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Hypoxia Inducible Factor-1α Potentiates Jagged 1-Mediated Angiogenesis by Mesenchymal Stem Cell-Derived Exosomes.

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TLDR
Exosomes derived from MSCs stably overexpressing HIF‐1α have an increased angiogenic capacity in part via an increase in the packaging of Jagged1, which could have potential applications for the treatment of ischemia‐related disease.
Abstract
Insufficient vessel growth associated with ischemia remains an unresolved issue in vascular medicine. Mesenchymal stem cells (MSCs) have been shown to promote angiogenesis via a mechanism that is potentiated by hypoxia. Overexpression of hypoxia inducible factor (HIF)-1α in MSCs improves their therapeutic potential by inducing angiogenesis in transplanted tissues. Here, we studied the contribution of exosomes released by HIF-1α-overexpressing donor MSCs (HIF-MSC) to angiogenesis by endothelial cells. Exosome secretion was enhanced in HIF-MSC. Omics analysis of miRNAs and proteins incorporated into exosomes pointed to the Notch pathway as a candidate mediator of exosome communication. Interestingly, we found that Jagged1 was the sole Notch ligand packaged into MSC exosomes and was more abundant in HIF-MSC than in MSC controls. The addition of Jagged1-containing exosomes from MSC and HIF-MSC cultures to endothelial cells triggered transcriptional changes in Notch target genes and induced angiogenesis in an in vitro model of capillary-like tube formation, and both processes were stimulated by HIF-1α. Finally, subcutaneous injection of Jagged 1-containing exosomes from MSC and HIF-MSC cultures in the Matrigel plug assay induced angiogenesis in vivo, which was more robust when they were derived from HIF-MSC cultures. All Jagged1-mediated effects could be blocked by prior incubation of exosomes with an anti-Jagged 1 antibody. All together, the results indicate that exosomes derived from MSCs stably overexpressing HIF-1α have an increased angiogenic capacity in part via an increase in the packaging of Jagged1, which could have potential applications for the treatment of ischemia-related disease. Stem Cells 2017;35:1747-1759.

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Priming approaches to improve the efficacy of mesenchymal stromal cell-based therapies.

TL;DR: Current priming approaches that aim to increase MSC therapeutic efficacy, including priming with cytokines and growth factors, hypoxia, pharmacological drugs, biomaterials, and different culture conditions, as well as other diverse molecules, are revised from current and future perspectives.
Journal ArticleDOI

Hypoxia-elicited mesenchymal stem cell-derived exosomes facilitates cardiac repair through miR-125b-mediated prevention of cell death in myocardial infarction

TL;DR: A new mechanism by which Hypo-Exo-derived miR125b-5p facilitates ischemic cardiac repair by ameliorating cardiomyocyte apoptosis is illustrated, and the IMT- Exo may serve as a novel drug carrier that enhances the specificity of drug delivery for isChemic disease.
Journal ArticleDOI

Design strategies and application progress of therapeutic exosomes.

TL;DR: The methods for loading specific treating molecules (proteins, nucleic acids and small chemicals) into exosomes, the design strategies for cell and tissue targeting, and the factors for exosome formation are discussed.
Journal ArticleDOI

Exosomes: The next generation of endogenous nanomaterials for advanced drug delivery and therapy.

TL;DR: A comprehensive understanding of the properties and applications of exosomes, including their biogenesis, biofunctions, isolation, purification, and drug loading, and typical examples in drug delivery and therapy are provided.
Journal ArticleDOI

The Osteosarcoma Microenvironment: A Complex But Targetable Ecosystem.

TL;DR: The different actors of the osteosarcoma microenvironment are described and an overview of the past, current, and future strategies of therapy targeting this complex ecosystem is given, with a focus on the role of extracellular vesicles and on the emergence of multi-kinase inhibitors.
References
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Journal ArticleDOI

Revascularization of ischemic limbs after transplantation of human bone marrow cells with high aldehyde dehydrogenase activity

TL;DR: Human BM ALDH(hi) cells represent a progenitor-enriched population of several cell lineages that improves perfusion in ischemic limbs after transplantation that may prove useful in the treatment of critical ischemia in humans.
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Gamma secretase inhibitors of Notch signaling.

TL;DR: The application of clinically relevant anti-Notch drugs in treatment regimens may contribute to novel therapeutic interventions and promote more effective clinical response in women with breast cancer.
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Donor exosomes rather than passenger leukocytes initiate alloreactive T cell responses after transplantation

TL;DR: Results suggest that recipient antigen-presenting cells cross-dressed with donor MHC rather than passenger leukocytes trigger T cell responses after allotransplantation, and stresses the need for selective immune-based therapies relying on manipulation of lymphocyte recognition of donor antigens.
Journal ArticleDOI

Notch Activation of Jagged1 Contributes to the Assembly of the Arterial Wall

TL;DR: It is shown that Jagged1 is a direct Notch target in smooth muscle, resulting in a positive feedback loop and lateral induction that propagates a wave of smooth muscle differentiation during aortic arch artery development.
Journal ArticleDOI

Cardiomyocyte exosomes regulate glycolytic flux in endothelium by direct transfer of GLUT transporters and glycolytic enzymes

TL;DR: These findings establish CM-derived exosomes as key components of the cardio-endothelial communication system which, through intercellular protein complementation, would allow a rapid response from ECs to increase glucose transport and a putative uptake of metabolic fuels from blood to CMs.
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