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Regulation of the mTOR complex 1 pathway by nutrients, growth factors, and stress.营养物质、生长因子和应激对 mTOR 复合物 1 通路的调节。
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A limited role for PI(3,4,5)P3 regulation in controlling skeletal muscle mass in response to resistance exercise.PI(3,4,5)P3 调节在控制抗阻运动后骨骼肌质量中的有限作用。
PLoS One. 2010 Jul 16;5(7):e11624. doi: 10.1371/journal.pone.0011624.
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Engineering an in vitro model of a functional ligament from bone to bone.从骨到骨构建功能性韧带的体外模型。
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Factors affecting the longevity and strength in an in vitro model of the bone-ligament interface.影响骨-韧带界面体外模型中寿命和强度的因素。
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The initiation of embryonic-like collagen fibrillogenesis by adult human tendon fibroblasts when cultured under tension.成人跟腱成纤维细胞在张力下培养时可启动类胚胎胶原纤维生成。
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From mechanical loading to collagen synthesis, structural changes and function in human tendon.从机械负荷到胶原合成,再到人类肌腱的结构变化和功能。
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Magnitude and duration of stretch modulate fibroblast remodeling.拉伸的幅度和持续时间调节成纤维细胞重塑。
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The biomechanical performance of bone block and soft-tissue posterior cruciate ligament graft fixation with interference screw and cross-pin techniques.采用挤压螺钉和交叉克氏针技术对骨块及软组织后交叉韧带移植物进行固定的生物力学性能
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优化间歇拉伸范式可通过 ERK1/2 磷酸化增加工程韧带中的胶原蛋白合成。

Optimizing an intermittent stretch paradigm using ERK1/2 phosphorylation results in increased collagen synthesis in engineered ligaments.

机构信息

Division of Molecular Physiology, University of Dundee, Dundee, Scotland.

出版信息

Tissue Eng Part A. 2012 Feb;18(3-4):277-84. doi: 10.1089/ten.TEA.2011.0336. Epub 2011 Dec 22.

DOI:10.1089/ten.TEA.2011.0336
PMID:21902469
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3267962/
Abstract

Dynamic mechanical input is believed to play a critical role in the development of functional musculoskeletal tissues. To study this phenomenon, cyclic uniaxial mechanical stretch was applied to engineered ligaments using a custom-built bioreactor and the effects of different stretch frequency, amplitude, and duration were determined. Stretch acutely increased the phosphorylation of p38 (3.5±0.74-fold), S6K1 (3.9±0.19-fold), and ERK1/2 (2.45±0.32-fold). The phosphorylation of ERK1/2 was dependent on time, rather than on frequency or amplitude, within these constructs. ERK1/2 phosphorylation was similar following stretch at frequencies from 0.1 to 1 Hz and amplitudes from 2.5% to 15%, whereas phosphorylation reached maximal levels at 10 min of stretch and returned toward basal within 60 min of stretch. Following a single 10-min bout of cyclic stretch, the cells remained refractory to a second stretch for up to 6 h. Using the phosphorylation of ERK1/2 as a guide, the optimum stretch paradigm was hypothesized to be 10 min of stretch at 2.5% of resting length repeated every 6 h. Consistent with this hypothesis, 7 days of stretch using this optimized intermittent stretch program increased the collagen content of the grafts more than a continuous stretch program (CTL=3.1%±0.44%; CONT=4.8%±0.30%; and INT=5.9%±0.56%). These results suggest that short infrequent bouts of loading are optimal for improving engineered tendon and ligament physiology.

摘要

动态机械输入被认为在功能性肌肉骨骼组织的发育中起着关键作用。为了研究这一现象,使用定制的生物反应器对工程化的韧带施加循环单轴机械拉伸,并确定了不同的拉伸频率、幅度和持续时间的影响。拉伸急性增加了 p38 的磷酸化(3.5±0.74 倍)、S6K1(3.9±0.19 倍)和 ERK1/2(2.45±0.32 倍)。在这些构建体中,ERK1/2 的磷酸化取决于时间,而不是频率或幅度。ERK1/2 的磷酸化在频率为 0.1 至 1 Hz 和幅度为 2.5%至 15%的拉伸下相似,而在 10 分钟的拉伸后达到最大水平,并在 60 分钟的拉伸后恢复到基础水平。在单次 10 分钟的循环拉伸后,细胞对第二次拉伸的反应在长达 6 小时内保持不变。根据 ERK1/2 的磷酸化作为指导,假设最佳拉伸方案是 2.5%静息长度的 10 分钟拉伸,每 6 小时重复一次。与这一假设一致,使用这种优化的间歇拉伸方案进行 7 天的拉伸比连续拉伸方案(CTL=3.1%±0.44%;CONT=4.8%±0.30%;INT=5.9%±0.56%)增加了移植物的胶原含量更多。这些结果表明,短暂的、不频繁的负荷是改善工程化肌腱和韧带生理学的最佳选择。