Latest Developments in Engineered Skeletal Muscle Tissues for Drug Discovery and Development

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Date

2023

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Publisher

Taylor & Francis Ltd

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Green Open Access

No

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Top 10%
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Top 10%

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Abstract

IntroductionWith the advances in skeletal muscle tissue engineering, new platforms have arisen with important applications in biology studies, disease modeling, and drug testing. Current developments highlight the quest for engineering skeletal muscle tissues with higher complexity . These new human skeletal muscle tissue models will be powerful tools for drug discovery and development and disease modeling.Areas coveredThe authors review the latest advances in in vitro models of engineered skeletal muscle tissues used for testing drugs with a focus on the use of four main cell culture techniques: Cell cultures in well plates, in microfluidics, in organoids, and in bioprinted constructs. Additional information is provided on the satellite cell niche.Expert opinionIn recent years, more sophisticated in vitro models of skeletal muscle tissues have been fabricated. Important developments have been made in stem cell research and in the engineering of human skeletal muscle tissue. Some platforms have already started to be used for drug testing, notably those based on the parameters of hypertrophy/atrophy and the contractibility of myotubes. More developments are expected through the use of multicellular types and multi-materials as matrices . The validation and use of these models in drug testing should now increase.

Description

Fujie, Toshinori/0000-0003-1417-8670; Kaji, Hirokazu/0000-0003-2566-4172; Ramalingam, Murugan/0000-0001-6498-9792; ostrovidov, serge/0000-0002-4189-8086; bae, hojae/0000-0003-3057-4999

Keywords

Bioprinting, drug development, drug evaluation, microfluidics, muscle skeletal, organoids, stem cells, Organoids, Tissue Engineering, Drug Discovery, Muscle Fibers, Skeletal, Humans, Muscle, Skeletal

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Fields of Science

0301 basic medicine, 0303 health sciences, 03 medical and health sciences

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Q1

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5

Source

Expert Opinion on Drug Discovery

Volume

18

Issue

1

Start Page

47

End Page

63

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Scopus : 9

PubMed : 2

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Mendeley Readers : 17

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