1.Preventive effect of Shenkang injection against high glucose-induced senescence of renal tubular cells.
Biqiong FU ; Jie YANG ; Jia CHEN ; Lirong LIN ; Kehong CHEN ; Weiwei ZHANG ; Jianguo ZHANG ; Yani HE
Frontiers of Medicine 2019;13(2):267-276
Shenkang injection (SKI) is a classic prescription composed of Radix Astragali, rhubarb, Astragalus, Safflower, and Salvia. This treatment was approved by the State Food and Drug Administration of China in 1999 for treatment of chronic kidney diseases based on good efficacy and safety. This study aimed to investigate the protective effect of SKI against high glucose (HG)-induced renal tubular cell senescence and its underlying mechanism. Primary renal proximal tubule epithelial cells were cultured in (1) control medium (control group), medium containing 5 mmol/L glucose; (2) mannitol medium (mannitol group), medium containing 5 mmol/L glucose, and 25 mmol/L mannitol; (3) HG medium (HG group) containing 30 mmol/L glucose; (4) SKI treatment at high (200 mg/L), medium (100 mg/L), or low (50 mg/L) concentration in HG medium (HG + SKI group); or (5) 200 mg/L SKI treatment in control medium (control + SKI group) for 72 h. HG-induced senescent cells showed the emergence of senescence associated heterochromatin foci, up-regulation of P16 and cyclin D1, increased senescence-associated β-galactosidase activity, and elevated expression of membrane decoy receptor 2. SKI treatment potently prevented these changes in a dose-independent manner. SKI treatment prevented HG-induced up-regulation of pro-senescence molecule mammalian target of rapamycin and p66Shc and down-regulation of anti-senescence molecules klotho, sirt1, and peroxisome proliferator-activated receptor-g in renal tubular epithelial cells. SKI may be a novel strategy for protecting against HG-induced renal tubular cell senescence in treatment of diabetic nephropathy.
Animals
;
Cells, Cultured
;
Cellular Senescence
;
drug effects
;
Cyclin D1
;
metabolism
;
Cyclin-Dependent Kinase Inhibitor p16
;
metabolism
;
Diabetic Nephropathies
;
drug therapy
;
Drugs, Chinese Herbal
;
pharmacology
;
Epithelial Cells
;
drug effects
;
metabolism
;
Glucose
;
Kidney Tubules, Proximal
;
physiopathology
;
Male
;
Mice
;
Mice, Inbred C57BL
2.Role of cytochrome P450 epoxygenase-dependent arachidonic acid metabolites in kidney physiology and diseases.
Qin FANG ; Guang-Zhi CHEN ; Yan WANG ; Dao-Wen WANG
Acta Physiologica Sinica 2018;70(6):591-599
Kidney diseases are important causes of mortality world widely. Renal microvascular dysfunction plays a pivotal role in the development of kidney diseases. Pharmacological and biochemical tools have been used to conduct detailed studies on the metabolization of arachidonic acid by cytochrome P450 (CYP450) in renal microvasculature. CYP450 epoxygenase metabolites epoxyeicosatrienoic acids (EETs) are mainly produced in renal microvessels. EETs exhibit renoprotective effects through vasodilation, anti-hypertension, anti-apoptosis and anti-inflammation, and were reported as therapeutic targets of renal diseases. However, the ability of the kidney in generating EETs is reduced in renal diseases. Recently, the studies from transgenic animal overexpressing CYP450 epoxygenases and application of soluble epoxide hydrolase inhibitors revealed that increasing of EETs exhibits renoprotective effects in vivo. The present review focuses on the protective mechanisms of EETs in kidney physiology and diseases.
Animals
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Animals, Genetically Modified
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Arachidonic Acid
;
metabolism
;
Cytochrome P-450 Enzyme System
;
physiology
;
Disease Models, Animal
;
Humans
;
Inflammation
;
Kidney
;
physiology
;
Kidney Diseases
;
physiopathology
;
Vasodilation
3.New advances in renal mechanisms of high fructose-induced salt-sensitive hypertension.
Acta Physiologica Sinica 2018;70(6):581-590
Fructose intake has increased dramatically over the past century and the upward trend has continued until recently. Increasing evidence suggests that the excessive intake of fructose induces salt-sensitive hypertension. While the underlying mechanism is complex, the kidney likely plays a major role. This review will highlight recent advances in the renal mechanisms of fructose-induced salt-sensitive hypertension, including (pro)renin receptor-dependent activation of intrarenal renin-angiotensin system, increased nephron Na transport activity via sodium/hydrogen exchanger 3 and Na/K/2Cl cotransporter, increased renal uric acid production, decreased renal nitric oxide production, and increased renal reactive oxygen species production, and suggest actions based on these mechanisms that have therapeutic implications.
Blood Pressure
;
Fructose
;
adverse effects
;
Humans
;
Hypertension
;
chemically induced
;
physiopathology
;
Kidney
;
physiopathology
;
Nitric Oxide
;
metabolism
;
Reactive Oxygen Species
;
metabolism
;
Renin-Angiotensin System
;
Sodium Chloride, Dietary
;
adverse effects
;
Sodium-Hydrogen Exchanger 3
;
metabolism
;
Uric Acid
;
metabolism
4.Effects of centella asiatica granule on the expression of TGF-β and related down-stream signals in rats with early diabetic nephropathy.
Ji-Wei MA ; Hong-Tian WANG ; Hao-Fei LIU ; Yuan DING ; Ji-Qiong BAI ; Zhu ZHANG
Chinese Journal of Applied Physiology 2018;34(1):69-73
OBJECTIVE:
To investigate the effects of centella asiatica (CA) granule on the expression of transform growth factor-β(TGF-β) and related down-stream signals in rats with early diabetic nephropathy(DN) and to clarify the molecular mechanisms of CA molecular mechanism of on preventing and curing early diabetic kidney disease DN by studying the effects of centella asiatica on TGF-β expression and related down-stream signals.
METHODS:
Sixty male SD rats were divided into control group(=10) and DN model group(=50). The model rats were made a right nephrectomy. One week later, diabetic nephropathy was induced by intraperitoneal injection of streptocozin(30 mg/kg) for three consecutive days. High blood glucose level of Tail vein (fasting glucose ≥ 16.7 mmol/L) and high urinary protein level(total protein level in DN group was more than twice higher than the control group) were measured to confirm early DN in rats. In the sham operation group, the right renal capsule was damaged and the corresponding amount of saline was injected. The model rats were administrated by the means of intragastric administration. The DN model group were divided into DN group, DN+fosinopril group(1.6 mg/kg·d), DN+high CA group(16.8 mg/kg·d), DN+medium CA group(11.2 mg/kg·d) and DN+low CA group(5.6 mg/kg·d), and each group was intragastric administration one time every morning last for 16 weeks. The expressions of mRNA and protein of TGF-β, TβR1, TβR2, Smad2/3, Smad7 and the level of Smad2/3 phosphorylation were detected by using real time quantitative polymerase chain reaction and Western blot.
RESULTS:
The expressions of mRNA and protein of TGF-β, TβR1, TβR2, Smad2/3 and the level of Smad2/3 phosphorylation were significantly increased, the expressions of mRNA and protein of Smad7 were dramatically decreased. The fosinopril and high dosage CA could reverse the effects of DN.
CONCLUSIONS
CA plays an important role in preventing and curing DN through regulating the TGF-β/Smad signaling pathways.
Animals
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Centella
;
chemistry
;
Diabetes Mellitus, Experimental
;
Diabetic Nephropathies
;
chemically induced
;
drug therapy
;
metabolism
;
Drugs, Chinese Herbal
;
pharmacology
;
Kidney
;
physiopathology
;
Male
;
Rats
;
Rats, Sprague-Dawley
;
Receptor, Transforming Growth Factor-beta Type I
;
metabolism
;
Receptor, Transforming Growth Factor-beta Type II
;
metabolism
;
Signal Transduction
;
Smad2 Protein
;
metabolism
;
Smad3 Protein
;
metabolism
;
Smad7 Protein
;
metabolism
;
Transforming Growth Factor beta1
;
metabolism
5.Effects and mechanisms of 6-week intensive training on renal function in rats.
Yan-Long NIU ; Jian-Min CAO ; Hai-Tao ZHOU ; Jie LI
Chinese Journal of Applied Physiology 2018;34(1):65-68
OBJECTIVE:
To study the effect of 6-week intensive training on renal function in rats and the mechanism of exercise-induced proteinuria.
METHODS:
Thirty-six male SD rats, aged 6 weeks, were divided into two groups, including a control group(C,=12)and an overtraining group(M,=24). After the rats adapted to feeding for 4 d, group C did not carry out any exercise, and the M group did 6-week of increasing load swimming, 6 days a week, once a day. Started with the load of 1%weight at the beginning of the 4 week,and gradually increased (to 6% weight). Took a single urine from both groups 30 min after the end of the training. Blood was taken from the main ventral vein, and the bilateral kidneys were to be tested. The levels of tested urine protein, microalbumin and neutrophil gelatinase associated lipocalin(NGAL) was determined by using enzyme linked immunosorbent assaytest. The content of urine creatinine was tested with alkaline picric acid method,. The serum levels of colorimetric method to determine serum creatinine and urea nitrogen were determined by colorimetric method. The expression of Nephrin in renal tissue was detected by Western blot and the radioimmunoassay was used to test serum testosterone, corticosterone and renin-angiotensin system related index.
RESULTS:
Compared with group C, the serum testosterone/cortisone(T/C) of group M was decreased significantly (<0.01). The urine total protein(TP), microalbumin (mAlb), microalbumin/creatinine (mAlb/CRE), NGAL, blood urea nitrogen (BUN) and serum creatinine(SCr) were increased significantly (<0.01). The abnormality of glomerular structure was obvious, and the paller scores were higher. The protein expression of Nephrin was obviously down decreased (<0.01). The renin activity (Ra) and angiotension Ⅱ (Ang Ⅱ) in renal and circulating blood were decreased significantly (<0.01).
CONCLUSIONS
The effects of 6-week intensive training on renal function in rats and the mechanism of exercise-induced proteinuria may be that overtraining can induce the continuous excitation of Reninrenin activity in renal and circulating blood, down-regulated the expression of Nephrin, lead to abnormality of renal structure and function, and proteinuria.
Animals
;
Blood Urea Nitrogen
;
Corticosterone
;
blood
;
Creatinine
;
blood
;
Kidney
;
physiopathology
;
Male
;
Membrane Proteins
;
metabolism
;
Physical Conditioning, Animal
;
adverse effects
;
Proteinuria
;
Rats
;
Rats, Sprague-Dawley
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Renin-Angiotensin System
;
Testosterone
;
blood
6.Therapeutic Role of Tangshenkang Granule () in Rat Model with Diabetic Nephropathy.
Shun-Jin HU ; Bing SHU ; Hua JIN ; Xiao-Feng LI ; Jia-Rong MAO ; Ke-Jun REN ; Lei GAO ; Li YANG ; You-Wan WU ; Yong-Jun WANG
Chinese journal of integrative medicine 2018;24(8):600-605
OBJECTIVETo evaluate the renal protective effect of Tangshenkang Granule () in a rat model of diabetic nephropathy (DN).
METHODSForty male Sprague-Dawley rats were randomly divided into control, DN, Tangshenkang and benazepril groups. DN model was established in the rats of DN, Tangshenkang and benazepril groups. Tangshenkang Granule solution and benazepril hydrochloride solution were intragastrically administered daily to the rats in the Tangshenkang and benazepril groups for 8 weeks, respectively. Urinary albumin and creatinine were detected. The albumin/creatinine (ACR) was calculated in addition to 24 h urinary protein (24-h UPr), serum creatinine (Scr), blood urea nitrogen (BUN), total cholesterol (TC), triglyceride (TG), low-density lipoprotein (LDL), high-density lipoprotein (HDL), and creatinine clearance rate (Ccr). Right kidneys were harvested for pathological observation using periodic acid-silver methenamine-Masson staining. The average glomerular diameter (DG), average glomerular (AG) and mesangial areas (AM) were measured. The thickness of glomerular basement membrane (TGBM) was detected using transmission electron microscope.
RESULTSCompared with rats in the control group, rats in the DN group showed significantly decreased body weight, increased hypertrophy index, 24-h urinary volume, 24-h UPr, ACR, Scr, BUN, Ccr, blood lipids as well as renal pathological indices including DG, AG, AM, AM/AG and TGBM (P <0.05). Compared with the DN group, the weights of rats in the Tangshenkang and benazepril groups were significantly increased, and the renal hypertrophy indices were significantly decreased (P <0.05). The 24-h urinary volumes, ACR, 24-h UPr, Scr, BUN, Ccr, LDL, DG, AG, AM and TGBM were obviously decreased (P <0.05). Compared with the benazepril group, the Tangshenkang group showed significantly decreased levels of ACR, 24-h UPr, AG and AM (P <0.05).
CONCLUSIONSTangshenkang Granule decreased the urinary protein, attenuated the high glomerular filtration rate and improved lipid metabolism in DN rats, and prevented further injury induced by diabetic nephropathy.
Albuminuria ; complications ; Animals ; Basement Membrane ; drug effects ; metabolism ; Blood Urea Nitrogen ; Body Weight ; drug effects ; Creatinine ; blood ; urine ; Diabetic Nephropathies ; blood ; drug therapy ; physiopathology ; urine ; Disease Models, Animal ; Drugs, Chinese Herbal ; pharmacology ; therapeutic use ; Hypertrophy ; Kidney Function Tests ; Kidney Glomerulus ; drug effects ; pathology ; physiopathology ; Lipid Metabolism ; drug effects ; Lipids ; blood ; Male ; Rats, Sprague-Dawley
7.Role of cofilin in kidney disease.
Journal of Central South University(Medical Sciences) 2018;43(10):1159-1163
Cofilin is a actin-binding protein in eukaryotic cells. It plays a role in maintaining the steady state of the internal environment through regulating actin dynamics, which contributes to the development of various kinds of diseases. In recent 20 years, cofilin has been widely attracted due to its regulatory effect on cell phenotype, gene transcription, apoptosis and inflammation in renal tissue. Cofilin plays a regulatory role in pathological changes in proteinuria diseases such as minimal change nephropathy, focal segmental glomerulosclerosis, membranous nephropathy, and IgA nephropathy. It could be one of the diagnosis index for glomerular podocyte injury. At the same time, cofilin plays a key role in maintaining the polarity and function of proximal tubular epithelial cells and it is involved in the regulation of kidney inflammation in a variety of kidney diseases, such as renal ischemia/reperfusion injury, diabetic nephropathy, and hypertensive nephropathy reaction. In addition, cofilin plays an important role in epithelial-to-mesenchymal transition (EMT) of tumor cells and epithelial cells in various tissues, suggesting that cofilin may be involved in the regulation of peritoneal dialysis-related EMT and fibrosis. Cofilin might turn into the new diagnosis and treatment target of kidney diseases.
Cofilin 1
;
metabolism
;
Glomerulosclerosis, Focal Segmental
;
physiopathology
;
Humans
;
Kidney
;
physiopathology
;
Kidney Diseases
;
physiopathology
;
Proteinuria
;
genetics
;
physiopathology
8.Vascular Calcification: Current Genetics Underlying This Complex Phenomenon.
Nonanzit PÉREZ-HERNÁNDEZ ; Gad APTILON-DUQUE ; Ruben BLACHMAN-BRAUN ; Gilberto VARGAS-ALARCÓN ; Adrián Asael RODRÍGUEZ-CORTÉS ; Shely AZRAD-DANIEL ; Rosalinda POSADAS-SÁNCHEZ ; José Manuel RODRÍGUEZ-PÉREZ
Chinese Medical Journal 2017;130(9):1113-1121
OBJECTIVEVascular calcification is the consequence of the complex interaction between genetic, environmental, and vascular factors, which ultimately lead to the deposition of calcium in the tunica intima (atherosclerotic calcification) or tunica media (Mönckenberg's sclerosis). Vascular calcification is also closely related to other pathologies, such as diabetes mellitus, dyslipidemia, and chronic kidney disease. It has been concluded that the degree of vascular calcification may vary from person to person, even if the associated pathologies and environmental factors are the same. Therefore, this suggests an important genetic contribution to the development of vascular calcification. This review aimed to find the most recent evidence about vascular calcification pathophysiology regarding the genetic aspects and molecular pathways.
DATA SOURCESWe conducted an exhaustive search in Scopus, EBSCO, and PubMed with the keywords "genetics and vascular calcification", "molecular pathways, genetic and vascular calcification" and included the main articles from January 1995 up to August 2016. We focused on the most recent evidence about vascular calcification pathophysiology regarding the genetic aspects and molecular pathways.
STUDY SELECTIONThe most valuable published original and review articles related to our objective were selected.
RESULTSVascular calcification is a multifactorial disease; thus, its pathophysiology cannot be explained by a single specific factor, rather than by the result of the association of several genetic variants, molecular pathway interactions, and environmental factors that promote its development.
CONCLUSIONAlthough several molecular aspects of this mechanism have been elucidated, there is still a need for a better understanding of the factors that predispose to this disease.
Diabetes Mellitus ; metabolism ; physiopathology ; Dyslipidemias ; metabolism ; physiopathology ; Humans ; Kidney Failure, Chronic ; metabolism ; physiopathology ; Renal Insufficiency, Chronic ; metabolism ; physiopathology ; Tunica Intima ; metabolism ; physiopathology ; Tunica Media ; metabolism ; physiopathology ; Vascular Calcification ; metabolism ; physiopathology
9.Relationships of Inflammatory Factors and Risk Factors with Different Target Organ Damage in Essential Hypertension Patients.
Chun-Lin LAI ; Jin-Ping XING ; Xiao-Hong LIU ; Jie QI ; Jian-Qiang ZHAO ; You-Rui JI ; Wu-Xiao YANG ; Pu-Juan YAN ; Chun-Yan LUO ; Lu-Fang RUAN
Chinese Medical Journal 2017;130(11):1296-1302
BACKGROUNDAtherosclerosis (AS) is an inflammatory disease. Inflammation was considered to play a role in the whole process of AS. This study aimed to analyze the relationships of inflammatory factors and risk factors with different target organ damages (TOD) in essential hypertension (EH) patients and to explore its clinical significance.
METHODSA total of 294 EH patients were selected and divided into four groups according to their conditions of TOD. Forty-eight healthy subjects were selected as control. The clinical biochemical parameters, serum amyloid A, serum tryptase, and lipoprotein-associated phospholipase A2 (Lp-PLA2) in each group were detected, and the related risk factors were also statistically analyzed.
RESULTSFibrinogen (Fbg) was the most significant independent risk factor in acute coronary syndrome (ACS) group (odds ratio [OR]: 22.242, 95% confidence interval [CI]: 6.458-76.609, P< 0.001) with the largest absolute value of the standardized partial regression coefficient B' (b': 1.079). Lp-PLA2 was the most significant independent risk factor in stroke group (OR: 13.699, 95% CI: 5.236-35.837, P< 0.001) with b' = 0.708. Uric acid (UA) was the most significant independent risk factor in renal damage group (OR: 15.307, 95% CI: 4.022-58.250, P< 0.001) with b' = 1.026.
CONCLUSIONSFbg, Lp-PLA2, and UA are the strongest independent risk factors toward the occurrence of ACS, ischemic stroke, and renal damage in EH patients, thus exhibiting the greatest impacts on the occurrence of ACS, ischemic stroke, and renal damage in EH patients, respectively.
1-Alkyl-2-acetylglycerophosphocholine Esterase ; Aged ; Antihypertensive Agents ; therapeutic use ; Enzyme-Linked Immunosorbent Assay ; Essential Hypertension ; blood ; complications ; drug therapy ; physiopathology ; Female ; Humans ; Kidney Diseases ; blood ; etiology ; physiopathology ; Logistic Models ; Male ; Middle Aged ; Renal Insufficiency, Chronic ; blood ; etiology ; physiopathology ; Risk Factors ; Serum Amyloid A Protein ; metabolism ; Stroke ; blood ; etiology ; physiopathology ; Tryptases ; blood
10.Mechanism for ginkgolic acid (15 : 1)-induced MDCK cell necrosis: Mitochondria and lysosomes damages and cell cycle arrest.
Qing-Qing YAO ; Zhen-Hua LIU ; Ming-Cheng XU ; Hai-Hong HU ; Hui ZHOU ; Hui-Di JIANG ; Lu-Shan YU ; Su ZENG
Chinese Journal of Natural Medicines (English Ed.) 2017;15(5):375-383
Ginkgolic acids (GAs), primarily found in the leaves, nuts, and testa of ginkgo biloba, have been identified with suspected allergenic, genotoxic and cytotoxic properties. However, little information is available about GAs toxicity in kidneys and the underlying mechanism has not been thoroughly elucidated so far. Instead of GAs extract, the renal cytotoxicity of GA (15 : 1), which was isolated from the testa of Ginkgo biloba, was assessed in vitro by using MDCK cells. The action of GA (15 : 1) on cell viability was evaluated by the MTT and neutral red uptake assays. Compared with the control, the cytotoxicity of GA (15 : 1) on MDCK cells displayed a time- and dose-dependent manner, suggesting the cells mitochondria and lysosomes were damaged. It was confirmed that GA (15 : 1) resulted in the loss of cells mitochondrial trans-membrane potential (ΔΨm). In propidium iodide (PI) staining analysis, GA (15 : 1) induced cell cycle arrest at the G0/G1 and G2/M phases, influencing on the DNA synthesis and cell mitosis. Characteristics of necrotic cell death were observed in MDCK cells at the experimental conditions, as a result of DNA agarose gel electrophoresis and morphological observation of MDCK cells. In conclusion, these findings might provide useful information for a better understanding of the GA (15 : 1) induced renal toxicity.
Animals
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Apoptosis
;
drug effects
;
Cell Cycle Checkpoints
;
drug effects
;
Cell Survival
;
drug effects
;
Dogs
;
Ginkgo biloba
;
chemistry
;
toxicity
;
Lysosomes
;
drug effects
;
metabolism
;
Madin Darby Canine Kidney Cells
;
Mitochondria
;
drug effects
;
metabolism
;
Necrosis
;
drug therapy
;
metabolism
;
physiopathology
;
Plant Extracts
;
toxicity
;
Salicylates
;
chemistry
;
toxicity

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