The green formulation of silver nanoparticles for the anticancer and lupus nephritis treatment applications and reducing the inflammatory cytokines in the rat periodontal model

IF 6.7 3区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yan Sun, Qingfei Yu
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引用次数: 0

Abstract

In this study, a novel bio-inspired synthesis for the preparation of Ag NPs by Calendula persica flower extract has been researched. Also, the effects of the recent composite on lupus nephritis by following the TGF-β1 signaling pathway in mice and gingival amounts of IL1-β and TNF-α in the animal periodontal model were determined. To assess the crystal nature, morphology and size of the prepared nanoparticles, X-ray diffraction (XRD), transmission electron microscopy (TEM), ultraviolet–visible (UV–Vis) and field emission-scanning electron microscopy (FE-SEM) analyses were applied in this study. The prepared Ag NPs was employed for its effectiveness against colon cancer cell line (C26). The bio-synthesized Ag NPs had also cytotoxic property versus colon cancer based on MTT protocol. Collectively, the Ag NPs fabricated by biological way has potential applications in inflammatory treatment. In lupus nephritis section, indexes in animal tissues and serum were identified using specific kits, while pathological alterations in the mice kidney were examined through H&E staining. Additionally, qPCR was employed to determine the expression related to TGF-β 1 in kidney, thereby providing further insight into the silver nanoparticles mechanism. The findings indicated that silver nanoparticles reduced the mRNA expression levels of TGF-β 1 and NF-κB in the kidneys, while simultaneously increasing the Mn-SOD and IκB-α expression. Histological examination of H&E-stained sections revealed that silver nanoparticles mitigated the morphological abnormalities of the glomeruli and the inflammatory infiltration associated with nephritis. Silver nanoparticles demonstrated an inhibitory effect on the dsDNA positive rate in animal suffering from nephritis. Silver nanoparticles were found to reduce the increase in urinary protein and the pro-inflammatory cytokines concentrations in both the kidney and serum. In the periodontal model study, 0–3 ligatures were applied to induce the inflammatory periodontitis in right mandibular first molar neck in rats. The levels of inflammatory cytokines (IL1-β, CINC-1, IL-10 and TNF-α) were determined by common immunological test, ELISA. The findings revealed that Ag NPs administration could decease the IL1-β and TNF-α production in the rat periodontal model gum tissue. In addition, the outcome of this research indicated that IL1-β and TNF-α levels raised in the rat periodontal model gum tissue compared to control group. Ag NPs increased the levels of superoxide dismutase, catalase, and plasma bone alkaline phosphatase and reduced the IL1-β, TNF-α, inducible nitric oxide synthase and RANK genes mRNA expression. The results indicate that pre/post-treatment with Ag NPs because of its direct activity on pro-inflammatory cytokines inhibition improved the inflammatory symptoms in the periodontitis and lupus nephritis animals.
绿色配方银纳米颗粒用于抗癌和狼疮性肾炎的治疗应用,并降低大鼠牙周模型中的炎症细胞因子
本研究以金盏菊花提取物为原料,研究了一种新型的生物合成银纳米粒子的方法。并通过小鼠TGF-β1信号通路及动物牙周模型牙龈il - 1-β和TNF-α的表达,检测近期复方对狼疮性肾炎的影响。采用x射线衍射(XRD)、透射电子显微镜(TEM)、紫外可见(UV-Vis)和场发射扫描电子显微镜(FE-SEM)分析了制备的纳米颗粒的晶体性质、形貌和尺寸。用制备的Ag NPs对结肠癌细胞株(C26)进行了抑菌试验。根据MTT方案,生物合成的Ag NPs也具有抗结肠癌的细胞毒性。综上所述,通过生物方法制备的Ag NPs在炎症治疗中具有潜在的应用前景。狼疮性肾炎切片采用特异性试剂盒检测动物组织及血清指标,H&;E染色检测小鼠肾脏病理改变。此外,我们还利用qPCR检测了TGF-β 1在肾脏中的相关表达,从而进一步了解银纳米颗粒的作用机制。结果表明,纳米银可降低肾组织中TGF-β 1和NF-κB mRNA的表达水平,同时升高Mn-SOD和i -κB -α的表达。H&; e染色切片的组织学检查显示,银纳米颗粒减轻了肾小球的形态学异常和肾炎相关的炎症浸润。银纳米颗粒对肾炎动物dsDNA阳性率有抑制作用。研究发现,银纳米颗粒可以降低尿蛋白的增加,以及肾脏和血清中促炎细胞因子的浓度。在牙周模型研究中,采用0-3结扎法诱导大鼠右下颌第一磨牙颈部炎症性牙周炎。采用ELISA法检测各组炎性因子(il -1 -β、cnc -1、IL-10、TNF-α)水平。结果表明,Ag NPs可降低大鼠牙周模型牙龈组织中il - 1-β和TNF-α的产生。此外,本研究结果表明,与对照组相比,大鼠牙周模型牙龈组织中il - 1-β和TNF-α水平升高。Ag NPs提高血浆超氧化物歧化酶、过氧化氢酶和骨碱性磷酸酶水平,降低il - 1-β、TNF-α、诱导型一氧化氮合酶和RANK基因mRNA表达。结果表明,Ag NPs治疗前后由于其直接抑制促炎细胞因子的活性而改善了牙周炎和狼疮性肾炎动物的炎症症状。
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来源期刊
Journal of Science: Advanced Materials and Devices
Journal of Science: Advanced Materials and Devices Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
11.90
自引率
2.50%
发文量
88
审稿时长
47 days
期刊介绍: In 1985, the Journal of Science was founded as a platform for publishing national and international research papers across various disciplines, including natural sciences, technology, social sciences, and humanities. Over the years, the journal has experienced remarkable growth in terms of quality, size, and scope. Today, it encompasses a diverse range of publications dedicated to academic research. Considering the rapid expansion of materials science, we are pleased to introduce the Journal of Science: Advanced Materials and Devices. This new addition to our journal series offers researchers an exciting opportunity to publish their work on all aspects of materials science and technology within the esteemed Journal of Science. With this development, we aim to revolutionize the way research in materials science is expressed and organized, further strengthening our commitment to promoting outstanding research across various scientific and technological fields.
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