Global Remodeling of the Vascular Stem Cell Niche in Bone Marrow of Diabetic Patients

Author:

Spinetti Gaia1,Cordella Daniela1,Fortunato Orazio1,Sangalli Elena1,Losa Sergio1,Gotti Ambra1,Carnelli Franco1,Rosa Francesco1,Riboldi Stefano1,Sessa Fausto1,Avolio Elisa1,Beltrami Antonio Paolo1,Emanueli Constanza1,Madeddu Paolo1

Affiliation:

1. From the Laboratories of Experimental Cardiovascular Medicine (P.M., E.A.) and Vascular Pathology and Regeneration (C.E.), University of Bristol, Bristol, United Kingdom; IRCCS MultiMedica, Milan, Italy (G.S., D.C., O.F., E.S., S.L., A.G., F.C., S.R.); School of Medicine, University of L’Aquila, L’Aquila, Italy (F.R.); Department of Surgical and Morphological Science, University of Insubria (F.S.), Varese, Italy; and Interdepartmental Centre for Regenerative Medicine, University of Udine, Udine,...

Abstract

Rationale: The impact of diabetes mellitus on bone marrow (BM) structure is incompletely understood. Objective: Investigate the effect of type-2 diabetes mellitus (T2DM) on BM microvascular and hematopoietic cell composition in patients without vascular complications. Methods and Results: Bone samples were obtained from T2DM patients and nondiabetic controls (C) during hip replacement surgery and from T2DM patients undergoing amputation for critical limb ischemia. BM composition was assessed by histomorphometry, immunostaining, and flow cytometry. Expressional studies were performed on CD34 pos immunosorted BM progenitor cells (PCs). Diabetes mellitus causes a reduction of hematopoietic tissue, fat deposition, and microvascular rarefaction, especially when associated with critical limb ischemia. Immunohistochemistry documented increased apoptosis and reduced abundance of CD34 pos -PCs in diabetic groups. Likewise, flow cytometry showed scarcity of BM PCs in T2DM and T2DM+critical limb ischemia compared with C, but similar levels of mature hematopoietic cells. Activation of apoptosis in CD34 pos -PCs was associated with upregulation and nuclear localization of the proapoptotic factor FOXO3a and induction of FOXO3a targets, p21 and p27 kip1 . Moreover, microRNA-155, which regulates cell survival through inhibition of FOXO3a, was downregulated in diabetic CD34 pos -PCs and inversely correlated with FOXO3a levels. The effect of diabetes mellitus on anatomic and molecular end points was confirmed when considering background covariates. Furthermore, exposure of healthy CD34 pos -PCs to high glucose reproduced the transcriptional changes induced by diabetes mellitus, with this effect being reversed by forced expression of microRNA-155. Conclusions: We provide new anatomic and molecular evidence for the damaging effect of diabetes mellitus on human BM, comprising microvascular rarefaction and shortage of PCs attributable to activation of proapoptotic pathway.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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