Literature DB >> 22290832

Adipose tissue-derived mesenchymal stem cells improve revascularization outcomes to restore renal function in swine atherosclerotic renal artery stenosis.

Alfonso Eirin1, Xiang-Yang Zhu, James D Krier, Hui Tang, Kyra L Jordan, Joseph P Grande, Amir Lerman, Stephen C Textor, Lilach O Lerman.   

Abstract

Reno-protective strategies are needed to improve renal outcomes in patients with atherosclerotic renal artery stenosis (ARAS). Adipose tissue-derived mesenchymal stem cells (MSCs) can promote renal regeneration, but their potential for attenuating cellular injury and restoring kidney repair in ARAS has not been explored. We hypothesized that replenishment of MSC as an adjunct to percutaneous transluminal renal angioplasty (PTRA) would restore renal cellular integrity and improve renal function in ARAS pigs. Four groups of pigs (n = 7 each) were studied after 16 weeks of ARAS, ARAS 4 weeks after PTRA and stenting with or without adjunct intrarenal delivery of MSC (10 × 10(6) cells), and controls. Stenotic kidney blood flow (renal blood flow [RBF]) and glomerular filtration rate (GFR) were measured using multidetector computer tomography (CT). Renal microvascular architecture (micro-CT), fibrosis, inflammation, and oxidative stress were evaluated ex vivo. Four weeks after successful PTRA, mean arterial pressure fell to a similar level in all revascularized groups. Stenotic kidney GFR and RBF remained decreased in ARAS (p = .01 and p = .02) and ARAS + PTRA (p = .02 and p = .03) compared with normal but rose to normal levels in ARAS + PTRA + MSC (p = .34 and p = .46 vs. normal). Interstitial fibrosis, inflammation, microvascular rarefaction, and oxidative stress were attenuated only in PTRA + MSC-treated pigs. A single intrarenal delivery of MSC in conjunction with renal revascularization restored renal hemodynamics and function and decreased inflammation, apoptosis, oxidative stress, microvascular loss, and fibrosis. This study suggests a unique and novel therapeutic potential for MSC in restoring renal function when combined with PTRA in chronic experimental renovascular disease.
Copyright © 2012 AlphaMed Press.

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Year:  2012        PMID: 22290832      PMCID: PMC3694782          DOI: 10.1002/stem.1047

Source DB:  PubMed          Journal:  Stem Cells        ISSN: 1066-5099            Impact factor:   6.277


  43 in total

1.  Clinicopathological correlation in biopsy-proven atherosclerotic nephropathy: implications for renal functional outcome in atherosclerotic renovascular disease.

Authors:  J R Wright; A Duggal; R Thomas; R Reeve; I S Roberts; P A Kalra
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2.  Assessment of renal hemodynamics and function in pigs with 64-section multidetector CT: comparison with electron-beam CT.

Authors:  Elena Daghini; Andrew N Primak; Alejandro R Chade; James D Krier; Xiang-Yang Zhu; Erik L Ritman; Cynthia H McCollough; Lilach O Lerman
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3.  Bone marrow contributes to renal parenchymal turnover and regeneration.

Authors:  R Poulsom; S J Forbes; K Hodivala-Dilke; E Ryan; S Wyles; S Navaratnarasah; R Jeffery; T Hunt; M Alison; T Cook; C Pusey; N A Wright
Journal:  J Pathol       Date:  2001-09       Impact factor: 7.996

4.  Severity of renal vascular disease predicts mortality in patients undergoing coronary angiography.

Authors:  P J Conlon; M A Little; K Pieper; D B Mark
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5.  Atherosclerotic renal arterial stenosis: clinical outcomes of stent placement for hypertension and renal failure.

Authors:  Kanwar S Gill; Richard C Fowler
Journal:  Radiology       Date:  2003-01-24       Impact factor: 11.105

Review 6.  The immunomodulatory properties of mesenchymal stem cells.

Authors:  Ilaria Marigo; Francesco Dazzi
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7.  Mechanisms of renal structural alterations in combined hypercholesterolemia and renal artery stenosis.

Authors:  Alejandro R Chade; Martin Rodriguez-Porcel; Joseph P Grande; Xiangyang Zhu; Vincenzo Sica; Claudio Napoli; Tatsuya Sawamura; Stephen C Textor; Amir Lerman; Lilach O Lerman
Journal:  Arterioscler Thromb Vasc Biol       Date:  2003-05-15       Impact factor: 8.311

8.  Bone marrow stem cells contribute to repair of the ischemically injured renal tubule.

Authors:  Sujata Kale; Anil Karihaloo; Paul R Clark; Michael Kashgarian; Diane S Krause; Lloyd G Cantley
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9.  Prevalence of renovascular disease in the elderly: a population-based study.

Authors:  Kimberley J Hansen; Matthew S Edwards; Timothy E Craven; Gregory S Cherr; Sharon A Jackson; Richard G Appel; Gregory L Burke; Richard H Dean
Journal:  J Vasc Surg       Date:  2002-09       Impact factor: 4.268

10.  Distinct renal injury in early atherosclerosis and renovascular disease.

Authors:  Alejandro R Chade; Martin Rodriguez-Porcel; Joseph P Grande; James D Krier; Amir Lerman; J Carlos Romero; Claudio Napoli; Lilach O Lerman
Journal:  Circulation       Date:  2002-08-27       Impact factor: 29.690

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  111 in total

Review 1.  The regenerative role of adipose-derived stem cells (ADSC) in plastic and reconstructive surgery.

Authors:  Naghmeh Naderi; Emman J Combellack; Michelle Griffin; Tina Sedaghati; Muhammad Javed; Michael W Findlay; Christopher G Wallace; Afshin Mosahebi; Peter Em Butler; Alexander M Seifalian; Iain S Whitaker
Journal:  Int Wound J       Date:  2016-02-01       Impact factor: 3.315

2.  MicroRNA and mRNA cargo of extracellular vesicles from porcine adipose tissue-derived mesenchymal stem cells.

Authors:  Alfonso Eirin; Scott M Riester; Xiang-Yang Zhu; Hui Tang; Jared M Evans; Daniel O'Brien; Andre J van Wijnen; Lilach O Lerman
Journal:  Gene       Date:  2014-08-23       Impact factor: 3.688

3.  Mesenchymal Stem Cell-derived Extracellular Vesicles for Renal Repair.

Authors:  Arash Aghajani Nargesi; Lilach O Lerman; Alfonso Eirin
Journal:  Curr Gene Ther       Date:  2017       Impact factor: 4.391

Review 4.  Concise Review: Kidney Generation with Human Pluripotent Stem Cells.

Authors:  Ryuji Morizane; Tomoya Miyoshi; Joseph V Bonventre
Journal:  Stem Cells       Date:  2017-09-26       Impact factor: 6.277

5.  Mesenchymal stem cells and endothelial progenitor cells decrease renal injury in experimental swine renal artery stenosis through different mechanisms.

Authors:  Xiang-Yang Zhu; Victor Urbieta-Caceres; James D Krier; Stephen C Textor; Amir Lerman; Lilach O Lerman
Journal:  Stem Cells       Date:  2013-01       Impact factor: 6.277

6.  Mitochondrial targeted peptides attenuate residual myocardial damage after reversal of experimental renovascular hypertension.

Authors:  Alfonso Eirin; Barbara J Williams; Behzad Ebrahimi; Xin Zhang; John A Crane; Amir Lerman; Stephen C Textor; Lilach O Lerman
Journal:  J Hypertens       Date:  2014-01       Impact factor: 4.844

7.  Renal vein cytokine release as an index of renal parenchymal inflammation in chronic experimental renal artery stenosis.

Authors:  Alfonso Eirin; Xin Zhang; Xiang-Yang Zhu; Hui Tang; Kyra L Jordan; Joseph P Grande; Allan B Dietz; Amir Lerman; Stephen C Textor; Lilach O Lerman
Journal:  Nephrol Dial Transplant       Date:  2013-10-03       Impact factor: 5.992

8.  TGF expression and macrophage accumulation in atherosclerotic renal artery stenosis.

Authors:  Monika L Gloviczki; Mira T Keddis; Vesna D Garovic; Hanna Friedman; Sandra Herrmann; Michael A McKusick; Sanjay Misra; Joseph P Grande; Lilach O Lerman; Stephen C Textor
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Review 9.  Emerging Paradigms in Chronic Kidney Ischemia.

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Journal:  Hypertension       Date:  2018-11       Impact factor: 10.190

10.  In a Phase 1a escalating clinical trial, autologous mesenchymal stem cell infusion for renovascular disease increases blood flow and the glomerular filtration rate while reducing inflammatory biomarkers and blood pressure.

Authors:  Abdelrhman Abumoawad; Ahmed Saad; Christopher M Ferguson; Alfonso Eirin; Sandra M Herrmann; LaTonya J Hickson; Busra B Goksu; Emily Bendel; Sanjay Misra; James Glockner; Allan B Dietz; Lilach O Lerman; Stephen C Textor
Journal:  Kidney Int       Date:  2019-12-13       Impact factor: 10.612

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