<?xml version="1.0" encoding="UTF-8"?><rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dcq="http://purl.org/dc/terms/"><records count="1" morepages="false" start="1" end="1"><record rownumber="1"><dc:product_type>Journal Article</dc:product_type><dc:title>Ultra-thin and ultra-porous nanofiber networks as a basement-membrane mimic</dc:title><dc:creator>Graybill, Philip M.; Jacobs, Edward J.; Jana, Aniket; Agashe, Atharva; Nain, Amrinder S.; Davalos, Rafael V.</dc:creator><dc:corporate_author/><dc:editor/><dc:description>&lt;p&gt;A high porosity (88%) and ultrathin (&lt;3 μm) fibrous basement membrane mimic using (A) suspended nanofiber networks for a (B) brain endothelial–pericyte co-culture model. (C) Our approach achieved low cell membrane and nuclei separations.&lt;/p&gt;</dc:description><dc:publisher>Lab on a Chip</dc:publisher><dc:date>2023-10-10</dc:date><dc:nsf_par_id>10469980</dc:nsf_par_id><dc:journal_name>Lab on a Chip</dc:journal_name><dc:journal_volume>23</dc:journal_volume><dc:journal_issue>20</dc:journal_issue><dc:page_range_or_elocation>4565 to 4578</dc:page_range_or_elocation><dc:issn>1473-0197</dc:issn><dc:isbn/><dc:doi>https://doi.org/10.1039/d3lc00304c</dc:doi><dcq:identifierAwardId>2107332; 2119949; 1762634</dcq:identifierAwardId><dc:subject/><dc:version_number/><dc:location/><dc:rights/><dc:institution/><dc:sponsoring_org>National Science Foundation</dc:sponsoring_org></record></records></rdf:RDF>