Literature DB >> 21682541

Stem cell-based meniscus tissue engineering.

Biman B Mandal1, Sang-Hyug Park, Eun Seok Gil, David L Kaplan.   

Abstract

Knee meniscus, a fibrocartilaginous tissue, is characterized by heterogeneity in extracellular matrix (ECM) and biomechanical properties, and critical for orthopedic stability, load transmission, shock absorption, and stress distribution within the knee joint. Most damage to the meniscus cannot be effectively healed by the body due to its partial avascular nature; thus, damage caused by injury or age impairs normal knee function, predisposing patients to osteoarthritis. Meniscus tissue engineering offers a possible solution to this problem by generating replacement tissue that may be implanted into the defect site to mimic the function of natural meniscal tissue. To address this need, a multiporous, multilamellar meniscus was formed using silk protein scaffolds and stem cells. The silk scaffolds were seeded with human bone marrow stem cells and differentiated over time in chondrogenic culture in the presence of transforming growth factor-beta 3 to generate meniscus-like tissue in vitro. High cellularity along with abundant ECM leading to enhanced biomechanics similar to native tissue was found. Higher levels of collagen type I and II, sulfated glycosaminoglycans along with enhanced collagen 1-α1, aggrecan, and SOX9 gene expression further confirmed differentiation and matured cell phenotype. The results of this study are a step forward toward biomechanically competent meniscus engineering, reconstituting both form and function of the native meniscus.

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Year:  2011        PMID: 21682541      PMCID: PMC3204205          DOI: 10.1089/ten.TEA.2011.0031

Source DB:  PubMed          Journal:  Tissue Eng Part A        ISSN: 1937-3341            Impact factor:   3.845


  52 in total

1.  Harvest and conservation of meniscal allografts.

Authors:  R Verdonk; D Kohn
Journal:  Scand J Med Sci Sports       Date:  1999-06       Impact factor: 4.221

2.  Multilayered silk scaffolds for meniscus tissue engineering.

Authors:  Biman B Mandal; Sang-Hyug Park; Eun S Gil; David L Kaplan
Journal:  Biomaterials       Date:  2010-10-06       Impact factor: 12.479

3.  Three-dimensional aqueous-derived biomaterial scaffolds from silk fibroin.

Authors:  Ung-Jin Kim; Jaehyung Park; Hyeon Joo Kim; Masahisa Wada; David L Kaplan
Journal:  Biomaterials       Date:  2005-05       Impact factor: 12.479

4.  Collagenous fibril texture of the human knee joint menisci.

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Journal:  Anat Embryol (Berl)       Date:  1998-04

Review 5.  Material properties of the normal medial bovine meniscus.

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Journal:  J Orthop Res       Date:  1989       Impact factor: 3.494

6.  Tensile stress-strain characteristics of the human meniscal material.

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Journal:  J Biomech       Date:  1995-04       Impact factor: 2.712

7.  Effect of formaldehyde fixation on some mechanical properties of bovine bone.

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Journal:  Biomaterials       Date:  1995-11       Impact factor: 12.479

Review 8.  Meniscal substitutes--animal experience.

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Journal:  Scand J Med Sci Sports       Date:  1999-06       Impact factor: 4.221

9.  Multilineage potential of adult human mesenchymal stem cells.

Authors:  M F Pittenger; A M Mackay; S C Beck; R K Jaiswal; R Douglas; J D Mosca; M A Moorman; D W Simonetti; S Craig; D R Marshak
Journal:  Science       Date:  1999-04-02       Impact factor: 47.728

10.  Meniscal repair supplemented with exogenous fibrin clot and autogenous cultured marrow cells in the goat model.

Authors:  J Port; D W Jackson; T Q Lee; T M Simon
Journal:  Am J Sports Med       Date:  1996 Jul-Aug       Impact factor: 6.202

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  16 in total

Review 1.  Application of cell and biomaterial-based tissue engineering methods in the treatment of cartilage, menisci and ligament injuries.

Authors:  Tomasz Trzeciak; Magdalena Richter; Wiktoria Suchorska; Ewelina Augustyniak; Michał Lach; Małgorzata Kaczmarek; Jacek Kaczmarczyk
Journal:  Int Orthop       Date:  2016-01-14       Impact factor: 3.075

2.  Laminar silk scaffolds for aligned tissue fabrication.

Authors:  Biman B Mandal; Eun Seok Gil; Bruce Panilaitis; David L Kaplan
Journal:  Macromol Biosci       Date:  2012-11-19       Impact factor: 4.979

Review 3.  Fiber-Based Biopolymer Processing as a Route toward Sustainability.

Authors:  Chunmei Li; Junqi Wu; Haoyuan Shi; Zhiyu Xia; Jugal Kishore Sahoo; Jingjie Yeo; David L Kaplan
Journal:  Adv Mater       Date:  2021-10-13       Impact factor: 30.849

Review 4.  Current Concepts in Meniscus Tissue Engineering and Repair.

Authors:  Bahar Bilgen; Chathuraka T Jayasuriya; Brett D Owens
Journal:  Adv Healthc Mater       Date:  2018-03-15       Impact factor: 9.933

5.  Digital micromirror device projection printing system for meniscus tissue engineering.

Authors:  Shawn P Grogan; Peter H Chung; Pranav Soman; Peter Chen; Martin K Lotz; Shaochen Chen; Darryl D D'Lima
Journal:  Acta Biomater       Date:  2013-03-21       Impact factor: 8.947

6.  Quantifying cellular alignment on anisotropic biomaterial platforms.

Authors:  Alexander R Nectow; Misha E Kilmer; David L Kaplan
Journal:  J Biomed Mater Res A       Date:  2013-05-18       Impact factor: 4.396

Review 7.  Bone marrow derived stem cells in joint and bone diseases: a concise review.

Authors:  Antonio Marmotti; Laura de Girolamo; Davide Edoardo Bonasia; Matteo Bruzzone; Silvia Mattia; Roberto Rossi; Angela Montaruli; Federico Dettoni; Filippo Castoldi; Giuseppe Peretti
Journal:  Int Orthop       Date:  2014-07-09       Impact factor: 3.075

Review 8.  Meniscus repair using mesenchymal stem cells - a comprehensive review.

Authors:  Hana Yu; Adetola B Adesida; Nadr M Jomha
Journal:  Stem Cell Res Ther       Date:  2015-04-30       Impact factor: 6.832

Review 9.  Advances and Prospects in Tissue-Engineered Meniscal Scaffolds for Meniscus Regeneration.

Authors:  Weimin Guo; Shuyun Liu; Yun Zhu; Changlong Yu; Shibi Lu; Mei Yuan; Yue Gao; Jingxiang Huang; Zhiguo Yuan; Jiang Peng; Aiyuan Wang; Yu Wang; Jifeng Chen; Li Zhang; Xiang Sui; Wenjing Xu; Quanyi Guo
Journal:  Stem Cells Int       Date:  2015-06-25       Impact factor: 5.443

10.  Reconstruction of Hyaline Cartilage Deep Layer Properties in 3-Dimensional Cultures of Human Articular Chondrocytes.

Authors:  Vibudha Nanduri; Surendra Mohan Tattikota; Avinash Raj T; Vijaya Rama Rao Sriramagiri; Suma Kantipudi; Gopal Pande
Journal:  Orthop J Sports Med       Date:  2014-06-27
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