Engineering mesenchymal stem cells to improve their exosome efficacy and yield for cell-free therapy
暂无分享,去创建一个
Aijun Wang | D. Farmer | Priyadarsini Kumar | Dake Hao | Jennifer Phan | Kewa Gao | D. Hao
[1] Yeon Woong Choo,et al. Therapeutic Efficacy-Potentiated and Diseased Organ-Targeting Nanovesicles Derived from Mesenchymal Stem Cells for Spinal Cord Injury Treatment. , 2018, Nano letters.
[2] K. Hatzistergos,et al. Mesenchymal Stem Cell-Based Therapy for Cardiovascular Disease: Progress and Challenges. , 2018, Molecular therapy : the journal of the American Society of Gene Therapy.
[3] Su Chul Jang,et al. Subpopulations of extracellular vesicles and their therapeutic potential. , 2018, Molecular aspects of medicine.
[4] Q. Han,et al. Exosomes Derived from Hypoxia-Treated Human Adipose Mesenchymal Stem Cells Enhance Angiogenesis Through the PKA Signaling Pathway. , 2018, Stem cells and development.
[5] K. Costa,et al. Exosomal microRNA-21-5p Mediates Mesenchymal Stem Cell Paracrine Effects on Human Cardiac Tissue Contractility , 2018, Circulation research.
[6] S. Neelamegham,et al. The microRNA regulatory landscape of MSC-derived exosomes: a systems view , 2018, Scientific Reports.
[7] Eun Hee Kim,et al. Efficient scalable production of therapeutic microvesicles derived from human mesenchymal stem cells , 2018, Scientific Reports.
[8] Emmanuel Dias-Neto,et al. Technical challenges of working with extracellular vesicles. , 2018, Nanoscale.
[9] T. Patel,et al. Use of a Hollow Fiber Bioreactor to Collect Extracellular Vesicles from Cells in Culture. , 2018, Methods in molecular biology.
[10] Kun Zhang,et al. Focus on Mesenchymal Stem Cell-Derived Exosomes: Opportunities and Challenges in Cell-Free Therapy , 2017, Stem cells international.
[11] A. Hill,et al. Non-coding RNAs in Mesenchymal Stem Cell-Derived Extracellular Vesicles: Deciphering Regulatory Roles in Stem Cell Potency, Inflammatory Resolve, and Tissue Regeneration , 2017, Front. Genet..
[12] S. Kourembanas,et al. Toward Exosome-Based Therapeutics: Isolation, Heterogeneity, and Fit-for-Purpose Potency , 2017, Front. Cardiovasc. Med..
[13] Y. Zhong,et al. Fibrous scaffolds potentiate the paracrine function of mesenchymal stem cells: A new dimension in cell-material interaction. , 2017, Biomaterials.
[14] D. Mooney,et al. Biomaterials that promote cell-cell interactions enhance the paracrine function of MSCs. , 2017, Biomaterials.
[15] Bhawna Chandravanshi,et al. Hypoxia primed placental mesenchymal stem cells for wound healing , 2017, Life sciences.
[16] Qiang Zhao,et al. Enhanced proangiogenic potential of mesenchymal stem cell-derived exosomes stimulated by a nitric oxide releasing polymer. , 2017, Biomaterials.
[17] J. Montero,et al. Hypoxia Inducible Factor‐1α Potentiates Jagged 1‐Mediated Angiogenesis by Mesenchymal Stem Cell‐Derived Exosomes , 2017, Stem cells.
[18] B. Yu,et al. Effects of Mesenchymal Stem Cell-Derived Exosomes on Experimental Autoimmune Uveitis , 2017, Scientific Reports.
[19] Shangwei Li,et al. Human umbilical cord stem cell conditioned medium versus serum-free culture medium in the treatment of cryopreserved human ovarian tissues in in-vitro culture: a randomized controlled trial , 2017, Stem Cell Research & Therapy.
[20] Romaric Lacroix,et al. Methodological Guidelines to Study Extracellular Vesicles. , 2017, Circulation research.
[21] A. Caplan. Mesenchymal Stem Cells: Time to Change the Name! , 2017, Stem cells translational medicine.
[22] Xin Luan,et al. Engineering exosomes as refined biological nanoplatforms for drug delivery , 2017, Acta Pharmacologica Sinica.
[23] M. Gimona,et al. A Good Manufacturing Practice-grade standard protocol for exclusively human mesenchymal stromal cell-derived extracellular vesicles. , 2017, Cytotherapy.
[24] M. Ashraf,et al. Mesenchymal stem cells release exosomes that transfer miRNAs to endothelial cells and promote angiogenesis , 2017, Oncotarget.
[25] Jennifer C. Jones,et al. Obstacles and opportunities in the functional analysis of extracellular vesicle RNA – an ISEV position paper , 2017, Journal of extracellular vesicles.
[26] K. Lam,et al. Discovery and Characterization of a Potent and Specific Peptide Ligand Targeting Endothelial Progenitor Cells and Endothelial Cells for Tissue Regeneration. , 2017, ACS chemical biology.
[27] Qinfei Ke,et al. Chitosan Wound Dressings Incorporating Exosomes Derived from MicroRNA‐126‐Overexpressing Synovium Mesenchymal Stem Cells Provide Sustained Release of Exosomes and Heal Full‐Thickness Skin Defects in a Diabetic Rat Model , 2016, Stem cells translational medicine.
[28] Wei Zhu,et al. Tissue-Specific Progenitor and Stem Cells Exosomes Derived From Akt-Modified Human Umbilical Cord Mesenchymal Stem Cells Improve Cardiac Regeneration and Promote Angiogenesis via Activating Platelet-Derived Growth Factor , 2016 .
[29] S. Sahoo,et al. Exosomes-Based Gene Therapy for MicroRNA Delivery. , 2017, Methods in molecular biology.
[30] Chris Maloney,et al. PubMed Central , 2017 .
[31] M. Mattson,et al. Impact of lysosome status on extracellular vesicle content and release , 2016, Ageing Research Reviews.
[32] Xiaobing Fu,et al. Mesenchymal stem cells-derived exosomal microRNAs contribute to wound inflammation , 2016, Science China Life Sciences.
[33] M. Brizzi,et al. Extracellular vesicles as new players in angiogenesis. , 2016, Vascular pharmacology.
[34] G. Camussi,et al. Stem Cell-Derived Extracellular Vesicles and Immune-Modulation , 2016, Front. Cell Dev. Biol..
[35] Fábio Gonçalves Teixeira,et al. MSCs-Derived Exosomes: Cell-Secreted Nanovesicles with Regenerative Potential , 2016, Front. Pharmacol..
[36] Fábio Gonçalves Teixeira,et al. Modulation of the Mesenchymal Stem Cell Secretome Using Computer-Controlled Bioreactors: Impact on Neuronal Cell Proliferation, Survival and Differentiation , 2016, Scientific Reports.
[37] Jenna L. Dziki,et al. Matrix-bound nanovesicles within ECM bioscaffolds , 2016, Science Advances.
[38] Y. Beguin,et al. Clinical-scale expansion of mesenchymal stromal cells: a large banking experience , 2016, Journal of Translational Medicine.
[39] Hypoxic conditioned medium from mesenchymal stem cells promotes lymphangiogenesis by regulation of mitochondrial-related proteins , 2016, Stem Cell Research & Therapy.
[40] C. Hewitt,et al. Systematic microcarrier screening and agitated culture conditions improves human mesenchymal stem cell yield in bioreactors , 2016, Biotechnology journal.
[41] J. R. Smith,et al. Manufacturing of Human Umbilical Cord Mesenchymal Stromal Cells on Microcarriers in a Dynamic System for Clinical Use , 2016, Stem cells international.
[42] S. Lim,et al. MSC secretes at least 3 EV types each with a unique permutation of membrane lipid, protein and RNA , 2016, Journal of extracellular vesicles.
[43] Qinfei Ke,et al. Chitosan Wound Dressings Incorporating Exosomes Derived From MicroRNA-126-Overexpressing Synovium Mesenchymal Stem Cells Provide Sustained Release of Exosomes and Heal Full-Thickness Skin Defects in a Diabetic Rat Model. , 2016, Stem cells translational medicine.
[44] M. Ciuffreda,et al. Paracrine Mechanisms of Mesenchymal Stem Cells in Tissue Repair. , 2016, Methods in molecular biology.
[45] K. Ye,et al. 7,8-dihydroxyflavone, a small molecular TrkB agonist, is useful for treating various BDNF-implicated human disorders , 2016, Translational Neurodegeneration.
[46] L. Rosenberg,et al. Bioprocessing strategies for the large-scale production of human mesenchymal stem cells: a review , 2015, Stem Cell Research & Therapy.
[47] Thomas Ritter,et al. Mesenchymal Stem Cell-derived Extracellular Vesicles: Toward Cell-free Therapeutic Applications. , 2015, Molecular therapy : the journal of the American Society of Gene Therapy.
[48] Aijun Wang,et al. Tissue Engineering and Regenerative Medicine Placental Mesenchymal Stromal Cells Rescue Ambulation in Ovine Myelomeningocele , 2015 .
[49] L. O’Driscoll,et al. Biological properties of extracellular vesicles and their physiological functions , 2015, Journal of extracellular vesicles.
[50] Andrew F. Hill,et al. Applying extracellular vesicles based therapeutics in clinical trials – an ISEV position paper , 2015, Journal of extracellular vesicles.
[51] T. Kislinger,et al. The emerging role of extracellular vesicles as biomarkers for urogenital cancers , 2014, Nature Reviews Urology.
[52] M. Chopp,et al. Exosomes/miRNAs as mediating cell-based therapy of stroke , 2014, Front. Cell. Neurosci..
[53] C. Théry,et al. Biogenesis, secretion, and intercellular interactions of exosomes and other extracellular vesicles. , 2014, Annual review of cell and developmental biology.
[54] D. Pegtel,et al. Extracellular vesicles as modulators of cell-to-cell communication in the healthy and diseased brain , 2014, Philosophical Transactions of the Royal Society B: Biological Sciences.
[55] H. Tse,et al. Paracrine Mechanisms of Mesenchymal Stem Cell-Based Therapy: Current Status and Perspectives , 2014, Cell transplantation.
[56] Farhaan Vahidy,et al. Efficient manufacturing of therapeutic mesenchymal stromal cells with the use of the Quantum Cell Expansion System. , 2014, Cytotherapy.
[57] C. Galleguillos,et al. The p75 neurotrophin receptor evades the endolysosomal route in neuronal cells, favouring multivesicular bodies specialised for exosomal release , 2014, Journal of Cell Science.
[58] M. Chopp,et al. MiR‐133b Promotes Neural Plasticity and Functional Recovery After Treatment of Stroke with Multipotent Mesenchymal Stromal Cells in Rats Via Transfer of Exosome‐Enriched Extracellular Particles , 2013, Stem cells.
[59] J. Ryan,et al. Exosomal Signaling during Hypoxia Mediates Microvascular Endothelial Cell Migration and Vasculogenesis , 2013, PloS one.
[60] C. Emiliani,et al. Signaling Pathways in Exosomes Biogenesis, Secretion and Fate , 2013, Genes.
[61] I. Grundke‐Iqbal,et al. Neurogenic and Neurotrophic Effects of BDNF Peptides in Mouse Hippocampal Primary Neuronal Cell Cultures , 2013, PloS one.
[62] C. Siu,et al. Reversal of endothelial progenitor cell dysfunction in patients with type 2 diabetes using a conditioned medium of human embryonic stem cell‐derived endothelial cells , 2012, Diabetes/metabolism research and reviews.
[63] C. Wan,et al. Exosome-Related Multi-Pass Transmembrane Protein TSAP6 Is a Target of Rhomboid Protease RHBDD1-Induced Proteolysis , 2012, PloS one.
[64] Arnold I Caplan,et al. The MSC: an injury drugstore. , 2011, Cell stem cell.
[65] S. Böhm,et al. Different populations and sources of human mesenchymal stem cells (MSC): A comparison of adult and neonatal tissue-derived MSC , 2011, Cell Communication and Signaling.
[66] György Nagy,et al. Cellular and Molecular Life Sciences REVIEW Membrane vesicles, current state-of-the-art: emerging role of extracellular vesicles , 2022 .
[67] D. Lebold,et al. Identification of potentially neuroprotective genes upregulated by neurotrophin treatment of CA3 neurons in the injured brain. , 2011, Journal of neurotrauma.
[68] M. Bilgen,et al. Small molecule BDNF mimetics activate TrkB signaling and prevent neuronal degeneration in rodents. , 2010, The Journal of clinical investigation.
[69] W. Möbius,et al. Regulation of exosome secretion by Rab35 and its GTPase-activating proteins TBC1D10A–C , 2010, The Journal of cell biology.
[70] Miguel C. Seabra,et al. Rab27a and Rab27b control different steps of the exosome secretion pathway , 2010, Nature Cell Biology.
[71] M. B. Mestre,et al. TI-VAMP/VAMP7 and VAMP3/cellubrevin: two v-SNARE proteins involved in specific steps of the autophagy/multivesicular body pathways. , 2009, Biochimica et biophysica acta.
[72] G. Dubyak,et al. P2X7 receptors regulate multiple types of membrane trafficking responses and non-classical secretion pathways , 2009, Purinergic Signalling.
[73] J. Marine,et al. Exosome secretion, including the DNA damage-induced p53-dependent secretory pathway, is severely compromised in TSAP6/Steap3-null mice , 2008, Cell Death and Differentiation.
[74] A. Levine,et al. The regulation of exosome secretion: a novel function of the p53 protein. , 2006, Cancer research.
[75] M. Record,et al. PLD2 is enriched on exosomes and its activity is correlated to the release of exosomes , 2004, FEBS letters.
[76] C. Huynh,et al. Identification of SNAREs Involved in Synaptotagmin VII-regulated Lysosomal Exocytosis* , 2004, Journal of Biological Chemistry.
[77] A. Caplan. Mesenchymal stem cells , 1991, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.