- Hussain A, Kaler J, Tabrez E, Tabrez S, Tabrez SSM. Novel COVID-19: A Comprehensive Review of Transmission, Manifestation, and Pathogenesis. Cureus. 2020;12(5):e8184.
- Adams KK, Baker WL, Sobieraj DM. Myth Busters: Dietary Supplements and COVID-19. Ann Pharmacother. 2020;54(8):820-6.
- Justyna Miłek KB-D. Coronaviruses in avian species – review with focus on epidemiology and diagnosis in wild birds. J Vet Res. 2018;62:249-55.
- Nazemi K, Ghalyanchi Langeroudi A, Hashemzadeh M, Karimi V, Seger W, Ehsan MR. Molecular characterization of recent Iranian infectious bronchitis virus isolates based on S2 protein gene. Iran J Vet Med. 2016;10(4):245-51.
- Zhou F, Yu T, Du R, Fan G, Liu Y, Liu Z, et al. Clinical course and risk factors for mortality of adult inpatients with COVID-19 in Wuhan, China: a retrospective cohort study. Lancet. 2020;395(10229):1054-62.
- Khalili H, Nourian A, Ahmadinejad Z, Emadi Kouchak H, Jafari S, Dehghan Manshadi SA, et al. Efficacy and safety of sofosbuvir/ ledipasvir in treatment of patients with COVID-19; A randomized clinical trial. Acta Biomed. 2020;91(4):e2020102.
- Vaduganathan M, Solomon SD. Renin-Angiotensin-Aldosterone System Inhibitors in Covid-19. Reply. N Engl J Med. 2020;382(24):e92.
- Burchfield JS. Renin-Angiotensin-Aldosterone System: Double-Edged Sword in COVID-19 infection. 2020.
- Busse LW, Chow JH, McCurdy MT, Khanna AK. COVID-19 and the RAAS-a potential role for angiotensin II? Crit Care. 2020;24(1):136.
- Alsufyani HA, Docherty JR. The renin angiotensin aldosterone system and COVID-19. Saudi Pharm J. 2020;28(8):977-84.
- Quinn KL, Fralick M, Zipursky JS, Stall NM. Renin-angiotensin-aldosterone system inhibitors and COVID-19. CMAJ. 2020;192(20):553-4.
- Marina Rieder LW, Luisa Pollmeier, Maren Jeserich, Isabella Goller, Niklas Baldus, Bonaventura Schmid, Hans-Joerg Busch, Maike Hofmann, Winfried Kern, Christoph Bode, Daniel Duerschmied, Achim Lother,. Serum ACE-2, angiotensin II, and aldosterone levels are unchanged in patients with COVID-19. Am J Hypertens. 2020;34(3):278-81.
- Fazelipour S, Kiaei M, Adhami Moghadam F, Tootian Z, Sheibani MT, Gharahjeh MR. Effects of methylphenidate on the mice adrenal glands and lymphoid organs: Results of histochemical, histometrical and histopathological investigations. Iran J Vet Med. 2017;11(4):335-44.
- Kotfis K, Lechowicz K, Drozdzal S, Niedzwiedzka-Rystwej P, Wojdacz TK, Grywalska E, et al. COVID-19-The Potential Beneficial Therapeutic Effects of Spironolactone during SARS-CoV-2 Infection. Pharmaceuticals (Basel). 2021;14(1).
- Pal R. COVID-19, hypothalamo-pituitary-adrenal axis and clinical implications. Endocrine. 2020;68(2):251-2.
- Lu S, Zhou Q, Huang L, Shi Q, Zhao S, Wang Z, et al. Effectiveness and safety of glucocorticoids to treat COVID-19: a rapid review and meta-analysis. Ann Transl Med. 2020;8(10):627.
- Yishan Zheng ZH, Guoping Yin, Xia Zhang, Wei Ye, Zhiliang Hu, Chunmei Hu,Hongxia Wei, Yi Zeng, Yun Chi, Cong Cheng, Feishen Lin, Hu Lu, Lingyan Xiao, Yan Song, Chunming Wang, Yongxiang Yi, Lei Dong. Comparative study of the lymphocyte change between COVID-19 and non-COVID-19 pneumonia cases suggesting uncontrolled inflammation might not be the main reason of tissue injury. medRxiv. 2020.
- Mehra P, Wolford LM. Serum nutrient deficiencies in the patient with complex temporomandibular joint problems. Proc (Bayl Univ Med Cent). 2008;21(3):243-7.
- Philip KEJ, Bennett B, Fuller S, Lonergan B, McFadyen C, Burns J, et al. Working accuracy of pulse oximetry in COVID-19 patients stepping down from intensive care: a clinical evaluation. BMJ Open Respir Res. 2020;7(1).
- Luks AM, Swenson ER. Pulse Oximetry for Monitoring Patients with COVID-19 at Home. Potential Pitfalls and Practical Guidance. Ann Am Thorac Soc. 2020;17(9):1040-6.
- Mansab F, Donnelly H, Kussner A, Neil J, Bhatti S, Goyal DK. Oxygen and mortality in COVID-19 pneumonia: a comparative analysis of supplemental oxygen policies and health outcomes across 26 countries. Front Public Health. 2021;13(9):580585
- Kaliyaperumal D, Rk K, Alagesan M, Ramalingam S. Characterization of cardiac autonomic function in COVID-19 using heart rate variability: a hospital based preliminary observational study. J Basic Clin Physiol Pharmacol. 2021.
- Al-Halhouli A, Al-Ghussain L, Khallouf O, Rabadi A, Alawadi J, Liu H, et al. Clinical Evaluation of Respiratory Rate Measurements on COPD (Male) Patients Using Wearable Inkjet-Printed Sensor. Sensors (Basel). 2021;21(2).
- Miller DJ, Capodilupo JV, Lastella M, Sargent C, Roach GD, Lee VH, et al. Analyzing changes in respiratory rate to predict the risk of COVID-19 infection. PLoS One. 2020;15(12):e0243693.
- Guarnotta V, Ferrigno R, Martino M, Barbot M, Isidori AM, Scaroni C, et al. Glucocorticoid excess and COVID-19 disease. Rev Endocr Metab Disord. 2020.
- Martine Claude Etoa Etoga AHI, Magellan Guewo-Fokeng, Mesmin Dehayem, Anne Ongmeb Boli, Jean Arnaud Ndi Manga, Charles Kouanfack, Liliane Kuate Mfeukeu, Pierre Joseph Fouda, Vicky Ama Moor, Eugène Sobngwi. Baseline Serum Total Cortisol During the Primary Corona Virus Infection in the Beginning of the Pandemic in Cameroon. 2020.
- Tricia Tan BK, Edouard G Mills, Maria Phylactou, Bijal Patel, Pei C Eng, Layla Thurston, Beatrice Muzi, Karim Meeran, A Toby Prevost, Alexander N Comninos, Ali Abbara, Waljit S Dhillo. Association between high serum total cortisol concentrations and mortality from COVID-19. Lancet Diabetes Endocrinol. 2020;8(8):659-60.
- Pasquale Campana VF, Francesco Aruta, Francesco Cacciatore, Pasquale Abete. Can aldosterone increase interleukin‐6 levels in Covid‐19 pneumonia? J Med Virol. 2021;93:622-3.
29. Henry BM, Benoit S, Lippi G, Benoit J. Letter to the Editor - Circulating plasma levels of angiotensin II and aldosterone in patients with coronavirus disease 2019 (COVID-19): A preliminary report. Prog Cardiovasc Dis. 2020;63(5):702-3.
|