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Thymoquinone-PLGA-PVA Nanoparticles Ameliorate Bleomycin-Induced Pulmonary Fibrosis in Rats via Regulation of Inflammatory Cytokines and iNOS Signaling

机译:胸腺量 - PLGA-PVA纳米颗粒通过调节炎性细胞因子和INOS信号传导来改善大鼠肺纤维化的肺纤维化

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摘要

Pulmonary fibrosis is considered one of the most chronic interstitial illnesses which are not easily treated. thymoquinone’s (TQ) benefits are still partly problematic due to poor water solubility; therefore, it was loaded onto PLGA-PVA carriers. This study aimed to evaluate the potential effect of TQ-PLGA-PVA nanoparticles (TQ-PLGA-PVA-NPs) on pulmonary fibrosis induced by bleomycin in albino rats. Forty male rats were randomized into four groups. The first group served as the control group; the second and the third groups received bleomycin intratracheally, whereas the third group received TQ-PLGA-PVA-NPs after 4 weeks from bleomycin administration. The fourth group was administrated TQ-PLGA-PVA-NPs alone. The designed nanoparticles appeared around 20 nm size (10−30 nm), had a spherical shape, and had 80% encapsulation efficiency. The histological examination of rats simultaneously treated with TQ-PLGA-PVA-NPs and bleomycin revealed reduction in the thickness of the alveolar septa and improvement of the other lung structures, with the presence of lymphocytes admixed with exfoliated epithelium in a few lumina remaining. Ultrastructural findings revealed marked collagenolysis and the release of nanoparticles from ruptured pneumocytes within the alveolar septa after 14 days from TQ-PLGA-PVA-NPs administration. Very active pneumocyte types II were seen in the TQ-PLGA-PVANP group. Additionally, immunohistochemical expression of inducible nitric oxide (iNOS) and estimation of inflammatory cytokines in lung tissues including interleukin 10 (IL 10) and transforming growth factor-beta (TGF-β1) confirmed the antioxidant and anti-inflammatory effects of TQ-PLGA-PVANPs. The study concluded that TQ-PLGA-PVA-NPs could attenuate the bleomycin-induced pulmonary fibrosis, through the inhibition of lung inflammation and the suppression of bleomycin- induced oxidative stress.
机译:肺纤维化被认为是最慢性间质疾病之一,不容易治疗。由于水溶解度差,胸腺醌的(TQ)益处仍然是部分问题;因此,它被装载到PLGA-PVA载体上。本研究旨在评估TQ-PLGA-PVA纳米粒子(TQ-PLGA-PVA-NPS)对白变种霉素诱导的肺纤维化的潜在影响。四十只雄性大鼠随机分为四组。第一组担任对照组;第二组和第三组接受了脑内脑内霉素,而第三组从博莱霉素给药后4周后接受TQ-PLGA-PVA-NPS。第四组单独给予TQ-PLGA-PVA-NPS。设计的纳米颗粒出现约20nm尺寸(10-30nm),具有球形,并具有80%的封装效率。用TQ-PLGA-PVA-NPS和BLEOMYCIN同时处理的大鼠的组织学检查显示肺泡隔膜的厚度和其他肺部结构的厚度降低,淋巴细胞在剩下的几个牙龈中与剥离上皮混合的淋巴细胞存在。超微结构发现显示出从TQ-PLGA-PVA-NPS施用14天后展开肺泡隔膜内的破裂的肺泡释放的胶原蛋白和纳米颗粒。在TQ-PLGA-PVANP组中看到非常活跃的肺细胞类型II。另外,诱导型一氧化氮(InOS)的免疫组织化学表达和肺组织中炎性细胞因子的估计,包括白细胞介素10(IL 10)和转化生长因子-β(TGF-β1)证实了TQ-PLGA的抗氧化剂和抗炎作用Pvanps。该研究得出结论,TQ-PLGA-PVA-NPS可以通过抑制肺部炎症和抑制玻璃霉素诱导的氧化胁迫来衰减博尔霉素诱导的肺纤维化。

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