Restoration of Hydrogen Sulfide Production in Diabetic Mice Improves Reparative Function of Bone Marrow Cells

被引:49
作者
Cheng, Zhongjian [1 ]
Garikipati, Venkata Naga Srikanth [1 ]
Nickoloff, Emily [1 ]
Wang, Chunlin [1 ]
Polhemus, David J. [3 ,4 ]
Zhou, Jibin [1 ]
Benedict, Cynthia [1 ]
Khan, Mohsin [1 ]
Verma, Suresh K. [1 ]
Rabinowitz, Joseph E. [1 ,2 ]
Lefer, David [3 ,4 ]
Kishore, Raj [1 ,2 ]
机构
[1] Temple Univ, Lewis Katz Sch Med, Ctr Translat Med, Philadelphia, PA 19122 USA
[2] Temple Univ, Lewis Katz Sch Med, Dept Pharmacol, Philadelphia, PA 19122 USA
[3] Louisiana State Univ, Hlth Sci Ctr, Dept Pharmacol & Expt Therapeut, New Orleans, LA USA
[4] Louisiana State Univ, Cardiovasc Ctr Excellence, New Orleans, LA USA
关键词
bone marrow cells; cell transplantation; diabetes mellitus; ischemia; MESENCHYMAL STEM-CELLS; CYSTATHIONINE GAMMA-LYASE; NITRIC-OXIDE SYNTHASE; MYOCARDIAL-INFARCTION; ISCHEMIC-MYOCARDIUM; ENDOTHELIAL-CELLS; HINDLIMB ISCHEMIA; THERAPY PROTECTS; H2S; ANGIOGENESIS;
D O I
10.1161/CIRCULATIONAHA.116.022967
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND: Bone marrow cell (BMC)-based treatment for critical limb ischemia in diabetic patients yielded a modest therapeutic effect resulting from cell dysfunction. Therefore, approaches that improve diabetic stem/progenitor cell functions may provide therapeutic benefits. Here, we tested the hypothesis that restoration of hydrogen sulfide (H2S) production in diabetic BMCs improves their reparative capacities. METHODS: Mouse BMCs were isolated by density-gradient centrifugation. Unilateral hind limb ischemia was conducted in 12- to 14-week-old db/+ and db/db mice by ligation of the left femoral artery. The H2S level was measured by either gas chromatography or staining with florescent dye sulfidefluor 7 AM. RESULTS: Both H2S production and cystathionine.-lyase (CSE), an H2S enzyme, levels were significantly decreased in BMCs from diabetic db/db mice. Administration of H2S donor diallyl trisulfide (DATS) or overexpression of CSE restored H2S production and enhanced cell survival and migratory capacity in high glucose (HG)-treated BMCs. Immediately after hind limb ischemia surgery, the db/+ and db/db mice were administered DATS orally and/or given a local intramuscular injection of green fluorescent protein-labeled BMCs or red fluorescent protein-CSE-overexpressing BMCs (CSE-BMCs). Mice with hind limb ischemia were divided into 6 groups: db/+, db/db, db/db+BMCs, db/db+DATS, db/db+DATS+BMCs, and db/db+CSE-BMCs. DATS and CSE overexpression greatly enhanced diabetic BMC retention in ischemic hind limbs followed by improved blood perfusion, capillary/arteriole density, skeletal muscle architecture, and cell survival and decreased perivascular CD68(+) cell infiltration in the ischemic hind limbs of diabetic mice. It is interesting to note that DATS or CSE overexpression rescued high glucose-impaired migration, tube formation, and survival of BMCs or mature human cardiac microvascular endothelial cells. Moreover, DATS restored nitric oxide production and decreased endothelial nitric oxide synthase phosphorylation at threonine 495 levels in human cardiac microvascular endothelial cells and improved BMC angiogenic activity under high glucose condition. Last, silencing CSE by siRNA significantly increased endothelial nitric oxide synthase phosphorylation at threonine 495 levels in human cardiac microvascular endothelial cells. CONCLUSIONS: Decreased CSE-mediated H2S bioavailability is an underlying source of BMC dysfunction in diabetes mellitus. Our data indicate that H2S and overexpression of CSE in diabetic BMCs may rescue their dysfunction and open novel avenues for cell-based therapeutics of critical limb ischemia in diabetic patients.
引用
收藏
页码:1467 / +
页数:39
相关论文
共 53 条
[1]   Crosstalk between hydrogen sulfide and nitric oxide in endothelial cells [J].
Altaany, Zaid ;
Yang, Guangdong ;
Wang, Rui .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2013, 17 (07) :879-888
[2]   Isolation of putative progenitor endothelial cells for angiogenesis [J].
Asahara, T ;
Murohara, T ;
Sullivan, A ;
Silver, M ;
vanderZee, R ;
Li, T ;
Witzenbichler, B ;
Schatteman, G ;
Isner, JM .
SCIENCE, 1997, 275 (5302) :964-967
[3]   Nitrite Anion Therapy Protects Against Chronic Ischemic Tissue Injury in db/db Diabetic Mice in a NO/VEGF-Dependent Manner [J].
Bir, Shyamal C. ;
Pattillo, Christopher B. ;
Pardue, Sibile ;
Kolluru, Gopi K. ;
Shen, Xinggui ;
Giordano, Tony ;
Kevil, Christopher G. .
DIABETES, 2014, 63 (01) :270-281
[4]   Hydrogen Sulfide Stimulates Ischemic Vascular Remodeling Through Nitric Oxide Synthase and Nitrite Reduction Activity Regulating Hypoxia-Inducible Factor-1α and Vascular Endothelial Growth Factor-Dependent Angiogenesis [J].
Bir, Shyamal C. ;
Kolluru, Gopi K. ;
McCarthy, Paul ;
Shen, Xinggui ;
Pardue, Sibile ;
Pattillo, Christopher B. ;
Kevil, Christopher G. .
JOURNAL OF THE AMERICAN HEART ASSOCIATION, 2012, 1 (05) :e004093
[5]   Incidence of re-amputation following partial first ray amputation associated with diabetes mellitus and peripheral sensory neuropathy: a systematic review [J].
Borkosky, Sara L. ;
Roukis, Thomas S. .
DIABETIC FOOT & ANKLE, 2012, 3 (01)
[6]   Biosynthesis of H2S is impaired in non-obese diabetic (NOD) mice [J].
Brancaleone, V. ;
Roviezzo, F. ;
Vellecco, V. ;
De Gruttola, L. ;
Bucci, M. ;
Cirino, G. .
BRITISH JOURNAL OF PHARMACOLOGY, 2008, 155 (05) :673-680
[7]   Hydrogen Sulfide Mediates Cardioprotection Through Nrf2 Signaling [J].
Calvert, John W. ;
Jha, Saurabh ;
Gundewar, Susheel ;
Elrod, John W. ;
Ramachandran, Arun ;
Pattillo, Christopher B. ;
Kevil, Christopher G. ;
Lefer, David J. .
CIRCULATION RESEARCH, 2009, 105 (04) :365-U105
[8]   Hyperhomocysteinemia and Hyperglycemia Induce and Potentiate Endothelial Dysfunction via μ-Calpain Activation [J].
Cheng, Zhongjian ;
Jiang, Xiaohua ;
Pansuria, Meghana ;
Fang, Pu ;
Mai, Jietang ;
Mallilankaraman, Karthik ;
Gandhirajan, Rajesh Kumar ;
Eguchi, Satoru ;
Scalia, Rosario ;
Madesh, Muniswamy ;
Yang, Xiaofeng ;
Wang, Hong .
DIABETES, 2015, 64 (03) :947-959
[9]   Hyperhomocysteinemia impairs endothelium-derived hyperpolarizing factor-mediated vasorelaxation in transgenic cystathionine beta synthase-deficient mice [J].
Cheng, Zhongjian ;
Jiang, Xiaohua ;
Kruger, Warren D. ;
Pratico, Domenico ;
Gupta, Sapna ;
Mallilankaraman, Karthik ;
Madesh, Muniswamy ;
Schafer, Andrew I. ;
Durante, William ;
Yang, Xiaofeng ;
Wang, Hong .
BLOOD, 2011, 118 (07) :1998-2006
[10]   Hydrogen sulfide and nitric oxide are mutually dependent in the regulation of angiogenesis and endothelium-dependent vasorelaxation [J].
Coletta, Ciro ;
Papapetropoulos, Andreas ;
Erdelyi, Katalin ;
Olah, Gabor ;
Modis, Katalin ;
Panopoulos, Panagiotis ;
Asimakopoulou, Antonia ;
Geroe, Domokos ;
Sharina, Iraida ;
Martin, Emil ;
Szabo, Csaba .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (23) :9161-9166