胶原纤维形成、组织更新和细胞信号转导。先前,我们证明了敲除decorin可以防止与衰老相关的肌腱力学性能的下降。本研究的目的是利用他莫昔芬诱导的敲除模型,确定decorin和biglycan敲除对衰老肌腱结构和力学的影响。我们假设,与biglycan敲除和野生型对照相比,敲除decorin和复合敲除decorin和biglycan可以防止与年龄相关的肌腱力学和结构下降,并且随着肌腱向老年年龄发展,这些变化会加剧。为了实现这一目标,我们创建了他莫昔芬诱导的小鼠敲除模型,以decorin和biglycan基因失活为目标,而没有传统敲除模型相关的肌腱异常发育。decorin敲低导致老化肌腱中物质模量增加,应力松弛减少。然而,这些变化在老年肌腱中并没有持续。在biglyg中敲除不会导致老年或老年肌腱的力学变化。与我们的假设相反,复合decorin/biglycan敲除肌腱与decorin敲除肌腱不相似,但导致老年和老年肌腱的粘弹性增加。在结构上,除了570d I-Dcn-/-/Bgn-/-组外,slrp的敲低导致胶原纤维直径相对于野生型对照的改变。总体而言,本研究确定了decorin和biglycan在整个肌腱老化过程中在维持肌腱结构和力学性能方面的不同作用,并揭示了复合decorin和biglycan敲低表型与单基因decorin或biglycan模型不同,并且在整个衰老过程中对肌腱性能有害。
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Decorin knockdown is beneficial for aged tendons in the presence of biglycan expression

Decorin and biglycan are two major small leucine-rich proteoglycans (SLRPs) present in the tendon extracellular matrix that facilitate collagen fibrillogenesis, tissue turnover, and cell signal transduction. Previously, we demonstrated that knockout of decorin prevented the decline of tendon mechanical properties that are associated with aging. The objective of this study was to determine the effects of decorin and biglycan knockdown on tendon structure and mechanics in aged tendons using tamoxifen-inducible knockdown models. We hypothesized that the knockdown of decorin and compound knockdown of decorin and biglycan would prevent age-related declines in tendon mechanics and structure compared to biglycan knockdown and wild-type controls, and that these changes would be exacerbated as the tendons progress towards geriatric ages. To achieve this objective, we created tamoxifen-inducible mouse knockdown models to target decorin and biglycan gene inactivation without the abnormal tendon development associated with traditional knockout models. Knockdown of decorin led to increased midsubstance modulus and decreased stress relaxation in aged tendons. However, these changes were not sustained in the geriatric tendons. Knockdown in biglycan led to no changes in mechanics in the aged or geriatric tendons. Contrary to our hypothesis, the compound decorin/biglycan knockdown tendons did not resemble the decorin knockdown tendons, but resulted in increased viscoelastic properties in the aged and geriatric tendons. Structurally, knockdown of SLRPs, except for the 570d I-Dcn-/-/Bgn-/- group, resulted in alterations to the collagen fibril diameter relative to wild-type controls. Overall, this study identified the differential roles of decorin and biglycan throughout tendon aging in the maintenance of tendon structural and mechanical properties and revealed that the compound decorin and biglycan knockdown phenotype did not resemble the single gene decorin or biglycan models and was detrimental to tendon properties throughout aging.

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来源期刊
Matrix Biology Plus
Matrix Biology Plus Medicine-Histology
CiteScore
9.00
自引率
0.00%
发文量
25
审稿时长
105 days
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