Matches in SemOpenAlex for { <https://semopenalex.org/work/W4286208762> ?p ?o ?g. }
- W4286208762 endingPage "2934" @default.
- W4286208762 startingPage "2934" @default.
- W4286208762 abstract "The bioactive and biocompatible properties of hydroxyapatite (HAp) promote the osseointegration process. HAp is widely used in biomedical applications, especially in orthopedics, as well as a coating material for metallic implants. We obtained composite coatings based on HAp, chitosan (CS), and FGF2 by a matrix-assisted pulsed laser evaporation (MAPLE) technique. The coatings were physico-chemically investigated by means of X-ray Diffraction (XRD), Transmission Electron Microscopy (TEM), Infrared Microscopy (IRM), and Scanning Electron Microscopy (SEM). Further, biological investigations were performed. The MAPLE-composite coatings were tested in vitro on the MC3T3-E1 cell line in order to endorse cell attachment and growth without toxic effects and to promote pre-osteoblast differentiation towards the osteogenic lineage. These coatings can be considered suitable for bone tissue engineering applications that lack toxicity and promotes cell adhesion and proliferation while also sustaining the differentiation of pre-osteoblasts towards mature bone cells." @default.
- W4286208762 created "2022-07-21" @default.
- W4286208762 creator A5020964755 @default.
- W4286208762 creator A5023740171 @default.
- W4286208762 creator A5028412434 @default.
- W4286208762 creator A5046529161 @default.
- W4286208762 creator A5070443489 @default.
- W4286208762 creator A5074008413 @default.
- W4286208762 date "2022-07-20" @default.
- W4286208762 modified "2023-10-17" @default.
- W4286208762 title "Composite Coatings for Osteoblast Growth Attachment Fabricated by Matrix-Assisted Pulsed Laser Evaporation" @default.
- W4286208762 cites W1552717125 @default.
- W4286208762 cites W1922742595 @default.
- W4286208762 cites W1980326094 @default.
- W4286208762 cites W1981701289 @default.
- W4286208762 cites W1987326814 @default.
- W4286208762 cites W1998484086 @default.
- W4286208762 cites W2067595293 @default.
- W4286208762 cites W2073872114 @default.
- W4286208762 cites W2081173534 @default.
- W4286208762 cites W2087459157 @default.
- W4286208762 cites W2089481826 @default.
- W4286208762 cites W2092273695 @default.
- W4286208762 cites W2095545664 @default.
- W4286208762 cites W2096309080 @default.
- W4286208762 cites W2126065114 @default.
- W4286208762 cites W2144015007 @default.
- W4286208762 cites W2154473013 @default.
- W4286208762 cites W2167852191 @default.
- W4286208762 cites W2177823335 @default.
- W4286208762 cites W2281139963 @default.
- W4286208762 cites W2504352321 @default.
- W4286208762 cites W2605976672 @default.
- W4286208762 cites W2624729022 @default.
- W4286208762 cites W2730363696 @default.
- W4286208762 cites W2740340956 @default.
- W4286208762 cites W2750292222 @default.
- W4286208762 cites W2806488637 @default.
- W4286208762 cites W2807467795 @default.
- W4286208762 cites W2902500366 @default.
- W4286208762 cites W2912043101 @default.
- W4286208762 cites W2915588299 @default.
- W4286208762 cites W2937401346 @default.
- W4286208762 cites W2947744253 @default.
- W4286208762 cites W2960571250 @default.
- W4286208762 cites W2963450225 @default.
- W4286208762 cites W2989904056 @default.
- W4286208762 cites W3000341610 @default.
- W4286208762 cites W3016221254 @default.
- W4286208762 cites W3016595142 @default.
- W4286208762 cites W3043776784 @default.
- W4286208762 cites W3048038330 @default.
- W4286208762 cites W3080535763 @default.
- W4286208762 cites W3084346167 @default.
- W4286208762 cites W3086050160 @default.
- W4286208762 cites W3087097773 @default.
- W4286208762 cites W3091199974 @default.
- W4286208762 cites W3092212970 @default.
- W4286208762 cites W3092429611 @default.
- W4286208762 cites W3110259257 @default.
- W4286208762 cites W3111600705 @default.
- W4286208762 cites W3128206726 @default.
- W4286208762 cites W3128334750 @default.
- W4286208762 cites W3135599675 @default.
- W4286208762 cites W3137897292 @default.
- W4286208762 cites W3138809674 @default.
- W4286208762 cites W3162588987 @default.
- W4286208762 cites W3162810480 @default.
- W4286208762 cites W3163747386 @default.
- W4286208762 cites W3174609210 @default.
- W4286208762 cites W3186740901 @default.
- W4286208762 cites W3186741197 @default.
- W4286208762 cites W3195668177 @default.
- W4286208762 cites W3201276316 @default.
- W4286208762 cites W3205292488 @default.
- W4286208762 cites W3211633541 @default.
- W4286208762 cites W375961774 @default.
- W4286208762 cites W4232765308 @default.
- W4286208762 cites W4238509295 @default.
- W4286208762 cites W4243151849 @default.
- W4286208762 cites W4254354916 @default.
- W4286208762 cites W4281609427 @default.
- W4286208762 doi "https://doi.org/10.3390/polym14142934" @default.
- W4286208762 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35890714" @default.
- W4286208762 hasPublicationYear "2022" @default.
- W4286208762 type Work @default.
- W4286208762 citedByCount "2" @default.
- W4286208762 countsByYear W42862087622022 @default.
- W4286208762 crossrefType "journal-article" @default.
- W4286208762 hasAuthorship W4286208762A5020964755 @default.
- W4286208762 hasAuthorship W4286208762A5023740171 @default.
- W4286208762 hasAuthorship W4286208762A5028412434 @default.
- W4286208762 hasAuthorship W4286208762A5046529161 @default.
- W4286208762 hasAuthorship W4286208762A5070443489 @default.
- W4286208762 hasAuthorship W4286208762A5074008413 @default.
- W4286208762 hasBestOaLocation W42862087621 @default.
- W4286208762 hasConcept C101414908 @default.
- W4286208762 hasConcept C104779481 @default.