Matches in SemOpenAlex for { <https://semopenalex.org/work/W3047845528> ?p ?o ?g. }
- W3047845528 endingPage "280" @default.
- W3047845528 startingPage "266" @default.
- W3047845528 abstract "Abstract A chitosan/deoxyribonucleic acid (CHI/DNA)5 coating was constructed by layer-by-layer (LbL) assembly dip coating method with Mg(OH)2 coating as an inner protective layer on AZ31 alloy. X-ray diffractometry, X-ray photoelectron spectrometry, Fourier transform infrared spectroscopy and field-emission scanning electron microscopy were utilized to represent the chemical compositions and surface morphologies of the coatings. Electrochemical tests and hydrogen evolution measurements were implemented to confirm the good corrosion resistance of the composite coating in artificial body fluid. Antimicrobial activity of the composite coatings was tested via the plate-counting method, and the cytotoxicity of the samples was appraised by MTT assay and Live/dead staining. A double action was put into effect for the composite coating, which the inner Mg(OH)2 coating plays the part of physical barrier, and the outer (CHI/DNA)5 coating is employed as an inducer to fabricate a biocompatible Ca-P corrosion product coating during immersion, making up for its thin thickness. Otherwise, the composite coating is also beneficial for the growth of bone, resulting from the biomineralization effect of the outer polyelectrolyte multilayer. The good antibacterial property of the (CHI/DNA)5/Mg(OH)2 coating is ascribed to the contact-killing strength of CHI. Thus, the obtained (CHI/DNA)5/Mg(OH)2 coating has a wide application prospect in the field of Mg-based bone implantation." @default.
- W3047845528 created "2020-08-13" @default.
- W3047845528 creator A5001333841 @default.
- W3047845528 creator A5028127962 @default.
- W3047845528 creator A5030674649 @default.
- W3047845528 creator A5031451463 @default.
- W3047845528 creator A5032629778 @default.
- W3047845528 creator A5033594144 @default.
- W3047845528 creator A5043233370 @default.
- W3047845528 creator A5044440062 @default.
- W3047845528 creator A5052428330 @default.
- W3047845528 creator A5079510671 @default.
- W3047845528 date "2021-01-01" @default.
- W3047845528 modified "2023-09-29" @default.
- W3047845528 title "In vitro corrosion resistance, antibacterial activity and cytocompatibility of a layer-by-layer assembled DNA coating on magnesium alloy" @default.
- W3047845528 cites W1965790268 @default.
- W3047845528 cites W1971944573 @default.
- W3047845528 cites W1972129160 @default.
- W3047845528 cites W1982487116 @default.
- W3047845528 cites W1991642422 @default.
- W3047845528 cites W1991944381 @default.
- W3047845528 cites W1991953458 @default.
- W3047845528 cites W1993213288 @default.
- W3047845528 cites W1994019795 @default.
- W3047845528 cites W1998129400 @default.
- W3047845528 cites W2008827477 @default.
- W3047845528 cites W2040137888 @default.
- W3047845528 cites W2048329376 @default.
- W3047845528 cites W2051788875 @default.
- W3047845528 cites W2059896455 @default.
- W3047845528 cites W2066269108 @default.
- W3047845528 cites W2096735953 @default.
- W3047845528 cites W2121699160 @default.
- W3047845528 cites W2142940632 @default.
- W3047845528 cites W2168022187 @default.
- W3047845528 cites W2170101626 @default.
- W3047845528 cites W2172812865 @default.
- W3047845528 cites W2310895861 @default.
- W3047845528 cites W2319736827 @default.
- W3047845528 cites W2332268599 @default.
- W3047845528 cites W2412706247 @default.
- W3047845528 cites W2414463182 @default.
- W3047845528 cites W2461919118 @default.
- W3047845528 cites W2463105761 @default.
- W3047845528 cites W2556909590 @default.
- W3047845528 cites W2561335404 @default.
- W3047845528 cites W2621545235 @default.
- W3047845528 cites W2622748346 @default.
- W3047845528 cites W2710547330 @default.
- W3047845528 cites W2740563852 @default.
- W3047845528 cites W2765206272 @default.
- W3047845528 cites W2765560373 @default.
- W3047845528 cites W2765645454 @default.
- W3047845528 cites W2770592191 @default.
- W3047845528 cites W2775432560 @default.
- W3047845528 cites W2791157166 @default.
- W3047845528 cites W2791427309 @default.
- W3047845528 cites W2793474503 @default.
- W3047845528 cites W2794281382 @default.
- W3047845528 cites W2794350455 @default.
- W3047845528 cites W2801373228 @default.
- W3047845528 cites W2802064771 @default.
- W3047845528 cites W2808786110 @default.
- W3047845528 cites W2810366655 @default.
- W3047845528 cites W2811427553 @default.
- W3047845528 cites W2888057232 @default.
- W3047845528 cites W2889110559 @default.
- W3047845528 cites W2889633288 @default.
- W3047845528 cites W2889894111 @default.
- W3047845528 cites W2894309081 @default.
- W3047845528 cites W2896535967 @default.
- W3047845528 cites W2906314946 @default.
- W3047845528 cites W2912414495 @default.
- W3047845528 cites W2917676880 @default.
- W3047845528 cites W2917845081 @default.
- W3047845528 cites W2921201799 @default.
- W3047845528 cites W2922024540 @default.
- W3047845528 cites W2927376352 @default.
- W3047845528 cites W2947045569 @default.
- W3047845528 cites W2951076840 @default.
- W3047845528 cites W2953728785 @default.
- W3047845528 cites W2953829234 @default.
- W3047845528 cites W2988991455 @default.
- W3047845528 cites W4211147970 @default.
- W3047845528 doi "https://doi.org/10.1016/j.jma.2020.03.009" @default.
- W3047845528 hasPublicationYear "2021" @default.
- W3047845528 type Work @default.
- W3047845528 sameAs 3047845528 @default.
- W3047845528 citedByCount "31" @default.
- W3047845528 countsByYear W30478455282021 @default.
- W3047845528 countsByYear W30478455282022 @default.
- W3047845528 countsByYear W30478455282023 @default.
- W3047845528 crossrefType "journal-article" @default.
- W3047845528 hasAuthorship W3047845528A5001333841 @default.
- W3047845528 hasAuthorship W3047845528A5028127962 @default.
- W3047845528 hasAuthorship W3047845528A5030674649 @default.
- W3047845528 hasAuthorship W3047845528A5031451463 @default.
- W3047845528 hasAuthorship W3047845528A5032629778 @default.