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Electrospun Poly(L-Lactide) Fiber with Ginsenoside Rg3 for Inhibiting Scar Hyperplasia of Skin

机译:人参皂甙Rg3静电纺丝聚丙交酯纤维抑制皮肤瘢痕增生

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摘要

Hypertrophic scarring (HS) has been considered as a great concern for patients and a challenging problem for clinicians as it can be cosmetically disfiguring and functionally debilitating. In this study, Ginsenoside Rg3/Poly(l-lactide) (G-Rg3/PLLA) electrospun fibrous scaffolds covering on the full-thickness skin excisions location was designed to suppress the hypertrophic scar formation in vivo. SEM and XRD results indicated that the crystal G-Rg3 carried in PLLA electrospun fibers was in amorphous state, which facilitates the solubility of G-Rg3 in the PLLA electrospun fibrous scaffolds, and solubility of G-Rg3 in PBS is increased from 3.2 µg/ml for pure G-Rg3 powders to 19.4 µg/ml for incorporated in PLLA-10% fibers. The released G-Rg3 content in the physiological medium could be further altered from 324 to 3445 µg in a 40-day release period by adjusting the G-Rg3 incorporation amount in PLLA electrospun fibers. In vitro results demonstrated that electrospun G-Rg3/PLLA fibrous scaffold could significantly inhibit fibroblast cell growth and proliferation. In vivo results confirmed that the G-Rg3/PLLA electrospun fibrous scaffold showed significant improvements in terms of dermis layer thickness, fibroblast proliferation, collagen fibers and microvessels, revealing that the incorporation of the G-Rg3 in the fibers prevented the HS formation. The above results demonstrate the potential use of G-Rg3/PLLA electrospun fibrous scaffolds to rapidly minimize fibroblast growth and restore the structural and functional properties of wounded skin for patients with deep trauma, severe burn injury, and surgical incision.
机译:肥厚性瘢痕形成(HS)已被认为是患者最关心的问题,也是临床医生面临的挑战性问题,因为它可能会在外观上造成外观破坏和功能下降。在这项研究中,人参皂苷Rg3 /聚(l-丙交酯)(G-Rg3 / PLLA)电纺纤维支架覆盖在全厚度皮肤切除部位,旨在抑制体内肥大性瘢痕的形成。 SEM和XRD结果表明,PLLA电纺纤维中携带的晶体G-Rg3为非晶态,这有助于G-Rg3在PLLA电纺纤维支架中的溶解度,并且G-Rg3在PBS中的溶解度从3.2 µg /对于纯G-Rg3粉末,每毫升为19.4 µg / ml(掺入PLLA-10%纤维中)。通过调节PLLA电纺纤维中的G-Rg3掺入量,可以在40天的释放期内将生理介质中释放的G-Rg3含量进一步从324改变为3445 µg。体外结果表明,电纺G-Rg3 / PLLA纤维支架可以显着抑制成纤维细胞的生长和增殖。体内结果证实,G-Rg3 / PLLA电纺丝纤维支架在真皮层厚度,成纤维细胞增殖,胶原纤维和微血管方面显示出显着改善,表明在纤维中掺入G-Rg3可防止HS形成。以上结果表明,对于深部创伤,严重烧伤和手术切口的患者,G-Rg3 / PLLA电纺纤维支架的潜在用途可快速减少成纤维细胞的生长并恢复受伤皮肤的结构和功能特性。

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