Laser micro-patterning of biodegradable polymer blends for tissue engineering

被引:0
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作者
Irina Alexandra Paun
Marian Zamfirescu
Mona Mihailescu
Catalin Romeo Luculescu
Cosmin Catalin Mustaciosu
Ion Dorobantu
Bogdan Calenic
Maria Dinescu
机构
[1] University Politehnica of Bucharest,Faculty of Applied Sciences
[2] National Institute for Laser,Department of Biochemistry, Faculty of Dentistry
[3] Plasma and Radiation Physics,Department of Proteomics Biochemistry
[4] Horia Hulubei National Institute for Physics and Nuclear Engineering IFIN-HH,undefined
[5] UMF Carol Davila,undefined
[6] Victor Babes National Institute of Pathology,undefined
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关键词
Hyaluronic Acid; Polymer Blend; Matrix Assisted Pulse Laser Evaporation; Digital Holographic Microscopy; Keratinocyte Stem Cell;
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摘要
We propose a multistep all laser, maskless, and solvent free synthesis of micro-patterned substrates of biodegradable polymer blends, with applicability for guided cell adhesion and localized hyaluronic acid (HA) immobilization. The polymer blends comprised polyurethane (PU), poly(lactic-co-glycolic acid) (PLGA), and polylactide-polyethylene glycol-polylactide (PPP) in 1:1:1 blending ratios. Polymer patterning was performed by laser processing in two steps. First, the polymers were patterned with periodic micro-channels by direct femtosecond laser ablation, which provided flexibility in design and spatial accuracy for the patterns. As a second step, the micro-patterned polymers were coated with thin layers of polymer blends using matrix assisted pulsed laser evaporation (MAPLE). The resulted sandwich substrates were composed of a bottom, micro-patterned layer and thin, top layer which conserved the patterns from the underlying layer and preserved the polymers chemical composition. Depending on the bottom/top layers, the substrates were denominated PU/PU:PLGA:PPP and PU:PLGA:PPP/PU:PLGA:PPP, respectively. The laser generated micro-patterns were used for selective attachment of oral keratinocyte stem cells and for HA immobilization. The highest cellular density was found on the PU:PLGA:PPP/PU:PLGA:PPP substrate, where the spongy-like micro-channels provided multiple anchoring points for the cells. For both substrates, the micro-channels enabled localized immobilization of HA. The effectiveness of HA immobilization was tested against cell adhesion and protein adsorption.
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页码:923 / 936
页数:13
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