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节俭:一种新型高通量方法,用于快速鉴定分离骨骼肌纤维的纤维类型。

THRIFTY: a novel high-throughput method for rapid fibre type identification of isolated skeletal muscle fibres.

机构信息

Department of Physiology, Nutrition and Biomechanics, Åstrand Laboratory, Swedish School of Sport and Health Sciences, Stockholm, Sweden.

Department of Clinical Science, Intervention and Technology, Karolinska Institutet, Stockholm, Sweden.

出版信息

J Physiol. 2022 Oct;600(20):4421-4438. doi: 10.1113/JP282959. Epub 2022 Sep 22.

Abstract

Fibre type-specific analyses are required for broader understanding of muscle physiology, but such analyses are difficult to conduct due to the extreme time requirements of dissecting and fibre typing individual fibres. Investigations are often confined to a small number of fibres from few participants with low representativeness of the entire fibre population and the participant population. To increase the feasibility of conducting large-scale fibre type-specific studies, a valid and rapid method for high-throughput fibre typing of individually dissected fibres was developed and named THRIFTY (for high-THRoughput Immunofluorescence Fibre TYping). Employing THRIFTY, 400 fibre segments were fixed onto microscope slides with a pre-printed coordinated grid system, probed with antibodies against myosin heavy chain (MyHC)-I and MyHC-II and classified using a fluorescence microscope. The validity and speed of THRIFTY was compared to a previously validated protocol (dot blot) on a fibre-to-fibre basis. Fibre pool purity was evaluated using 'gold standard' SDS-PAGE and silver staining. A modified THRIFTY-protocol using fluorescence western blot equipment was also validated. THRIFTY displayed excellent agreement with the dot blot protocol, κ = 0.955 (95% CI: 0.928, 0.982), P < 0.001. Both the original and modified THRIFTY protocols generated type I and type II fibre pools of absolute purity. Using THRIFTY, 400 fibres were typed just under 11 h, which was approximately 3 times faster than dot blot. THRIFTY is a novel and valid method with high versatility for very rapid fibre typing of individual fibres. THRIFTY can therefore facilitate the generation of large fibre pools for more extensive mechanistic studies into skeletal muscle physiology. KEY POINTS: Skeletal muscle is composed of different fibre types, each with distinct physiological properties. To fully understand how skeletal muscle adapts to external cues such as exercise, nutrition and ageing, fibre type-specific investigations are required. Such investigations are very difficult to conduct due to the extreme time requirements related to classifying individually isolated muscle fibres. To bypass this issue, we have developed a rapid and reliable method named THRIFTY which is cheap as well as versatile and which can easily be implemented in most laboratories. THRIFTY increases the feasibility of conducting larger fibre type-specific studies and enables time-sensitive assays where measurements need to be carried out in close connection with tissue sampling. By using THRIFTY, new insights into fibre type-specific muscle physiology can be gained which may have broad implications in health and disease.

摘要

纤维类型特异性分析对于更深入地了解肌肉生理学至关重要,但由于对单个纤维进行解剖和纤维分类的时间要求极高,因此此类分析难以进行。研究通常仅限于少数参与者的少量纤维,因此整个纤维群体和参与者群体的代表性很低。为了提高进行大规模纤维类型特异性研究的可行性,开发了一种用于对单独解剖的纤维进行高通量纤维分类的有效且快速的方法,并将其命名为 THRIFTY(高吞吐量免疫荧光纤维 TYping 的缩写)。采用 THRIFTY 技术,将 400 个纤维段固定在带有预印坐标网格系统的显微镜载玻片上,用肌球蛋白重链(MyHC)-I 和 MyHC-II 抗体进行探测,并使用荧光显微镜进行分类。以纤维对纤维为基础,将 THRIFTY 的有效性和速度与先前经过验证的协议(斑点印迹)进行了比较。使用“金标准”SDS-PAGE 和银染评估纤维池纯度。还验证了使用荧光 Western blot 设备的修改后的 THRIFTY 方案。THRIFTY 与斑点印迹协议显示出极好的一致性,κ=0.955(95%CI:0.928,0.982),P<0.001。原始和修改后的 THRIFTY 方案均生成了绝对纯度的 I 型和 II 型纤维池。使用 THRIFTY,将近 11 小时即可对 400 根纤维进行分型,这比斑点印迹快约 3 倍。THRIFTY 是一种新颖且有效的方法,具有很高的通用性,可非常快速地对单个纤维进行分型。因此,THRIFTY 可以促进用于更广泛的骨骼肌生理学机制研究的大型纤维池的生成。关键点:骨骼肌由不同的纤维类型组成,每种类型都具有独特的生理特性。为了充分了解骨骼肌如何对外界刺激(如运动、营养和衰老)做出适应,需要进行纤维类型特异性研究。由于对单独分离的肌肉纤维进行分类的时间要求极高,因此此类研究非常困难。为了解决这个问题,我们开发了一种快速可靠的方法,称为 THRIFTY,它不仅便宜,而且用途广泛,大多数实验室都可以轻松实施。THRIFTY 提高了进行更大规模纤维类型特异性研究的可行性,并实现了对时间敏感的测定,这些测定需要与组织取样紧密结合。通过使用 THRIFTY,可以深入了解纤维类型特异性的肌肉生理学,这可能对健康和疾病具有广泛的意义。

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