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Osteoblasts Interaction with PLGA Membranes Functionalized with Titanium Film Nanolayer by PECVD. In vitro Assessment of Surface Influence on Cell Adhesion during Initial Cell to Material Interaction

机译:成骨细胞与通过PECVD钛膜纳米层功能化的PLGA膜的相互作用。在初始细胞与物质相互作用期间表面对细胞粘附的表面影响的体外评估

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New biomaterials for Guided Bone Regeneration (GBR), both resorbable and non-resorbable, are being developed to stimulate bone tissue formation. Thus, the in vitro study of cell behavior towards material surface properties turns a prerequisite to assess both biocompatibility and bioactivity of any material intended to be used for clinical purposes. For this purpose, we have developed in vitro studies on normal human osteoblasts (HOB®) HOB® osteoblasts grown on a resorbable Poly (lactide-co-glycolide) (PLGA) membrane foil functionalized by a very thin film (around 15 nm) of TiO2 (i.e., TiO2/PLGA membranes), designed to be used as barrier membrane. To avoid any alteration of the membranes, the titanium films were deposited at room temperature in one step by plasma enhanced chemical vapour deposition. Characterization of the functionalized membranes proved that the thin titanium layer completely covers the PLGA foils that remains practically unmodified in their interior after the deposition process and stands the standard sterilization protocols. Both morphological changes and cytoskeletal reorganization, together with the focal adhesion development observed in HOB osteoblasts, significantly related to TiO2 treated PLGA in which the Ti deposition method described has revealed to be a valuable tool to increase bioactivity of PLGA membranes, by combining cell nanotopography cues with the incorporation of bioactive factors.
机译:正在研发可吸收和不可吸收的新型引导骨再生(GBR)生物材料,以刺激骨组织的形成。因此,细胞行为对材料表面特性的体外研究成为评估任何打算用于临床目的的材料的生物相容性和生物活性的先决条件。为此,我们已经对正常人成骨细胞(HOB ®)HOB ®成骨细胞在可吸收的聚丙交酯-乙交酯共聚物(PLGA)上进行了体外研究。通过非常薄的TiO 2 薄膜(即TiO 2 / PLGA膜)功能化的薄膜箔(设计用作隔离膜)。为了避免膜的任何改变,钛膜通过等离子体增强化学气相沉积在室温下一步沉积。功能化膜的特性证明,薄的钛层完全覆盖了PLGA箔,在沉积过程之后,其内部几乎没有改性,并符合标准的灭菌规程。形态变化和细胞骨架重组,以及在HOB成骨细胞中观察到的粘着斑发展,都与TiO 2 处理过的PLGA显着相关,其中所述的Ti沉积方法已被证明是增加生物活性的有价值的工具。 PLGA膜,通过结合细胞纳米形貌线索与生物活性因子的结合。

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