Literature DB >> 27173919

Microparticles as new markers of cardiovascular risk in diabetes and beyond.

Francesca Santilli, Marco Marchisio, Paola Lanuti, Andrea Boccatonda, Sebastiano Miscia, Giovanni Davì1.   

Abstract

The term microparticle (MP) identifies a heterogeneous population of vesicles playing a relevant role in the pathogenesis of vascular diseases, cancer and metabolic diseases such as diabetes mellitus. MPs are released by virtually all cell types by shedding during cell growth, proliferation, activation, apoptosis or senescence processes. MPs, in particular platelet- and endothelial-derived MPs (PMPs and EMPs), are increased in a wide range of thrombotic disorders, with an interesting relationship between their levels and disease pathophysiology, activity or progression. EMP plasma levels have been associated with several cardiovascular diseases and risk factors. PMPs are also shown to be involved in the progressive formation of atherosclerotic plaque and development of arterial thrombosis, especially in diabetic patients. Indeed, diabetes is characterised by an increased procoagulant state and by a hyperreactive platelet phenotype, with enhanced adhesion, aggregation, and activation. Elevated MP levels, such as TF+ MPs, have been shown to be one of the procoagulant determinants in patients with type 2 diabetes mellitus. Atherosclerotic plaque constitutes an opulent source of sequestered MPs, called "plaque" MPs. Otherwise, circulating MPs represent a TF reservoir, named "blood-borne" TF, challenging the dogma that TF is a constitutive protein expressed in minute amounts. "Blood-borne" TF is mainly harboured by PMPs, and it can be trapped within the developing thrombus. MP detection and enumeration by polychromatic flow cytometry (PFC) have opened interesting perspectives in clinical settings, particularly for the evaluation of MP numbers and phenotypes as independent marker of cardiovascular risk, disease and outcome in diabetic patients.

Entities:  

Keywords:  Microparticles; atherosclerosis; diabetes; platelet; tissue factor

Mesh:

Substances:

Year:  2016        PMID: 27173919     DOI: 10.1160/TH16-03-0176

Source DB:  PubMed          Journal:  Thromb Haemost        ISSN: 0340-6245            Impact factor:   5.249


  29 in total

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Journal:  J Appl Physiol (1985)       Date:  2020-04-23

2.  High glucose derived endothelial microparticles increase active caspase-3 and reduce microRNA-Let-7a expression in endothelial cells.

Authors:  Tyler D Bammert; Jamie G Hijmans; Whitney R Reiakvam; Ma'ayan V Levy; Lillian M Brewster; Zoe A Goldthwaite; Jared J Greiner; Kelly A Stockelman; Christopher A DeSouza
Journal:  Biochem Biophys Res Commun       Date:  2017-09-20       Impact factor: 3.575

3.  Platelet microparticles contribute to aortic vascular endothelial injury in diabetes via the mTORC1 pathway.

Authors:  Gui-Hua Wang; Kun-Ling Ma; Yang Zhang; Ze-Bo Hu; Liang Liu; Jian Lu; Pei-Pei Chen; Chen-Chen Lu; Xiong-Zhong Ruan; Bi-Cheng Liu
Journal:  Acta Pharmacol Sin       Date:  2018-11-16       Impact factor: 6.150

4.  Deposition of platelet-derived microparticles in podocytes contributes to diabetic nephropathy.

Authors:  Si Jia Huang; Yang Zhang; Gui Hua Wang; Jian Lu; Pei Pei Chen; Jia Xiu Zhang; Xue Qi Li; Ben Yin Yuan; Xiao Qi Liu; Ting Ting Jiang; Meng Ying Wang; Wen Tao Liu; Xiong Zhong Ruan; Bi Cheng Liu; Kun Ling Ma
Journal:  Int Urol Nephrol       Date:  2022-08-05       Impact factor: 2.266

5.  Global REACH 2018: dysfunctional extracellular microvesicles in Andean highlander males with excessive erythrocytosis.

Authors:  L Madden Brewster; Anthony R Bain; Vinicius P Garcia; Hannah K Fandl; Rachel Stone; Noah M DeSouza; Jared J Greiner; Michael M Tymko; Gustavo A Vizcardo-Galindo; Romulo J Figueroa-Mujica; Francisco C Villafuerte; Philip N Ainslie; Christopher A DeSouza
Journal:  Am J Physiol Heart Circ Physiol       Date:  2021-03-12       Impact factor: 4.733

6.  Circulating microparticles in acute diabetic Charcot foot exhibit a high content of inflammatory cytokines, and support monocyte-to-osteoclast cell induction.

Authors:  Jennifer Pasquier; Binitha Thomas; Jessica Hoarau-Véchot; Tala Odeh; Amal Robay; Omar Chidiac; Soha R Dargham; Rebal Turjoman; Anna Halama; Khalid Fakhro; Robert Menzies; Amin Jayyousi; Mahmoud Zirie; Jassim Al Suwaidi; Arash Rafii; Rayaz A Malik; Talal Talal; Charbel Abi Khalil
Journal:  Sci Rep       Date:  2017-11-27       Impact factor: 4.379

7.  Biogenesis of Pro-senescent Microparticles by Endothelial Colony Forming Cells from Premature Neonates is driven by SIRT1-Dependent Epigenetic Regulation of MKK6.

Authors:  Stéphanie Simoncini; Anne-Line Chateau; Stéphane Robert; Dilyana Todorova; Catherine Yzydorzick; Romaric Lacroix; Isabelle Ligi; Laurence Louis; Richard Bachelier; Umberto Simeoni; Frédérique Magdinier; Françoise Dignat-George; Florence Sabatier
Journal:  Sci Rep       Date:  2017-08-15       Impact factor: 4.379

8.  Iso-Osmolar Iodixanol Induces Less Increase in Circulating Endothelial Microparticles In Vivo and Less Endothelial Apoptosis In Vitro Compared with Low-Osmolar Iohexol.

Authors:  Beijian Zhang; Yi Zhang; Bo Liu; Lu Fang; Yigang Li; Shu Meng
Journal:  Contrast Media Mol Imaging       Date:  2018-04-10       Impact factor: 3.161

Review 9.  In the View of Endothelial Microparticles: Novel Perspectives for Diagnostic and Pharmacological Management of Cardiovascular Risk during Diabetes Distress.

Authors:  Larissa Pernomian; Jôsimar Dornelas Moreira; Mayara Santos Gomes
Journal:  J Diabetes Res       Date:  2018-05-13       Impact factor: 4.011

Review 10.  Extracellular Vesicles Involvement in the Modulation of the Glioblastoma Environment.

Authors:  Fausta Ciccocioppo; Paola Lanuti; Marco Marchisio; Sebastiano Miscia
Journal:  J Oncol       Date:  2020-01-28       Impact factor: 4.375

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