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首页> 外文期刊>Journal of biomedical materials research, Part A >Influence of collagen-fibril-based coatings containing decorin and biglycan on osteoblast behavior
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Influence of collagen-fibril-based coatings containing decorin and biglycan on osteoblast behavior

机译:含有核心蛋白聚糖和双糖链蛋白的胶原纤维原涂层对成骨细胞行为的影响

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Collagen is used as a scaffold material for tissue engineering as well as a coating material for implants with a view to enhancing osseointegration by mimicry of the bone extracellular matrix in vivo. The biomimicry strategy can be taken further by incorporating the small leucine-rich proteo-glycans (SLRPs) decorin and biglycan, which are expressed in bone. Both bind to fibrils during fibrillogenesis in vitro. In this study, the ability of collagen types I, II, and III to bind decorin and biglycan was compared. Collagen type II bound significantly more SLRPs in fibrils than collagen I and III, with more biglycan than decorin bound by all three collagen types. Therefore, type II fibrils with bound decorin or biglycan or neither were used to coat titanium surfaces. Bioavail-ability of SLRPs was confirmed by direct ELISA after SLRP biotinilation. The in vitro behavior of osteoblasts from rat calvaria (rOs) and human knee (hOs) cultured on different surfaces was compared. Proliferation and collagen synthesis were determined. Also, the influence of SLRPs on the formation of focal adhesions by rO was investigated. Biglycan enhanced the formation of focal adhesions after 2 and 24 h. Decorin and biglycan affected rO and hO proliferation and collagen synthesis differently. Biglycan stimulated hO proliferation significantly but had no effect on rO proliferation, and also inhibited rO collagen synthesis significantly while not affecting hO collagen synthesis. Decorin promoted hO proliferation slightly but did not influence rO proliferation. The results could be relevant when designing implant coatings or tissue engineering scaffolds.
机译:胶原蛋白被用作组织工程的支架材料以及植入物的涂层材料,以通过在体内模拟骨细胞外基质来增强骨整合。可以通过掺入在骨骼中表达的富含亮氨酸的小蛋白聚糖(SLRP)核心蛋白聚糖和双糖链蛋白来进一步采取仿生策略。两者在体外原纤维形成过程中均与原纤维结合。在这项研究中,比较了I,II和III型胶原蛋白结合除蛋白和双糖链蛋白聚糖的能力。 II型胶原蛋白在原纤维中结合的SLRP明显多于I型和III型胶原蛋白,而这三种胶原蛋白类型所结合的双糖链蛋白聚糖比Decorin更高。因此,结合了decorin或biglycan或两者都没有的II型原纤维被用于涂覆钛表面。 SLRP生物素化后,通过直接ELISA证实了SLRPs的生物利用度。比较了在不同表面培养的大鼠颅盖骨(rOs)和人膝(hOs)的成骨细胞的体外行为。测定增殖和胶原合成。此外,研究了SLRP对rO形成粘着斑的影响。 2和24小时后,双链糖蛋白增强了粘着斑的形成。 Decorin和biglycan对rO和hO增殖以及胶原合成的影响不同。双链蛋白聚糖显着刺激hO增殖,但对rO增殖没有影响,并且在不影响hO胶原合成的同时,也显着抑制rO胶原合成。 Decorin略微促进hO增殖,但不影响rO增殖。当设计植入物涂层或组织工程支架时,结果可能是有意义的。

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