Literature DB >> 26935764

Enhanced Re-Endothelialization of Decellularized Rat Lungs.

Collin T Stabler1, Luiz C Caires1,2, Mark J Mondrinos1, Cezary Marcinkiewicz1, Philip Lazarovici1, Marla R Wolfson3, Peter I Lelkes1.   

Abstract

Decellularized lung tissue has been recognized as a potential platform to engineer whole lung organs suitable for transplantation or for modeling a variety of lung diseases. However, many technical hurdles remain before this potential may be fully realized. Inability to efficiently re-endothelialize the pulmonary vasculature with a functional endothelium appears to be the primary cause of failure of recellularized lung scaffolds in early transplant studies. Here, we present an optimized approach for enhanced re-endothelialization of decellularized rodent lung scaffolds with rat lung microvascular endothelial cells (ECs). This was achieved by adjusting the posture of the lung to a supine position during cell seeding through the pulmonary artery. The supine position allowed for significantly more homogeneous seeding and better cell retention in the apex regions of all lobes than the traditional upright position, especially in the right upper and left lobes. Additionally, the supine position allowed for greater cell retention within large diameter vessels (proximal 100-5000 μm) than the upright position, with little to no difference in the small diameter distal vessels. EC adhesion in the proximal regions of the pulmonary vasculature in the decellularized lung was dependent on the binding of EC integrins, specifically α1β1, α2β1, and α5β1 integrins to, respectively, collagen type-I, type-IV, and fibronectin in the residual extracellular matrix. Following in vitro maturation of the seeded constructs under perfusion culture, the seeded ECs spread along the vascular wall, leading to a partial reestablishment of endothelial barrier function as inferred from a custom-designed leakage assay. Our results suggest that attention to cellular distribution within the whole organ is of paramount importance for restoring proper vascular function.

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Year:  2016        PMID: 26935764      PMCID: PMC4870653          DOI: 10.1089/ten.TEC.2016.0012

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


  33 in total

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Journal:  Lab Invest       Date:  2000-12       Impact factor: 5.662

2.  Comparative assessment of detergent-based protocols for mouse lung de-cellularization and re-cellularization.

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Journal:  Tissue Eng Part C Methods       Date:  2012-01-26       Impact factor: 3.056

Review 3.  Vascular inflammation and repair: implications for re-endothelialization, restenosis, and stent thrombosis.

Authors:  Teruo Inoue; Kevin Croce; Toshifumi Morooka; Masashi Sakuma; Koichi Node; Daniel I Simon
Journal:  JACC Cardiovasc Interv       Date:  2011-10       Impact factor: 11.195

4.  Accumulation of fetal fibronectin mRNAs after balloon denudation of rabbit arteries.

Authors:  C Bauters; F Marotte; M Hamon; P Oliviéro; F Farhadian; V Robert; J L Samuel; L Rappaport
Journal:  Circulation       Date:  1995-08-15       Impact factor: 29.690

5.  Initial binding and recellularization of decellularized mouse lung scaffolds with bone marrow-derived mesenchymal stromal cells.

Authors:  Amanda B Daly; John M Wallis; Zachary D Borg; Ryan W Bonvillain; Bin Deng; Bryan A Ballif; Diane M Jaworski; Gilman B Allen; Daniel J Weiss
Journal:  Tissue Eng Part A       Date:  2011-09-23       Impact factor: 3.845

6.  Automated decellularization of intact, human-sized lungs for tissue engineering.

Authors:  Andrew P Price; Lindsay M Godin; Alex Domek; Trevor Cotter; Jonathan D'Cunha; Doris A Taylor; Angela Panoskaltsis-Mortari
Journal:  Tissue Eng Part C Methods       Date:  2015-01       Impact factor: 3.056

7.  Ex vivo non-invasive assessment of cell viability and proliferation in bio-engineered whole organ constructs.

Authors:  Xi Ren; Luis F Tapias; Bernhard J Jank; Douglas J Mathisen; Michael Lanuti; Harald C Ott
Journal:  Biomaterials       Date:  2015-02-21       Impact factor: 12.479

8.  Enhanced in vivo function of bioartificial lungs in rats.

Authors:  Jeremy J Song; Sam S Kim; Zhilin Liu; Joren C Madsen; Douglas J Mathisen; Joseph P Vacanti; Harald C Ott
Journal:  Ann Thorac Surg       Date:  2011-09       Impact factor: 4.330

Review 9.  Applications of snake venom components to modulate integrin activities in cell-matrix interactions.

Authors:  Cezary Marcinkiewicz
Journal:  Int J Biochem Cell Biol       Date:  2013-06-26       Impact factor: 5.085

Review 10.  A review of cellularization strategies for tissue engineering of whole organs.

Authors:  Michelle E Scarritt; Nicholas C Pashos; Bruce A Bunnell
Journal:  Front Bioeng Biotechnol       Date:  2015-03-30
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  12 in total

Review 1.  In Vitro Models to Study Human Lung Development, Disease and Homeostasis.

Authors:  Alyssa J Miller; Jason R Spence
Journal:  Physiology (Bethesda)       Date:  2017-05

Review 2.  Bioengineering the Blood-gas Barrier.

Authors:  Katherine L Leiby; Micha Sam Brickman Raredon; Laura E Niklason
Journal:  Compr Physiol       Date:  2020-03-12       Impact factor: 9.090

Review 3.  Tissue Engineering of the Microvasculature.

Authors:  Joe Tien
Journal:  Compr Physiol       Date:  2019-06-12       Impact factor: 9.090

4.  Laminin-driven Epac/Rap1 regulation of epithelial barriers on decellularized matrix.

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Journal:  Acta Biomater       Date:  2019-10-05       Impact factor: 8.947

5.  Re-endothelialization of rat lung scaffolds through passive, gravity-driven seeding of segment-specific pulmonary endothelial cells.

Authors:  Michelle E Scarritt; Nicholas C Pashos; Jessica M Motherwell; Zachary R Eagle; Brian J Burkett; Ashley N Gregory; Ricardo Mostany; Daniel J Weiss; Diego F Alvarez; Bruce A Bunnell
Journal:  J Tissue Eng Regen Med       Date:  2017-05-07       Impact factor: 3.963

Review 6.  Developmental pathways in lung regeneration.

Authors:  Collin T Stabler; Edward E Morrisey
Journal:  Cell Tissue Res       Date:  2016-12-13       Impact factor: 5.249

7.  A Two-Step Bioreactor for Decellularized Lung Epithelialization.

Authors:  Bethany M Young; Leigh-Ann M Antczak; Keerthana Shankar; Rebecca L Heise
Journal:  Cells Tissues Organs       Date:  2021-09-09       Impact factor: 2.208

8.  Generation of vascular chimerism within donor organs.

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9.  Effects of two different decellularization routes on the mechanical properties of decellularized lungs.

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Journal:  PLoS One       Date:  2017-06-01       Impact factor: 3.240

Review 10.  Whole Organ Tissue Vascularization: Engineering the Tree to Develop the Fruits.

Authors:  Alessandro F Pellegata; Alfonso M Tedeschi; Paolo De Coppi
Journal:  Front Bioeng Biotechnol       Date:  2018-05-14
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