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For: Mizuiri S, Ohashi Y. ACE and ACE2 in kidney disease. World J Nephrol 2015; 4(1): 74-82 [PMID: 25664248 DOI: 10.5527/wjn.v4.i1.74]
URL: https://www.wjgnet.com/2220-6124/full/v4/i1/74.htm
Number Citing Articles
1
Tauqeer Hussain Mallhi, Yusra Habib Khan, Azreen Syazril Adnan. Stratification of Acute Kidney Injury in COVID-19 The American Journal of Tropical Medicine and Hygiene 2020; 103(6): 2164 doi: 10.4269/ajtmh.20-0794
2
Donovan McGrowder, Fabian Miller, Magdalene Nwokocha, Melisa Anderson Cross, Cameil Wilson-Clarke, Shelly McFarlane, Lorenzo Gordon. Ecological and Evolutionary Perspectives on Infections and MorbidityAdvances in Human Services and Public Health 2023; : 228 doi: 10.4018/978-1-7998-9414-8.ch010
3
Luca Perico, Ariela Benigni, Giuseppe Remuzzi. Angiotensin-converting enzyme 2: from a vasoactive peptide to the gatekeeper of a global pandemicCurrent Opinion in Nephrology & Hypertension 2021; 30(2): 252 doi: 10.1097/MNH.0000000000000692
4
Anano Zangaladze, Charles L. Cai, Matthew Marcelino, Jacob V. Aranda, Kay D. Beharry. Renal biomarkers of acute kidney injury in response to increasing intermittent hypoxia episodes in the neonatal ratBMC Nephrology 2021; 22(1) doi: 10.1186/s12882-021-02507-7
5
Jianxin Lu, Guixiang Chen, Guanghui Shen, Wenhao Ouyang. Ang-(1-7) attenuates podocyte injury induced by high glucose in vitroArchives of Endocrinology and Metabolism 2023; 67(6) doi: 10.20945/2359-3997000000643
6
Vittoria Rago, Sabrina Bossio, Danilo Lofaro, Anna Perri, Silvia Di Agostino. New Insights into the Link between SARS-CoV-2 Infection and Renal CancerLife 2023; 14(1): 52 doi: 10.3390/life14010052
7
Aida Malek Mahdavi. A brief review of interplay between vitamin D and angiotensin‐converting enzyme 2: Implications for a potential treatment for COVID‐19Reviews in Medical Virology 2020; 30(5) doi: 10.1002/rmv.2119
8
Jorge F. Giani, Luciana C. Veiras, Justin Z.Y. Shen, Ellen A. Bernstein, DuoYao Cao, Derick Okwan-Duodu, Zakir Khan, Romer A. Gonzalez-Villalobos, Kenneth E. Bernstein. Novel roles of the renal angiotensin-converting enzymeMolecular and Cellular Endocrinology 2021; 529: 111257 doi: 10.1016/j.mce.2021.111257
9
Jeong-Hoon Lim, Jang-Hee Cho, Yena Jeon, Ji Hye Kim, Ga Young Lee, Soojee Jeon, Hee Won Noh, Yong-Hoon Lee, Jaehee Lee, Hyun-Ha Chang, Hee-Yeon Jung, Ji-Young Choi, Sun-Hee Park, Chan-Duck Kim, Yong-Lim Kim, Shin-Woo Kim. Adverse impact of renin–angiotensin system blockade on the clinical course in hospitalized patients with severe COVID-19: a retrospective cohort studyScientific Reports 2020; 10(1) doi: 10.1038/s41598-020-76915-4
10
Babak Pakbin, Shaghayegh Pishkhan Dibazar, Samaneh Allahyari, Hanifeh Shariatifar, Wolfram Manuel Brück, Alireza Farasat. ACE2-Inhibitory Effects of Bromelain and Ficin in Colon Cancer CellsMedicina 2023; 59(2): 301 doi: 10.3390/medicina59020301
11
Zhuo Yu, Jingyu Zhan, Wei Dong, Lu Lu, Monica M. Jablonski, Lotfi Aleya, Jingyu Chen, Peiqing Zhang, Hong Chen, Weikuan Gu. Potential Similarities in Sex Difference in Key Genes and Their Expression, Network, EQTL and Pathways between COVID-19 and Chronic Kidney Disease Based on Mouse ModelJournal of Personalized Medicine 2022; 12(7): 1190 doi: 10.3390/jpm12071190
12
M. Kamal Nasr, Claudia Schurmann, Erwin P. Böttinger, Alexander Teumer. Mendelian randomization indicates causal effects of estradiol levels on kidney function in malesFrontiers in Endocrinology 2023; 14 doi: 10.3389/fendo.2023.1232266
13
Aniello Maiese, Alice Chiara Manetti, Vittorio Fineschi. Reference Module in Social Sciences2024;  doi: 10.1016/B978-0-443-21441-7.00045-5
14
Jonas R. Dias da Silva, Ivna Vidal Freire, Ícaro J.S. Ribeiro, Caroline Silva dos Santos, Cezar Augusto Casotti, Djanilson Barbosa dos Santos, Ana Angélica Leal Barbosa, Rafael Pereira. Improving the comprehension of sarcopenic state determinants: An multivariate approach involving hormonal, nutritional, lifestyle and genetic variablesMechanisms of Ageing and Development 2018; 173: 21 doi: 10.1016/j.mad.2018.05.008
15
Temitayo Olabisi Ajibade, Esther Oluwaseyi Oliyide, Oluwaseun Olanrewaju Esan, Moses Olusola Adetona, Omolola Victoria Awoyomi, Taiwo Olaide Oyagbemi, Adewumi Victoria Adeogun, Ademola Adetokunbo Oyagbemi, Temidayo Olutayo Omobowale, Kehinde Olugboyega Soetan, Sanah Malomile Nkadimeng, Lyndy Joy McGaw, Prudence Ngalula Kayoka-Kabongo, Momoh Audu Yakubu, Evaristus Nwulia, Oluwafemi Omoniyi Oguntibeju. Protective effects of naringin on fipronil-induced cardiovascular and renal dysfunctions in ratsClinical Traditional Medicine and Pharmacology 2024; : 200138 doi: 10.1016/j.ctmp.2024.200138
16
Hua Su, Ming Yang, Cheng Wan, Li-Xia Yi, Fang Tang, Hong-Yan Zhu, Fan Yi, Hai-Chun Yang, Agnes B. Fogo, Xiu Nie, Chun Zhang. Renal histopathological analysis of 26 postmortem findings of patients with COVID-19 in ChinaKidney International 2020; 98(1): 219 doi: 10.1016/j.kint.2020.04.003
17
Nada Hanifah, Yusuf Farid Achmad, Aida Humaira, Siti Isrina Oktavia Salasia. Red ginger-extract nanoemulsion modulates high blood pressure in rats by regulating angiotensin-converting enzyme productionVeterinary World 2021; 14(1): 176 doi: 10.14202/vetworld.2021.176-181
18
Rosemary Gan, Nicholas P. Rosoman, David J.E. Henshaw, Euan P. Noble, Peter Georgius, Nigel Sommerfeld. COVID-19 as a viral functional ACE2 deficiency disorder with ACE2 related multi-organ diseaseMedical Hypotheses 2020; 144: 110024 doi: 10.1016/j.mehy.2020.110024
19
Aruna Natarajan, Van Anthony M. Villar, Pedro A. Jose. Nephrology and Fluid/electrolyte Physiology2019; : 165 doi: 10.1016/B978-0-323-53367-6.00011-X
20
Chengqian Shi, Keda Lu, Hong Xia, Peipei Zhang, Bingbing Zhang. Alteration and association between serum ACE2/ angiotensin(1-7)/Mas axis and oxidative stress in chronic kidney diseaseMedicine 2020; 99(31): e21492 doi: 10.1097/MD.0000000000021492
21
Samsul Arefin, Leah Hernandez, Liam J. Ward, Angelina Schwarz, Peter Barany, Peter Stenvinkel, Karolina Kublickiene. Angiotensin‐converting enzyme 2 and transmembrane protease serine 2 in female and male patients with end‐stage kidney diseaseEuropean Journal of Clinical Investigation 2022; 52(8) doi: 10.1111/eci.13786
22
Yunyi Yao, David A. Lawrence. Susceptibility to COVID‐19 in populations with health disparities: Posited involvement of mitochondrial disorder, socioeconomic stress, and pollutantsJournal of Biochemical and Molecular Toxicology 2021; 35(1) doi: 10.1002/jbt.22626
23
Myriam Merarchi, Namrata Dudha, Bhudev C Das, Manoj Garg. Natural products and phytochemicals as potential anti‐SARS‐CoV‐2 drugsPhytotherapy Research 2021; 35(10): 5384 doi: 10.1002/ptr.7151
24
E. O. Nalesnik. Angiotensin-converting enzyme: a well-known stranger. Part II"Arterial’naya Gipertenziya" ("Arterial Hypertension") 2023; 29(6): 548 doi: 10.18705/1607-419X-2023-29-6-543-556
25
Moulay Abdelmonaim El Hidan, Mohamed Rhazi, Mohamed Merzouki, Mustapha Agnaou, Moulay Abdeljalil Ait Baamrane, Ahmed Draoui, Lahcen Tamegart, Karima Warda. Public Health and Economic Resiliency in the Post-COVID-19 EraAdvances in Human Services and Public Health 2022; : 38 doi: 10.4018/978-1-7998-8202-2.ch003
26
Hyun Hee Lee, Han Ro, Ji Yong Jung, Jae Hyun Chang, Wookyung Chung, Ae Jin Kim. The Fatty Liver Index’s Association with Incident Chronic Kidney Disease in Korean Middle-Aged Adults: A Community-Based Cohort StudyJournal of Clinical Medicine 2024; 13(6): 1616 doi: 10.3390/jcm13061616
27
Jaehwan You, Jong Hyeon Seok, Myungsoo Joo, Joon-Yong Bae, Jin Il Kim, Man-Seong Park, Kisoon Kim. Multifactorial Traits of SARS-CoV-2 Cell Entry Related to Diverse Host Proteases and ProteinsBiomolecules & Therapeutics 2021; 29(3): 249 doi: 10.4062/biomolther.2021.048
28
Boxiang Zhang, Shiwen Liu, Yeqing Sun, Dan Xu. Endosulfan induced kidney cell injury by modulating ACE2 through up-regulating miR-429 in HK-2 cellsToxicology 2023; 484: 153392 doi: 10.1016/j.tox.2022.153392
29
Vinicius Guzzoni, Andrea Sanches, Rafaela Costa, Lívia Bruni de Souza, Lília Taddeo Firoozmand, Isabel Cristina Mallosto Emerich de Abreu, Joyce Ferreira da Costa Guerra, Maria Lúcia Pedrosa, Dulce Elena Casarini, Fernanda Klein Marcondes, Tatiana Sousa Cunha. Stress-induced cardiometabolic perturbations, increased oxidative stress and ACE/ACE2 imbalance are improved by endurance training in ratsLife Sciences 2022; 305: 120758 doi: 10.1016/j.lfs.2022.120758
30
María-Jimena Muciño-Bermejo. Mechanisms of kidney dysfunction in the cirrhotic patient: Non-hepatorenal acute-on-chronic kidney damage considerationsAnnals of Hepatology 2020; 19(2): 145 doi: 10.1016/j.aohep.2019.06.022
31
Titilola D. Kalejaiye, Rohan Bhattacharya, Morgan A. Burt, Tatianna Travieso, Arinze E. Okafor, Xingrui Mou, Maria Blasi, Samira Musah. SARS-CoV-2 Employ BSG/CD147 and ACE2 Receptors to Directly Infect Human Induced Pluripotent Stem Cell-Derived Kidney PodocytesFrontiers in Cell and Developmental Biology 2022; 10 doi: 10.3389/fcell.2022.855340
32
E. A. Kogan, Yu. S. Berezovsky, D. D. Protsenko, T. R. Bagdasaryan, E. M. Gretsov, S. A. Demura, G. A. Demyashkin, D. V. Kalinin, A. D. Kukleva, E. V. Kurilina, T. P. Nekrasova, N. B. Paramonova, A. B. Ponomarev, S. G. Radenska-Lopovok, L. A. Semyonova, A. S. Tertychny. PATHOLOGICAL ANATOMY OF INFECTION CAUSED BY SARS-COV-2Russian Journal of Forensic Medicine 2020; 6(2): 8 doi: 10.19048/2411-8729-2020-6-2-8-30
33
Stacy M. Yanofsky, Courtney M. Dugas, Akemi Katsurada, Jiao Liu, Zubaida Saifudeen, Samir S. El-Dahr, Ryousuke Satou. Angiotensin II biphasically regulates cell differentiation in human iPSC-derived kidney organoidsAmerican Journal of Physiology-Renal Physiology 2021; 321(5): F559 doi: 10.1152/ajprenal.00134.2021
34
Xiaojuan Zhu, Zhixiang Mou, Wei Han, Lan Chen. All‐trans retinoic acid inhibits oxidative stress via ACE2/Ang (1–7)/MasR pathway in renal tubular epithelial cells stimulated with high glucoseDrug Development Research 2023; 84(5): 1008 doi: 10.1002/ddr.22070
35
Nayara Azinheira Nobrega Cruz, Lilian Caroline Gonçalves de Oliveira, Helio Tedesco Silva Junior, Jose Osmar Medina Pestana, Dulce Elena Casarini. Angiotensin-Converting Enzyme 2 in the Pathogenesis of Renal Abnormalities Observed in COVID-19 PatientsFrontiers in Physiology 2021; 12 doi: 10.3389/fphys.2021.700220
36
Zhao-Chun Chi. Research status and progress of metabolic associated fatty liver diseaseWorld Chinese Journal of Digestology 2022; 30(1): 1 doi: 10.11569/wcjd.v30.i1.1
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37
Vinicius Guzzoni, Andrea Sanches, Rafaela Costa, Lívia Bruni de Souza, Lília Taddeo Firoozmand, Isabel Cristina Mallostro Eme de Abreu, Joyce Ferreira da Costa Guerra, Maria Lúcia Pedrosa, Dulce Elena Casarini, Fernanda Klein Marcondes, Tatiana S. Cunha. Stress-Induced Cardiometabolic Perturbations, Increased Oxidative Stress and ACE/ACE2 Imbalance are Improved by High-Volume Endurance Training in RatsSSRN Electronic Journal 2022;  doi: 10.2139/ssrn.4121004
38
Jose Antonio Hernandez-Pacheco, Johnatan Torres-Torres, Raigam Jafet Martinez-Portilla, Juan Mario Solis-Paredes, Guadalupe Estrada-Gutierrez, Paloma Mateu-Rogell, Miguel Angel Nares-Torices, Mario Enmanuel Lopez-Marenco, Keren Rachel Escobedo-Segura, Alejandro Posadas-Nava, Jose Rafael Villafan-Bernal, Lourdes Rojas-Zepeda, Norma Patricia Becerra-Navarro, Manuel Casillas-Barrera, Mauricio Pichardo-Cuevas, Cinthya Muñoz-Manrique, Ivan Alonso Cortes-Ramirez, Salvador Espino-y-Sosa. sFlt-1 Is an Independent Predictor of Adverse Maternal Outcomes in Women With SARS-CoV-2 Infection and Hypertensive Disorders of PregnancyFrontiers in Medicine 2022; 9 doi: 10.3389/fmed.2022.894633
39
Hugo Humphries, Helen D. Brasch, Bede van Schaijik, Swee T. Tan, Tinte Itinteang. Expression of Components of the Renin-Angiotensin System by the Embryonic Stem Cell–Like Population within Keloid LesionsPlastic & Reconstructive Surgery 2019; 144(2): 372 doi: 10.1097/PRS.0000000000005867
40
Bineypreet Kaur, Jaspreet Kaur. Omics approaches and technologies in COVID-192023; : 145 doi: 10.1016/B978-0-323-91794-0.00015-9
41
Joshua R. Cook, John Ausiello. Functional ACE2 deficiency leading to angiotensin imbalance in the pathophysiology of COVID-19Reviews in Endocrine and Metabolic Disorders 2022; 23(2): 151 doi: 10.1007/s11154-021-09663-z
42
Ridwan Ridwan, Rosdiana Natzir, Haerani Rasyid, Ilhamjaya Patellongi, Mochammad Hatta, Elmiana Bongga Linggi, Agussalim Bukhari, Uleng Bahrun. Decreased Renal Function Induced by High-Fat Diet in Wistar Rat: The Role of Plasma Angiotensin Converting Enzyme 2 (ACE2)Biomedical & Pharmacology Journal 2019; 12(3): 1279 doi: 10.13005/bpj/1756
43
Qiyu He, Tsz N. Mok, Liang Yun, Chengbo He, Jieruo Li, Jinghua Pan. Single‐cell RNA sequencing analysis of human kidney reveals the presence of ACE2 receptor: A potential pathway of COVID‐19 infectionMolecular Genetics & Genomic Medicine 2020; 8(10) doi: 10.1002/mgg3.1442
44
Nuriye Ezgi BEKTUR AYKANAT. Covıd-19’a Histopatolojik Bir Bakış: Akciğer, Böbrek, Beyin, KaraciğerOSMANGAZİ JOURNAL OF MEDICINE 2020; 0 doi: 10.20515/otd.746050
45
Iwona Smarz-Widelska, Ewelina Grywalska, Izabela Morawska, Alicja Forma, Adam Michalski, Sebastian Mertowski, Rafał Hrynkiewicz, Paulina Niedźwiedzka-Rystwej, Izabela Korona-Glowniak, Miłosz Parczewski, Wojciech Załuska. Pathophysiology and Clinical Manifestations of COVID-19-Related Acute Kidney Injury—The Current State of Knowledge and Future PerspectivesInternational Journal of Molecular Sciences 2021; 22(13): 7082 doi: 10.3390/ijms22137082
46
Tino Emanuele Poloni, Matteo Moretti, Valentina Medici, Elvira Turturici, Giacomo Belli, Elena Cavriani, Silvia Damiana Visonà, Michele Rossi, Valentina Fantini, Riccardo Rocco Ferrari, Arenn Faye Carlos, Stella Gagliardi, Livio Tronconi, Antonio Guaita, Mauro Ceroni. COVID-19 Pathology in the Lung, Kidney, Heart and Brain: The Different Roles of T-Cells, Macrophages, and MicrothrombosisCells 2022; 11(19): 3124 doi: 10.3390/cells11193124
47
Efthalia Angelopoulou, Eleni Karlafti, Vasiliki E. Georgakopoulou, Petros Papalexis, Sokratis G. Papageorgiou, Thomas Tegos, Christos Savopoulos. Exploring the Role of ACE2 as a Connecting Link between COVID-19 and Parkinson’s DiseaseLife 2023; 13(2): 536 doi: 10.3390/life13020536
48
Abdolreza Haghpanah, Fatemeh Masjedi, Mehdi Salehipour, Alireza Hosseinpour, Jamshid Roozbeh, Anahita Dehghani. Is COVID-19 a risk factor for progression of benign prostatic hyperplasia and exacerbation of its related symptoms?: a systematic reviewProstate Cancer and Prostatic Diseases 2022; 25(1): 27 doi: 10.1038/s41391-021-00388-3
49
Md. Golzar Hossain, Sharmin Akter, Md Jamal Uddin. Emerging Role of Neuropilin-1 and Angiotensin-Converting Enzyme-2 in Renal Carcinoma-Associated COVID-19 PathogenesisInfectious Disease Reports 2021; 13(4): 902 doi: 10.3390/idr13040081
50
Farzaneh Karimi, Maryam Maleki, Mehdi Nematbakhsh, Meili Sun. View of the Renin-Angiotensin System in Acute Kidney Injury Induced by Renal Ischemia-Reperfusion InjuryJournal of the Renin-Angiotensin-Aldosterone System 2022; 2022 doi: 10.1155/2022/9800838
51
Ida Gagliardi, Gemma Patella, Ashour Michael, Raffaele Serra, Michele Provenzano, Michele Andreucci. COVID-19 and the Kidney: From Epidemiology to Clinical PracticeJournal of Clinical Medicine 2020; 9(8): 2506 doi: 10.3390/jcm9082506
52
Paul Gabarre, Guillaume Dumas, Thibault Dupont, Michael Darmon, Elie Azoulay, Lara Zafrani. Acute kidney injury in critically ill patients with COVID-19Intensive Care Medicine 2020; 46(7): 1339 doi: 10.1007/s00134-020-06153-9
53
Riya Thomas, Jamie Benken, Rachel M. Belcher, Mary E. Palmer, Enrico Benedetti, Scott T. Benken. Catecholamine Vasopressor Exposure Is Associated With Early Poor Allograft Function and Adverse Events in Living Donor Kidney Transplant RecipientsTransplantation Proceedings 2023; 55(7): 1543 doi: 10.1016/j.transproceed.2023.03.092
54
Kentaro Ushijima, Hitoshi Ando, Yusuke Arakawa, Kenichi Aizawa, Chisato Suzuki, Ken Shimada, Shu‐ichi Tsuruoka, Akio Fujimura. Prevention against renal damage in rats with subtotal nephrectomy by sacubitril/valsartan (LCZ696), a dual‐acting angiotensin receptor‐neprilysin inhibitorPharmacology Research & Perspectives 2017; 5(4) doi: 10.1002/prp2.336
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Kee Hwan Yoo, Hyung Eun Yim, Eun Soo Bae, Young Sook Hong. Capillary rarefaction and altered renal development: the imbalance between pro- and anti-angiogenic factors in response to angiotensin II inhibition in the developing rat kidneyJournal of Molecular Histology 2018; 49(2): 219 doi: 10.1007/s10735-018-9762-7
56
Rachel Bush, Felicia Johns, Ratna Acharya, Kiran Upadhyay. Mild COVID-19 in a pediatric renal transplant recipientAmerican Journal of Transplantation 2020; 20(10): 2942 doi: 10.1111/ajt.16003
57
Sarah Alabsi, Atharva Dhole, Sameh Hozayen, Scott A. Chapman. Angiotensin-Converting Enzyme 2 Expression and Severity of SARS-CoV-2 InfectionMicroorganisms 2023; 11(3): 612 doi: 10.3390/microorganisms11030612
58
Allison Shimmel, Salma Shaikhouni, Laura Mariani. Current Understanding of Clinical Manifestations of COVID-19 in Glomerular DiseaseGlomerular Diseases 2021; 1(4): 250 doi: 10.1159/000518276
59
Guang-Tong Chen, Min Yang, Bing-Bing Chen, Yan Song, Wei Zhang, Yan Zhang. 2,3,5,4′-Tetrahydroxystilbene-2-O-β-d-glucoside exerted protective effects on diabetic nephropathy in mice with hyperglycemia induced by streptozotocinFood & Function 2016; 7(11): 4628 doi: 10.1039/C6FO01319H
60
Evan A. Farkash, Allecia M. Wilson, Jeffrey M. Jentzen. Ultrastructural Evidence for Direct Renal Infection with SARS-CoV-2Journal of the American Society of Nephrology 2020; 31(8): 1683 doi: 10.1681/ASN.2020040432
61
Ling Wan, Justin Song, Virginia He, Jennifer Roman, Grace Whah, Suyuan Peng, Luxia Zhang, Yongqun He. Development of the International Classification of Diseases Ontology (ICDO) and its application for COVID-19 diagnostic data analysisBMC Bioinformatics 2021; 22(S6) doi: 10.1186/s12859-021-04402-2
62
Zhenyu Li, Xiaolin Xu, Meiling Yang, Jianping Feng, Cunming Liu, Chun Yang. Role of angiotensin-converting enzyme 2 in neurodegenerative diseases during the COVID-19 pandemicAging 2020; 12(23): 24453 doi: 10.18632/aging.103993
63
Satya Narayan Sahu, Biswajit Mishra, Rojalin Sahu, Subrat Kumar Pattanayak. Molecular dynamics simulation perception study of the binding affinity performance for main protease of SARS-CoV-2Journal of Biomolecular Structure and Dynamics 2022; 40(6): 2444 doi: 10.1080/07391102.2020.1850362
64
Yuanfang Chen, Liu Ouyang, Forrest S Bao, Qian Li, Lei Han, Hengdong Zhang, Baoli Zhu, Yaorong Ge, Patrick Robinson, Ming Xu, Jie Liu, Shi Chen. A Multimodality Machine Learning Approach to Differentiate Severe and Nonsevere COVID-19: Model Development and ValidationJournal of Medical Internet Research 2021; 23(4): e23948 doi: 10.2196/23948
65
Chung-Wei Yang, Li-Che Lu, Chia-Chu Chang, Ching-Chang Cho, Wen-Yeh Hsieh, Chin-Hung Tsai, Yi-Chang Lin, Chih-Sheng Lin. Imbalanced plasma ACE and ACE2 level in the uremic patients with cardiovascular diseases and its change during a single hemodialysis sessionRenal Failure 2017; 39(1): 719 doi: 10.1080/0886022X.2017.1398665
66
Katja Hönzke, Benedikt Obermayer, Christin Mache, Diana Fatykhova, Mirjana Kessler, Simon Dökel, Emanuel Wyler, Morris Baumgardt, Anna Löwa, Karen Hoffmann, Patrick Graff, Jessica Schulze, Maren Mieth, Katharina Hellwig, Zeynep Demir, Barbara Biere, Linda Brunotte, Angeles Mecate-Zambrano, Judith Bushe, Melanie Dohmen, Christian Hinze, Sefer Elezkurtaj, Mario Tönnies, Torsten T. Bauer, Stephan Eggeling, Hong-Linh Tran, Paul Schneider, Jens Neudecker, Jens C. Rückert, Kai M. Schmidt-Ott, Jonas Busch, Frederick Klauschen, David Horst, Helena Radbruch, Josefine Radke, Frank Heppner, Victor M. Corman, Daniela Niemeyer, Marcel A. Müller, Christine Goffinet, Ronja Mothes, Anna Pascual-Reguant, Anja Erika Hauser, Dieter Beule, Markus Landthaler, Stephan Ludwig, Norbert Suttorp, Martin Witzenrath, Achim D. Gruber, Christian Drosten, Leif-Erik Sander, Thorsten Wolff, Stefan Hippenstiel, Andreas C. Hocke. Human lungs show limited permissiveness for SARS-CoV-2 due to scarce ACE2 levels but virus-induced expansion of inflammatory macrophagesEuropean Respiratory Journal 2022; 60(6): 2102725 doi: 10.1183/13993003.02725-2021
67
Tianjiao Wang, Fang Xie, Yun-Hui Li, Bin Liang. Downregulation of ACE2 is associated with advanced pathological features and poor prognosis in clear cell renal cell carcinomaFuture Oncology 2021; 17(36): 5033 doi: 10.2217/fon-2020-1164
68
Hajaralsadat Hosseini-Dastgerdi, Fatemeh Kharazmi, Ali-Asghar Pourshanazari, Mehdi Nematbakhsh, David B. Kershaw. Renal Denervation Influences Angiotensin II Types 1 and 2 ReceptorsInternational Journal of Nephrology 2022; 2022: 1 doi: 10.1155/2022/8731357
69
Yan-Lei Gao, Yue Du, Chao Zhang, Cheng Cheng, Hai-Yan Yang, Yue-Fei Jin, Guang-Cai Duan, Shuai-Yin Chen. <p>Role of Renin-Angiotensin System in Acute Lung Injury Caused by Viral Infection</p>Infection and Drug Resistance 2020; : 3715 doi: 10.2147/IDR.S265718
70
Elisabeth Schieffer, Bernhard Schieffer, Xiaomu Li. The Race for ACE: Targeting Angiotensin-Converting Enzymes (ACE) in SARS-CoV-2 InfectionJournal of the Renin-Angiotensin-Aldosterone System 2022; 2022 doi: 10.1155/2022/2549063
71
Jacob Nysather, Eda Kaya, Paul Manka, Prakash Gudsoorkar, Wing-Kin Syn. Nonalcoholic Fatty Liver Disease and Chronic Kidney Disease Cross TalkAdvances in Kidney Disease and Health 2023; 30(4): 315 doi: 10.1053/j.akdh.2023.04.001
72
Mei Lin, Ping Gao, Tianya Zhao, Lei He, Mengshi Li, Yaoyao Li, Hua Shui, Xiaoyan Wu. Calcitriol regulates angiotensin-converting enzyme and angiotensin converting-enzyme 2 in diabetic kidney diseaseMolecular Biology Reports 2016; 43(5): 397 doi: 10.1007/s11033-016-3971-5
73
Rafael Luzes, Humberto Muzi-Filho, Amaury Pereira-Acácio, Thuany Crisóstomo, Adalberto Vieyra. Angiotensin-(3-4) modulates the overweight- and undernutrition-induced ACE2 downregulation in renal proximal tubule cells: implications for COVID-19?Exploration of Medicine 2021;  doi: 10.37349/emed.2021.00038
74
Stella Bernardi, Barbara Toffoli, Cristina Zennaro, Fleur Bossi, Pasquale Losurdo, Andrea Michelli, Renzo Carretta, Paolo Mulatero, Francesco Fallo, Franco Veglio, Bruno Fabris. Aldosterone effects on glomerular structure and functionJournal of the Renin-Angiotensin-Aldosterone System 2015; 16(4): 730 doi: 10.1177/1470320315595568
75
Meaad A. Almazmomi, Mohammed Alsieni. Targeting TLR-4 Signaling to Treat COVID-19-induced Acute Kidney InjuryJournal of Pharmacology and Pharmacotherapeutics 2022; 13(4): 316 doi: 10.1177/0976500X221147798
76
Xavier Sainsily, David Coquerel, Hugo Giguère, Lauralyne Dumont, Kien Tran, Christophe Noll, Andrei L. Ionescu, Jérôme Côté, Jean-Michel Longpré, André Carpentier, Éric Marsault, Olivier Lesur, Philippe Sarret, Mannix Auger-Messier. Elabela Protects Spontaneously Hypertensive Rats From Hypertension and Cardiorenal Dysfunctions Exacerbated by Dietary High-Salt IntakeFrontiers in Pharmacology 2021; 12 doi: 10.3389/fphar.2021.709467
77
Iris Louise N. Cabbab, Rafael Vincent M. Manalo. Anti-inflammatory drugs and the renin-angiotensin-aldosterone system: Current knowledge and potential effects on early SARS-CoV-2 infectionVirus Research 2021; 291: 198190 doi: 10.1016/j.virusres.2020.198190
78
Mihran Naljayan, Farshid Yazdi, Sarah Struthers, Moh’d Sharshir, Amanda Williamson, Eric E. Simon. COVID-19 in New Orleans: A Nephrology Clinical and Education Perspective and Lessons LearnedKidney Medicine 2021; 3(1): 99 doi: 10.1016/j.xkme.2020.09.012
79
Yohwan Lim, Myeong Hoon Lee, Su Kyoung Lee, Seogsong Jeong, Hyun Wook Han. Increased Estimated GFR Is Negatively Associated With the Risk of SARS-CoV-2 Infection and Severe COVID-19 Within Normal to Mildly Decreased Levels: Nested Case-Control StudyJournal of Korean Medical Science 2023; 38(49) doi: 10.3346/jkms.2023.38.e415
80
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