CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Renoprotective

  • Renoprotective

  • Renoprotective effect and mechanism of polysaccharide from Polyporus umbellatus sclerotia on renal fibrosis.

    facebook Share on Facebook
    Abstract Title:

    Renoprotective effect and mechanism of polysaccharide from Polyporus umbellatus sclerotia on renal fibrosis.

    Abstract Source:

    Carbohydr Polym. 2019 May 15 ;212:1-10. Epub 2019 Feb 12. PMID: 30832835

    Abstract Author(s):

    Hailun Li, Zhuan Yan, Qingping Xiong, Xiaoling Chen, Yongtao Lin, Yong Xu, Lin Bai, Wei Jiang, Donghui Zheng, Changying Xing

    Article Affiliation:

    Hailun Li

    Abstract:

    As a fungal polysaccharide, polysaccharide (PPUS) from Polyporus umbellatus sclerotia have showed remarkable anti-inflammatory activities. In view of the closely relationship between inflammation and renal fibrosis, and considering the significant role of other fungal polysaccharides on treatment of renal fibrosis, we speculated that PPUS may have therapeutic effects on renal fibrosis. However, there was not any reports about PPUS treatment this disease. The purpose of this paper is to investigate renoprotective effect and mechanism of PPUS on renal fibrosis. The results indicated that PPUS can improve renal function and ameliorate the degree of renal collagen deposition and further fibrosis. Its mechanism was found to be related with decreased inflammation, suppressive epithelial-mesenchymal transition, reconstructed the balance of matrix metalloproteinases and tissue inhibitor of metalloproteinases, and pro-fibrotic and anti-fibrotic factors. The data implied that PPUS can serve as a clinical candidate on treatment of renal interstitial fibrosis.

  • Sodium Bicarbonate-Ascorbic Acid Combination for Prevention of Contrast-Induced Nephropathy in Chronic Kidney Disease Patients Undergoing Catheterization. 📎

    Abstract Title:

    Sodium Bicarbonate-Ascorbic Acid Combination for Prevention of Contrast-Induced Nephropathy in Chronic Kidney Disease Patients Undergoing Catheterization.

    Abstract Source:

    Circ J. 2017 Jan 25 ;81(2):235-240. Epub 2016 Dec 22. PMID: 28003574

    Abstract Author(s):

    Kota Komiyama, Takashi Ashikaga, Dai Inagaki, Tomonori Miyabe, Marina Arai, Kiyotaka Yoshida, Satoshi Miyazawa, Akihiro Nakada, Iwanari Kawamura, Shinichiro Masuda, Sho Nagamine, Rintaro Hojo, Yuya Aoyama, Takaaki Tsuchiyama, Seiji Fukamizu, Takashi Shibui, Harumizu Sakurada

    Article Affiliation:

    Kota Komiyama

    Abstract:

    BACKGROUND:Sodium bicarbonate and ascorbic acid have been proposed to prevent contrast-induced nephropathy (CIN). The present study evaluated the effect of their combined use on CIN incidence.Methods and Results:We prospectively enrolled 429 patients with chronic kidney disease (CKD: baseline estimated glomerular filtration rate<60 mL/min/1.73 m(2)) prior to elective coronary catheterization. CIN was defined as absolute (≥0.5 mg/dL) or relative (≥25%) increase in serum creatinine within 72 h. In the saline hydration (n=218) and combined sodium bicarbonate+ascorbic acid (n=211) groups, a total of 1,500-2,500 mL 0.9% saline was given before and after the procedure. In addition, the combination group received 20 mEq sodium bicarbonate and 3 g ascorbic acid i.v. before the procedure, followed by 2 g ascorbic acid after the procedure and a further 2 g after 12 h. There were no significant differences between the basic characteristics and contrast volume in the 2 groups. CIN occurred in 19 patients (8.7%) in thesaline group, and in 6 patients (2.8%) in the combined treatment group (P=0.008).

    CONCLUSIONS:Combined sodium bicarbonate and ascorbic acid could prevent CIN following catheterization in CKD patients.

  • The Ayurvedic medicine Salacia oblonga attenuates diabetic renal fibrosis in rats: suppression of angiotensin II/AT1 signaling📎

    facebook Share on Facebook
    Abstract Title:

    The Ayurvedic medicine Salacia oblonga attenuates diabetic renal fibrosis in rats: suppression of angiotensin II/AT1 signaling.

    Abstract Source:

    Evid Based Complement Alternat Med. 2009 Aug 25. Epub 2009 Aug 25. PMID: 19706694

    Abstract Author(s):

    Lan He, Yanfei Qi, Xianglu Rong, Jianmin Jiang, Qinglin Yang, Johji Yamahara, Michael Murray, Yuhao Li

    Article Affiliation:
    Abstract:

    In human diabetic nephropathy, the extent of tubulointerstitial fibrosis is the leading cause of end-stage renal disease; fibrosis is closely correlated with renal dysfunction. Although a wide array of medicinal plants play a role in the prevention and treatment of diabetes, there are few reports of the application of herbal medicines in amelioration of renal fibrosis, or the underlying mechanisms by which such benefits are mediated. The efficacy of the Ayurvedic antidiabetic medicine Salacia oblonga (SO) root on rat renal fibrosis was investigated. An aqueous extract from SO (100 mg/kg, p.o., 6 weeks) diminished renal glomerulosclerosis and interstitial fibrosis in Zucker diabetic fatty (ZDF) rats, as revealed by van Giesen-staining. SO also reduced renal salt-soluble, acid-soluble and salt-insoluble collagen contents. These changes were accompanied by normalization of hypoalbuminemia and BUN. Gene profiling revealed that the increase in transcripts encoding the glomerulosclerotic mediators collagen I, collagen IV, fibronectin, angiotensin II type 1 receptor (AT1), transforming growth factor (TGF)-beta1, plasminogen activator inhibitor (PAI)-1 observed in ZDF rat kidney was suppressed by SO. In rat-derived mesangial cells, similar to the effect of the AT1 antagonist telmisartan, SO and its major component mangiferin suppressed the stimulatory effect of angiotensin II on proliferation and increased mRNA expression and/or activities of collagen I, collagen IV, fibronectin, AT1, TGF-beta1 and PAI-1. Considered together the present findings demonstrate that SO attenuates diabetic renal fibrosis, at least in part by suppressing anigiotensin II/AT1 signaling. Further, it now emerges that mangiferin is an effective antifibrogenic agent.

  • The combined treatment with lentil protein hydrolysate and a mixed training protocol is an efficient lifestyle intervention to manage cardiovascular and renal alterations in obese Zucker rats.

    facebook Share on Facebook
    Abstract Title:

    The combined treatment with lentil protein hydrolysate and a mixed training protocol is an efficient lifestyle intervention to manage cardiovascular and renal alterations in obese Zucker rats.

    Abstract Source:

    Eur J Nutr. 2020 Feb 6. Epub 2020 Feb 6. PMID: 32030473

    Abstract Author(s):

    Jesus M Porres, Janin Constantino, Garyfallia Kapravelou, Carlos Lopez-Chaves, Milagros Galisteo, Pilar Aranda, María López-Jurado, Rosario Martínez

    Article Affiliation:

    Jesus M Porres

    Abstract:

    PURPOSE:Functional and structural changes in cardiovascular and renal systems resulting from obesity and metabolic syndrome represent a severe risk to human health. Lifestyle interventions such as combining healthy diet with adequate physical exercise protocols are good strategies to manage these pathologies. In this research, the effects of lentil protein hydrolysate administration, combined or not with a mixed training protocol, on insulin resistance, cardiovascular and renal functionality were studied in the obese Zucker rat experimental model.

    METHODS:Thirty-two rats (16 lean and 16 obese subdivided in sedentary and trained animals) were administered lentil protein hydrolysate, whereas another 32 subdivided in the same experimental design were administered placebo. The experiment lasted for 8 weeks. At the end of the experimental period, insulin resistance and different parameters of cardiovascular and renal functionality were measured.

    RESULTS:The individual or combined interventions with lentil protein hydrolysate and mixed training protocol were efficient at counteracting some of the metabolic, cardiovascular and renal alterations characterizing the obese Zucker rat. Specifically, lentil protein hydrolysate decreased hyperphagia, amplitude of QRS complex, plasma ACE and selectin E expression in aorta, while increasing urinary volume and pH. Exercise showed beneficial actions on HOMA-IR, QRS amplitude, QTc interval, urinary volume, kidney weight and Mn-SOD activity. Interestingly, most of the mentioned benefits of exercise were more consistent when protein hydrolysate was also administered.

    CONCLUSION:The interesting synergies between the two interventions assessed qualify them as alternative therapeutic strategies to treat cardiovascular and kidney diseases associated to the metabolic syndrome.

  • The NLRP3 inflammasome is a potential target of ozone therapy aiming to ease chronic renal inflammation in chronic kidney disease.

    facebook Share on Facebook
    Abstract Title:

    The NLRP3 inflammasome is a potential target of ozone therapy aiming to ease chronic renal inflammation in chronic kidney disease.

    Abstract Source:

    Int Immunopharmacol. 2017 Feb ;43:203-209. Epub 2016 Dec 27. PMID: 28038382

    Abstract Author(s):

    Gang Yu, Zhiming Bai, Zhiyuan Chen, Hui Chen, Guoren Wang, Gang Wang, Zhenxiang Liu

    Article Affiliation:

    Gang Yu

    Abstract:

    Ozone therapy is an effective medical treatment for various diseases. A previous study has demonstrated its reno-protective effect in chronic kidney disease (CKD), but the mechanism involved is not completely known. This study produced the 5/6 nephrectomized CKD rat model and investigated whether the reno-protective effect of ozone therapy was achieved by its anti-inflammatory property through the modulation of the NLRP3 inflammasome. The results showed that ozone therapy at a low concentration improved renal function and ameliorated renal morphological injury in 5/6 nephrectomized rats. The expression of NLRP3, ASC, and caspase-1-p10 in the kidney of these rats was simultaneously lowered by ozone therapy. Moreover, renal inflammation caused by IL-1β was significantly alleviated by ozone therapy. The Pearson correlation analysis indicated that the protein level of IL-1β was positively correlated with renal injury scores. Taken together, these results indicated that ozone therapy might reduce sterile renal inflammation and slow down CKD progression through the modulation of the NLRP3 inflammasome in 5/6 nephrectomized rats.

  • Therapeutic Effects of Melatonin On Liver And Kidney Damages In Intensive Exercise Model of Rats.

    facebook Share on Facebook
    Abstract Title:

    Therapeutic Effects of Melatonin On Liver And Kidney Damages In Intensive Exercise Model of Rats.

    Abstract Source:

    Endocr Metab Immune Disord Drug Targets. 2015 Aug 26. Epub 2015 Aug 26. PMID: 26310355

    Abstract Author(s):

    Semin Gedikli, Volkan Gelen, Emin Sengul, Seckin Ozkanlar, Cihan Gur, Ozturk Agırbas, Fatih Cakmak, Adem Kara

    Article Affiliation:

    Semin Gedikli

    Abstract:

    Extensive exercise induces inflammatory reactions together with high production of free radicals and subsequent liver and kidney tissues damage. This study was designed to investigate for effects of melatonin on liver and kidney tissues in the extensive exercise exposed rats and non-exercised rats. In this research, 24-male Sprague-Dawley rats were divided into four groups. For exercise rat model, the rats were exposed to slow pace running with the velocity of 10 m/min for 5 minutes for five days just before the study. And for last ten days after adaptation period, the exercise was improved as 15 min with the speed of 20 m/min and intra-peritoneal melatonin injection has been performed to the melatonin treated groups with the dose of 10 mg/kg. Biochemical results revealed a decrease in the parameters of kidney and liver enzymes in exercise-group and an increase in the parameters of serum, liver and kidney enzymes in the group that melatonin-exercise-group. As for histological analysis, while it is observed that there are cellular degenerations in the liver and kidney tissues with exercise application, a decrease has been observed in these degenerations in the group that melatonin was applied. At the end of the research, it has been determined that exercise application causes some damages on liver and kidney, and these damages were ameliorated with melatonin treatment.

  • Vitamin C attenuates methotrexate-induced oxidative stress in kidney and liver of rats.

    Abstract Title:

    Vitamin C attenuates methotrexate-induced oxidative stress in kidney and liver of rats.

    Abstract Source:

    Physiol Int. 2017 Jun 29:1-11. Epub 2017 Jun 29. PMID: 28658959

    Abstract Author(s):

    M Savran, E Cicek, D K Doguc, H Asci, S Yesilot, I A Candan, B Dagdeviren, F N Cankara, M Oncu, A C Uğuz, M K Ozer

    Article Affiliation:

    M Savran

    Abstract:

    Like several other anticancer drugs, methotrexate (MTX) causes side effects, such as neuropathic pain, hepatotoxicity, and nephrotoxicity. Abnormal production of reactive oxygen species has been suspected in the pathophysiology of MTX-induced hepatorenal toxicity. Therefore, the aim of this study was to investigate the probable protective role of vitamin C (Vit C) on oxidative stress induced by MTX in the liver and kidney tissues of rats. A total of 32 rats were randomly and equally divided into four groups. The first group served as the control group. The second group received a single dose of 20 mg/kg of MTX intraperitoneally. To demonstrate our hypothesis, the third and the fourth groups received 250 mg/kg of Vit C for 3 days by oral gavage, with or without MTX treatment. At the end of the study, the liver and kidney tissues of the rats were collected and examined using histology. Boththe tissues were assayed for malondialdehyde concentration and superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GSH-Px) activities. In hepatic and renal tissues, lipid peroxidation levels were increased, whereas SOD, CAT, and GSH-Px levels were decreased by MTX. All parameters, including CAT levels in hepatic tissue, were significantly restored after the administration of Vit C for 3 days. Similar to the biochemical findings, evidence of oxidative damage was examined in both types of tissues by histopathological examination. From the results of this study, we were able to observe that Vit C administration modulates the antioxidant redox system and reduces the renal and hepatic oxidative stress induced by MTX. Vit C can ameliorate the toxic effect of MTX in liver and kidney tissues of rat.

  • Vitamin C attenuates the toxic effect of aristolochic acid on renal tubular cells via decreasing oxidative stress‑mediated cell death pathways. 📎

    Abstract Title:

    Vitamin C attenuates the toxic effect of aristolochic acid on renal tubular cells via decreasing oxidative stress‑mediated cell death pathways.

    Abstract Source:

    Mol Med Rep. 2015 Aug 3. Epub 2015 Aug 3. PMID: 26239057

    Abstract Author(s):

    Tsai-Kun Wu, Chyou-Wei Wei, Ying-Ru Pan, Shur-Hueih Cherng, Wei-Jung Chang, Hsueh-Fang Wang, Yung-Luen Yu

    Article Affiliation:

    Tsai-Kun Wu

    Abstract:

    Aristolochic acid (AA) is a component of Chinese medicinal herbs, including asarum and aristolochia and has been used in Traditional Chinese Medicine for a long time. Recent studies found that AA has a cytotoxic effect resulting in nephropathy. These studies indicated that AA‑induced cytotoxicity is associated with increases in oxidative stress and caspase‑3 activation. The present study further demonstrated that AA mainly elevates the H2O2 ratio, leading to increases in oxidative stress. Furthermore, the results indicated that AA induces cell death can via caspase‑dependent and ‑independent pathways. It is desirable to identify means of inhibiting AA‑induced renal damage; therefore, the present study applied an anti‑oxidative nutrient, vitamin C, to test whether it can be employed to reduce AA‑induced cell cytotoxicity. The results showed that vitamin C decreased AA‑induced H2O2 levels, caspase‑3 activity and cytotoxicity in renal tubular cells. In conclusion, the present study was the first to demonstrate that AA‑induced increases of the H2O2 ratio resulted in renal tubular cell death via caspase‑dependent and ‑independent pathways,and that vitamin C can decrease AA‑induced increases in H2O2 levels and caspase‑3 activity to attenuate AA‑induced cell cytotoxicity.

  • Vitamin C deficiency exacerbates diabetic glomerular injury through activation of transforming growth factor-β signaling.

    Abstract Title:

    Vitamin C deficiency exacerbates diabetic glomerular injury through activation of transforming growth factor-β signaling.

    Abstract Source:

    Biochim Biophys Acta. 2017 09 ;1861(9):2186-2195. Epub 2017 Jun 23. PMID: 28652077

    Abstract Author(s):

    Xing Ji, Xinhua Hu, Chaochun Zou, Hongfeng Ruan, Xueying Fan, Chao Tang, Wei Shi, Liu Mei, Haibin Zhu, Musaddique Hussain, Linghui Zeng, Xiaodong Zhang, Ximei Wu

    Article Affiliation:

    Xing Ji

    Abstract:

    BACKGROUND:The hyperglycemia and hyperoxidation that characterize diabetes lead to reduced vitamin C (VC) in diabetic humans and experimentally diabetic animals. Herein, we access the effects of VC deficiency on the diabetic kidney injury and explore the underlying mechanism.

    METHODS:l-gulonolactone oxidase conventional knockout (Gulo-/-) mice genetically unable to synthesize VC were subjected to streptozotocin-induced diabetic kidney injury and the role of VC deficiency was evaluated by biochemical and histological approaches. Rat mesangial cells were cultured to investigate the underlying mechanism.

    RESULTS:Functionally, VC deficiency aggravates the streptozotocin-induced renal insufficiency, exhibiting the increased urine albumin, water intake, and urine volume in Gulo-/- mice. Morphologically, VC deficiency exacerbates the streptozotocin-induced kidney injury, exhibiting the increased glomerular expansion, deposition of Periodic Acid-Schiff- and Masson-positive materials, and expression ofα-smooth muscle actin, fibronectin and type 4 collagen in glomeruli of Gulo-/- mice. Mechanistically, VC activates protein kinase B (Akt) to destabilize Ski and thereby induce the expression of Smad7, resulting in suppression of TGF-β/Smad signaling and extracellular matrix deposition in mesangialcells.

    CONCLUSIONS:VC is essential for the renal function maintenance in diabetes.

    GENERAL SIGNIFICANCE:Compensation for the loss of VC could be an effective remedy for diabetic kidney injury.

  • Vitamin C pretreatment protects from nickel-induced acute nephrotoxicity in mice. 📎

    Abstract Title:

    Vitamin C pretreatment protects from nickel-induced acute nephrotoxicity in mice.

    Abstract Source:

    Arh Hig Rada Toksikol. 2016 Sep 1 ;67(3):210-215. PMID: 27749260

    Abstract Author(s):

    Imed-Eddine Kadi, Faouzi Dahdouh

    Article Affiliation:

    Imed-Eddine Kadi

    Abstract:

    Nickel is an abundant carcinogenic and nephrotoxic metal whose activity leads to renal impairment. Previous studies have shown a protective effect of simultaneous vitamin C administration on acute and chronic nickel toxicity. However, very little research relating to the effect of vitamin C pretreatment in preventing nickel-induced acute nephrotoxicity is available. Therefore, the present study aimed to determine the efficiency of vitamin C (VC) pretreatment in preventing acute renal toxicity of nickel. Mice were pretreated orally with vitamin C (16.6 mg kg-1 body weight, b.w.) for seven consecutive days, prior to intraperitoneal (i.p.) administration of nickel chloride at different doses (3, 5, and 10 mg Ni kg-1 b.w.) for an exposure period of 24 hours. Thereafter, animals were killed and kidney tissue and blood samples were taken for histological examination and biochemical marker analyses. Vitamin C pretreatment alone did not alter the levels of serum kidney markers (creatinine, urea, and uric acid). However, treatment with Ni alone showed a significant increase in the levels of serum creatinine, urea, and uric acid with marked necrotic epithelial cells and infiltration by inflammatory cells in kidney sections as compared to the control group. Pretreatment with vitamin C and treatment with Ni at all doses tested for 24 hours showed a significant decrease in the levels of serum creatinine, urea, and uric acid, as well as an improvement in histological changes compared to those previously seen in the group treated with Ni alone. It is concluded that vitamin C pretreatment effectively improved renal function and tissue damage caused by nickel.

We use cookies on our website. Some of them are essential for the operation of the site, while others help us to improve this site and the user experience (tracking cookies). You can decide for yourself whether you want to allow cookies or not. Please note that if you reject them, you may not be able to use all the functionalities of the site.