Literature DB >> 33692658

Bi-layered Tubular Microfiber Scaffolds as Functional Templates for Engineering Human Intestinal Smooth Muscle Tissue.

Ying Chen1, Chengchen Guo1, Eleana Manousiouthakis1, Xiuli Wang1, Dana M Cairns1, Terrence T Roh1, Chuang Du1, David L Kaplan1.   

Abstract

Designing biomimetic scaffolds with in vivo-like microenvironments using biomaterials is an essential component of successful tissue engineering approaches. The intestinal smooth muscle layers exhibit a complex tubular structure consisting of two concentric muscle layers in which the inner circular layer is orthogonally oriented to the outer longitudinal layer. Here, we present a three-dimensional (3D) bi-layered tubular scaffold based on flexible, mechanically robust and well aligned silk protein microfibers to mimic native human intestinal smooth muscle structure. The scaffolds were seeded with primary human intestinal smooth muscle cells to replicate human intestinal muscle tissues in vitro. Characterization of the tissue constructs revealed good biocompatibility and support for cell alignment and elongation in the different scaffold layers to enhance cell differentiation and functions. Furthermore, the engineered smooth muscle constructs supported oriented neurite outgrowth, a requisite step to achieve functional innervation. These results suggested these microfiber scaffolds as functional templates for in vitro regeneration of human intestinal smooth muscle systems. The scaffolding provides a crucial step toward engineering functional human intestinal tissue in vitro, as well as for the engineering of many other types of smooth muscles in terms of their similar phenotypes. Such utility may lead to a better understanding of smooth muscle associated diseases and treatments.

Entities:  

Keywords:  bi-layered tubular scaffolds; intestine; neurite extension; silk; smooth muscle engineering

Year:  2020        PMID: 33692658      PMCID: PMC7938961          DOI: 10.1002/adfm.202000543

Source DB:  PubMed          Journal:  Adv Funct Mater        ISSN: 1616-301X            Impact factor:   18.808


  64 in total

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Review 8.  Advances and Current Challenges in Intestinal in vitro Model Engineering: A Digest.

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Journal:  Front Bioeng Biotechnol       Date:  2019-06-18

Review 9.  Tissue engineered scaffolds in regenerative medicine.

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Review 10.  Microfluidic Organ-on-a-Chip Models of Human Intestine.

Authors:  Amir Bein; Woojung Shin; Sasan Jalili-Firoozinezhad; Min Hee Park; Alexandra Sontheimer-Phelps; Alessio Tovaglieri; Angeliki Chalkiadaki; Hyun Jung Kim; Donald E Ingber
Journal:  Cell Mol Gastroenterol Hepatol       Date:  2018-04-24
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  3 in total

1.  Bioengineered 3D Tissue Model of Intestine Epithelium with Oxygen Gradients to Sustain Human Gut Microbiome.

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Journal:  Adv Healthc Mater       Date:  2022-06-19       Impact factor: 11.092

Review 2.  Tissue engineering of the gastrointestinal tract: the historic path to translation.

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Review 3.  Surgical Treatment of Short Bowel Syndrome-The Past, the Present and the Future, a Descriptive Review of the Literature.

Authors:  Julian L Muff; Filipp Sokolovski; Zarah Walsh-Korb; Rashikh A Choudhury; James C Y Dunn; Stefan G Holland-Cunz; Raphael N Vuille-Dit-Bille
Journal:  Children (Basel)       Date:  2022-07-10
  3 in total

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