Sistema de Información Esencial en Terapéutica y Salud

@SIETES7

Última actualización: 25/3/2020
SIETES contiene 92954 citas

 
 
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1. Cita con resumen
Pasternak B, Ueda P, Eliasson B, Svensson A-M, Franzén S, Gudbjörnsdottir S, Hveern K, Jonasson C, Wintzell V, Melbye M, Svanström H. Use of sodium glucose cotransporter 2 inhibitors and risk of major cardiovascular events and heart failure: Scandinavian register based cohort study. BMJ 2019;366:29 de agosto. [Ref.ID 103243]
2. Cita con resumen
Dave CV, Schneeweiss S, Kim D, Fralick M, Tong A, Patorno E. Sodium–glucose cotransporter-2 inhibitors and the risk for severe urinary tract infections: a population-based cohort study. . Ann Intern Med 2019;171:248-56. [Ref.ID 103236]
3. Cita con resumen
Lee M, Sun J, Han M, Cho Y, Lee J-Y, Nam CM, Kang ES. Nationwide trends in pancreatitis and pancreatic cancer risk among patients with newly diagnosed type 2 diabetes receiving dipeptidyl peptidase 4 inhibitors. Diabetes Care 2019;422:noviembre. [Ref.ID 103217]
4.Enlace a cita original Cita con resumen
Anónimo. Towards better patient care: drugs to avoid in 2019. Prescrire Int 2019;39:abril. [Ref.ID 103075]
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Abrahami D, Douros A, Yin H, Hu OHY, Faillie J-L, Montastruc F, Platt RW, Bouganim N, Azoulay L. Incretin based drugs and risk of cholangiocarcinoma among patients with type 2 diabetes: population based cohort study. BMJ 2018;363:5 de diciembre. [Ref.ID 102894]
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Chang HY, Singh S, Mansour O, Baksh S, Alexander GC. Association between sodium-glucose cotransporter 2 inhibitors and lower extremity amputation among patients with type 2 diabetes. JAMA Intern Med 2018:13 de agosto. [Ref.ID 102824]
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Abrahami D, Douros A, Yin H, Yu OHY, Renoux C, Bitton A, Azoulay L. Dipeptidyl peptidase-4 inhibitors and incidence of inflammatory bowel disease among patients with type 2 diabetes: population based cohort study. BMJ 2018;360:21 de marzo. [Ref.ID 102562]
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Patorno E, Goldfine AB, Schneeweiss S, Everett BM, Glynn RJ, Liu J, Kim SC. Cardiovascular outcomes associated with canagliflozin versus other non-gliflozin antidiabetic drugs: population based cohort study. BMJ 2018;360:6 de febrero. [Ref.ID 102541]
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Gorricho J, Garjón J, Alonso A, Celaya MC, Saiz LC, Erviti J, López A. Use of oral antidiabetic agents and risk of community-acquired pneumonia: a nested case–control study. Br J Clin Pharmacol 2017;83:septiembre. [Ref.ID 102029]
12. Cita con resumen
Driessen JHM, de Vries F, van Onzenoort H, Harvey NC, Neef C, van den Bergh JPW, Vestergaard P, Henry RMA. The use of incretins and fractures – A meta-analysis on population-based real life data. Br J Clin Pharmacol 2017;83:923-6. [Ref.ID 101971]
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Liu J, Li L, Deng K, Xu C, Busse JW, Vandvik PO, Li S, Guyatt GH, Sun X. Incretin based treatments and mortality in patients with type 2 diabetes: systematic review and meta-analysis. BMJ 2017;357:j2499. [Ref.ID 101630]
14. Cita con resumen
Fralick M, Schneeweiss S, Patorno E. Risk of diabetic ketoacidosis after initiation of an SGLT2 inhibitor. N Engl J Med 2017;376:2300-2. [Ref.ID 101628]
15. Cita con resumen
Greenway T, Ross JS. US drug marketing: how does promotion correspond with health value?. BMJ 2017;357:j1855. [Ref.ID 101571]
16. Cita con resumen
Anónimo. Gliptines: pancréatites. Prescrire 2017;37:262. [Ref.ID 101534]
17. Cita con resumen
Flory J. Will cardiovascular outcomes data on newer diabetes drugs bury the older agents?. JAMA Intern Med 2017;177:301-2. [Ref.ID 101462]
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Ariz MJ, Elizondo G. Nuevos antidiabéticos. ¿Qué lugar deben ocupar en terapéutica?. Boletín de Información Farmacoterapéutica de Navarra 2016;24:1-8. [Ref.ID 101436]
19. Cita con resumen
Anónimo. Lixisenatide for type 2 diabetes. Med Lett Drugs Ther 2017;59:19-21. [Ref.ID 101420]
20. Cita con resumen
Anónimo. Drugs for type 2 diabetes. Med Lett Drugs Ther 2017;59:9-18. [Ref.ID 101372]
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