共查询到20条相似文献,搜索用时 26 毫秒
1.
2.
Increasing numbers of paediatric patients with congenital heart defects are surviving to adulthood, albeit with continuing clinical needs. Hence, there is still scope for revolutionary new strategies to correct vascular anatomical defects. Adult patients are also surviving longer with the adverse consequences of ischemic vascular disease, especially after acute coronary syndromes brought on by plaque erosion and rupture. Vascular tissue engineering and therapeutic angiogenesis provide new hope for these patients. Both approaches have shown promise in laboratory studies, but have not yet been able to deliver clear evidence of clinical success. More research into biomaterials, molecular medicine and cell and molecular therapies is necessary. This review article focuses on the new opportunities offered by targeting microRNAs for the improved production and greater empowerment of vascular cells for use in vascular tissue engineering or for increasing blood perfusion of ischemic tissues by amplifying the resident microvascular network. 相似文献
3.
Human embryonic stem cells (hESC) offer broad potential for regenerative medicine owing to their capacity for self renewal, exponential scale up and differentiation into any cell type in the adult body. hESC have been proposed as a potentially unlimited source for the generation of transplantable, healthy, functional vascular cells for repair of ischemic tissues. To optimally harness this potential necessitates precise control over biological processes that govern maintenance, pluripotency and cell differentiation including signalling cascades, gene expression profiles and epigenetic modification. Such control may be elicited by microRNAs, which are powerful negative regulators of gene expression. Here, we review the role for miRNAs in both the maintenance of pluripotency and differentiation of cells to a cardiovascular lineage including endothelial cells, vascular smooth muscle cells and cardiomyocytes and put this into context for regenerative medicine in the cardiovascular system. 相似文献
4.
MicroRNAs and vascular (dys)function 总被引:1,自引:0,他引:1
MicroRNAs (miRNAs) are small non-coding RNAs, that control diverse cellular functions by either promoting degradation or inhibition of target messenger RNA translation. An aberrant expression profile of miRNAs has been linked to human diseases, including cardiovascular dysfunction. This review summarizes the latest insights in the identification of vascular-specific miRNAs and their targets, as well as their roles and mechanisms in the vasculature. Furthermore, we discuss how manipulation of these miRNAs could represent a novel therapeutic approach in the treatment of vascular dysfunction. 相似文献
5.
《Drug discovery today. Disease models》2013,10(3):e137-e143
6.
7.
MicroRNAs in platelet biogenesis and function: implications in vascular homeostasis and inflammation
Platelets are involved in vascular homeostasis and inflammation through interaction with circulating blood cells and vascular wall. MiRNAs are small, conserved and non-coding RNA molecules, which interact directly with specific mRNAs regions regulating gene expression. The purpose of this review is to gather all known platelet miRNAs and summarize their role in platelet biogenesis and function. Increasing evidence supports the role of miR-34a and miR-150 in megakaryocytopoiesis and platelet production. Although 284 miRNAs are described to be present in platelets, their role is mostly unknown. The most abundant miRNA in platelets is miR-223 followed by miR-126. The miR-96, miR-200b, miR- 495, miR-107 and miR-223 are critically involved in platelet reactivity, aggregation, secretion and adhesion. The presence of miRNAs known to regulate angiogenesis in platelets is also discussed. Furthermore, platelet-derived microvesicles and microparticles contain several miRNAs, which may facilitate the communication between platelets with other vascular cells, a mechanism that may play an important role in vascular homeostasis and inflammation. Further studies are needed to elucidate the exact roles of platelet miRNAs in platelet function and vascular biology. 相似文献
8.
Alexander H. Sprague 《Biochemical pharmacology》2009,78(6):539-802
The vascular inflammatory response involves complex interaction between inflammatory cells (neutrophils, lymphocytes, monocytes, macrophages), endothelial cells (ECs), vascular smooth muscle cells (VSMCs), and extracellular matrix (ECM). Vascular injury is associated with increased expression of adhesion molecules by ECs and recruitment of inflammatory cells, growth factors, and cytokines, with consequent effects on ECs, VSMCs and ECM. Cytokines include tumor necrosis factors, interleukins, lymphokines, monokines, interferons, colony stimulating factors, and transforming growth factors. Cytokines are produced by macrophages, T-cells and monocytes, as well as platelets, ECs and VSMCs. Circulating cytokines interact with specific receptors on various cell types and activate JAK-STAT, NF-κB, and Smad signaling pathways leading to an inflammatory response involving cell adhesion, permeability and apoptosis. Cytokines also interact with mitochondria to increase the production of reactive oxygen species. Cytokine-induced activation of these pathways in ECs modifies the production/activity of vasodilatory mediators such as nitric oxide, prostacyclin, endothelium-derived hyperpolarizing factor, and bradykinin, as well as vasoconstrictive mediators such as endothelin and angiotensin II. Cytokines interact with VSMCs to activate Ca2+, protein kinase C, Rho-kinase, and MAPK pathways, which promote cell growth and migration, and VSM reactivity. Cytokines also interact with integrins and matrix metalloproteinases (MMPs) and modify ECM composition. Persistent increases in cytokines are associated with vascular dysfunction and vascular disease such as atherosclerosis, abdominal aortic aneurysm, varicose veins and hypertension. Genetic and pharmacological tools to decrease the production of cytokines or to diminish their effects using cytokine antagonists could provide new approaches in the management of inflammatory vascular disease. 相似文献
9.
10.
11.
The mammalian serine/threonine Akt kinases comprise three closely related isoforms: Akt1, Akt2 and Akt3. Akt activation has been implicated in both normal and disease processes, including in development and metabolism, as well as cancer and cardiovascular disease. Although Akt signalling has been identified as a promising therapeutic target in cancer, its role in cardiovascular disease is less clear. Importantly, accumulating evidence suggests that the three Akt isoforms exhibit distinct tissue expression profiles, localise to different subcellular compartments, and have unique modes of activation. Consistent with in vitro findings, genetic studies in mice show distinct effects of individual Akt isoforms on the pathophysiology of cardiovascular disease. This review summarises recent studies of individual Akt isoforms in atherosclerosis, vascular remodelling and aneurysm formation, to provide a comprehensive overview of Akt function in vascular disease. 相似文献
12.
13.
14.
Rossbach M 《Expert opinion on therapeutic targets》2012,16(8):743-745
15.
Cheol Kyu Hwang Yadav Wagley Ping-Yee Law Li-Na Wei Horace H. Loh 《Journal of neuroimmune pharmacology》2012,7(4):808-819
MicroRNAs (miRNA), a class of ~22-nucleotide RNA molecules, are important gene regulators that bind to the target sites of mRNAs to inhibit the gene expressions either through translational inhibition or mRNA destabilization. There are growing evidences that miRNAs have played several regulatory roles in opioid pharmacology. Like other research fields such as cancer biology, the area where numerous miRNAs are found to be involved in gene regulation, we assume that in opioid studies including research fields of drug additions and opioid receptor regulation, there may be more miRNAs waiting to be discovered. This review will summarize our current knowledge of miRNA functions on opioids biology and briefly describe future research directions of miRNAs related to opioids. 相似文献
16.
17.
18.
Chen J Goodchild TT Brott BC Li J King SB Chronos N Jiang H Hou D 《Cardiovascular & hematological agents in medicinal chemistry》2011,9(2):84-94
Interventional cardiology procedures and drug therapy have been widely applied for the treatment of occlusive vascular disease. However, there remains a critical lack of understanding of the disease process at a molecular level. Microarray technology has the unique advantage in the ability to analyze thousands of genes simultaneously. So far, several studies based on microarray analysis have already provided valuable expression data in diseases such as atherosclerosis and in-stent stenosis. This review summarizes: a) latest microarray research indentifying gene-expression profiles; b) the methodological analysis of the available microarray studies; c) generation of biological processes or pathways; d) detection of better diagnostic and therapeutic targets in atherosclerosis and in-stent stenosis. Further improvements in microarray interpretation as well as in study design, combined with definition and evaluation in the clinical arena, will enhance our understanding of the causes and mechanisms contributing to occlusive vascular diseases, and therefore will help to improve treatment of patients suffering from these diseases. 相似文献
19.
Kowal-Bielecka O 《Endocrine, metabolic & immune disorders drug targets》2006,6(4):401-407
Systemic sclerosis (scleroderma, SSc) is a chronic connective tissue disease of unknown etiology characterized by progressive fibrosis of the skin and a distinctive pattern of internal organ involvement. Excessive fibrosis, vascular injury, autoimmunity and inflammation are permanent features of the disease process leading to irreversible organ damage and significant morbidity and mortality in SSc patients. Recent progress in understanding the pathogenesis of SSc as well as diagnostic and therapeutic advances in medicine have made more effective treatment strategies possible. So far, therapies targeting vascular aspects of SSc have been most successful. This underlines the role of vascular injury in the pathogenesis of the disease and raising hopes of significant improvement in the management of SSc patients. The aim of this review is to summarize recent and potential future treatments of SSc-associated vascular disease. 相似文献
20.
BETTS TW 《British medical journal》1954,1(4875):1360-1361