Literature DB >> 18661919

Platelet gel-released supernatant modulates the angiogenic capability of human endothelial cells.

Anna Rughetti1, Ilaria Giusti, Sandra D'Ascenzo, Pietro Leocata, Gaspare Carta, Antonio Pavan, Luigi Dell'Orso, Vincenza Dolo.   

Abstract

BACKGROUND: Platelet gel is used to facilitate wound healing in virtue of the growth factors released from activated platelets at the site of lesion, but little is known about the specific mechanisms underlying cellular repair. AIMS: To evaluate, in vitro, cellular effects of different concentrations of platelet gel -released supernatant on endothelial cells.
MATERIAL AND METHODS: Platelet concentrate was produced at the Service of Immunohaematology and Transfusion of San Salvatore Hospital of L'Aquila, using multiple bags. Platelet gel was obtained by adding thrombin and calcium gluconate to the concentrates and then centrifuging to recover the supernatant. Human umbilical vein endothelial cells were isolated from umbilical cord veins and grown in appropriate conditions. To study their viability, cells were treated with different concentrations of supernatant and XTT assays were performed on the 3 days following treatment. Endothelial cell motility and invasiveness were assayed using modified Boyden chambers with filters coated with 0.1% gelatin (for the motility test) or with a thick layer of the reconstituted basement membrane Matrigel (for the invasion test). The supernatant, added at various concentrations to the lower compartment of the chamber, was used as an attractant. Umbilical cells were added to the upper compartment of the chamber. After 4 hours (for the motility test) or 6 hours (for the invasion test), filters were stained and the migrated cells in five high-power fields were counted.
RESULTS: When used at specific concentrations, platelet gel-released supernatant is able to induce proliferation and to stimulate motility and invasiveness of endothelial human cells. Higher concentrations induce a reversion of the stimulatory processes.
CONCLUSIONS: There is a large body of evidence indicating that platelets and their derivatives have the potential for a substantial therapeutic role in tissue regeneration. The results of this in vitro study highlight the need for an in-depth analysis of technical protocols for the most appropriate and effective use of platelet gel for in vivo applications.

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Year:  2008        PMID: 18661919      PMCID: PMC2626859          DOI: 10.2450/2008.0026-07

Source DB:  PubMed          Journal:  Blood Transfus        ISSN: 1723-2007            Impact factor:   3.443


  12 in total

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5.  Platelet-rich plasma: Growth factor enhancement for bone grafts.

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6.  Platelet-rich plasmas: growth factor content and roles in wound healing.

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Journal:  J Dent Res       Date:  2005-05       Impact factor: 6.116

7.  Trophic effects of platelets on cultured endothelial cells are mediated by platelet-associated fibroblast growth factor-2 (FGF-2) and vascular endothelial growth factor (VEGF).

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Authors:  I Martineau; E Lacoste; G Gagnon
Journal:  Biomaterials       Date:  2004-08       Impact factor: 12.479

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3.  Comparative effect of human platelet derivatives on proliferation and osteogenic differentiation of menstrual blood-derived stem cells.

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5.  Leukocyte depletion does not affect the in vitro healing ability of platelet rich plasma.

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Review 6.  In vitro evidence supporting applications of platelet derivatives in regenerative medicine.

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8.  Rejuvenating the periorbital area using platelet-rich plasma: a systematic review and meta-analysis.

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9.  Platelet concentration in platelet-rich plasma affects tenocyte behavior in vitro.

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Review 10.  Principles and Methods of Preparation of Platelet-Rich Plasma: A Review and Author's Perspective.

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