PROPOLIS LOADED POLYVINYL ALCOHOL ATTENUATES CCL4 INDUCED HEPATIC FIBROSIS VIA MODULATION OF LET-7B/TGF-Β/SMAD SIGNALING PATHWAY

IF 0.3 4区 农林科学 Q4 VETERINARY SCIENCES Slovenian Veterinary Research Pub Date : 2023-02-26 DOI:10.26873/svr-1568-2022
Saydat Saad, Doaa M. Abdelfatah, Aya M. El-Sobky, Tarek Khamis
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Abstract

Chronic liver disorders are a serious global health issue due to their widespread incidence. Nephropathy described the deterioration of kidney function. Safe drug delivery by nanoparticles is a rapidly developing field with promising applications in the treatment of a wide variety of diseases. The current study aimed to evaluate the use of propolis nanoparticles for managing carbon tetrachloride (CCl4)-induced hepato-nephropathy on rats. Seventy adult males Spargue Dawley rats were allocated into 7 equal groups 10 rats of each. Control, CCl4, CCl4 +Silymarin, CCl4 + propolis, CCl4+Nanopropolis, CCl4 +Silymarin +Propolis, CCl4 +Silymarin +Nanopropolis. Hepato- nephropathy was induced with oral administration of CCl4 dissolved in olive oil at dose of (1gm/kg) for 4 weeks. Silymarin, propolis and nanopropolis were orally administrated at a dose of (200mg /kg), (100 mg/kg) and (30 mg /kg) respectively for 4 weeks post hepato-nephropathy onset.  Biochemical, molecular analysis, histological assessment of liver and kidney and serum oxidative stress were done. CCl4 caused a marked deterioration in biochemical, oxidative stress markers (MDA, TAC, CAT), serum TNF-α, IgM, molecular markers (SMAD-2, SMAD-3, SMAD-7, MMP-9, Desmin, TGF-β1, and let-7b), and the histopathological pictures of both liver and kidney. The above-mentioned parameters were restored with administration of silymarim + Nano-propolis, silymarin + propolis, silymarin, Nano-propolis, and propolis in order. Based on the previous findings we could speculated that combined therapy of nano-propolis and silymarin could be implicated in managing hepato-nepheropathy since it improves both liver and kideny function by targeting let-7b/TGF-β/Smad Pathway.
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蜂胶负载聚乙烯醇通过调节let-7b / tgf -Β/ smad信号通路减轻ccl4诱导的肝纤维化
慢性肝脏疾病因其广泛的发病率而成为一个严重的全球健康问题。肾病是指肾功能的恶化。纳米颗粒安全给药是一个快速发展的领域,在治疗多种疾病方面具有广阔的应用前景。本研究旨在评估蜂胶纳米颗粒对四氯化碳(CCl4)诱导的大鼠肝肾病的治疗作用。选取成年雄性spague Dawley大鼠70只,分为7组,每组10只。对照,CCl4, CCl4+水飞蓟素,CCl4+蜂胶,CCl4+纳米蜂胶,CCl4+水飞蓟素+蜂胶,CCl4+水飞蓟素+纳米蜂胶。用橄榄油中溶解的CCl4 (1gm/kg)口服4周诱导肝肾病。肝肾病发病后,分别口服水飞蓟素(200mg /kg)、蜂胶(100mg /kg)和纳米蜂胶(30mg /kg) 4周。进行生化、分子分析、肝肾组织学及血清氧化应激评价。CCl4导致生化、氧化应激标志物(MDA、TAC、CAT)、血清TNF-α、IgM、分子标志物(SMAD-2、SMAD-3、SMAD-7、MMP-9、Desmin、TGF-β1、let-7b)和肝肾组织病理图像明显恶化。结果表明,水飞蓟素+纳米蜂胶、水飞蓟素+蜂胶、水飞蓟素+纳米蜂胶、水飞蓟素+纳米蜂胶、蜂胶均能恢复上述参数。基于之前的研究结果,我们可以推测纳米蜂胶和水飞蓟素联合治疗可能与肝肾病有关,因为它通过靶向let-7b/TGF-β/Smad通路改善肝肾功能。
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来源期刊
Slovenian Veterinary Research
Slovenian Veterinary Research VETERINARY SCIENCES-
CiteScore
0.60
自引率
0.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: SLOVENIAN VETERINARY RESEARCH (ISSN 1580-4003) publishes original articles, which report the results of original research in most areas of biomedicine. The journal also publishes review articles dealing with rapidly developing areas of biomedicine or which update understanding of classical fields of biomedicine, as well as case reports, shorter scientific contributions, letters to the editor, etc.; which have not been published or are under consideration for publication elsewhere. Only papers written in English can be considered.
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