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1.
Am J Physiol Endocrinol Metab ; 307(8): E695-702, 2014 Oct 15.
Article in English | MEDLINE | ID: mdl-25159325

ABSTRACT

Ocular ischemic microenvironment plays a critical role in the progression of diabetic retinopathy (DR). In this study, we investigated the effect of vitreous and aqueous obtained from proliferative DR patients on the function of CD34⁺ cells derived from healthy humans. Human CD34⁺ cells were incubated with vitreous or aqueous of subjects with PDR. After incubation, cell migration of CD34⁺ was evaluated with CXCL12. Intracellular levels of nitric oxide (NO) were measured with DAF-FM. Tube formation assay was used to evaluate the effect of treated CD34⁺ cells on in vitro angiogenesis. Angiogenic protein array and mass spectrometry (MS) were performed to ascertain the factors secreted by healthy nondiabetic CD34⁺ cells exposed to diabetic vitreous or aqueous. PDR vitreous/aqueous reduced migration of CD34⁺ cells (672.45 ± 42.1/736.75 ± 101.7 AFU; P < 0.01) and attenuated intracellular NO levels (182 ± 1.4/184.5 ± 6.3 AFU, P = 0.002). Pretreatment with PDR vitreous suppressed tube formation of human retinal endothelial cells (64 ± 1.6 vs. 80 ± 2.5). CD34⁺ exposed to PDR vitreous resulted in the increased expression of CXCL4 and serpin F1, whereas CD34⁺ exposed to PDR aqueous showed increased expression of CXCL4, serpin F1, and endothelin-1 (ET-1). MS analysis of CD34⁺ (exposed to PDR vitreous) expressed J56 gene segment, isoform 2 of SPARC-related modular calcium-binding protein 2, isoform 1 of uncharacterized protein c1 orf167, integrin α-M, and 40s ribosomal protein s21. Exposure of healthy nondiabetic CD34⁺ cells to PDR vitreous and aqueous resulted in decreased migration, reduced generation of NO, and altered paracrine secretory function. Our results suggest that the contribution of CD34⁺ cells to the aberrant neovascularization observed in PDR is driven more by the proangiogenic effects of the retinal cells rather than the influence of the vitreous.


Subject(s)
Aqueous Humor/metabolism , Diabetic Retinopathy/metabolism , Endothelin-1/metabolism , Eye Proteins/metabolism , Nerve Growth Factors/metabolism , Platelet Factor 4/metabolism , Serpins/metabolism , Vitreoretinopathy, Proliferative/metabolism , Vitreous Body/metabolism , Adult , Adult Stem Cells/cytology , Adult Stem Cells/immunology , Adult Stem Cells/metabolism , Adult Stem Cells/pathology , Aged , Antigens, CD34/metabolism , Aqueous Humor/immunology , Bone Marrow Cells/cytology , Bone Marrow Cells/immunology , Bone Marrow Cells/metabolism , Bone Marrow Cells/pathology , Cells, Cultured , Chemotaxis , Diabetic Retinopathy/immunology , Diabetic Retinopathy/pathology , Endothelin-1/agonists , Endothelin-1/chemistry , Eye Proteins/agonists , Eye Proteins/chemistry , Humans , Middle Aged , Neovascularization, Pathologic/immunology , Neovascularization, Pathologic/metabolism , Neovascularization, Pathologic/pathology , Nerve Growth Factors/agonists , Nerve Growth Factors/chemistry , Nitric Oxide/metabolism , Peptide Mapping , Platelet Factor 4/agonists , Platelet Factor 4/chemistry , Retina/immunology , Retina/metabolism , Retina/pathology , Serpins/agonists , Serpins/chemistry , Vitreoretinopathy, Proliferative/immunology , Vitreoretinopathy, Proliferative/pathology , Vitreous Body/immunology
2.
Mol Cancer Res ; 8(3): 322-34, 2010 Mar.
Article in English | MEDLINE | ID: mdl-20215425

ABSTRACT

Chemokines influence tumor growth directly or indirectly via both angiogenesis and tumor-leukocyte interactions. Platelet factor-4 (CXCL4/PF-4), which is released from alpha-granules of activated platelets, is the first described angiostatic chemokine. Recently, it was found that the variant of CXCL4/PF-4 (CXCL4L1/PF-4var) could exert a more pronounced angiostatic and antitumoral effect than CXCL4/PF-4. However, the molecular mechanisms of the angiostatic activities of the PF-4 forms remain partially elusive. Here, we studied the biological properties of the chemically synthesized COOH-terminal peptides of CXCL4/PF-4 (CXCL4/PF-4(47-70)) and CXCL4L1/PF-4var (CXCL4L1/PF-4var(47-70)). Both PF-4 peptides lacked monocyte and lymphocyte chemotactic activity but equally well inhibited (25 nmol/L) endothelial cell motility and proliferation in the presence of a single stimulus (i.e., exogenous recombinant fibroblast growth factor-2). In contrast, when assayed in more complex angiogenesis test systems characterized by the presence of multiple mediators, including in vitro wound-healing (2.5 nmol/L versus 12.5 nmol/L), Matrigel (60 nmol/L versus 300 nmol/L), and chorioallantoic membrane assays, CXCL4L1/PF-4var(47-70) was found to be significantly (5-fold) more angiostatic than CXCL4/PF-4(47-70). In addition, low (7 microg total) doses of intratumoral CXCL4L1/PF-4var(47-70) inhibited B16 melanoma growth in mice more extensively than CXCL4/PF-4(47-70). This antitumoral activity was predominantly mediated through inhibition of angiogenesis (without affecting blood vessel stability) and induction of apoptosis, as evidenced by immunohistochemical and fluorescent staining of B16 tumor tissue. In conclusion, CXCL4L1/PF-4var(47-70) is a potent antitumoral and antiangiogenic peptide. These results may represent the basis for the design of CXCL4L1/PF-4var COOH-terminal-derived peptidomimetic anticancer drugs.


Subject(s)
Angiostatic Proteins/pharmacology , Antineoplastic Agents/pharmacology , Melanoma, Experimental/drug therapy , Neovascularization, Pathologic/drug therapy , Peptide Fragments/pharmacology , Platelet Factor 4/pharmacology , Angiostatic Proteins/chemistry , Animals , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Biological Assay , Cell Line, Tumor , Cell Movement/drug effects , Cell Movement/physiology , Cell Proliferation/drug effects , Cells, Cultured , Chick Embryo , Disease Models, Animal , Humans , Melanoma, Experimental/blood supply , Melanoma, Experimental/physiopathology , Mice , Mice, Inbred C57BL , Mice, Nude , Neovascularization, Pathologic/physiopathology , Neovascularization, Pathologic/prevention & control , Peptide Fragments/chemical synthesis , Peptide Fragments/chemistry , Platelet Factor 4/agonists , Platelet Factor 4/chemical synthesis , Platelet Factor 4/chemistry
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