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首页> 外文期刊>BMC Cell Biology >Separation of functionally divergent muscle precursor cell populations from porcine juvenile muscles by discontinuous Percoll density gradient centrifugation
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Separation of functionally divergent muscle precursor cell populations from porcine juvenile muscles by discontinuous Percoll density gradient centrifugation

机译:通过不连续Percoll密度梯度离心分离功能性分化的肌肉前体细胞群与猪少年肌肉

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摘要

Satellite cells (SC) and their descendants, muscle precursor cells (MPC), play a key role in postnatal muscle development, regeneration, and plasticity. Several studies have provided evidence that SC and MPC represent a heterogeneous population differing in their biochemical and functional properties. The identification and characterization of functionally divergent SC subpopulations should help to reveal the precise involvement of SC/MPC in these myogenic processes. The aim of the present work was therefore to separate SC subpopulations by using Percoll gradients and to characterize their myogenic marker profiles and their functional properties (adhesion, proliferation, and differentiation). SC/MPC from muscles of 4-day-old piglets were isolated by trypsin digestion and enriched by Percoll density gradient centrifugation. A mixed myogenic cell population was obtained from the 40/70% interface (termed: mixed P40/70) of a 25/40/70% Percoll gradient. Thereafter, by using a more stepped 25/40/50/70% Percoll gradient, mixed P40/70 was divided into subpopulation 40/50 (SP40/50) collected from the 40/50% interface and subpopulation 50/70 (SP50/70) collected from the 50/70% interface. All three isolated populations proliferated and showed a myogenic phenotype characterized by the ability to express myogenic markers (Pax7, MyoD1, Desmin, and MyoG) and to differentiate into myotubes. However, compared with mixed P40/70, SP40/50 and SP50/70 exhibited distinct functional behavior. Growth kinetic curves over 90?h obtained by the xCELLigence system and proliferation assays revealed that SP40/50 and mixed P40/70 constituted a fast adhering and fast proliferating phenotype. In contrast, SP50/70 showed considerably slower adhesion and proliferation. The fast-proliferating SP40/50 showed the highest myogenic differentiation potential with higher fusion rates and the formation of more middle-sized and large myotubes. The described Percoll density gradient centrifugation represents a useful tool for subdividing pig SC/MPC populations with divergent myogenic functions. The physiological role of SC subpopulations during myogenesis and the interaction of these populations can now be analyzed to a greater extent, shedding light on postnatal growth variations in pigs and probably in other animals.
机译:卫星细胞(SC)及其后代,肌肉前体细胞(MPC)在产后肌肉发育,再生和可塑性中起关键作用。几项研究提供了证据,SC和MPC代表了不同的种群,其生物化学和功能特性有所不同。功能上不同的SC亚群的鉴定和表征应有助于揭示SC / MPC在这些成肌过程中的确切参与。因此,本工作的目的是通过使用Percoll梯度分离SC亚群,并表征其成肌标志物谱及其功能特性(粘附,增殖和分化)。通过胰蛋白酶消化从4日龄仔猪的肌肉中分离SC / MPC,并通过Percoll密度梯度离心法富集。从25/40/70%Percoll梯度的40/70%界面(称为:混合的P40 / 70)获得了混合的肌细胞群。之后,使用更高的25/40/50/70%Percoll梯度,将混合的P40 / 70分为从40/50%界面收集的40/50子群(SP40 / 50)和50/70的亚群50 70)从50/70%接口收集。所有三个分离的种群均增殖并显示出肌表型,其特征在于能够表达肌标志物(Pax7,MyoD1,Desmin和MyoG)并分化为肌管。但是,与混合的P40 / 70相比,SP40 / 50和SP50 / 70表现出明显的功能行为。通过xCELLigence系统和增殖分析获得的90?h以上的生长动力学曲线表明,SP40 / 50和混合的P40 / 70构成了快速粘附和快速增殖的表型。相反,SP50 / 70表现出相当慢的粘附和增殖。快速增殖的SP40 / 50显示出最高的成肌分化潜能,融合率更高,并且形成了更多的中型和大型肌管。所述的Percoll密度梯度离心代表了细分具有不同生肌功能的猪SC / MPC群体的有用工具。现在可以更大程度地分析SC亚群在肌发生过程中的生理作用以及这些种群的相互作用,从而揭示了猪以及其他动物的出生后生长变化。

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