Literature DB >> 16844214

Porous acellular bovine pericardia seeded with mesenchymal stem cells as a patch to repair a myocardial defect in a syngeneic rat model.

Hao-Ji Wei1, Sung-Ching Chen, Yen Chang, Shiaw-Min Hwang, Wei-Wen Lin, Po-Hong Lai, Huihua Kenny Chiang, Lee-Feng Hsu, Hang-Hsing Yang, Hsing-Wen Sung.   

Abstract

A patch is often mandatory to repair myocardial defects; however, currently available patches lack the possibility of regeneration. To overcome this limitation, a porous acellular bovine pericardium seeded with BrdU-labeled mesenchymal stem cells (MSCs) was prepared (the MSC patch) to repair a surgically created myocardial defect in the right ventricle of a syngeneic rat model. The bovine pericardium before cell extraction was used as a control (the Control patch). The implanted samples were retrieved at 4- and 12-week postoperatively (n=5 per group at each time point). At retrieval, no aneurysmal dilation of the implanted patches was seen for both studied groups. No apparent tissue adhesion was observed for the MSC patch throughout the entire course of the study, while for the Control patch, two out of the five studied animals at 12-week postoperatively had a filmy adhesion to the chest wall. On the inner (endocardial) surface, intimal thickening was observed for both studied groups; however, no thrombus formation was found. Intact layers of endothelial and mesothelial cells were identified on the inner and outer (epicardial) surfaces of the MSC patch. Smooth muscle cells together with neo-muscle fibers, neo-glycosaminoglycans and neo-capillaries were observed within the pores of the MSC patch. Some cardiomyocytes, which stained positively for BrdU and alpha-sacromeric actin, were observed in the MSC patch, indicating that the implanted MSCs can engraft and differentiate into cardiomyocytes. Additionally, a normality of the local electrograms on the epicardial surface of the MSC patch was observed. In contrast, no apparent tissue regeneration was observed for the Control patch throughout the entire course of the study, while only abnormal electrogram signals were seen on its epicardial surface. In conclusion, the MSC patch may preserve the structure of the ventricular wall while providing the potential for myocardial tissue regeneration.

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Year:  2006        PMID: 16844214     DOI: 10.1016/j.biomaterials.2006.06.022

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  8 in total

Review 1.  [Tissue engineering of vascularized myocardial prosthetic tissue. Biological and solid matrices].

Authors:  T Schilling; S Cebotari; I Tudorache; A Haverich
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2.  Methods for using 3-D ultrasound speckle tracking in biaxial mechanical testing of biological tissue samples.

Authors:  Choon Hwai Yap; Dae Woo Park; Debaditya Dutta; Marc Simon; Kang Kim
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3.  Changes in extracellular matrix in failing human non-ischemic and ischemic hearts with mechanical unloading.

Authors:  Yimu Zhao; Amandine Godier-Furnemont; Noortje A M Bax; Carlijn V C Bouten; Lewis M Brown; Barry Fine; Gordana Vunjak-Novakovic
Journal:  J Mol Cell Cardiol       Date:  2022-02-24       Impact factor: 5.763

Review 4.  Stem cell paracrine actions and tissue regeneration.

Authors:  Priya R Baraniak; Todd C McDevitt
Journal:  Regen Med       Date:  2010-01       Impact factor: 3.806

Review 5.  Cardiac tissue engineering using stem cells.

Authors:  Nenad Bursac
Journal:  IEEE Eng Med Biol Mag       Date:  2009 Mar-Apr

Review 6.  Cell therapy in congestive heart failure.

Authors:  Ze-wei Tao; Long-gui Li
Journal:  J Zhejiang Univ Sci B       Date:  2007-09       Impact factor: 3.066

Review 7.  How Biomaterials Can Influence Various Cell Types in the Repair and Regeneration of the Heart after Myocardial Infarction.

Authors:  Zachary Lister; Katey J Rayner; Erik J Suuronen
Journal:  Front Bioeng Biotechnol       Date:  2016-07-18

8.  Vascular Remodeling of Clinically Used Patches and Decellularized Pericardial Matrices Recellularized with Autologous or Allogeneic Cells in a Porcine Carotid Artery Model.

Authors:  Jaroslav Chlupac; Roman Matejka; Miroslav Konarik; Robert Novotny; Zuzana Simunkova; Iveta Mrazova; Ondrej Fabian; Milan Zapletal; Zdenek Pulda; Jan Falk Lipensky; Jana Stepanovska; Karel Hanzalek; Antonin Broz; Tomas Novak; Alena Lodererova; Ludek Voska; Theodor Adla; Jiri Fronek; Miroslav Rozkot; Serhiy Forostyak; Peter Kneppo; Lucie Bacakova; Jan Pirk
Journal:  Int J Mol Sci       Date:  2022-03-18       Impact factor: 5.923

  8 in total

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