Thao Nguyen Thi Thu, Lee Surha, Shin Gi Ru, Kang Youngji, Choi Sangdun, Kim Moon Suk
Department of Molecular Science and Technology, Ajou University, Suwon 16499, Korea.
Pharmaceutics. 2021 Feb 11;13(2):253. doi: 10.3390/pharmaceutics13020253.
In this work, we chose small intestine submucosa (SIS) as a drug carrier because SIS possesses good biocompatibility, non-immunogenic property and bio-resorbability, and performed electrospinning for preparation of nanofiber sheets (NS). For the preparation of drug-loaded electrospun SIS nanofiber sheets as a drug carrier, we used poly(ε-caprolactone--l-lactide) (PCLA) copolymers to improve the electrospinning performance of SIS. The electrospinning of SIS and PCLA provided the electrospun SIS/PCLA (S/P)-nanofiber sheet (S/P-NS) with adjustable thickness and areas. The electrospun S/P-NS showed different porosities, pore sizes, diameters and tensile strengths depending on the ratios between SIS and PCLA. The electrospun S/P-NS was used as a drug carrier of the dexamethasone (Dex) and silver sulfadiazine (AgS) drug related to anti-inflammation. Dex-loaded S/P-NS and AgS-loaded S/P-NS was successfully fabricated by the electrospinning. In the in vitro and in vivo release, we successfully confirmed the possibility for the sustained release of Dex and AgS from the Dex-S/P-NS and AgS-S/P-NS for three weeks. In addition, the sustained Dex and AgS release suppressed the macrophage infiltration. Collectively, we achieved feasible development of SIS nanofiber sheets for a sustained Dex and AgS delivery system.
在本研究中,我们选择小肠黏膜下层(SIS)作为药物载体,因为SIS具有良好的生物相容性、非免疫原性和生物可吸收性,并进行了静电纺丝以制备纳米纤维片(NS)。为了制备作为药物载体的载药静电纺丝SIS纳米纤维片,我们使用聚(ε-己内酯-丙交酯)(PCLA)共聚物来改善SIS的静电纺丝性能。SIS和PCLA的静电纺丝为静电纺丝SIS/PCLA(S/P)-纳米纤维片(S/P-NS)提供了可调节的厚度和面积。根据SIS和PCLA之间的比例,静电纺丝S/P-NS表现出不同的孔隙率、孔径、直径和拉伸强度。静电纺丝S/P-NS被用作与抗炎相关的地塞米松(Dex)和磺胺嘧啶银(AgS)药物的药物载体。通过静电纺丝成功制备了载Dex的S/P-NS和载AgS的S/P-NS。在体外和体内释放实验中,我们成功证实了Dex和AgS从Dex-S/P-NS和AgS-S/P-NS中持续释放三周的可能性。此外,Dex和AgS的持续释放抑制了巨噬细胞浸润。总体而言,我们实现了用于持续Dex和AgS递送系统的SIS纳米纤维片的可行开发。