Literature DB >> 28686154

Influence of red blood cell-derived microparticles upon vasoregulation.

Ahmed S Said1, Allan Doctor1,2.   

Abstract

Here we review recent data and the evolving understanding of the role of red blood cell-derived microparticles (RMPs) in normal physiology and in disease progression. Microparticles (MPs) are small membrane vesicles derived from various parent cell types. MPs are produced in response to a variety of stimuli through several cytoskeletal and membrane phospholipid changes. MPs have been investigated as potential biomarkers for multiple disease processes and are thought to have biological effects, most notably in: promotion of coagulation, production and handling of reactive oxygen species, immune modulation, angiogenesis, and in apoptosis. Specifically, RMPs are produced normally during RBC maturation and their production is accelerated during processing and storage for transfusion. Several factors during RBC storage are known to trigger RMP production, including: increased intracellular calcium, increased potassium leakage, and energy failure with ATP depletion. Of note, RMP composition differs from that of intact RBCs, and the nature and composition of RMP components are affected by both storage duration and the character of storage solutions. Recognised RMP bioactivities include: promotion of coagulation, immune modulation, and promotion of endothelial adhesion, as well as influence upon vasoregulation via nitric oxide (NO) scavenging. Of particular relevance, RMPs are more avid NO scavengers than intact RBCs and this feature has been proposed as a mechanism for the impaired oxygen delivery homeostasis that has been observed following transfusion. Preliminary human studies demonstrate that circulating RMP abundance increases with RBC transfusion and is associated with altered plasma vasoactivity and abnormal vasoregulation. In summary, RMPs are submicron particles released from stored RBCs, with demonstrated vasoactive properties that appear to disturb oxygen delivery homeostasis. The clinical impact of RMPs in transfusion recipients is an area of continued investigation.

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Year:  2017        PMID: 28686154      PMCID: PMC5649961          DOI: 10.2450/2017.0353-16

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


  111 in total

1.  Evidence that agonist-induced activation of calpain causes the shedding of procoagulant-containing microvesicles from the membrane of aggregating platelets.

Authors:  J E Fox; C D Austin; C C Reynolds; P K Steffen
Journal:  J Biol Chem       Date:  1991-07-15       Impact factor: 5.157

2.  Shedding of procoagulant microparticles from unstimulated platelets by integrin-mediated destabilization of actin cytoskeleton.

Authors:  Sandra Cauwenberghs; Marion A H Feijge; Alan G S Harper; Stewart O Sage; Joyce Curvers; Johan W M Heemskerk
Journal:  FEBS Lett       Date:  2006-09-12       Impact factor: 4.124

3.  Platelet- and erythrocyte-derived microparticles trigger thrombin generation via factor XIIa.

Authors:  P E J Van Der Meijden; M Van Schilfgaarde; R Van Oerle; T Renné; H ten Cate; H M H Spronk
Journal:  J Thromb Haemost       Date:  2012-07       Impact factor: 5.824

4.  Nitric oxide scavenging by red blood cell microparticles and cell-free hemoglobin as a mechanism for the red cell storage lesion.

Authors:  Chenell Donadee; Nicolaas J H Raat; Tamir Kanias; Jesús Tejero; Janet S Lee; Eric E Kelley; Xuejun Zhao; Chen Liu; Hannah Reynolds; Ivan Azarov; Sheila Frizzell; E Michael Meyer; Albert D Donnenberg; Lirong Qu; Darrel Triulzi; Daniel B Kim-Shapiro; Mark T Gladwin
Journal:  Circulation       Date:  2011-07-11       Impact factor: 29.690

5.  Potassium leakage primes stored erythrocytes for phosphatidylserine exposure and shedding of pro-coagulant vesicles.

Authors:  Patrick Burger; Elena Kostova; Esther Bloem; Petra Hilarius-Stokman; Alexander B Meijer; Timo K van den Berg; Arthur J Verhoeven; Dirk de Korte; Robin van Bruggen
Journal:  Br J Haematol       Date:  2012-11-28       Impact factor: 6.998

6.  Red blood cell microparticles and blood group antigens: an analysis by flow cytometry.

Authors:  Giorgia Canellini; Olivier Rubin; Julien Delobel; David Crettaz; Niels Lion; Jean-Daniel Tissot
Journal:  Blood Transfus       Date:  2012-05       Impact factor: 3.443

Review 7.  Microparticles, vascular function, and atherothrombosis.

Authors:  Pierre-Emmanuel Rautou; Anne-Clémence Vion; Nicolas Amabile; Gilles Chironi; Alain Simon; Alain Tedgui; Chantal M Boulanger
Journal:  Circ Res       Date:  2011-08-19       Impact factor: 17.367

8.  Monocyte- and endothelial-derived microparticles induce an inflammatory phenotype in human podocytes.

Authors:  Jeanette Eyre; James O Burton; Moin A Saleem; Peter W Mathieson; Peter S Topham; Nigel J Brunskill
Journal:  Nephron Exp Nephrol       Date:  2011-08-18

9.  Platelet-derived microparticles induce angiogenesis and stimulate post-ischemic revascularization.

Authors:  Alexander Brill; Olga Dashevsky; Julia Rivo; Yaacov Gozal; David Varon
Journal:  Cardiovasc Res       Date:  2005-07-01       Impact factor: 10.787

10.  Differential stimulation of monocytic cells results in distinct populations of microparticles.

Authors:  M Bernimoulin; E K Waters; M Foy; B M Steele; M Sullivan; H Falet; M T Walsh; N Barteneva; J-G Geng; J H Hartwig; P B Maguire; D D Wagner
Journal:  J Thromb Haemost       Date:  2009-06       Impact factor: 5.824

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  13 in total

Review 1.  Red blood cell storage lesion: causes and potential clinical consequences.

Authors:  Tatsuro Yoshida; Michel Prudent; Angelo D'alessandro
Journal:  Blood Transfus       Date:  2019-01       Impact factor: 3.443

2.  Total plasma heme concentration increases after red blood cell transfusion and predicts mortality in critically ill medical patients.

Authors:  Anthony P Pietropaoli; Kelly F Henrichs; Jill M Cholette; Sherry L Spinelli; Richard P Phipps; Majed A Refaai; Neil Blumberg
Journal:  Transfusion       Date:  2019-02-27       Impact factor: 3.157

Review 3.  Transfusion in children with acute respiratory distress syndrome.

Authors:  Tine François; Guillaume Emeriaud; Oliver Karam; Marisa Tucci
Journal:  Ann Transl Med       Date:  2019-10

Review 4.  Blood Cell-Derived Microvesicles in Hematological Diseases and beyond.

Authors:  Hara T Georgatzakou; Sotirios P Fortis; Effie G Papageorgiou; Marianna H Antonelou; Anastasios G Kriebardis
Journal:  Biomolecules       Date:  2022-06-08

5.  Hemoglobin oxidation-dependent reactions promote interactions with band 3 and oxidative changes in sickle cell-derived microparticles.

Authors:  Sirsendu Jana; Michael Brad Strader; Fantao Meng; Wayne Hicks; Tigist Kassa; Ivan Tarandovskiy; Silvia De Paoli; Jan Simak; Michael R Heaven; John D Belcher; Gregory M Vercellotti; Abdu I Alayash
Journal:  JCI Insight       Date:  2018-11-02

6.  Intra-operative blood transfusion significantly increases the risk of post-operative pulmonary embolism.

Authors:  Qiaojun Zeng; Shufang Tan; Qiang Bao; Shanping Jiang
Journal:  J Thorac Dis       Date:  2019-12       Impact factor: 2.895

7.  Interplay Between Plasma Membrane Lipid Alteration, Oxidative Stress and Calcium-Based Mechanism for Extracellular Vesicle Biogenesis From Erythrocytes During Blood Storage.

Authors:  Anne-Sophie Cloos; Marine Ghodsi; Amaury Stommen; Juliette Vanderroost; Nicolas Dauguet; Hélène Pollet; Ludovic D'Auria; Eric Mignolet; Yvan Larondelle; Romano Terrasi; Giulio G Muccioli; Patrick Van Der Smissen; Donatienne Tyteca
Journal:  Front Physiol       Date:  2020-07-03       Impact factor: 4.566

Review 8.  The role of microvesicles containing microRNAs in vascular endothelial dysfunction.

Authors:  Zeyu Shu; Jin Tan; Yuyang Miao; Qiang Zhang
Journal:  J Cell Mol Med       Date:  2019-10-01       Impact factor: 5.310

9.  Thrombospondin-1/CD47 signaling modulates transmembrane cation conductance, survival, and deformability of human red blood cells.

Authors:  Rosi Bissinger; Polina Petkova-Kirova; Olga Mykhailova; Per-Arne Oldenborg; Elena Novikova; David A Donkor; Thomas Dietz; Abdulla Al Mamun Bhuyan; William P Sheffield; Marijke Grau; Ferruh Artunc; Lars Kaestner; Jason P Acker; Syed M Qadri
Journal:  Cell Commun Signal       Date:  2020-09-18       Impact factor: 5.712

10.  Erythrocyte-derived microvesicles induce arterial spasms in JAK2V617F myeloproliferative neoplasm.

Authors:  Johanne Poisson; Marion Tanguy; Hortense Davy; Fatoumata Camara; Marie-Belle El Mdawar; Marouane Kheloufi; Tracy Dagher; Cécile Devue; Juliette Lasselin; Aurélie Plessier; Salma Merchant; Olivier Blanc-Brude; Michèle Souyri; Nathalie Mougenot; Florent Dingli; Damarys Loew; Stephane N Hatem; Chloé James; Jean-Luc Villeval; Chantal M Boulanger; Pierre-Emmanuel Rautou
Journal:  J Clin Invest       Date:  2020-05-01       Impact factor: 14.808

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