scholarly article | Q13442814 |
P356 | DOI | 10.1111/DGD.12007 |
P953 | full work available online at | https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fdgd.12007 |
https://doi.org/10.1111/dgd.12007 | ||
https://onlinelibrary.wiley.com/doi/pdf/10.1111/dgd.12007 | ||
P698 | PubMed publication ID | 23157329 |
P5875 | ResearchGate publication ID | 233534715 |
P50 | author | Noriko Osumi | Q89506763 |
P2093 | author name string | Yumiko Saga | |
Masanori Takahashi | |||
Emiko Yamanishi | |||
P2860 | cites work | Pericytes are required for blood-brain barrier integrity during embryogenesis | Q24627396 |
Molecular and cellular properties of PECAM-1 (endoCAM/CD31): a novel vascular cell-cell adhesion molecule | Q24644205 | ||
Lack of pericytes leads to endothelial hyperplasia and abnormal vascular morphogenesis | Q24681191 | ||
Generalized lacZ expression with the ROSA26 Cre reporter strain | Q27860837 | ||
Codon-improved Cre recombinase (iCre) expression in the mouse | Q28218096 | ||
NG2 proteoglycan is expressed exclusively by mural cells during vascular morphogenesis | Q28509922 | ||
Co-localization of NG2 proteoglycan and PDGF alpha-receptor on O2A progenitor cells in the developing rat brain | Q28565002 | ||
Pericyte Loss and Microaneurysm Formation in PDGF-B-Deficient Mice | Q29615196 | ||
Pericytes regulate the blood-brain barrier | Q29615840 | ||
Endothelial/pericyte interactions | Q29619802 | ||
Cellular dynamics and tissue interactions of the dura mater during head development | Q30445497 | ||
Bidirectional control of CNS capillary diameter by pericytes. | Q30478674 | ||
Neural crest and ectodermal cells intermix in the nasal placode to give rise to GnRH-1 neurons, sensory neurons, and olfactory ensheathing cells | Q34182740 | ||
Endothelial-pericyte interactions in angiogenesis. | Q34217484 | ||
Evidence that cells expressing luteinizing hormone-releasing hormone mRNA in the mouse are derived from progenitor cells in the olfactory placode | Q34314255 | ||
Abnormal migration and distribution of neural crest cells in Pax6 heterozygous mutant eye, a model for human eye diseases. | Q34569351 | ||
Isolation and function of mouse tissue resident vascular precursors marked by myelin protein zero | Q34973725 | ||
The stem cells of the neural crest | Q37138973 | ||
Evolution of the neural crest viewed from a gene regulatory perspective | Q37323741 | ||
Compartment-specific transcription factors orchestrate angiogenesis gradients in the embryonic brain | Q37368229 | ||
PDGFRbeta+ perivascular progenitor cells in tumours regulate pericyte differentiation and vascular survival | Q37407269 | ||
CNS pericytes: concepts, misconceptions, and a way out. | Q37522167 | ||
Pericyte migration from the vascular wall in response to traumatic brain injury | Q42489883 | ||
Tissue origins and interactions in the mammalian skull vault | Q43849664 | ||
Isolation of a stem cell for neurons and glia from the mammalian neural crest | Q44337117 | ||
The human tissue plasminogen activator-Cre mouse: a new tool for targeting specifically neural crest cells and their derivatives in vivo | Q44822598 | ||
Expression of the platelet-derived growth factor beta receptor during organogenesis and tissue differentiation in the mouse embryo | Q46670200 | ||
Sox10-iCreERT2 : a mouse line to inducibly trace the neural crest and oligodendrocyte lineage | Q48773341 | ||
AN2/NG2 protein-expressing glial progenitor cells in the murine CNS: isolation, differentiation, and association with radial glia. | Q48895044 | ||
Cell lineage in mammalian craniofacial mesenchyme | Q49100509 | ||
Dynamic expression of Six family genes in the dental mesenchyme and the epithelial ameloblast stem/progenitor cells during murine tooth development | Q51922833 | ||
In Vitro Clonal Analysis of Mouse Neural Crest Development | Q52224978 | ||
Independent control of immunoglobulin switch recombination at individual switch regions evidenced through Cre-loxP-mediated gene targeting | Q60016929 | ||
A novel reporter mouse strain that expresses enhanced green fluorescent protein upon Cre-mediated recombination | Q73616630 | ||
Cellular distribution of platelet-derived growth factor, transforming growth factor-beta, basic fibroblast growth factor, and their receptors in normal bone marrow | Q73694794 | ||
Avian neural crest-derived neurogenic precursors undergo apoptosis on the lateral migration pathway | Q77350765 | ||
Neuroectodermal origin of brain pericytes and vascular smooth muscle cells | Q77381667 | ||
A novel transgenic technique that allows specific marking of the neural crest cell lineage in mice | Q78038712 | ||
P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 785-800 | |
P577 | publication date | 2012-11-15 | |
P1433 | published in | Development, Growth and Differentiation | Q2034494 |
P1476 | title | Penetration and differentiation of cephalic neural crest-derived cells in the developing mouse telencephalon | |
Penetration and differentiation of cephalic neural crest‐derived cells in the developing mouse telencephalon | |||
P478 | volume | 54 |
Q33818780 | A subset of cerebrovascular pericytes originates from mature macrophages in the very early phase of vascular development in CNS. |
Q50595697 | Adult DRG Stem/Progenitor Cells Generate Pericytes in the Presence of Central Nervous System (CNS) Developmental Cues, and Schwann Cells in Response to CNS Demyelination |
Q89669447 | Blood-brain barrier development: Systems modeling and predictive toxicology |
Q88465572 | Bridging barriers: a comparative look at the blood-brain barrier across organisms |
Q36856102 | Clarification of mural cell coverage of vascular endothelial cells by live imaging of zebrafish. |
Q41663178 | Dlx3b/4b is required for early-born but not later-forming sensory hair cells during zebrafish inner ear development |
Q48300549 | Foxc1 is required for early stage telencephalic vascular development |
Q37648762 | Gene tracing analysis reveals the contribution of neural crest-derived cells in pituitary development |
Q86352186 | Isolation and characterization of progenitor mesenchymal cells in human pituitary tumors |
Q47953925 | Macrophages Generate Pericytes in the Developing Brain |
Q41880162 | Molecular and cellular features of murine craniofacial and trunk neural crest cells as stem cell-like cells. |
Q90625242 | Multifaceted roles of pericytes in central nervous system homeostasis and disease |
Q47754203 | Neural crest cells utilize primary cilia to regulate ventral forebrain morphogenesis via Hedgehog-dependent regulation of oriented cell division |
Q42517743 | Neural crest-derived horizontal basal cells as tissue stem cells in the adult olfactory epithelium |
Q37429344 | Notch3 establishes brain vascular integrity by regulating pericyte number. |
Q52872128 | Pericytes are heterogeneous in their origin within the same tissue |
Q34357219 | Pericytes at the intersection between tissue regeneration and pathology |
Q88778158 | Pericytes in the Premetastatic Niche |
Q55398453 | The Novel Pathogenesis of Retinopathy Mediated by Multiple RTK Signals is Uncovered in Newly Developed Mouse Model. |
Q33569963 | Tissue Myeloid Progenitors Differentiate into Pericytes through TGF-β Signaling in Developing Skin Vasculature |
Q89582170 | Tissue Specific Origin, Development, and Pathological Perspectives of Pericytes |
Q92675596 | Two-photon microscopic observation of cell-production dynamics in the developing mammalian neocortex in utero |
Q36019303 | β-catenin is required in the neural crest and mesencephalon for pituitary gland organogenesis |
Search more.