Literature DB >> 25650096

From repair to regeneration: biomaterials to reprogram the meniscus wound microenvironment.

Robert L Mauck1, Jason A Burdick.   

Abstract

When the field of tissue engineering first arose, scaffolds were conceived of as inert three-dimensional structures whose primary function was to support cellularity and tissue growth. Since then, advances in scaffold and biomaterial design have evolved to not only guide tissue formation, but also to interact dynamically with and manipulate the wound environment. At present, these efforts are being directed towards strategies that directly address limitations in endogenous wound repair, with the goal of reprogramming the local wound environment (and the cells within that locality) from a state that culminates in an inferior tissue repair into a state in which functional regeneration is achieved. This review will address this approach with a focus on recent advances in scaffold design towards the resolution of tears of the knee meniscus as a case example. The inherent limitations to endogenous repair will be discussed, as will specific examples of how biomaterials are being designed to overcome these limitations. Examples will include design of fibrous scaffolds that promote colonization by modulating local extracellular matrix density and delivering recruitment factors. Furthermore, we will discuss scaffolds that are themselves modulated by the wound environment to alter porosity and modulate therapeutic release through precise coordination of scaffold degradation. Finally, we will close with emerging concepts in local control of cell mechanics to improve interstitial cell migration and so advance repair. Overall, these examples will illustrate how emergent features within a biomaterial can be tuned to manipulate and harness the local tissue microenvironment in order to promote robust regeneration.

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Year:  2015        PMID: 25650096      PMCID: PMC4380775          DOI: 10.1007/s10439-015-1249-z

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


  113 in total

1.  Synovial inflammation in patients undergoing arthroscopic meniscectomy: molecular characterization and relationship to symptoms.

Authors:  Carla R Scanzello; Brian McKeon; Bryan H Swaim; Edward DiCarlo; Eva U Asomugha; Veero Kanda; Anjali Nair; David M Lee; John C Richmond; Jeffrey N Katz; Mary K Crow; Steven R Goldring
Journal:  Arthritis Rheum       Date:  2011-02

Review 2.  Extracellular matrix determinants of proteolytic and non-proteolytic cell migration.

Authors:  Katarina Wolf; Peter Friedl
Journal:  Trends Cell Biol       Date:  2011-10-27       Impact factor: 20.808

Review 3.  Nuclear shape, mechanics, and mechanotransduction.

Authors:  Kris Noel Dahl; Alexandre J S Ribeiro; Jan Lammerding
Journal:  Circ Res       Date:  2008-06-06       Impact factor: 17.367

4.  Macro- to microscale strain transfer in fibrous tissues is heterogeneous and tissue-specific.

Authors:  Woojin M Han; Su-Jin Heo; Tristan P Driscoll; Lachlan J Smith; Robert L Mauck; Dawn M Elliott
Journal:  Biophys J       Date:  2013-08-06       Impact factor: 4.033

5.  Dynamic tensile loading improves the functional properties of mesenchymal stem cell-laden nanofiber-based fibrocartilage.

Authors:  Brendon M Baker; Roshan P Shah; Alice H Huang; Robert L Mauck
Journal:  Tissue Eng Part A       Date:  2011-03-03       Impact factor: 3.845

6.  Fiber stretch and reorientation modulates mesenchymal stem cell morphology and fibrous gene expression on oriented nanofibrous microenvironments.

Authors:  Su-Jin Heo; Nandan L Nerurkar; Brendon M Baker; Jung-Woog Shin; Dawn M Elliott; Robert L Mauck
Journal:  Ann Biomed Eng       Date:  2011-07-29       Impact factor: 3.934

7.  Moving from static to dynamic complexity in hydrogel design.

Authors:  Jason A Burdick; William L Murphy
Journal:  Nat Commun       Date:  2012       Impact factor: 14.919

8.  Human osteoarthritis synovial fluid and joint cartilage contain both aggrecanase- and matrix metalloproteinase-generated aggrecan fragments.

Authors:  A Struglics; S Larsson; M A Pratta; S Kumar; M W Lark; L S Lohmander
Journal:  Osteoarthritis Cartilage       Date:  2005-09-26       Impact factor: 6.576

Review 9.  The nuclear membrane and mechanotransduction: impaired nuclear mechanics and mechanotransduction in lamin A/C deficient cells.

Authors:  Jan Lammerding; Richard T Lee
Journal:  Novartis Found Symp       Date:  2005

10.  Human aggrecanase generated synovial fluid fragment levels are elevated directly after knee injuries due to proteolysis both in the inter globular and chondroitin sulfate domains.

Authors:  A Struglics; M Hansson; L S Lohmander
Journal:  Osteoarthritis Cartilage       Date:  2011-05-25       Impact factor: 6.576

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  24 in total

1.  Advances in Quantification of Meniscus Tensile Mechanics Including Nonlinearity, Yield, and Failure.

Authors:  John M Peloquin; Michael H Santare; Dawn M Elliott
Journal:  J Biomech Eng       Date:  2016-02       Impact factor: 2.097

2.  AFM-Nanomechanical Test: An Interdisciplinary Tool That Links the Understanding of Cartilage and Meniscus Biomechanics, Osteoarthritis Degeneration, and Tissue Engineering.

Authors:  Biao Han; Hadi T Nia; Chao Wang; Prashant Chandrasekaran; Qing Li; Daphney R Chery; Hao Li; Alan J Grodzinsky; Lin Han
Journal:  ACS Biomater Sci Eng       Date:  2017-07-11

3.  N-Acetyl-L-Cysteine Reduces Fibrosis and Improves Muscle Function After Acute Compartment Syndrome Injury.

Authors:  Benyam Yosef; Yu Zhou; Kathryn Mouschouris; James Poteracki; Shay Soker; Tracy Criswell
Journal:  Mil Med       Date:  2020-01-07       Impact factor: 1.437

4.  Core-Shell Nanofibrous Scaffolds for Repair of Meniscus Tears.

Authors:  Jihye Baek; Martin K Lotz; Darryl D D'Lima
Journal:  Tissue Eng Part A       Date:  2019-08-14       Impact factor: 3.845

Review 5.  Large Animal Models of Meniscus Repair and Regeneration: A Systematic Review of the State of the Field.

Authors:  Sonia Bansal; Niobra M Keah; Alexander L Neuwirth; Olivia O'Reilly; Feini Qu; Breanna N Seiber; Sai Mandalapu; Robert L Mauck; Miltiadis H Zgonis
Journal:  Tissue Eng Part C Methods       Date:  2017-08-04       Impact factor: 3.056

Review 6.  Meniscus tear surgery and meniscus replacement.

Authors:  Javier Vaquero; Francisco Forriol
Journal:  Muscles Ligaments Tendons J       Date:  2016-05-19

Review 7.  Multiple mechanisms of 3D migration: the origins of plasticity.

Authors:  Ryan J Petrie; Kenneth M Yamada
Journal:  Curr Opin Cell Biol       Date:  2016-04-12       Impact factor: 8.382

8.  Micromechanical anisotropy and heterogeneity of the meniscus extracellular matrix.

Authors:  Qing Li; Feini Qu; Biao Han; Chao Wang; Hao Li; Robert L Mauck; Lin Han
Journal:  Acta Biomater       Date:  2017-02-27       Impact factor: 8.947

9.  Impacts of maturation on the micromechanics of the meniscus extracellular matrix.

Authors:  Qing Li; Chao Wang; Biao Han; Feini Qu; Hao Qi; Christopher Y Li; Robert L Mauck; Lin Han
Journal:  J Biomech       Date:  2018-03-09       Impact factor: 2.712

10.  Platelet-derived growth factor-coated decellularized meniscus scaffold for integrative healing of meniscus tears.

Authors:  Kwang Il Lee; Merissa Olmer; Jihye Baek; Darryl D D'Lima; Martin K Lotz
Journal:  Acta Biomater       Date:  2018-06-14       Impact factor: 8.947

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