Retinoic acid-loaded polymeric nanoparticles enhance vascular regulation of neural stem cell survival and differentiation after ischaemia.

scientific article

Retinoic acid-loaded polymeric nanoparticles enhance vascular regulation of neural stem cell survival and differentiation after ischaemia. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1039/C5NR09077F
P698PubMed publication ID27025400
P5875ResearchGate publication ID299518032

P50authorMiguel Castelo-BrancoQ41169549
Tiago SantosQ42735121
Liliana BernardinoQ43375844
João Sargento-FreitasQ61113738
P2093author name stringR Ferreira
F Paiva
M C Fonseca
L S Ferreira
R Tjeng
P2860cites workTransplantation of embryonic stem cells overexpressing Bcl-2 promotes functional recovery after transient cerebral ischemiaQ40433759
Intravenous administration of human umbilical cord blood-derived AC133+ endothelial progenitor cells in rat stroke model reduces infarct volume: magnetic resonance imaging and histological findingsQ41874996
Multifaceted control of adult SVZ neurogenesis by the vascular nicheQ41997541
Endothelial progenitor cell transplantation improves long-term stroke outcome in mice.Q42579727
MicroRNA-18a improves human cerebral arteriovenous malformation endothelial cell functionQ44096594
Insulin-like growth factor-1 secreted by brain microvascular endothelial cells attenuates neuron injury upon ischemiaQ44269425
The economic cost of brain disorders in EuropeQ44814293
International trends in mortality from stroke, 1968 to 1994.Q46587175
Long-term neuroblast migration along blood vessels in an area with transient angiogenesis and increased vascularization after stroke.Q46977260
Polymeric nanoparticles to control the differentiation of neural stem cells in the subventricular zone of the brainQ48282529
Evidence for stroke-induced neurogenesis in the human brainQ24678200
Isolation of putative progenitor endothelial cells for angiogenesisQ28302884
Neurovascular regulation in the normal brain and in Alzheimer's diseaseQ29619659
Endothelial progenitor cells: therapeutic perspective for ischemic strokeQ33705402
Diverse roles of the vasculature within the neural stem cell nicheQ33718137
The science of stroke: mechanisms in search of treatmentsQ34212337
Pathophysiology, treatment, and animal and cellular models of human ischemic strokeQ34569654
Mechanisms of normal and tumor-derived angiogenesisQ34592513
A Sox2 distal enhancer cluster regulates embryonic stem cell differentiation potentialQ34697724
The secretome of endothelial progenitor cells promotes brain endothelial cell activity through PI3-kinase and MAP-kinaseQ35154977
Endothelial progenitor cells enter the aging arenaQ35765879
Retinoic acid signaling and function in the adult hippocampusQ36475182
Rapid endothelial cytoskeletal reorganization enables early blood-brain barrier disruption and long-term ischaemic reperfusion brain injuryQ36534816
Activation of Akt pathway by transcription-independent mechanisms of retinoic acid promotes survival and invasion in lung cancer cellsQ36881256
Retinoic acid in the development, regeneration and maintenance of the nervous systemQ36946560
Circulating endothelial cells, microparticles and progenitors: key players towards the definition of vascular competenceQ37293820
Stereo-selective neuroprotection against stroke with vitamin A derivativesQ37313042
Between death and survival: retinoic acid in regulation of apoptosisQ37736474
Role of tissue-type plasminogen activator in ischemic strokeQ37769383
Novel situations of endothelial injury in stroke--mechanisms of stroke and strategy of drug development: intracranial bleeding associated with the treatment of ischemic stroke: thrombolytic treatment of ischemia-affected endothelial cells with tissuQ37866012
The vascular stem cell niche.Q38014348
Blood-brain barrier, reperfusion injury, and hemorrhagic transformation in acute ischemic stroke.Q38046199
Vascular regulation of adult neurogenesis under physiological and pathological conditions.Q38199666
Retinoic acid induces blood-brain barrier development.Q39205654
Intact and injured endothelial cells differentially modulate postnatal murine forebrain neural stem cellsQ39786456
P433issue15
P407language of work or nameEnglishQ1860
P921main subjectnanoparticleQ61231
neural stem cellQ2944097
P304page(s)8126-8137
P577publication date2016-04-01
P1433published inNanoscaleQ3335756
P1476titleRetinoic acid-loaded polymeric nanoparticles enhance vascular regulation of neural stem cell survival and differentiation after ischaemia
P478volume8

Reverse relations

cites work (P2860)
Q90128738A near infrared light-triggerable modular formulation for the delivery of small biomolecules
Q98733477Advances and challenges in retinoid delivery systems in regenerative and therapeutic medicine
Q43375825Anti-Inflammatory Strategy for M2 Microglial Polarization Using Retinoic Acid-Loaded Nanoparticles
Q48316365Challenging the great vascular wall: Can we envision a simple yet comprehensive therapy for stroke?
Q55252451Impact of nanoparticles on neuron biology: current research trends.
Q42633775Nanomaterials modulate stem cell differentiation: biological interaction and underlying mechanisms
Q58694155The Ischemic Immature Brain: Views on Current Experimental Models
Q48098368The application of nanoparticles for neuroprotection in acute ischemic stroke
Q37610362The nanomaterial toolkit for neuroengineering
Q39031301Vascular inter-regulation of inflammation: molecular and cellular targets for CNS therapy

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