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Modelling in vivo skeletal muscle ageing in vitro using three-dimensional bioengineered constructs

机译:使用三维生物工程构建物体外建模体内骨骼肌衰老

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摘要

Degeneration of skeletal muscle (SkM) with age (sarcopenia) is a major contributor to functional decline, morbidity and mortality. Methodological implications often make it difficult to embark on interventions in already frail and diseased elderly individuals. Using in vitro three-dimensional (3D) bioengineered skeletal muscle constructs that model aged phenotypes and incorporate a representative extracellular matrix (collagen), are under tension, and display morphological and transcript expression of mature skeletal muscle may more accurately characterize the SkM niche. Furthermore, an in vitro model would provide greater experimental manipulation with regard to gene, pharmacological and exercise (mechanical stretch / electrical stimulation) therapies and thus strategies for combating muscle wasting with age. The present study utilized multiple population-doubled (MPD) murine myoblasts compared with parental controls (CON), previously shown to have an aged phenotype in monolayer cultures (Sharples et al., 2011), seeded into 3D type I collagen matrices under uniaxial tension. 3D bioengineered constructs incorporating MPD cells had reduced myotube size and diameter vs. CON constructs. \udMPD constructs were characterized by reduced peak force development over 24 h after cell seeding, reduced transcript expression of remodelling matrix metalloproteinases, MMP2 and MMP9, with reduced differentiation / hypertrophic potential shown by reduced IGF-I, IGF-IR, IGF-IEa, MGF mRNA. Increased IGFBP2 and myostatin in MPD vs. CON constructs also suggested impaired differentiation / reduced regenerative potential. Overall, 3D bioengineered skeletal muscle constructs represent an in vitro model of the in vivo cell niche with MPD constructs displaying similar characteristics to ageing / atrophied muscle in vivo, thus potentially providing a future test bed for therapeutic interventions to contest muscle degeneration with age.
机译:骨骼肌(SkM)随着年龄的增长(肌肉减少症)是导致功能下降,发病率和死亡率的主要因素。方法论的涵义常常使对已经脆弱和患病的老年人进行干预变得困难。使用体外三维(3D)生物工程化骨骼肌构建体来模拟老年表型并结合代表性的细胞外基质(胶原蛋白),处于紧张状态,并显示成熟骨骼肌的形态和转录表达可能会更准确地表征SkM生态位。此外,体外模型将在基因,药理学和运动(机械拉伸/电刺激)疗法方面提供更大的实验操作,从而可以对抗随着年龄的增长而造成的肌肉萎缩。本研究利用了与父母对照(CON)相比多倍的鼠成肌细胞(MPD),此前父母对照(CON)在单层培养物中具有衰老的表型(Sharples等,2011),在单轴张力下接种到3D I型胶原蛋白基质中。与CON构造相比,包含MPD细胞的3D生物工程构造减少了肌管大小和直径。 \ udMPD构建体的特征是细胞接种后24小时内峰值力降低,重塑基质金属蛋白酶,MMP2和MMP9的转录物表达降低,IGF-I,IGF-IR,IGF-IEa降低显示分化/肥大潜力MGF mRNA。 MPD与CON构建体中IGFBP2和肌生长抑制素的增加也表明分化受损/再生潜力降低。总的来说,3D生物工程化的骨骼肌构造代表了体内细胞生态位的体外模型,MPD构造表现出与体内衰老/萎缩性肌肉相似的特征,因此有可能为将来的治疗手段提供试验床,以对抗随着年龄增长的肌肉变性。

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