For: | Duran-Salgado MB, Rubio-Guerra AF. Diabetic nephropathy and inflammation. World J Diabetes 2014; 5(3): 393-398 [PMID: 24936261 DOI: 10.4239/wjd.v5.i3.393] |
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URL: | https://www.wjgnet.com/1948-9358/full/v5/i3/393.htm |
Number | Citing Articles |
1 |
Yongwei Jiang, Wenjian Zhang, Shiqing Xu, Hua Lin, Weiguo Sui, Honglin Liu, Liang Peng, Qing Fang, Li Chen, Jinning Lou. Transplantation of human fetal pancreatic progenitor cells ameliorates renal injury in streptozotocin-induced diabetic nephropathy. Journal of Translational Medicine 2017; 15(1) doi: 10.1186/s12967-017-1253-1
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2 |
Jiewei Liu, Dongliang Cai, Ying Wang, Yanhong Zou, Tana Zhao. SNHG15 knockdown inhibits diabetic nephropathy progression in pediatric patients by regulating the miR-141/ICAM-1 axisin vitro. Bioscience Reports 2021; 41(2) doi: 10.1042/BSR20204099
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3 |
S Iglesias-Fortes, C González-Blanco, A García-Carrasco, A Izquierdo-Lahuerta, G García, A García-Aguilar, A Lockwood, O Palomino, G Medina-Gómez, M Benito, C Guillén. The overexpression of human amylin in pancreatic β cells facilitate the appearance of amylin aggregates in the kidney contributing to diabetic nephropathy. Scientific Reports 2024; 14(1) doi: 10.1038/s41598-024-77063-9
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4 |
Cong-Cong Zeng, Xi Liu, Guo-Rong Chen, Qian-Jia Wu, Wang-Wang Liu, Hai-Ying Luo, Jin-Guo Cheng, Mohamed Eddouks. The Molecular Mechanism of Rhein in Diabetic Nephropathy. Evidence-Based Complementary and Alternative Medicine 2014; 2014(1) doi: 10.1155/2014/487097
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5 |
Zhe Liu, Jiahui Liu, Wanning Wang, Xingna An, Ling Luo, Dehai Yu, Weixia Sun. Epigenetic modification in diabetic kidney disease. Frontiers in Endocrinology 2023; 14 doi: 10.3389/fendo.2023.1133970
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6 |
Annalisa Bianco, Claudio Tiribelli, Cristina Bellarosa. Translational Approach to the Protective Effect of Bilirubin in Diabetic Kidney Disease. Biomedicines 2022; 10(3): 696 doi: 10.3390/biomedicines10030696
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7 |
Samira Asadollahi, Morteza Hadizadeh, Nasim Namiranian, Seyed Mehdi Kalantar, Ali Dehghani Firoozabadi, Nastaran Injinari. Misexpression of LINC01410, FOSL1, and MAFB in peripheral blood mononuclear cells associated with diabetic nephropathy. Gene 2023; 862: 147265 doi: 10.1016/j.gene.2023.147265
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8 |
Yanyan Zhu, Chenhui Zhu, Haixia Yang, Jianjun Deng, Daidi Fan. Protective effect of ginsenoside Rg5 against kidney injury via inhibition of NLRP3 inflammasome activation and the MAPK signaling pathway in high-fat diet/streptozotocin-induced diabetic mice. Pharmacological Research 2020; 155: 104746 doi: 10.1016/j.phrs.2020.104746
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9 |
Chan Hum Park, Kazuyuki Hiratani, Toshiki Natazuka, Takako Yokozawa. Therapeutic effect of Chinese prescription Kangen-karyu in patients with diabetic nephropathy. Drug Discoveries & Therapeutics 2020; 14(2): 84 doi: 10.5582/ddt.2020.01013
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10 |
Dengpiao Xie, Qiqi Wang, Wei Huang, Liangbin Zhao. Dipeptidyl-peptidase-4 inhibitors have anti-inflammatory effects in patients with type 2 diabetes. European Journal of Clinical Pharmacology 2023; 79(10): 1291 doi: 10.1007/s00228-023-03541-0
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11 |
Dan Wang, Qian Zhang, Wenhui Dong, Shijing Ren, Xiangyu Wang, Cailin Su, Xiaochun Lin, Zongji Zheng, Yaoming Xue. SGLT2 knockdown restores the Th17/Treg balance and suppresses diabetic nephropathy in db/db mice by regulating SGK1 via Na+. Molecular and Cellular Endocrinology 2024; 584: 112156 doi: 10.1016/j.mce.2024.112156
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12 |
Habib Yaribeygi, Luis E. Simental-Mendía, Maciej Banach, Simona Bo, Amirhossein Sahebkar. The major molecular mechanisms mediating the renoprotective effects of SGLT2 inhibitors: An update. Biomedicine & Pharmacotherapy 2019; 120: 109526 doi: 10.1016/j.biopha.2019.109526
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13 |
Yuzhen Cen, Dana Feng, Rasoul Kowsar, Zhen Cheng, Yu Luo, Qingyu Xiao. Sex-Specific Variations in the mRNA Levels of Candidate Genes in Peripheral Blood Mononuclear Cells from Patients with Diabetes: A Multistep Study. Endocrine Research 2024; 49(1): 59 doi: 10.1080/07435800.2023.2280571
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14 |
Claudia PIONA, Claudia VENTRICI, Loredana MARCOVECCHIO, Francesco CHIARELLI, Claudio MAFFEIS, Riccardo BONFANTI, Ivana RABBONE. Long-term complications of type 1 diabetes: what do we know and what do we need to understand?. Minerva Pediatrics 2022; 73(6) doi: 10.23736/S2724-5276.21.06545-9
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15 |
Hongde Li, Pengfei Rong, Xiaoqian Ma, Wei Nie, Cheng Chen, Cejun Yang, Juan Zhang, Qiong Dong, Wei Wang. Paracrine effect of mesenchymal stem cell as a novel therapeutic strategy for diabetic nephropathy. Life Sciences 2018; 215: 113 doi: 10.1016/j.lfs.2018.11.001
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16 |
Jumana Gamal Abou Eleila, Amal Abdel Wahab Mohamed, Emam Abdalatif Waked, Laila Nessim Kamel, Hanan Shawky Amin, Hadeel Mohammad Elhanafi. Evaluation of serum MicroRNA 21, MicroRNA 192 and serum TGFβ1 in type 2 diabetes mellitus patients and their relation to diabetic nephropathy. Egyptian Journal of Medical Human Genetics 2024; 25(1) doi: 10.1186/s43042-024-00544-z
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17 |
Ling-Zhi Guan, Qiang Tong, Jing Xu, Robert B Sim. Elevated Serum Levels of Mannose-Binding Lectin and Diabetic Nephropathy in Type 2 Diabetes. PLOS ONE 2015; 10(3): e0119699 doi: 10.1371/journal.pone.0119699
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18 |
Giorgi Beridze, Lu Dai, Juan‐Jesús Carrero, Alessandra Marengoni, Davide L. Vetrano, Amaia Calderón‐Larrañaga. Associations between multimorbidity and kidney function decline in old age: A population‐based cohort study. Journal of the American Geriatrics Society 2024; doi: 10.1111/jgs.19298
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19 |
Hai-Jian Sun, Zhi-Yuan Wu, Lei Cao, Meng-Yuan Zhu, Teng-Teng Liu, Lei Guo, Ye Lin, Xiao-Wei Nie, Jin-Song Bian. Hydrogen Sulfide: Recent Progression and Perspectives for the Treatment of Diabetic Nephropathy. Molecules 2019; 24(15): 2857 doi: 10.3390/molecules24152857
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20 |
Natasha Z. Anita, Walter Swardfager. Soluble Epoxide Hydrolase and Diabetes Complications. International Journal of Molecular Sciences 2022; 23(11): 6232 doi: 10.3390/ijms23116232
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21 |
Dilip Sharma, Pallab Bhattacharya, Kiran Kalia, Vinod Tiwari. Diabetic nephropathy: New insights into established therapeutic paradigms and novel molecular targets. Diabetes Research and Clinical Practice 2017; 128: 91 doi: 10.1016/j.diabres.2017.04.010
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22 |
Sreenithya Ravindran, Shankar Munusamy. Renoprotective mechanisms of sodium‐glucose co‐transporter 2 (SGLT2) inhibitors against the progression of diabetic kidney disease. Journal of Cellular Physiology 2022; 237(2): 1182 doi: 10.1002/jcp.30621
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23 |
Rui Wang, Hang Zhang, Yifan Zhu, Wen Chen, Xin Chen. The impact of diabetes mellitus on acute kidney injury after coronary artery bypass grafting. Journal of Cardiothoracic Surgery 2020; 15(1) doi: 10.1186/s13019-020-01312-x
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24 |
Yixin (Jim) Wang, Xiaoli Wang, Annie An, Mingfa Zang, Ling Xu, Kefeng Gong, Weihua Song, Qing Li, Xiaojun Lu, Yong‐Fu Xiao, Guoliang Yu, Zhongmin A. Ma. Immunomodulator FTY720 improves glucose homeostasis and diabetic complications by rejuvenation of β‐cell function in nonhuman primate model of diabetes. Fundamental & Clinical Pharmacology 2022; 36(4): 699 doi: 10.1111/fcp.12760
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25 |
Ghada Alomari, Bahaa Al-Trad, Salehhuddin Hamdan, Alaa Aljabali, Mazhar Al-Zoubi, Nesreen Bataineh, Janti Qar, Murtaza M. Tambuwala. Gold nanoparticles attenuate albuminuria by inhibiting podocyte injury in a rat model of diabetic nephropathy. Drug Delivery and Translational Research 2020; 10(1): 216 doi: 10.1007/s13346-019-00675-6
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26 |
Ashley Pitzer, Thomas R. Kleyman, Annet Kirabo. Kidney Tubular IL-1β ENaCtivation in Diabetes and Salt-Sensitive Hypertension. Circulation Research 2022; 131(1): 74 doi: 10.1161/CIRCRESAHA.122.321335
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27 |
Maedeh Moradi, Elnaz Daneshzad, Mozhgan Mortazavi Najafabadi, Nick Bellissimo, Katherine Suitor, Leila Azadbakht. Association between adherence to the Mediterranean diet and renal function biomarkers and cardiovascular risk factors among diabetic patients with nephropathy. Clinical Nutrition ESPEN 2020; 40: 156 doi: 10.1016/j.clnesp.2020.09.032
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28 |
Jingyu Xu, Zonghao Tang, Youwu He, Shufang Cai, Beini Wang, Susu Zhang, Man Wu, Kai Qian, Kailun Zhang, Bo Chai, Guorong Chen, Ke Xu, Hao Ji, Jian Xiao, Yanqing Wu. Dl-3-n-Butylphthalide Ameliorates Diabetic Nephropathy by Ameliorating Excessive Fibrosis and Podocyte Apoptosis. Frontiers in Pharmacology 2021; 12 doi: 10.3389/fphar.2021.628950
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29 |
Weimin Ni, Yan Fang, Ling Xie, Xue Liu, Wei Shan, Ruixia Zeng, Jiansheng Liu, Xueyuan Liu. Adipose-Derived Mesenchymal Stem Cells Transplantation Alleviates Renal Injury in Streptozotocin-Induced Diabetic Nephropathy. Journal of Histochemistry & Cytochemistry 2015; 63(11): 842 doi: 10.1369/0022155415599039
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30 |
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31 |
Ganesh Panditrao Lahane, Arti Dhar, Audesh Bhat. Therapeutic approaches and novel antifibrotic agents in renal fibrosis: A comprehensive review. Journal of Biochemical and Molecular Toxicology 2024; 38(8) doi: 10.1002/jbt.23795
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32 |
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33 |
Chunmei Gu, Shumei Liu, Hongyue Wang, Haichuan Dou. Role of the thioredoxin interacting protein in diabetic nephropathy and the mechanism of regulating NOD‑like receptor protein 3 inflammatory corpuscle . International Journal of Molecular Medicine 2019; doi: 10.3892/ijmm.2019.4163
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34 |
Syaifuzah Sapian, Siti Balkis Budin, Izatus Shima Taib, Vanitha Mariappan, Satirah Zainalabidin, Kok Yong Chin. Role of Polyphenol in Regulating Oxidative Stress, Inflammation, Fibrosis,
and Apoptosis in Diabetic Nephropathy. Endocrine, Metabolic & Immune Disorders - Drug Targets 2022; 22(5): 453 doi: 10.2174/1871530321666211119144309
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35 |
Masahiro Eriguchi, Ellen A. Bernstein, Luciana C. Veiras, Zakir Khan, Duo Yao Cao, Sebastien Fuchs, Alicia A. McDonough, Jorge E. Toblli, Romer A. Gonzalez-Villalobos, Kenneth E. Bernstein, Jorge F. Giani. The Absence of the ACE N-Domain Decreases Renal Inflammation and Facilitates Sodium Excretion during Diabetic Kidney Disease. Journal of the American Society of Nephrology 2018; 29(10): 2546 doi: 10.1681/ASN.2018030323
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36 |
Johan van der Vlag, Baranca Buijsers. Heparanase. Advances in Experimental Medicine and Biology 2020; 1221: 647 doi: 10.1007/978-3-030-34521-1_26
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37 |
Yanmei Xu, Yan Xiong, Chen Xu, Chuanwen Xu. <p>Standard Puerarin Prevents Diabetic Renal Damage by Inhibiting miRNA-140-5p Expression</p>. Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy 2020; : 3947 doi: 10.2147/DMSO.S273952
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Jaroslava Trnovska, Petr Svoboda, Helena Pelantova, Marek Kuzma, Helena Kratochvilova, Barbora Judita Kasperova, Iveta Dvorakova, Katerina Rosolova, Hana Malinska, Martina Huttl, Irena Markova, Olena Oliyarnyk, Magdalena Melcova, Vojtech Skop, Milos Mraz, Sona Stemberkova-Hubackova, Martin Haluzik. Complex Positive Effects of SGLT-2 Inhibitor Empagliflozin in the Liver, Kidney and Adipose Tissue of Hereditary Hypertriglyceridemic Rats: Possible Contribution of Attenuation of Cell Senescence and Oxidative Stress. International Journal of Molecular Sciences 2021; 22(19): 10606 doi: 10.3390/ijms221910606
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39 |
Qiuxia Han, Hanyu Zhu, Xiangmei Chen, Zhangsuo Liu. Non-genetic mechanisms of diabetic nephropathy. Frontiers of Medicine 2017; 11(3): 319 doi: 10.1007/s11684-017-0569-9
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40 |
Nurul Jummah, Satrialdi Satrialdi, Aluicia Anita Artarini, Anindyajati Anindyajati, Diky Mudhakir. Diabetic Nephropathy: Pathogenesis and Drug Delivery System. Research Journal of Pharmacy and Technology 2023; : 6062 doi: 10.52711/0974-360X.2023.00984
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41 |
Marit D. Solbu, Ingrid Toft, Maja-Lisa Løchen, Ellisiv B. Mathiesen, Bjørn O. Eriksen, Toralf Melsom, Inger Njølstad, Tom Wilsgaard, Trond G. Jenssen. N-Acetyl-β-D-Glucosaminidase Does Not Enhance Prediction of Cardiovascular or All-Cause Mortality by Albuminuria in a Low-Risk Population. Journal of the American Society of Nephrology 2016; 27(2): 533 doi: 10.1681/ASN.2014100960
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42 |
Yu Zhao, Yinfeng Guo, Yuteng Jiang, Xiaodong Zhu, Xiaoliang Zhang. Vitamin D suppresses macrophage infiltration by down-regulation of TREM-1 in diabetic nephropathy rats. Molecular and Cellular Endocrinology 2018; 473: 44 doi: 10.1016/j.mce.2018.01.001
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43 |
Mohammed Alquraishi, Dexter L. Puckett, Dina S. Alani, Amal S. Humidat, Victoria D. Frankel, Dallas R. Donohoe, Jay Whelan, Ahmed Bettaieb. Pyruvate kinase M2: A simple molecule with complex functions. Free Radical Biology and Medicine 2019; 143: 176 doi: 10.1016/j.freeradbiomed.2019.08.007
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44 |
Patrick E. Aba. Evaluation of hepatic glycogen content, some haematological and biochemical parameters of alloxan-induced diabetic rats treated with combinations of glibenclamide and G. latifolium extract. Journal of Complementary and Integrative Medicine 2017; 14(4) doi: 10.1515/jcim-2016-0078
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45 |
Tugce Yesil-Devecioglu, Akın Dayan, Refik Demirtunc, Semra Sardas. Role of DNA repair genes XRCC3 and XRCC1 in predisposition to type 2 diabetes mellitus and diabetic nephropathy. Endocrinología, Diabetes y Nutrición (English ed.) 2019; 66(2): 90 doi: 10.1016/j.endien.2018.08.004
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46 |
Dan Wang, Zikun Zhang, Zekun Si, Yanlin Yang, Shuangshuang Li, Yaoming Xue. Dapagliflozin reverses the imbalance of T helper 17 and T regulatory cells by inhibiting SGK1 in a mouse model of diabetic kidney disease. FEBS Open Bio 2021; 11(5): 1395 doi: 10.1002/2211-5463.13147
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47 |
Emad H.M. Hassanein, Wafaa R. Mohamed, Osama S. Ahmed, Mohamed M. Abdel-Daim, Ahmed M. Sayed. The role of inflammation in cadmium nephrotoxicity: NF-κB comes into view. Life Sciences 2022; 308: 120971 doi: 10.1016/j.lfs.2022.120971
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48 |
Nora A. Kalagi, Rohith N. Thota, Elizabeth Stojanovski, Khalid A. Alburikan, Manohar L. Garg. Plasma Trimethylamine N-Oxide Levels Are Associated with Poor Kidney Function in People with Type 2 Diabetes. Nutrients 2023; 15(4): 812 doi: 10.3390/nu15040812
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49 |
Donghee Kim, Ka-Yun Ban, Geon-Ho Lee, Hee-Sook Jun. Lysophosphatidic Acid Induces Podocyte Pyroptosis in Diabetic Nephropathy by an Increase of Egr1 Expression via Downregulation of EzH2. International Journal of Molecular Sciences 2023; 24(12): 9968 doi: 10.3390/ijms24129968
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50 |
Jing Miao, Liying Guo, Huantian Cui, Li Wang, Bo Zhu, Jinyan Lei, Peng Li, Jianwei Jia, Zhaiyi Zhang, Chih-Yuan Ko. Er-Chen Decoction Alleviates High-Fat Diet-Induced Nonalcoholic Fatty Liver Disease in Rats through Remodeling Gut Microbiota and Regulating the Serum Metabolism. Evidence-Based Complementary and Alternative Medicine 2022; 2022: 1 doi: 10.1155/2022/6221340
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51 |
Mohamed Tawengi, Yazan Al-Dali, Abdelaziz Tawengi, Ibrahim F. Benter, Saghir Akhtar. Targeting the epidermal growth factor receptor (EGFR/ErbB) for the potential treatment of renal pathologies. Frontiers in Pharmacology 2024; 15 doi: 10.3389/fphar.2024.1394997
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52 |
Soo-Jin Kim, Yong-Seok Song, Thu-Huyen Pham, Yesol Bak, Hee-Pom Lee, Jin-Tae Hong, Do-Young Yoon. (E)-2-Methoxy-4-(3-(4-methoxyphenyl) prop-1-en-1-yl) phenol attenuates PMA-induced inflammatory responses in human monocytic cells through PKCδ/JNK/AP-1 pathways. European Journal of Pharmacology 2018; 825: 19 doi: 10.1016/j.ejphar.2018.01.024
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53 |
Jahirul Islam, Hack June Lee, Seung Hee Yang, Dong Ki Kim, Kwon Wook Joo, Yon Su Kim, Sang-Uk Seo, Seung-Yong Seong, Dong-Sup Lee, Je-In Youn, Seung Seok Han. Expansion of Myeloid-Derived Suppressor Cells Correlates with Renal Progression in Type 2 Diabetic Nephropathy. Immune Network 2020; 20(2) doi: 10.4110/in.2020.20.e18
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Jonny Jonny, Enda Cindylosa Sitepu, I Nyoman Ehrich Lister, Linda Chiuman, Terawan Agus Putranto. The Potential of Anti-Inflammatory DC Immunotherapy in Improving Proteinuria in Type 2 Diabetes Mellitus. Vaccines 2024; 12(9): 972 doi: 10.3390/vaccines12090972
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Neil G. Docherty, Madeline Murphy, Finian Martin, Eoin P. Brennan, Catherine Godson. Targeting cellular drivers and counter‐regulators of hyperglycaemia‐ and transforming growth factor‐β1‐associated profibrotic responses in diabetic kidney disease. Experimental Physiology 2014; 99(9): 1154 doi: 10.1113/expphysiol.2014.078774
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56 |
Amin Irannejad, Alireza Ghajar, Mohsen Afarideh, Elias Khajeh, Sina Noshad, Sadaf Esteghamati, Khashayar Afshari, Farima Kahe, Morsaleh Ganji, Mohammad Saadat, Manouchehr Nakhjavani, Alireza Esteghamati. Association of peripheral nesfatin-1 with early stage diabetic nephropathy. Pathophysiology 2017; 24(1): 17 doi: 10.1016/j.pathophys.2016.12.001
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57 |
Jing Guo, Yabin Gao, Yaoxian Wang, Wei Jing Liu, Jingwei Zhou, Zhen Wang. Application of Herbal Medicines with Heat-Clearing Property to Anti-Microinflammation in the Treatment of Diabetic Kidney Disease. Evidence-Based Complementary and Alternative Medicine 2019; 2019: 1 doi: 10.1155/2019/6174350
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58 |
Jiahui Liu, Zhe Liu, Weixia Sun, Ling Luo, Xingna An, Dehai Yu, Wanning Wang. Role of sex hormones in diabetic nephropathy. Frontiers in Endocrinology 2023; 14 doi: 10.3389/fendo.2023.1135530
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59 |
Sahabuddin Ahmed, Nitin Mundhe, Manash Borgohain, Liakat Chowdhury, Mohit Kwatra, Nityanand Bolshette, Anwaruddin Ahmed, Mangala Lahkar. Diosmin Modulates the NF-kB Signal Transduction Pathways and Downregulation of Various Oxidative Stress Markers in Alloxan-Induced Diabetic Nephropathy. Inflammation 2016; 39(5): 1783 doi: 10.1007/s10753-016-0413-4
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Chung-Ming Chen, Jer-Yiing Houng, Tsui-Ling Ko, Shu-Hui Juan, Hsiu-Chu Chou, Xing Li. Sigesbeckia orientalis Extract Ameliorates the Experimental Diabetic Nephropathy by Downregulating the Inflammatory and Oxidative Stress Signaling Pathways. Evidence-Based Complementary and Alternative Medicine 2022; 2022: 1 doi: 10.1155/2022/3323745
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Hai-Jian Sun, Si-Ping Xiong, Xu Cao, Lei Cao, Meng-Yuan Zhu, Zhi-Yuan Wu, Jin-Song Bian. Polysulfide-mediated sulfhydration of SIRT1 prevents diabetic nephropathy by suppressing phosphorylation and acetylation of p65 NF-κB and STAT3. Redox Biology 2021; 38: 101813 doi: 10.1016/j.redox.2020.101813
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Sandra Božičević, Marijana Vučić Lovrenčić, Lea Smirčić Duvnjak. Diagnostic challenges of diabetic kidney disease. Biochemia medica 2023; 33(3): 227 doi: 10.11613/BM.2023.030501
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Fei Fang, Eun-Hui Bae, Amanda Hu, George C. Liu, Xiaohua Zhou, Vanessa Williams, Nicholas Maksimowski, Catherine Lu, Ana Konvalinka, Rohan John, James W. Scholey. Deletion of the gene for adiponectin accelerates diabetic nephropathy in the Ins2 +/C96Y mouse. Diabetologia 2015; 58(7): 1668 doi: 10.1007/s00125-015-3605-9
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Yang Li, Denggao Huang, Linlin Zheng, Hui Cao, Zhongcheng Fan. Effect of microRNA‐141 on the development of diabetic nephropathy through regulating AKT/AMPK signaling pathway by targeting insulin receptor substrate 2. Journal of Cellular Biochemistry 2019; 120(5): 8008 doi: 10.1002/jcb.28078
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Lei Zhang, Xingzhi Wang, Liang Chang, Yiqun Ren, Manshu Sui, Yuting Fu, Lei Zhang, Lirong Hao. Quercetin improves diabetic kidney disease by inhibiting ferroptosis and regulating the Nrf2 in streptozotocin-induced diabetic rats. Renal Failure 2024; 46(1) doi: 10.1080/0886022X.2024.2327495
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Mia J. Smith, Kimber M. Simmons, John C. Cambier. B cells in type 1 diabetes mellitus and diabetic kidney disease. Nature Reviews Nephrology 2017; 13(11): 712 doi: 10.1038/nrneph.2017.138
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Shokouh Onvani, Mojgan Mortazavi Najafabadi, Fahimeh Haghighatdoost, Bagher Larijani, Leila Azadbakht. Short sleep duration is related to kidney-related biomarkers, but not lipid profile and diet quality in diabetic nephropathy patients. International Journal for Vitamin and Nutrition Research 2018; 88(1-2): 39 doi: 10.1024/0300-9831/a000392
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Habib Yaribeygi, Mohammad T. Mohammadi, Ramin Rezaee, Amirhossein Sahebkar. Fenofibrate improves renal function by amelioration of NOX‐4, IL‐18, and p53 expression in an experimental model of diabetic nephropathy. Journal of Cellular Biochemistry 2018; 119(9): 7458 doi: 10.1002/jcb.27055
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Yangyang Fang, Wei Xiang, Jinwei Cui, Bining Jiao, Xuesu Su. Anti-Inflammatory Properties of the Citrus Flavonoid Diosmetin: An Updated Review of Experimental Models. Molecules 2024; 29(7): 1521 doi: 10.3390/molecules29071521
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Kolsoum Rezaie Kahkhaie, Ali Mirhosseini, Ali Aliabadi, Asadollah Mohammadi, Mohammad Javad Mousavi, Saeed Mohammadian Haftcheshmeh, Thozhukat Sathyapalan, Amirhossein Sahebkar. Curcumin: a modulator of inflammatory signaling pathways in the immune system. Inflammopharmacology 2019; 27(5): 885 doi: 10.1007/s10787-019-00607-3
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Rajkishor Nishad, Dhanunjay Mukhi, Srinivas Kethavath, Sumathi Raviraj, Atreya S. V. Paturi, Manga Motrapu, Sreenivasulu Kurukuti, Anil Kumar Pasupulati.
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Trevor J. Plowman, Mujtaba H. Shah, Emely Fernandez, Hannah Christensen, Myia Aiges, Kota V. Ramana. Role of Innate Immune and Inflammatory Responses in the
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Zhenxin Mou, Zhiguo Feng, Zheng Xu, Fei Zhuang, Xuyong Zheng, Xiaokun Li, Jianchang Qian, Guang Liang. Schisandrin B alleviates diabetic nephropathy through suppressing excessive inflammation and oxidative stress. Biochemical and Biophysical Research Communications 2019; 508(1): 243 doi: 10.1016/j.bbrc.2018.11.128
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Nehal M. Elsherbiny, Mohammed M.H. Al-Gayyar. The role of IL-18 in type 1 diabetic nephropathy: The problem and future treatment. Cytokine 2016; 81: 15 doi: 10.1016/j.cyto.2016.01.014
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Jin Huang, Danyang Wan, Jianshuang Li, Hong Chen, Kun Huang, Ling Zheng. Histone acetyltransferase PCAF regulates inflammatory molecules in the development of renal injury. Epigenetics 2015; 10(1): 62 doi: 10.4161/15592294.2014.990780
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Hiroe Toba, Merry L. Lindsey. Extracellular matrix roles in cardiorenal fibrosis: Potential therapeutic targets for CVD and CKD in the elderly. Pharmacology & Therapeutics 2019; 193: 99 doi: 10.1016/j.pharmthera.2018.08.014
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Yanqin Fu, Chongxian Wang, Dongming Zhang, Xiaojing Chu, Yuanyuan Zhang, Jun Li. miR‐15b‐5p ameliorated high glucose‐induced podocyte injury through repressing apoptosis, oxidative stress, and inflammatory responses by targeting Sema3A. Journal of Cellular Physiology 2019; 234(11): 20869 doi: 10.1002/jcp.28691
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Fereshteh Bahmani, Mahsa Kia, Alireza Soleimani, Ali Akbar Mohammadi, Zatollah Asemi. The effects of selenium supplementation on biomarkers of inflammation and oxidative stress in patients with diabetic nephropathy: a randomised, double-blind, placebo-controlled trial. British Journal of Nutrition 2016; 116(7): 1222 doi: 10.1017/S0007114516003251
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Etty Kruzel-Davila, Jasmin Divers, Gregory B Russell, Zipi Kra-Oz, Moran Szwarcwort Cohen, Carl D Langefeld, Lijun Ma, Douglas S Lyles, Pamela J Hicks, Karl L Skorecki, Barry I Freedman. JC Viruria Is Associated With Reduced Risk of Diabetic Kidney Disease. The Journal of Clinical Endocrinology & Metabolism 2019; 104(6): 2286 doi: 10.1210/jc.2018-02482
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Sayantani Chowdhury, Sumit Ghosh, Abhishek Kumar Das, Parames C. Sil. Ferulic Acid Protects Hyperglycemia-Induced Kidney Damage by Regulating Oxidative Insult, Inflammation and Autophagy. Frontiers in Pharmacology 2019; 10 doi: 10.3389/fphar.2019.00027
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Mantong Zhao, Keke Meng, Meihui Zhao, Haohao Shi, Zhongyuan Liu, Yonghuan Yun, Weimin Zhang, Zhouwei Duan, Guanghua Xia. Partridge tea polyphenols alleviated STZ-induced diabetic nephropathy by regulating Keap1/Nrf2/ARE signaling pathway in C57BL/6 mice. Journal of Functional Foods 2024; 115: 106127 doi: 10.1016/j.jff.2024.106127
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Dinender K. Singla, Reetu D. Singla, Latifa S. Abdelli, Carley Glass, Yaoliang Tang. Fibroblast Growth Factor-9 Enhances M2 Macrophage Differentiation and Attenuates Adverse Cardiac Remodeling in the Infarcted Diabetic Heart. PLOS ONE 2015; 10(3): e0120739 doi: 10.1371/journal.pone.0120739
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