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首页> 外文期刊>Tissue engineering, Part A >Incorporating platelet-rich plasma into electrospun scaffolds for tissue engineering applications.
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Incorporating platelet-rich plasma into electrospun scaffolds for tissue engineering applications.

机译:将富含血小板的血浆纳入电纺支架中,以用于组织工程应用。

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Platelet-rich plasma (PRP) therapy has seen a recent spike in clinical interest due to the potential that the highly concentrated platelet solutions hold for stimulating tissue repair and regeneration. The aim of this study was to incorporate PRP into a number of electrospun materials to determine how growth factors are eluted from the structures, and what effect the presence of these factors has on enhancing electrospun scaffold bioactivity. PRP underwent a freeze-thaw-freeze process to lyse platelets, followed by lyophilization to create a powdered preparation rich in growth factors (PRGF), which was subsequently added to the electrospinning process. Release of protein from scaffolds over time was quantified, along with the quantification of human macrophage and adipose-derived stem cell (ADSC) chemotaxis and proliferation. Protein assays demonstrated a sustained release of protein from PRGF-containing scaffolds at up to 35 days in culture. Scaffold bioactivity was enhanced as ADSCs demonstrated increased proliferation in the presence of PRGF, whereas macrophages demonstrated increased chemotaxis to PRGF. In conclusion, the work performed in this study demonstrated that the incorporation of PRGF into electrospun structures has a significant positive influence on the bioactivity of the scaffolds, and may prove beneficial in a number of tissue engineering applications.
机译:由于高浓度血小板溶液具有刺激组织修复和再生的潜力,因此富血小板血浆(PRP)治疗在临床上引起了近期的关注。这项研究的目的是将PRP掺入许多电纺材料中,以确定生长因子如何从结构中洗脱出来,以及这些因子的存在对增强电纺支架生物活性的影响。 PRP进行了冻融解冻过程以溶解血小板,然后冻干以生成富含生长因子(PRGF)的粉状制剂,随后将其添加到静电纺丝过程中。随着时间的推移,定量从支架释放蛋白质,同时定量人类巨噬细胞和脂肪干细胞(ADSC)趋化性和增殖。蛋白质测定表明,在长达35天的培养中,蛋白质会从含PRGF的支架中持续释放。由于ADSCs在PRGF存在下增殖增加,而巨噬细胞对PRGF的趋化性增加,因此支架的生物活性得到增强。总之,在这项研究中进行的工作表明,将PRGF掺入电纺结构中对支架的生物活性具有显着的积极影响,并可能在许多组织工程应用中证明是有益的。

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