Matches in SemOpenAlex for { <https://semopenalex.org/work/W2794688550> ?p ?o ?g. }
- W2794688550 endingPage "34" @default.
- W2794688550 startingPage "22" @default.
- W2794688550 abstract "Leukocyte infiltration plays critical roles in tissue inflammation for pathogen clearance and tumor eradication. This process is regulated by complex microenvironments in blood vessels, including inflamed endothelium, blood flow, and perivascular components. The role of perivascular components in leukocyte infiltration has not been systematically investigated until recently mostly due to lack of technology. In this work, we developed a three-dimensional multi-layered blood vessel/tissue model with a nanofiber membrane, enabling real-time visualization of dynamic leukocyte infiltration and subsequent interaction with perivascular macrophages. We directly fabricated a highly aligned, free-standing nanofiber membrane with an ultra-thin thickness of ∼1 μm in microfluidic systems. Coating the nanofiber membrane with matrigel showed synergetic topographical and biochemical effects on the reconstitution of a well-aligned endothelial monolayer on the membrane. Our 3D multi-layered blood vessel/tissue model will offer a powerful and versatile tool for investigating the mechanism of leukocyte tissue infiltration and subsequent immune responses." @default.
- W2794688550 created "2018-04-06" @default.
- W2794688550 creator A5018951601 @default.
- W2794688550 creator A5028129853 @default.
- W2794688550 creator A5035047849 @default.
- W2794688550 creator A5058106720 @default.
- W2794688550 creator A5067477169 @default.
- W2794688550 creator A5070346124 @default.
- W2794688550 creator A5074773858 @default.
- W2794688550 date "2018-07-01" @default.
- W2794688550 modified "2023-10-12" @default.
- W2794688550 title "Ultra-thin, aligned, free-standing nanofiber membranes to recapitulate multi-layered blood vessel/tissue interface for leukocyte infiltration study" @default.
- W2794688550 cites W1499048493 @default.
- W2794688550 cites W1895514577 @default.
- W2794688550 cites W1972659765 @default.
- W2794688550 cites W1976061000 @default.
- W2794688550 cites W1982383521 @default.
- W2794688550 cites W1983085370 @default.
- W2794688550 cites W1988200792 @default.
- W2794688550 cites W1992893862 @default.
- W2794688550 cites W1993746949 @default.
- W2794688550 cites W2000513178 @default.
- W2794688550 cites W2002148098 @default.
- W2794688550 cites W2002307302 @default.
- W2794688550 cites W2011658930 @default.
- W2794688550 cites W2017418319 @default.
- W2794688550 cites W2023664137 @default.
- W2794688550 cites W2024957425 @default.
- W2794688550 cites W2025052109 @default.
- W2794688550 cites W2025448423 @default.
- W2794688550 cites W2032195777 @default.
- W2794688550 cites W2035317617 @default.
- W2794688550 cites W2035809865 @default.
- W2794688550 cites W2036774651 @default.
- W2794688550 cites W2053177949 @default.
- W2794688550 cites W2056229778 @default.
- W2794688550 cites W2057719955 @default.
- W2794688550 cites W2060469376 @default.
- W2794688550 cites W2080529573 @default.
- W2794688550 cites W2082864993 @default.
- W2794688550 cites W2088686740 @default.
- W2794688550 cites W2110344693 @default.
- W2794688550 cites W2113652833 @default.
- W2794688550 cites W2138507087 @default.
- W2794688550 cites W2154837723 @default.
- W2794688550 cites W2162897915 @default.
- W2794688550 cites W2166769371 @default.
- W2794688550 cites W2167103057 @default.
- W2794688550 cites W2170271633 @default.
- W2794688550 cites W2172240370 @default.
- W2794688550 cites W2175927969 @default.
- W2794688550 cites W2190678841 @default.
- W2794688550 cites W2289500363 @default.
- W2794688550 cites W2340602993 @default.
- W2794688550 cites W2514579417 @default.
- W2794688550 cites W2588012379 @default.
- W2794688550 cites W2589189571 @default.
- W2794688550 cites W2591783235 @default.
- W2794688550 cites W2607472835 @default.
- W2794688550 cites W2765872019 @default.
- W2794688550 cites W4246818002 @default.
- W2794688550 doi "https://doi.org/10.1016/j.biomaterials.2018.03.053" @default.
- W2794688550 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29631165" @default.
- W2794688550 hasPublicationYear "2018" @default.
- W2794688550 type Work @default.
- W2794688550 sameAs 2794688550 @default.
- W2794688550 citedByCount "37" @default.
- W2794688550 countsByYear W27946885502019 @default.
- W2794688550 countsByYear W27946885502020 @default.
- W2794688550 countsByYear W27946885502021 @default.
- W2794688550 countsByYear W27946885502022 @default.
- W2794688550 countsByYear W27946885502023 @default.
- W2794688550 crossrefType "journal-article" @default.
- W2794688550 hasAuthorship W2794688550A5018951601 @default.
- W2794688550 hasAuthorship W2794688550A5028129853 @default.
- W2794688550 hasAuthorship W2794688550A5035047849 @default.
- W2794688550 hasAuthorship W2794688550A5058106720 @default.
- W2794688550 hasAuthorship W2794688550A5067477169 @default.
- W2794688550 hasAuthorship W2794688550A5070346124 @default.
- W2794688550 hasAuthorship W2794688550A5074773858 @default.
- W2794688550 hasConcept C12554922 @default.
- W2794688550 hasConcept C134018914 @default.
- W2794688550 hasConcept C136229726 @default.
- W2794688550 hasConcept C142724271 @default.
- W2794688550 hasConcept C153400128 @default.
- W2794688550 hasConcept C159985019 @default.
- W2794688550 hasConcept C171250308 @default.
- W2794688550 hasConcept C185592680 @default.
- W2794688550 hasConcept C192562407 @default.
- W2794688550 hasConcept C203014093 @default.
- W2794688550 hasConcept C2776914184 @default.
- W2794688550 hasConcept C2776992346 @default.
- W2794688550 hasConcept C2777663904 @default.
- W2794688550 hasConcept C2778608917 @default.
- W2794688550 hasConcept C2780394083 @default.
- W2794688550 hasConcept C41625074 @default.
- W2794688550 hasConcept C502942594 @default.
- W2794688550 hasConcept C55493867 @default.