Philip D. Stahl
Washington University in St. Louis
EndosomeLipid bilayer fusionVesicleInternalizationMutantMolecular biologyRabPhagocytosisPhagosomeReceptorChemistryGTPaseMannoseMannose receptorEndocytosisBiochemistrySignal transductionEndocytic cycleIntracellularBiologyCell biologyCytosol
205Publications
88H-index
18.2kCitations
Publications 205
Newest
#1Ralph A. Bradshaw (UCI: University of California, Irvine)H-Index: 79
#2Philip D. Stahl (WashU: Washington University in St. Louis)H-Index: 88
Source
#1Graça Raposo (PSL Research University)H-Index: 10
#2Guillaume van Niel (University of Paris)H-Index: 32
Last. Philip D. Stahl (WashU: Washington University in St. Louis)H-Index: 88
view all 3 authors...
Source
#1Eva Aagaard (WashU: Washington University in St. Louis)H-Index: 11
#2Ralph A. Bradshaw (UCI: University of California, Irvine)H-Index: 79
Last. Philip D. Stahl (WashU: Washington University in St. Louis)H-Index: 88
view all 3 authors...
Source
#1Philip D. Stahl (WashU: Washington University in St. Louis)H-Index: 88
#2Sharon M. Stahl (WashU: Washington University in St. Louis)
Last. Ralph A. Bradshaw (UCI: University of California, Irvine)H-Index: 79
view all 3 authors...
Source
#1Ralph A. Bradshaw (UCI: University of California, Irvine)H-Index: 79
#2Philip D. Stahl (UW: University of Washington)H-Index: 88
Source
#1John Krist (JPL: Jet Propulsion Laboratory)H-Index: 65
#2Stefan Martin (JPL: Jet Propulsion Laboratory)H-Index: 10
Last. Jeffrey Davis (UA: University of Arizona)H-Index: 3
view all 11 authors...
The Habex study, commissioned by NASA in preparation for the 2020 Decadal Survey, is evaluating a 4 meter space telescope for high contrast imaging and spectral characterization of extrasolar terrestrial planets. Its off-axis configuration, active structural metrology, and low-disturbance pointing control provide an optimal system for coronagraphs. We present predictions of the Habex performance using a charge 6 vortex coronagraph that have been obtained using numerical modeling techniques devel...
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#1Graça Raposo (CNRS: Centre national de la recherche scientifique)H-Index: 113
#2Philip D. Stahl (WashU: Washington University in St. Louis)H-Index: 88
Biological information can be shared between cells via extracellular vesicles. However, how cargo carried by extracellular vesicles elicits biological responses remains unresolved. Deciphering the molecular mechanisms that govern packaging and targeted delivery of extracellular vesicle cargo will be required to establish extracellular vesicles as important signalling entities. Stahl and Raposo discuss the emerging paradigm of cell–cell signalling via extracellular vesicles, highlighting key ques...
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#2Graça Raposo (University of Paris)H-Index: 113
Extracellular vesicles (EVs), cell-derived membrane structures, are secreted after fusion of endosomes with the plasma membrane (exosomes) or shed from the plasma membrane (microvesicles). EVs play...
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#1Shu Qin (UCSD: University of California, San Diego)H-Index: 1
#2Robert A. Dorschner (UCSD: University of California, San Diego)H-Index: 19
Last. Brian P. Eliceiri (UCSD: University of California, San Diego)H-Index: 47
view all 8 authors...
Healthy repair of cutaneous injury is a coordinated response of inflammatory cells, secreted factors, and biologically active extracellular vesicles (EVs). Although constitutive release of EVs into...
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#1Clotilde Théry (PSL Research University)H-Index: 63
#2Kenneth W. Witwer (Johns Hopkins University)H-Index: 39
Last. Georgia K. Atkin-Smith (La Trobe University)H-Index: 10
view all 382 authors...
The last decade has seen a sharp increase in the number of scientific publications describing physiological and pathological functions of extracellular vesicles (EVs), a collective term covering various subtypes of cell-released, membranous structures, called exosomes, microvesicles, microparticles, ectosomes, oncosomes, apoptotic bodies, and many other names. However, specific issues arise when working with these entities, whose size and amount often make them difficult to obtain as relatively ...
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