Matches in SemOpenAlex for { <https://semopenalex.org/work/W1998100899> ?p ?o ?g. }
- W1998100899 endingPage "941" @default.
- W1998100899 startingPage "929" @default.
- W1998100899 abstract "Extended, relaxed, condensed, and interacting forms of the polysaccharide hyaluronan have been observed by atomic force microscopy (AFM). The types of images obtained depend on the properties of the surfaces used. We have investigated several different surface conditions for HA imaging, including unmodified mica, mica chemically modified with two different kinds of amino-terminated silanes (3-aminopropyltriethoxysilane and N-trimethoxysilylpropyl-N,N,N-trimethylammonium chloride), and highly oriented pyrolytic graphite. We found the degree of HA molecular extension or condensation to be variable, and the number of bound chains per unit area was low, for all of the mica-based surfaces. HA was more easily imaged on graphite, a hydrophobic surface. Chains were frequently observed in high degrees of extension, maintained by favorable interaction with the surface after molecular combing. This observation suggests that the HA macromolecule interacts with graphite through hydrophobic patches along its surface. AFM studies of HA behavior on differing surfaces under well-controlled environmental conditions provides useful insight into the variety of conformations and interactions likely to be found under differing physiological conditions." @default.
- W1998100899 created "2016-06-24" @default.
- W1998100899 creator A5003081844 @default.
- W1998100899 creator A5020066689 @default.
- W1998100899 creator A5022222654 @default.
- W1998100899 creator A5022788900 @default.
- W1998100899 creator A5043868418 @default.
- W1998100899 creator A5075952092 @default.
- W1998100899 date "2005-04-01" @default.
- W1998100899 modified "2023-10-17" @default.
- W1998100899 title "Hyaluronan conformations on surfaces: effect of surface charge and hydrophobicity" @default.
- W1998100899 cites W1571916034 @default.
- W1998100899 cites W1963756055 @default.
- W1998100899 cites W1964942550 @default.
- W1998100899 cites W1967085412 @default.
- W1998100899 cites W1970405176 @default.
- W1998100899 cites W1970419257 @default.
- W1998100899 cites W1972583985 @default.
- W1998100899 cites W1973676678 @default.
- W1998100899 cites W1974949986 @default.
- W1998100899 cites W1975873807 @default.
- W1998100899 cites W1977045521 @default.
- W1998100899 cites W1978820683 @default.
- W1998100899 cites W1979658901 @default.
- W1998100899 cites W1980277555 @default.
- W1998100899 cites W1981758687 @default.
- W1998100899 cites W1981785026 @default.
- W1998100899 cites W1982132247 @default.
- W1998100899 cites W1989474839 @default.
- W1998100899 cites W1991300442 @default.
- W1998100899 cites W1993160844 @default.
- W1998100899 cites W1995373379 @default.
- W1998100899 cites W1998193423 @default.
- W1998100899 cites W1999562066 @default.
- W1998100899 cites W2001798397 @default.
- W1998100899 cites W2001990380 @default.
- W1998100899 cites W2004063955 @default.
- W1998100899 cites W2008083246 @default.
- W1998100899 cites W2008948930 @default.
- W1998100899 cites W2010423863 @default.
- W1998100899 cites W2013075468 @default.
- W1998100899 cites W2014226485 @default.
- W1998100899 cites W2020275760 @default.
- W1998100899 cites W2022635949 @default.
- W1998100899 cites W2027525749 @default.
- W1998100899 cites W2033579631 @default.
- W1998100899 cites W2034395533 @default.
- W1998100899 cites W2034460410 @default.
- W1998100899 cites W2036986293 @default.
- W1998100899 cites W2043736119 @default.
- W1998100899 cites W2045784928 @default.
- W1998100899 cites W2046340127 @default.
- W1998100899 cites W2048685705 @default.
- W1998100899 cites W2059117403 @default.
- W1998100899 cites W2061678008 @default.
- W1998100899 cites W2062248790 @default.
- W1998100899 cites W2063711286 @default.
- W1998100899 cites W2064557451 @default.
- W1998100899 cites W2064611836 @default.
- W1998100899 cites W2068229857 @default.
- W1998100899 cites W2076822641 @default.
- W1998100899 cites W2079686785 @default.
- W1998100899 cites W2086193664 @default.
- W1998100899 cites W2087589993 @default.
- W1998100899 cites W2087983180 @default.
- W1998100899 cites W2090361851 @default.
- W1998100899 cites W2091656492 @default.
- W1998100899 cites W2122879014 @default.
- W1998100899 cites W2125156472 @default.
- W1998100899 cites W2132695846 @default.
- W1998100899 cites W2136776121 @default.
- W1998100899 cites W2140903035 @default.
- W1998100899 cites W2169391064 @default.
- W1998100899 cites W2169625884 @default.
- W1998100899 cites W2331470031 @default.
- W1998100899 cites W2416555568 @default.
- W1998100899 cites W4230851866 @default.
- W1998100899 cites W2083643793 @default.
- W1998100899 doi "https://doi.org/10.1016/j.carres.2005.01.024" @default.
- W1998100899 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/15780258" @default.
- W1998100899 hasPublicationYear "2005" @default.
- W1998100899 type Work @default.
- W1998100899 sameAs 1998100899 @default.
- W1998100899 citedByCount "37" @default.
- W1998100899 countsByYear W19981008992012 @default.
- W1998100899 countsByYear W19981008992013 @default.
- W1998100899 countsByYear W19981008992014 @default.
- W1998100899 countsByYear W19981008992016 @default.
- W1998100899 countsByYear W19981008992017 @default.
- W1998100899 countsByYear W19981008992018 @default.
- W1998100899 countsByYear W19981008992019 @default.
- W1998100899 countsByYear W19981008992020 @default.
- W1998100899 countsByYear W19981008992021 @default.
- W1998100899 countsByYear W19981008992023 @default.
- W1998100899 crossrefType "journal-article" @default.
- W1998100899 hasAuthorship W1998100899A5003081844 @default.
- W1998100899 hasAuthorship W1998100899A5020066689 @default.
- W1998100899 hasAuthorship W1998100899A5022222654 @default.