Literature DB >> 26905643

Residual Detergent Detection Method for Nondestructive Cytocompatibility Evaluation of Decellularized Whole Lung Scaffolds.

Barbora Zvarova1, Franziska E Uhl1, Juan J Uriarte2,3, Zachary D Borg1, Amy L Coffey1, Nicholas R Bonenfant1, Daniel J Weiss1, Darcy E Wagner1,4.   

Abstract

The development of reliable tissue engineering methods using decellularized cadaveric or donor lungs could potentially provide a new source of lung tissue. The vast majority of current lung decellularization protocols are detergent based and incompletely removed residual detergents may have a deleterious impact on subsequent scaffold recellularization. Detergent removal and quality control measures that rigorously and reliably confirm removal, ideally utilizing nondestructive methods, are thus critical for generating optimal acellular scaffolds suitable for potential clinical translation. Using a modified and optimized version of a methylene blue-based detergent assay, we developed a straightforward, noninvasive method for easily and reliably detecting two of the most commonly utilized anionic detergents, sodium deoxycholate (SDC) and sodium dodecyl sulfate (SDS), in lung decellularization effluents. In parallel studies, we sought to determine the threshold of detergent concentration that was cytotoxic using four different representative human cell types utilized in the study of lung recellularization: human bronchial epithelial cells, human pulmonary vascular endothelial cells (CBF12), human lung fibroblasts, and human mesenchymal stem cells. Notably, different cells have varying thresholds for either SDC or SDS-based detergent-induced cytotoxicity. These studies demonstrate the importance of reliably removing residual detergents and argue that multiple cell lines should be tested in cytocompatibility-based assessments of acellular scaffolds. The detergent detection assay presented here is a useful nondestructive tool for assessing detergent removal in potential decellularization schemes or for use as a potential endpoint in future clinical schemes, generating acellular lungs using anionic detergent-based decellularization protocols.

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Year:  2016        PMID: 26905643      PMCID: PMC4870652          DOI: 10.1089/ten.TEC.2015.0439

Source DB:  PubMed          Journal:  Tissue Eng Part C Methods        ISSN: 1937-3384            Impact factor:   3.056


  34 in total

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2.  Perfusion-decellularized matrix: using nature's platform to engineer a bioartificial heart.

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Journal:  Nat Med       Date:  2008-01-13       Impact factor: 53.440

3.  Development of a decellularized lung bioreactor system for bioengineering the lung: the matrix reloaded.

Authors:  Andrew P Price; Kristen A England; Amy M Matson; Bruce R Blazar; Angela Panoskaltsis-Mortari
Journal:  Tissue Eng Part A       Date:  2010-08       Impact factor: 3.845

4.  Regeneration and orthotopic transplantation of a bioartificial lung.

Authors:  Harald C Ott; Ben Clippinger; Claudius Conrad; Christian Schuetz; Irina Pomerantseva; Laertis Ikonomou; Darrell Kotton; Joseph P Vacanti
Journal:  Nat Med       Date:  2010-07-13       Impact factor: 53.440

5.  Detergent decellularization of heart valves for tissue engineering: toxicological effects of residual detergents on human endothelial cells.

Authors:  Serghei Cebotari; Igor Tudorache; Thomas Jaekel; Andres Hilfiker; Suzanne Dorfman; Waldemar Ternes; Axel Haverich; Artur Lichtenberg
Journal:  Artif Organs       Date:  2010-03       Impact factor: 3.094

6.  Quantification of sodium dodecyl sulfate in microliter-volume biochemical samples by visible light spectroscopy.

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Journal:  Anal Biochem       Date:  2001-08-01       Impact factor: 3.365

7.  Tissue-engineered lungs for in vivo implantation.

Authors:  Thomas H Petersen; Elizabeth A Calle; Liping Zhao; Eun Jung Lee; Liqiong Gui; MichaSam B Raredon; Kseniya Gavrilov; Tai Yi; Zhen W Zhuang; Christopher Breuer; Erica Herzog; Laura E Niklason
Journal:  Science       Date:  2010-06-24       Impact factor: 47.728

8.  Organ reengineering through development of a transplantable recellularized liver graft using decellularized liver matrix.

Authors:  Basak E Uygun; Alejandro Soto-Gutierrez; Hiroshi Yagi; Maria-Louisa Izamis; Maria A Guzzardi; Carley Shulman; Jack Milwid; Naoya Kobayashi; Arno Tilles; Francois Berthiaume; Martin Hertl; Yaakov Nahmias; Martin L Yarmush; Korkut Uygun
Journal:  Nat Med       Date:  2010-06-13       Impact factor: 53.440

Review 9.  An overview of tissue and whole organ decellularization processes.

Authors:  Peter M Crapo; Thomas W Gilbert; Stephen F Badylak
Journal:  Biomaterials       Date:  2011-02-05       Impact factor: 12.479

10.  Clinical transplantation of a tissue-engineered airway.

Authors:  Paolo Macchiarini; Philipp Jungebluth; Tetsuhiko Go; M Adelaide Asnaghi; Louisa E Rees; Tristan A Cogan; Amanda Dodson; Jaume Martorell; Silvia Bellini; Pier Paolo Parnigotto; Sally C Dickinson; Anthony P Hollander; Sara Mantero; Maria Teresa Conconi; Martin A Birchall
Journal:  Lancet       Date:  2008-11-18       Impact factor: 79.321

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  21 in total

1.  Crossing kingdoms: Using decellularized plants as perfusable tissue engineering scaffolds.

Authors:  Joshua R Gershlak; Sarah Hernandez; Gianluca Fontana; Luke R Perreault; Katrina J Hansen; Sara A Larson; Bernard Y K Binder; David M Dolivo; Tianhong Yang; Tanja Dominko; Marsha W Rolle; Pamela J Weathers; Fabricio Medina-Bolivar; Carole L Cramer; William L Murphy; Glenn R Gaudette
Journal:  Biomaterials       Date:  2017-02-10       Impact factor: 12.479

Review 2.  The useful agent to have an ideal biological scaffold.

Authors:  Raziyeh Kheirjou; Jafar Soleimani Rad; Ahad Ferdowsi Khosroshahi; Leila Roshangar
Journal:  Cell Tissue Bank       Date:  2020-11-22       Impact factor: 1.522

3.  Preparation of Decellularized Lung Matrices for Cell Culture and Protein Analysis.

Authors:  Franziska E Uhl; Darcy E Wagner; Daniel J Weiss
Journal:  Methods Mol Biol       Date:  2017

4.  Decellularization and Recellularization Methods for Avian Lungs: An Alternative Approach for Use in Pulmonary Therapeutics.

Authors:  Alicia E Tanneberger; Daniel J Weiss; Juan J Uriarte
Journal:  Methods Mol Biol       Date:  2022

5.  Decellularization of Porcine Carotid Arteries: From the Vessel to the High-Quality Scaffold in Five Hours.

Authors:  Maria Stefania Massaro; Petra Kochová; Richard Pálek; Jáchym Rosendorf; Lenka Červenková; Uta Dahmen; Václav Liška; Vladimíra Moulisová
Journal:  Front Bioeng Biotechnol       Date:  2022-05-16

6.  Comparative biology of decellularized lung matrix: Implications of species mismatch in regenerative medicine.

Authors:  Jenna L Balestrini; Ashley L Gard; Kristin A Gerhold; Elise C Wilcox; Angela Liu; Jonas Schwan; Andrew V Le; Pavlina Baevova; Sashka Dimitrievska; Liping Zhao; Sumati Sundaram; Huanxing Sun; Laure Rittié; Rachel Dyal; Tom J Broekelmann; Robert P Mecham; Martin A Schwartz; Laura E Niklason; Eric S White
Journal:  Biomaterials       Date:  2016-06-16       Impact factor: 12.479

7.  Comparative Decellularization and Recellularization of Wild-Type and Alpha 1,3 Galactosyltransferase Knockout Pig Lungs: A Model for Ex Vivo Xenogeneic Lung Bioengineering and Transplantation.

Authors:  Joseph Platz; Nicholas R Bonenfant; Franziska E Uhl; Amy L Coffey; Tristan McKnight; Charles Parsons; Dino Sokocevic; Zachary D Borg; Ying-Wai Lam; Bin Deng; Julia G Fields; Michael DeSarno; Roberto Loi; Andrew M Hoffman; John Bianchi; Brian Dacken; Thomas Petersen; Darcy E Wagner; Daniel J Weiss
Journal:  Tissue Eng Part C Methods       Date:  2016-07-14       Impact factor: 3.056

Review 8.  Lung bioengineering: advances and challenges in lung decellularization and recellularization.

Authors:  Juan J Uriarte; Franziska E Uhl; Sara E Rolandsson Enes; Robert A Pouliot; Daniel J Weiss
Journal:  Curr Opin Organ Transplant       Date:  2018-12       Impact factor: 2.640

9.  Detection of the residual concentration of sodium dodecyl sulfate in the decellularized whole rabbit kidney extracellular matrix.

Authors:  Fariba Ghorbani; Masomeh Ekhtiari; Behbood Moeini Chaghervand; Lida Moradi; Bahareh Mohammadi; Abdol-Mohammad Kajbafzadeh
Journal:  Cell Tissue Bank       Date:  2021-04-28       Impact factor: 1.522

10.  Optimized protocol for whole organ decellularization.

Authors:  A Schmitt; R Csiki; A Tron; B Saldamli; J Tübel; K Florian; S Siebenlist; E Balmayor; R Burgkart
Journal:  Eur J Med Res       Date:  2017-09-08       Impact factor: 2.175

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