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1.
Int Heart J ; 65(3): 427-432, 2024.
Article En | MEDLINE | ID: mdl-38825491

The impact of tolvaptan and low-dose dopamine on heart failure (HF) patients with acute kidney injury (AKI) remains uncertain from a clinical standpoint.HF patients with AKI were selected and divided in a 1:1 fashion into the dopamine combined with the tolvaptan group (DTG), the tolvaptan group (TG), and the control group (CG). According to the standard of care, TG received tolvaptan 15 mg orally daily for a week. DTG received combination treatment, including 7 consecutive days of dopamine infusion (2 µg/kg・minutes) and oral tolvaptan 15 mg. Venous blood and urine samples were taken before and after therapy. The primary endpoint was the cardiorenal serological index after 7 days of treatment.Sixty-five patients were chosen randomly for the DTG (22 patients), TG (20 patients), and CG (23 patients), which were similar before the treatment. The serum indexes related to cardiac function (N-terminal probrain natriuretic peptide and cardiac troponin I) in DTG were decreased, compared with TG and CG (P < 0.05). Furthermore, the serological markers of renal function (serum cystatin C, serum creatinine, and neutrophil gelatinase-associated lipocalin) in DTG were lower than those in TG and CG (P < 0.05). There was no significant difference in the incidence of adverse reactions among groups.Low-dose dopamine combined with tolvaptan can markedly improve patients' cardiac and renal function. This may be considered a new therapeutic method for HF patients with AKI.


Acute Kidney Injury , Antidiuretic Hormone Receptor Antagonists , Dopamine , Drug Therapy, Combination , Heart Failure , Tolvaptan , Humans , Tolvaptan/administration & dosage , Tolvaptan/therapeutic use , Heart Failure/drug therapy , Heart Failure/complications , Male , Female , Dopamine/administration & dosage , Acute Kidney Injury/drug therapy , Acute Kidney Injury/etiology , Aged , Middle Aged , Antidiuretic Hormone Receptor Antagonists/administration & dosage , Antidiuretic Hormone Receptor Antagonists/therapeutic use , Natriuretic Peptide, Brain/blood , Treatment Outcome , Benzazepines/administration & dosage , Peptide Fragments/blood
2.
Cell Commun Signal ; 22(1): 291, 2024 May 27.
Article En | MEDLINE | ID: mdl-38802835

A promising new therapy option for acute kidney injury (AKI) is mesenchymal stem cells (MSCs). However, there are several limitations to the use of MSCs, such as low rates of survival, limited homing capacity, and unclear differentiation. In search of better therapeutic strategies, we explored all-trans retinoic acid (ATRA) pretreatment of MSCs to observe whether it could improve the therapeutic efficacy of AKI. We established a renal ischemia/reperfusion injury model and treated mice with ATRA-pretreated MSCs via tail vein injection. We found that AKI mice treated with ATRA-MSCs significantly improved renal function compared with DMSO-MSCs treatment. RNA sequencing screened that hyaluronic acid (HA) production from MSCs promoted by ATRA. Further validation by chromatin immunoprecipitation experiments verified that retinoic acid receptor RARα/RXRγ was a potential transcription factor for hyaluronic acid synthase 2. Additionally, an in vitro hypoxia/reoxygenation model was established using human proximal tubular epithelial cells (HK-2). After co-culturing HK-2 cells with ATRA-pretreated MSCs, we observed that HA binds to cluster determinant 44 (CD44) and activates the PI3K/AKT pathway, which enhances the anti-inflammatory, anti-apoptotic, and proliferative repair effects of MSCs in AKI. Inhibition of the HA/CD44 axis effectively reverses the renal repair effect of ATRA-pretreated MSCs. Taken together, our study suggests that ATRA pretreatment promotes HA production by MSCs and activates the PI3K/AKT pathway in renal tubular epithelial cells, thereby enhancing the efficacy of MSCs against AKI.


Acute Kidney Injury , Mesenchymal Stem Cell Transplantation , Mesenchymal Stem Cells , Tretinoin , Acute Kidney Injury/therapy , Acute Kidney Injury/pathology , Acute Kidney Injury/metabolism , Acute Kidney Injury/drug therapy , Animals , Mesenchymal Stem Cells/metabolism , Mesenchymal Stem Cells/drug effects , Mesenchymal Stem Cells/cytology , Tretinoin/pharmacology , Tretinoin/therapeutic use , Humans , Mice , Male , Mice, Inbred C57BL , Hyaluronic Acid/pharmacology , Hyaluronan Receptors/metabolism , Hyaluronan Receptors/genetics , Proto-Oncogene Proteins c-akt/metabolism , Cell Line , Phosphatidylinositol 3-Kinases/metabolism , Signal Transduction/drug effects , Reperfusion Injury/therapy , Reperfusion Injury/drug therapy , Reperfusion Injury/pathology , Reperfusion Injury/metabolism , Disease Models, Animal , Apoptosis/drug effects
3.
PLoS One ; 19(5): e0303740, 2024.
Article En | MEDLINE | ID: mdl-38748639

Acute kidney injury (AKI) is a sudden loss of renal function with a high mortality rate and inflammation is thought to be the underlying cause. The phenylpropanoid components acteoside (ACT) and isoacteoside (ISO), which were isolated from Cistanche deserticola Y.C.Ma, have been reported to have preventive effects against kidney disorders. This study aimed to investigate the anti-inflammatory properties and protective mechanisms of ACT and ISO. In this investigation, kidney function was assessed using a semi-automatic biochemical analyzer, histopathology was examined using Hematoxylin-Eosin staining and immunohistochemistry, and the concentration of inflammatory cytokines was assessed using an enzyme-linked immunosorbent assay (ELISA) test. In addition, using Western blot and q-PCR, the expression of proteins and genes connected to the NF-κB signaling pathway in mice with lipopolysaccharide (LPS)-induced AKI was found. The findings showed that under AKI intervention in LPS group, ACT group and ISO group, the expression of Rela (Rela gene is responsible for the expression of NFκB p65 protein) and Tlr4 mRNA was considerably elevated (P<0.01), which led to a significant improvement in the expression of MyD88, TLR4, Iκ-Bɑ and NF-κB p65 protein (P<0.001). The levels of Alb, Crea and BUN (P<0.001) increased along with the release of downstream inflammatory factors such as IL-1ß, IL-6, Cys-C, SOD1 and TNF-α (P<0.001). More importantly, the study showed that ISO had a more favorable impact on LPS-induced AKI mice than ACT. In conclusion, by inhibiting NF-κB signaling pathway, ACT and ISO could relieve renal failure and inflammation in AKI, offering a fresh possibility for the therapeutic management of the condition.


Acute Kidney Injury , Glucosides , Inflammation , Lipopolysaccharides , NF-kappa B , Phenols , Signal Transduction , Animals , Acute Kidney Injury/chemically induced , Acute Kidney Injury/drug therapy , Acute Kidney Injury/metabolism , Acute Kidney Injury/pathology , Signal Transduction/drug effects , Glucosides/pharmacology , Glucosides/therapeutic use , Mice , NF-kappa B/metabolism , Male , Phenols/pharmacology , Inflammation/drug therapy , Inflammation/pathology , Inflammation/metabolism , Kidney/drug effects , Kidney/pathology , Kidney/metabolism , Toll-Like Receptor 4/metabolism , Toll-Like Receptor 4/genetics , Cytokines/metabolism , Transcription Factor RelA/metabolism
4.
Am J Chin Med ; 52(3): 775-797, 2024.
Article En | MEDLINE | ID: mdl-38715182

Kidney disease is a common health problem worldwide. Acute or chronic injuries may interfere with kidney functions, eventually resulting in irreversible kidney damage. A number of recent studies have shown that the plant-derived natural products have an extensive potential for renal protection. Thymoquinone (TQ) is an essential compound derived from Nigella Sativa (NS), which is widely applied in the Middle East as a folk medicine. Previous experiments have demonstrated that TQ has a variety of potential pharmacological effects, including anti-oxidant, antibacterial, antitumor, immunomodulatory, and neuroprotective activities. In particular, the prominent renal protective efficacy of TQ has been demonstrated in both in vivo and in vitro experiments. TQ can prevent acute kidney injuries from various xenobiotics through anti-oxidation, anti-inflammatory, and anti-apoptosis effects. In addition, TQ exhibited significant pharmacological effects on renal cell carcinoma, renal fibrosis, and urinary calculi. The essential mechanisms involve scavenging ROS and increasing anti-oxidant activity, decreasing inflammatory mediators, inducing apoptosis, and inhibiting migration and invasion. The purpose of this review is to conclude the pharmacological effects and the potential mechanisms of TQ in renal protection, shedding new light on the exploration of medicinal phyto-protective agents targeting kidneys.


Antioxidants , Apoptosis , Benzoquinones , Nigella sativa , Phytotherapy , Benzoquinones/pharmacology , Humans , Nigella sativa/chemistry , Antioxidants/pharmacology , Apoptosis/drug effects , Animals , Kidney Diseases/prevention & control , Kidney Diseases/drug therapy , Kidney/drug effects , Anti-Inflammatory Agents , Acute Kidney Injury/prevention & control , Acute Kidney Injury/drug therapy , Carcinoma, Renal Cell/drug therapy , Reactive Oxygen Species/metabolism , Protective Agents/pharmacology
5.
Biomed Pharmacother ; 175: 116797, 2024 Jun.
Article En | MEDLINE | ID: mdl-38776675

Cisplatin (CIS) stands as one of the most effective chemotherapy drugs currently available. Despite its anticancer properties, the clinical application of CIS is restricted due to nephrotoxicity. Our research aimed to specify the impact of ketotifen fumarate (KET) against nephrotoxicity induced by CIS in mice. Male NMRI mice were treated with KET (0.4, 0.8, and 1.6 mg/kg, ip) for seven days. On the fourth day of the study, a single dose of CIS (13 mg/kg, ip) was administered, and the mice were sacrificed on the eighth day. The results indicated that administration of KET attenuated CIS-induced elevation of BUN and Cr in the serum, as well as renal KIM-1 levels. This improvement was accompanied by a significant reduction in kidney tissue damage, which was supported by histopathological examinations. Likewise, the decrease in the ratio of GSH to GSSG and antioxidant enzyme activities (CAT, SOD, and GPx), and the increase in lipid peroxidation marker (TBARS) were reversed in KET-treated mice. The ELISA results revealed that KET-treated mice ameliorated CIS-induced elevation in the renal levels of TNF-α, IL-1ß, and IL-18. Western blot analysis exhibited that KET suppressed the activation of the transcription factor NF-κB and the NLRP3 inflammasome in the kidney of CIS-treated mice. Moreover, KET treatment reversed the changes in the protein expression of markers related to apoptosis (Bax, Bcl2, Caspase-3, and p53). Interestingly, KET significantly enhanced the cytotoxicity of CIS in HeLa cells. In conclusion, this study provides valuable insights into the promising effects of KET in mitigating CIS-induced nephrotoxicity.


Acute Kidney Injury , Caspase 1 , Caspase 3 , Cisplatin , Ketotifen , NF-kappa B , NLR Family, Pyrin Domain-Containing 3 Protein , Signal Transduction , bcl-2-Associated X Protein , Animals , Cisplatin/toxicity , Male , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Signal Transduction/drug effects , Mice , NF-kappa B/metabolism , Caspase 1/metabolism , Acute Kidney Injury/chemically induced , Acute Kidney Injury/prevention & control , Acute Kidney Injury/drug therapy , Acute Kidney Injury/metabolism , Acute Kidney Injury/pathology , Caspase 3/metabolism , Humans , Ketotifen/pharmacology , bcl-2-Associated X Protein/metabolism , Proto-Oncogene Proteins c-bcl-2/metabolism , Apoptosis/drug effects , Kidney/drug effects , Kidney/pathology , Kidney/metabolism , Antineoplastic Agents/pharmacology , Antineoplastic Agents/toxicity , HeLa Cells , Oxidative Stress/drug effects
6.
Ren Fail ; 46(1): 2356021, 2024 Dec.
Article En | MEDLINE | ID: mdl-38785301

OBJECTIVE: This study aims to assess the clinical efficacy and safety of CHF-II in combination with RG for treating AKI on CKD (A on C), and to explore potential therapeutic mechanisms through lipidomics analysis. METHODS: 98 patients were enrolled and randomly assigned to the RG or RG + CHF groups. Both groups received RG therapy, with RG + CHF group additionally receiving CHF-II treatment over a duration of two weeks. Evaluation endpoints included changes in renal function, blood lipid profiles, urinary AKI biomarkers, and TCM symptoms before and after treatment. Serum samples were collected for lipid metabolite analysis. RESULTS: The total clinical effective rate in RG + CHF group was 73.5%, and that of RG group was 40.8%. TCM syndrome scores in RG + CHF group showed a more pronounced decrease (p < 0.05). Scr, BUN, and UA levels decreased while eGFR levels increased in both groups (p < 0.05), with a greater magnitude of change observed in the RG + CHF group. Urinary AKI biomarkers decreased more in RG + CHF group (p < 0.05). No serious adverse events occurred during the trial. 58 different lipid metabolites and 48 lipid biomarkers were identified. According to the KEGG database, the possible metabolic pathways involved triglyceride metabolic pathway and fat digestion and absorption metabolic pathways. CONCLUSION: CHF-II effectively alleviated kidney injury and improved TCM syndrome scores in patients with A on C. Lipid differential metabolites could serve as diagnostic indicators for AKI in patients with CKD. The possible metabolic pathways might be implicated in therapeutic action of CHF-II in the prevention and treatment of patients with A on C.


Acute Kidney Injury , Biomarkers , Drugs, Chinese Herbal , Lipidomics , Renal Insufficiency, Chronic , Humans , Male , Acute Kidney Injury/etiology , Acute Kidney Injury/drug therapy , Female , Middle Aged , Drugs, Chinese Herbal/therapeutic use , Renal Insufficiency, Chronic/complications , Renal Insufficiency, Chronic/drug therapy , Aged , Biomarkers/blood , Biomarkers/urine , Adult , Lipids/blood , Glomerular Filtration Rate/drug effects , Treatment Outcome , Medicine, Chinese Traditional/methods
7.
Mol Biol Rep ; 51(1): 679, 2024 May 25.
Article En | MEDLINE | ID: mdl-38796668

BACKGROUND: Renal ischemia-reperfusion injury (IRI) is one of the causes of acute kidney injury. Annexin A5 (AnxA5), a calcium-dependent cell membrane-binding protein, shows protective effects in various organ IRI models. This study explored the therapeutic effect of exogenous AnxA5 monomer protein on renal IRI and its potential mechanism of action. METHODS AND RESULTS: Different doses of AnxA5 were injected intravenously to treat bilateral renal IRI in SD rats. This model confirmed the protective effects of AnxA5 on kidney structure and function. In vitro, HK-2 cells were subjected to hypoxia for 12 h, followed by restoration of normal oxygen supply to simulate IRI. In vitro experiments demonstrated the mechanism of action of AnxA5 by measuring cellular activity and permeability. A comparison of the mutant AnxA5 protein M23 and the application of a calcium-free culture medium further validated the protective effect of AnxA5 by forming a network structure. CONCLUSIONS: Exogenous AnxA5 monomers prevented renal IRI by binding to the damaged renal tubular epithelial cell membrane, forming a two-dimensional network structure to maintain cell membrane integrity, and ultimately prevent cell death.


Annexin A5 , Kidney , Rats, Sprague-Dawley , Reperfusion Injury , Animals , Reperfusion Injury/drug therapy , Reperfusion Injury/metabolism , Rats , Annexin A5/metabolism , Annexin A5/pharmacology , Humans , Kidney/metabolism , Kidney/drug effects , Kidney/pathology , Male , Cell Membrane/metabolism , Cell Membrane/drug effects , Cell Line , Acute Kidney Injury/drug therapy , Acute Kidney Injury/metabolism , Acute Kidney Injury/pathology , Disease Models, Animal
8.
Shock ; 61(6): 841-847, 2024 Jun 01.
Article En | MEDLINE | ID: mdl-38691102

ABSTRACT: Objective: To investigate the protective effect and possible mechanisms of vitamin B 6 against renal injury in patients with sepsis. Methods: A total of 128 patients with sepsis who met the entry criteria in multiple centers were randomly divided into experimental (intravenous vitamin B 6 therapy) and control (intravenous 0.9% sodium chloride therapy) groups based on usual care. Clinical data, the inflammatory response indicators interleukin 6 (IL-6), interleukin 8 (IL-8), tumor necrosis factor (TNF-α), and endothelin-1 (ET-1), the oxidative stress response indicators superoxide dismutase, glutathione and malondialdehyde, and renal function (assessed by blood urea nitrogen, serum creatinine, and renal resistance index monitored by ultrasound) were compared between the two groups. Results: After 7 d of treatment, the IL-6, IL-8, TNF-α, and ET-1 levels in the experimental group were significantly lower than those in the control group, the oxidative stress response indicators were significantly improved in the experimental group and the blood urea nitrogen, serum creatinine, and renal resistance index values in the experimental group were significantly lower than those in the control group ( P < 0.05). There was no statistical difference between the two groups in the rate of renal replacement therapy and 28 d mortality ( P > 0.05). However, the intensive care unit length of stay and the total hospitalization expenses in the experimental group were significantly lower than those in the control group ( P < 0.05). Conclusion: The administration of vitamin B 6 in the treatment of patients with sepsis attenuates renal injury, and the mechanism may be related to pyridoxine decreasing the levels of inflammatory mediators and their regulation by redox stress.


Oxidative Stress , Sepsis , Vitamin B 6 , Humans , Sepsis/drug therapy , Sepsis/blood , Male , Female , Middle Aged , Aged , Oxidative Stress/drug effects , Vitamin B 6/therapeutic use , Endothelin-1/blood , Tumor Necrosis Factor-alpha/blood , Interleukin-6/blood , Acute Kidney Injury/drug therapy , Acute Kidney Injury/prevention & control , Interleukin-8/blood , Superoxide Dismutase/blood , Kidney/drug effects , Kidney/metabolism , Blood Urea Nitrogen , Malondialdehyde/blood , Creatinine/blood
9.
Phytomedicine ; 129: 155700, 2024 Jul.
Article En | MEDLINE | ID: mdl-38704914

BACKGROUND: Myoglobin (Mb) induced death of renal tubular epithelial cells (RTECs) is a major pathological factor in crush syndrome-related acute kidney injury (CS-AKI). It is unclear whether ferroptosis is involved and could be a target for treatment. PURPOSE: This study aimed to evaluate the potential therapeutic effects of combining the natural small molecule rosemarinic acid (RA) and the iron chelator deferasirox (Dfe) on CS-AKI through inhibition of ferroptosis. METHODS: Sequencing data were downloaded from the GEO database, and differential expression analysis was performed using the R software limma package. The CS-AKI mouse model was constructed by squeezing the bilateral thighs of mice for 16 h with 1.5 kg weight. TCMK1 and NRK-52E cells were induced with 200 µM Mb and then treated with RA combined with Dfe (Dfe + RA, both were 10 µM). Functional and pathological changes in mouse kidney were evaluated by glomerular filtration rate (GFR) and HE pathology. Immunofluorescence assay was used to detect Mb levels in kidney tissues. The expression levels of ACSL4, GPX4, Keap1, and Nrf2 were analyzed by WB. RESULTS: We found that AKI mice in the GSE44925 cohort highly expressed the ferroptosis markers ACSL4 and PTGS2. CS-AKI mice showed a rapid decrease in GFR, up-regulation of ACSL4 expression in kidney tissue, and down-regulation of GPX4 expression, indicating activation of the ferroptosis pathway. Mb was found to deposit in renal tubules, and it has been proven to cause ferroptosis in TCMK1 and NRK-52E cells in vitro. We found that Dfe had a strong iron ion scavenging effect and inhibited ACSL4 expression. RA could disrupt the interaction between Keap1 andNrf2, stabilize Nrf2, and promote its nuclear translocation, thereby exerting antioxidant effects. The combination of Dfe and RA effectively reversed Mb induced ferroptosis in RTECs. CONCLUSION: In conclusion, we found that RA combined with Dfe attenuated CS-AKI by inhibiting Mb-induced ferroptosis in RTECs via activating the Nrf2/Keap1 pathway.


Acute Kidney Injury , Cinnamates , Deferasirox , Depsides , Ferroptosis , Kelch-Like ECH-Associated Protein 1 , NF-E2-Related Factor 2 , Rosmarinic Acid , Animals , Ferroptosis/drug effects , Kelch-Like ECH-Associated Protein 1/metabolism , NF-E2-Related Factor 2/metabolism , Acute Kidney Injury/drug therapy , Depsides/pharmacology , Mice , Deferasirox/pharmacology , Male , Cinnamates/pharmacology , Disease Models, Animal , Iron Chelating Agents/pharmacology , Signal Transduction/drug effects , Cell Line , Mice, Inbred C57BL
10.
Int Immunopharmacol ; 135: 112249, 2024 Jun 30.
Article En | MEDLINE | ID: mdl-38772297

Interleukin-35 (IL-35) is a novel anti-inflammatory component, and its role in protecting against acute kidney disease (AKD) has not been explored. Thymoquinone (TQ) has been widely used for many therapeutic targets. Inflammation/oxidative signaling plays essential roles in the pathogenesis of diverse disorders, such as AKD, cancer, cardiac disease, aging, and metabolic and neurodegenerative disorders. The objective of the investigation was to evaluate how IL-35 prevents inflammation and oxidative stress indicators in the kidneys of rats caused by lipopolysaccharide (LPS). The experimental rats were allocated into six groups: control (0.5 mL saline); TQ (0.5 mg/kg, b.w. IP), IL-35 (100 µg of IL-35 /kg, b.w. IP), LPS (500 µg/kg b.w. IP), LPS + IL-35, and LPS + TQ. Results indicate that the hematological and blood biochemical parameters were substantially restored by TQ or IL-35 therapy. The elevation of kidney function (uric acid, creatinine, and cystatin C) and oxidative related biomarkers (MDA, PC, and MYO) in rat kidneys was significantly restored by the TQ and IL-35 therapies after LPS administration (P < 0.05). Serum immunological variables IgM and IgG were significantly restored by TQ and IL-35 in LPS-treated rats. Both IL-35 and TQ markedly mitigated the decrease antioxidant related biomarkers (SOD, GSH, CAT and TAC) triggered by LPS. The IL-35 and TQ treatments significantly diminished serum levels of inflammatory responses such as TNF-α, NF-κB, IL-6 and IFN-γ, and significantly increased IL-10 in LPS-treated rats. Additionally, serum levels of MCP, Caspase-3, andBcl-2 were significantly diminished by TQ or IL-35 therapy. The histopathology and immunohistochemistry for NF-kB, PCNA and TNF-α cytokines revealedremodeling when treated with TQ and IL-35. In summary, administration of IL-35 or TQ can attenuateLPS-induced renal damage by extenuatingoxidative stress, tissue impairment, apoptosis, and inflammation, implicating IL-35 as a promising therapeutic agent in acute-related renal injury.


Acute Kidney Injury , Anti-Inflammatory Agents , Benzoquinones , Interleukins , Kidney , Lipopolysaccharides , Nanoparticles , Oxidative Stress , Animals , Benzoquinones/pharmacology , Benzoquinones/therapeutic use , Acute Kidney Injury/chemically induced , Acute Kidney Injury/drug therapy , Acute Kidney Injury/pathology , Acute Kidney Injury/immunology , Rats , Male , Interleukins/metabolism , Interleukins/blood , Kidney/drug effects , Kidney/pathology , Kidney/metabolism , Anti-Inflammatory Agents/therapeutic use , Anti-Inflammatory Agents/pharmacology , Oxidative Stress/drug effects , Rats, Wistar , Cytokines/metabolism , Cytokines/blood
11.
Cell Mol Biol (Noisy-le-grand) ; 70(5): 238-242, 2024 May 27.
Article En | MEDLINE | ID: mdl-38814213

Patients with sepsis are often complicated by acute kidney injury (AKI), which greatly increases mortality. In this study, our purpose was to explore the expression and function of CDGSH iron sulfur domain 2 (CISD2) in septic AKI, and the underlying molecular mechanism. Western blot and quantitative real-time polymerase chain reaction (RT-PCR) were employed to detect protein and mRNA levels in cells. The inflammation level of cells was evaluated by detecting the content of inflammatory factors (TNF-α, IL-1ß, IL-6). Apoptosis of cells was evaluated by Caspase-3 activity assay, flow cytometry and terminal deoxynucleotidyl transferase-mediated dUTP Nick-End Labeling (TUNEL) staining. CISD2 was down-regulated in HK-2 cells treated with lipopolysaccharide (LPS). LPS treatment increased the level of inflammatory factors, the activity of Caspase-3, and the rate of apoptosis in HK-2 cells. However, overexpression of CISD2 significantly suppressed these effects. Moreover, overexpression of CISD2 activated the Sonic Hedgehog (SHH) signaling pathway. The use of cyclopamine (Cyc), a SHH signaling pathway inhibitor, eliminated the effect of overexpressing CISD2, that is, inhibiting LPS-induced inflammation and apoptosis of HK-2 cells. LPS treatment down-regulated CISD2 in HK-2 cells, and overexpression of CISD2 could inhibit LPS-induced inflammation and apoptosis of HK-2 cells by activating the SHH signaling pathway.


Acute Kidney Injury , Apoptosis , Hedgehog Proteins , Lipopolysaccharides , Sepsis , Signal Transduction , Humans , Acute Kidney Injury/metabolism , Acute Kidney Injury/drug therapy , Acute Kidney Injury/genetics , Acute Kidney Injury/pathology , Apoptosis/drug effects , Caspase 3/metabolism , Caspase 3/genetics , Cell Line , Hedgehog Proteins/metabolism , Hedgehog Proteins/genetics , Inflammation/metabolism , Inflammation/pathology , Inflammation/genetics , Sepsis/metabolism , Sepsis/complications , Signal Transduction/drug effects
12.
Toxicol Appl Pharmacol ; 486: 116952, 2024 May.
Article En | MEDLINE | ID: mdl-38705399

The incidence of contrast-induced acute kidney injury (CI-AKI) has escalated to become the third most prevalent cause of hospital-acquired AKI, with a lack of efficacious interventions. Berberine (BBR) possesses diverse pharmacological effects and exhibits renoprotective properties; however, limited knowledge exists regarding its impact on CI-AKI. Therefore, our study aimed to investigate the protective effects and underlying mechanisms of BBR on CI-AKI in a mice model, focusing on the nucleotide-binding oligomerization domain-like pyrin domain-containing protein 3 (NLRP3) inflammasome and mitophagy. The CI-AKI mice model was established by administering NG-nitro-L-arginine methyl ester (L-NAME) (10 mg/kg), indomethacin (10 mg/kg), and iohexol (11 g/kg) following water deprivation. A pretreatment of 100 mg/kg of BBR was orally administered to the mice for two weeks. Renal injury markers, damage-associated molecular patterns (DAMPs), renal histopathology, mitochondrial morphology, autophagosomes, and potential mechanisms were investigated. BBR effectively reduced levels of renal injury biomarkers such as serum cystatin C, urea nitrogen, and creatinine, downregulated the protein level of kidney injury molecule 1 (KIM1), and mitigated renal histomorphological damage. Moreover, BBR reduced DAMPs, including high mobility group box-1 (HMGB1), heat shock protein 70 (HSP70), and uric acid (UA). It also alleviated oxidative stress and inflammatory factors such as monocyte chemotactic protein-1 (MCP-1), tumor necrosis factor-alpha (TNF-α), interleukin-6 (IL-6), and interleukin-1 beta (IL-1ß). Furthermore, the activation of NLRP3 inflammasome was attenuated in the BBR pretreatment group, as evidenced by both mRNA and protein levels. Electron microscopy and western blotting examination revealed that BBR mitigated mitochondrial damage and enhanced mitophagy. Additionally, BBR increased the P-AMPK/AMPK ratio. These findings indicated that BBR exerted a protective effect against CI-AKI by suppressing NLRP3 inflammasome activation and modulating mitophagy, providing a potential therapeutic strategy for its prevention.


Acute Kidney Injury , Berberine , Contrast Media , Disease Models, Animal , Inflammasomes , Mitophagy , NLR Family, Pyrin Domain-Containing 3 Protein , Animals , Male , Mice , Acute Kidney Injury/chemically induced , Acute Kidney Injury/pathology , Acute Kidney Injury/prevention & control , Acute Kidney Injury/metabolism , Acute Kidney Injury/drug therapy , Berberine/pharmacology , Inflammasomes/metabolism , Inflammasomes/drug effects , Kidney/drug effects , Kidney/pathology , Kidney/metabolism , Mice, Inbred C57BL , Mitophagy/drug effects , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism
13.
Ren Fail ; 46(1): 2358187, 2024 Dec.
Article En | MEDLINE | ID: mdl-38803234

BACKGROUND AND OBJECTIVES: Acute kidney injury (AKI) is one of the most common and severe clinical syndromes of diffuse proliferative lupus nephritis (DPLN), of which poor prognosis is indicated by aggravated renal function deterioration. However, the specific therapy and mechanisms of AKI in DPLN remain to be explored. METHODS: The correlation between AKI and clinical pathological changes in DPLN patients was analyzed. Expression of STAT3 signaling was detected in MRL/lpr mice with DPLN using immunohistochemical staining and immunoblotting. Inhibition of STAT3 activation by combination therapy was assessed in MRL/lpr mice. RESULTS: Correlation analysis revealed only the interstitial leukocytes were significantly related to AKI in endocapillary DPLN patients. MRL/lpr mice treated with vehicle, which can recapitulate renal damages of DPLN patients, showed upregulation of STAT3, pSTAT3 and caspase-1 in renal cortex. FLLL32 combined with methylprednisolone therapy significantly inhibited the STAT3 activation, improved acute kidney damage, reduced the interstitial infiltration of inflammatory cells and decreased the AKI incidence in MRL/lpr mice. CONCLUSION: STAT3 activation may play an important role in the pathogenesis of DPLN and the development of AKI. Hence, STAT3 inhibition based on the combination of FLLL32 with methylprednisolone may represent a new strategy for treatment of DPLN with AKI.


Acute Kidney Injury , Disease Models, Animal , Lupus Nephritis , Mice, Inbred MRL lpr , STAT3 Transcription Factor , Animals , Lupus Nephritis/drug therapy , Lupus Nephritis/pathology , Lupus Nephritis/metabolism , STAT3 Transcription Factor/metabolism , STAT3 Transcription Factor/antagonists & inhibitors , Mice , Female , Acute Kidney Injury/drug therapy , Acute Kidney Injury/metabolism , Acute Kidney Injury/etiology , Humans , Methylprednisolone/therapeutic use , Kidney/pathology , Kidney/drug effects , Signal Transduction/drug effects , Adult , Male
14.
Physiol Res ; 73(2): 227-237, 2024 Apr 30.
Article En | MEDLINE | ID: mdl-38710058

Nephrotoxicity as a cause of acute kidney injury (AKI) induced by cisplatin (CP), limits its usefulness as an anticancer agent. Diminazene, an angiotensin converting enzyme 2 activator, exhibited renoprotective properties on rat models of kidney diseases. This research aims to investigate the salutary effect of diminazene in comparison with lisinopril or valsartan in CP-induced AKI. The first and second groups of rats received oral vehicle (distilled water) for 9 days, and saline injection or intraperitoneal CP (6 mg/kg) on day 6, respectively. Third, fourth, and fifth groups received intraperitoneal injections of CP on day 6 and diminazene (15 mg/kg/day, orally), lisinopril (10 mg/kg/day, orally), or valsartan (30 mg/kg/day, orally), for 9 days, respectively. 24h after the last day of treatment, blood and kidneys were removed under anesthesia for biochemical and histopathological examination. Urine during the last 24 h before sacrificing the rats was also collected. CP significantly increased plasma urea, creatinine, neutrophil gelatinase-associated lipocalin, calcium, phosphorus, and uric acid. It also increased urinary albumin/creatinine ratio, N-Acetyl-beta-D-Glucosaminidase/creatinine ratio, and reduced creatinine clearance, as well the plasma concentrations of inflammatory cytokines [plasma tumor necrosis factor-alpha, and interleukin-1beta], and significantly reduced antioxidant indices [catalase, glutathione reductase , and superoxide dismutase]. Histopathologically, CP treatment caused necrosis of renal tubules, tubular casts, shrunken glomeruli, and increased renal fibrosis. Diminazine, lisinopril, and valsartan ameliorated CP-induced biochemical and histopathological changes to a similar extent. The salutary effect of the three drugs used is, at least partially, due to their anti-inflammatory and antioxidant effects. Keywords: Cisplatin, Diminazene, ACE2 activator, Lisinopril, Valsartan, Acute kidney injury.


Acute Kidney Injury , Cisplatin , Diminazene , Lisinopril , Rats, Wistar , Valsartan , Animals , Acute Kidney Injury/chemically induced , Acute Kidney Injury/pathology , Acute Kidney Injury/metabolism , Acute Kidney Injury/prevention & control , Acute Kidney Injury/drug therapy , Lisinopril/pharmacology , Cisplatin/toxicity , Valsartan/pharmacology , Male , Diminazene/analogs & derivatives , Diminazene/pharmacology , Diminazene/therapeutic use , Rats , Antineoplastic Agents/toxicity , Angiotensin-Converting Enzyme Inhibitors/pharmacology , Kidney/drug effects , Kidney/pathology , Kidney/metabolism
15.
Int Immunopharmacol ; 133: 112170, 2024 May 30.
Article En | MEDLINE | ID: mdl-38691919

Acute kidney injury (AKI) is characterized by a sudden decline in renal function. Traditional Chinese medicine has employed Fuzi for kidney diseases; however, concerns about neurotoxicity and cardiotoxicity have constrained its clinical use. This study explored mesaconine, derived from processed Fuzi, as a promising low-toxicity alternative for AKI treatment. In this study, we assessed the protective effects of mesaconine in gentamicin (GM)-induced NRK-52E cells and AKI rat models in vitro and in vivo, respectively. Mesaconine promotes the proliferation of damaged NRK-52E cells and down-regulates intracellular transforming growth factor ß1 (TGF-ß1) and kidney injury molecule 1 (KIM-1) to promote renal cell repair. Concurrently, mesaconine restored mitochondrial morphology and permeability transition pores, reversed the decrease in mitochondrial membrane potential, mitigated mitochondrial dysfunction, decreased ATP production, inhibited inflammatory factor release, and reduced early apoptosis rates. In vivo, GM-induced AKI rat models exhibited elevated AKI biomarkers, in which mesaconine was effectively reduced, indicating improved renal function. Mesaconine enhanced superoxide dismutase activity, reduced malondialdehyde content, alleviated inflammatory infiltrate, mitigated tubular and glomerular lesions, and downregulated NF-κB (nuclear factor-κb) p65 expression, leading to decreased tumor necrosis factor-α (TNF-α) and IL-1ß (interleukin-1ß) levels in GM-induced AKI animals. Furthermore, mesaconine inhibited the expression of renal pro-apoptotic proteins (Bax, cytochrome c, cleaved-caspase 9, and cleaved-caspase 3) and induced the release of the anti-apoptotic protein bcl-2, further suppressing apoptosis. This study highlighted the therapeutic potential of mesaconine in GM-induced AKI. Its multifaceted mechanisms, including the restoration of mitochondrial dysfunction, anti-inflammatory and antioxidant effects, and apoptosis mitigation, make mesaconine a promising candidate for further exploration in AKI management.


Aconitum , Acute Kidney Injury , Apoptosis , Kidney , Mitochondria , Rats, Sprague-Dawley , Animals , Acute Kidney Injury/drug therapy , Acute Kidney Injury/chemically induced , Acute Kidney Injury/pathology , Apoptosis/drug effects , Aconitum/chemistry , Mitochondria/drug effects , Mitochondria/metabolism , Male , Rats , Cell Line , Kidney/drug effects , Kidney/pathology , Gentamicins/toxicity , Drugs, Chinese Herbal/therapeutic use , Drugs, Chinese Herbal/pharmacology , Aconitine/analogs & derivatives , Aconitine/pharmacology , Aconitine/therapeutic use , Disease Models, Animal , Membrane Potential, Mitochondrial/drug effects , Humans , Anti-Inflammatory Agents/pharmacology , Anti-Inflammatory Agents/therapeutic use , Diterpenes
16.
Mol Biol Rep ; 51(1): 608, 2024 May 05.
Article En | MEDLINE | ID: mdl-38704766

BACKGROUND: Tacrolimus (TAC) is a frequently used immunosuppressive medication in organ transplantation. However, its nephrotoxic impact limits its long-term usage. This study aims to investigate the effect of linagliptin (Lina) on TAC-induced renal injury and its underlying mechanisms. METHODS AND RESULTS: Thirty-two Sprague Dawley rats were treated with TAC (1.5 mg/kg/day, subcutaneously) and/or Lina (5 mg/kg/day, orally) for 4 weeks. Histological examination was conducted, and serum and urinary biomarkers were measured to assess kidney function and integrity. Furthermore, ELISA, Western blot analysis and immunohistochemical assay were employed to determine signaling molecules of oxidative stress, profibrogenic, hypoxic, and apoptotic proteins. Tacrolimus caused renal dysfunction and histological deterioration evidenced by increased serum creatinine, blood urea nitrogen (BUN), urinary cystatin C, and decreased serum albumin as well as elevated tubular injury and interstitial fibrosis scores. Additionally, TAC significantly increased the expression of collagen type-1, alpha-smooth muscle actin (α-SMA), plasminogen activator inhibitor-1 (PAI-1), and transforming growth factor-beta1 (TGF-ß1) renal content. Moreover, TAC decreased the expression of nuclear factor erythroid-2-related factor2 (Nrf2), heme oxygenase 1 (HO-1), and mitochondrial superoxide dismutase (SOD2). In addition, TAC increased protein expression of hypoxia-inducible factor1-alpha (HIF-1α), connective tissue growth factor (CTGF), inducible nitric oxide synthase (iNOS), 8-hydroxy-2-deoxyguanosine (8-OHdG), as well as nitric oxide (NO), 4-hydroxynonenal, caspase-3 and Bax renal contents. Furthermore, TAC decreased Bcl-2 renal contents. The Lina administration markedly attenuated these alterations. CONCLUSION: Lina ameliorated TAC-induced kidney injury through modulation of oxidative stress, hypoxia, and apoptosis related proteins.


Acute Kidney Injury , Kidney , Linagliptin , NF-E2-Related Factor 2 , Oxidative Stress , Animals , Male , Rats , Acute Kidney Injury/chemically induced , Acute Kidney Injury/metabolism , Acute Kidney Injury/drug therapy , Connective Tissue Growth Factor/drug effects , Connective Tissue Growth Factor/metabolism , Hypoxia-Inducible Factor 1, alpha Subunit/drug effects , Hypoxia-Inducible Factor 1, alpha Subunit/metabolism , Immunosuppressive Agents/pharmacology , Kidney/drug effects , Kidney/metabolism , Kidney/pathology , Linagliptin/pharmacology , NF-E2-Related Factor 2/drug effects , NF-E2-Related Factor 2/metabolism , Oxidative Stress/drug effects , Plasminogen Activator Inhibitor 1/drug effects , Plasminogen Activator Inhibitor 1/metabolism , Rats, Sprague-Dawley , Signal Transduction/drug effects , Tacrolimus/pharmacology , Tacrolimus/toxicity , Heme Oxygenase-1/drug effects , Heme Oxygenase-1/metabolism
17.
Nihon Ronen Igakkai Zasshi ; 61(1): 61-67, 2024.
Article Ja | MEDLINE | ID: mdl-38583972

INTRODUCTION: Few reports have described acyclovir (ACV) encephalopathy without acute kidney injury (AKI). OBJECTIVE: This study clarified the clinical features of ACV encephalopathy without AKI compared to that with AKI. METHODS: Creatinine (Cre) levels were measured on admission. After admission, Cre was measured in a timely manner for the first seven hospital days. The minimum Cre level in these measurements was then determined. ACV encephalopathy was defined when two criteria were met: 1) neurological symptoms appeared after valacyclovir (VACV) administration, and 2) neurological symptoms improved after VACV discontinuation. AKI was defined when the Cre level on admission was >1.5 times higher than the minimum Cre level. The subjects were divided into AKI and non-AKI groups based on these findings. RESULTS: Eighteen patients had ACV encephalopathy (5 males, mean age 81.3±5.5 years old). All patients were prescribed VACV 3,000 mg/day. The minimum Cre was 1.93±1.76 mg/dL. AKI occurred in 10 (56.6%) patients. VACV was discontinued in all patients, and emergency hemodialysis treatment was administered in 10 (55.6%) patients. All patients recovered. Compared to the AKI group, the non-AKI group had a lower history of taking a Ca-blocker (33.3% vs 80.0%, p=0.092), a lower rate of emergency dialysis (16.9% vs 70.0%, p=0.059) and a longer time to clinical improvement (3.67±1.86 vs 2.20±0.63 days, p=0.073). CONCLUSION: ACV encephalopathy without AKI is characterized by a low rate of emergency dialysis, which may be linked to a prolonged duration of symptoms.


Acute Kidney Injury , Brain Diseases , Male , Humans , Aged , Aged, 80 and over , Acyclovir/adverse effects , Valacyclovir , Acute Kidney Injury/chemically induced , Acute Kidney Injury/drug therapy , Renal Dialysis , Brain Diseases/chemically induced , Brain Diseases/drug therapy , Retrospective Studies
18.
Immun Inflamm Dis ; 12(4): e1249, 2024 Apr.
Article En | MEDLINE | ID: mdl-38629726

BACKGROUND: Sepsis is perceived as lethal tissue damage and significantly increases mortality in combination with acute kidney injury (AKI). M2 macrophages play important roles in the secretion of anti-inflammatory and tissue repair mediators. We aimed to study the role of Dehydroandrographolide (Deh) in sepsis-associated AKI in vitro and in vivo through lipopolysaccharide (LPS)-induced macrophages model and cecal ligation and puncture-induced AKI mice model, and to reveal the mechanism related to M2 macrophage polarization. METHODS: Enzyme-linked immunosorbent assay kits were used to assess the levels of inflammatory factors. Expression of markers related to M1 macrophages and M2 macrophages were analyzed. Additionally, dual specificity phosphatase 3 (DUSP3) expression was tested. Cell apoptosis was evaluated by flow cytometry analysis and terminal-deoxynucleotidyl transferase-mediated nick end labeling staining. Moreover, renal histological assessment was performed by using hematoxylin and eosin staining. RESULTS: Deh reduced inflammation of THP-1-derived macrophages exposed to LPS. Besides, Deh induced the polarization of M1 macrophages to M2 and downregulated DUSP3 expression in THP-1-derived macrophages under LPS conditions. Further, DUSP3 overexpression reversed the impacts of Deh on the inflammation and M2 macrophages polarization of THP-1-derived macrophages stimulated by LPS. Additionally, human proximal tubular epithelial cells (HK-2) in the condition medium from DUSP3-overexpressed THP-1-derived macrophages treated with LPS and Deh displayed decreased viability and increased apoptosis and inflammation. The in vivo results suggested that Deh improved the renal function, ameliorated pathological injury, induced the polarization of M1 macrophages to M2, suppressed inflammation and apoptosis, and downregulated DUSP3 expression in sepsis-induced mice. CONCLUSION: Deh facilitated M2 macrophage polarization by downregulating DUSP3 to inhibit septic AKI.


Acute Kidney Injury , Diterpenes , Sepsis , Humans , Mice , Animals , Dual Specificity Phosphatase 3/metabolism , Lipopolysaccharides/toxicity , Macrophages/metabolism , Acute Kidney Injury/drug therapy , Acute Kidney Injury/etiology , Sepsis/complications , Sepsis/drug therapy
19.
Folia Histochem Cytobiol ; 62(1): 13-24, 2024.
Article En | MEDLINE | ID: mdl-38563049

INTRODUCTION: During sepsis, the kidney is one of the most vulnerable organs. Sepsis-associated acute kidney injury (S-AKI) is hallmarked by renal inflammation, apoptosis, and oxidative injury. Ginsenoside Rg1 (Rg1) is a natural product that possesses abundant pharmacological actions and protects against many sepsis-related diseases. Nevertheless, its role and related mechanism in S-AKI remain to be determined. MATERIALS AND METHODS: S-AKI was induced using lipopolysaccharide (LPS, 10 mg/kg) via a single intraperitoneal injection. Rg1 (200 mg/kg) was intraperitoneally administered for 3 consecutive days before LPS treatment. For histopathological examination, murine kidney tissues were stained with hematoxylin and eosin. Tubular injury score was calculated to evaluate kidney injury. Serum creatinine and BUN levels were measured for assessing renal dysfunction. The levels and activities of oxidative stress markers (MDA, 4-HNE, PC, GSH, SOD, and CAT) in renal tissue were measured by corresponding kits. Renal cell apoptosis was detected by TUNEL staining. The protein levels of apoptosis-related markers (Bcl-2, Bax, and Cleaved caspase-3), proinflammatory factors, SIRT1, IκBα, p-NF-κB p65, and NF-κB p65 in kidneys were determined using western blotting. Immunofluorescence staining was employed to assess p-NF-κB p65 expression in renal tissues. RESULTS: LPS-induced injury of kidneys and renal dysfunction in mice were ameliorated by Rg1. Rg1 also impeded LPS-evoked renal cell apoptosis in kidneys. Moreover, Rg1 attenuated LPS-triggered inflammation and oxidative stress in kidneys by inhibiting proinflammatory cytokine release, enhancing antioxidant levels and activities, and reducing lipid peroxidation. However, all these protective effects of Rg1 in LPS-induced AKI mice were reversed by EX527, an inhibitor of sirtuin 1 (SIRT1). Mechanistically, Rg1 upregulated SIRT1 protein expression, increased SIRT1 activity, and inactivated NF-κB signaling in the kidney of LPS-induced AKI mice, which was also reversed by EX527. CONCLUSIONS: Rg1 ameliorates LPS-induced kidney injury and suppresses renal inflammation, apoptosis, and oxidative stress in mice via regulating the SIRT1/NF-κB signaling.


Acute Kidney Injury , Ginsenosides , Sepsis , Animals , Mice , NF-kappa B/metabolism , NF-kappa B/pharmacology , NF-kappa B/therapeutic use , Lipopolysaccharides/toxicity , Sirtuin 1/metabolism , Sirtuin 1/pharmacology , Sirtuin 1/therapeutic use , Acute Kidney Injury/chemically induced , Acute Kidney Injury/drug therapy , Acute Kidney Injury/metabolism , Inflammation/chemically induced , Inflammation/drug therapy , Inflammation/metabolism , Sepsis/chemically induced , Sepsis/complications , Sepsis/drug therapy , Apoptosis
20.
Food Chem Toxicol ; 187: 114637, 2024 May.
Article En | MEDLINE | ID: mdl-38582345

Diclofenac (DF)-induced acute kidney injury (AKI) is characterized by glomerular dysfunction and acute tubular necrosis. Due to limited treatment approaches, effective and safe drug therapy to protect against such AKI is still needed. Diacetylrhein (DAR), an anthraquinone derivative, has different antioxidant and anti-inflammatory properties. Therefore, the aim of the current study was to investigate the renoprotective effect of DAR on DF-induced AKI while elucidating the potential underlying mechanism. Our results showed that DAR (50 and 100 mg/kg) markedly abrogated DF-induced kidney dysfunction decreasing SCr, BUN, serum NGAL, and serum KIM1 levels. Moreover, DAR treatment remarkably maintained renal redox balance and reduced the levels of pro-inflammatory biomarkers in the kidney. Mechanistically, DAR boosted Nrf2/HO-1 antioxidant and anti-inflammatory response in the kidney while suppressing renal TLR4/NF-κB and NLRP3/caspase-1 inflammatory signaling pathways. In addition, DAR markedly inhibited renal pyroptosis via targeting of GSDMD activation. Collectively, this study confirmed that the interplay between Nrf2/HO-1 and TLR4/NF-κB/NLRP3/Caspase-1 signaling pathways and pyroptotic cell death mediates DF-induced AKI and reported that DAR has a dose-dependent renoprotective effect on DF-induced AKI in rats. This effect is due to powerful antioxidant, anti-inflammatory, and anti-pyroptotic activities that could provide a promising treatment approach to protect against DF-induced AKI.


Acute Kidney Injury , NF-kappa B , Rats , Animals , NF-kappa B/metabolism , Diclofenac/toxicity , NF-E2-Related Factor 2/metabolism , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Antioxidants/metabolism , Toll-Like Receptor 4/metabolism , Signal Transduction , Acute Kidney Injury/chemically induced , Acute Kidney Injury/prevention & control , Acute Kidney Injury/drug therapy , Kidney , Anti-Inflammatory Agents/therapeutic use , Caspases/metabolism
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