Effects of Hypoglycemia on Cardiovascular Function in Patients with Diabetes
Abstract
:1. Introduction
2. Hormonal Responses to Hypoglycemia and Impaired Hypoglycemia Awareness in Diabetes
3. Pathophysiologic Mechanisms Linking Hypoglycemia to Increased Cardiovascular Risk
3.1. Haemodynamic Changes and Myocardial Ischemia
3.2. Abnormal Cardiac Repolarization and Cardiac Arrhythmias
3.3. Prothrombotic Effects
3.4. Proinflammatory Effects
3.5. Oxidative Stress
3.6. Alterations of Brain Glucose Metabolism
4. Data from Clinical Trials and Real-World Studies
4.1. Clinical Trials Exploring the Effects of Intensive Glucose-Lowering Therapy
4.2. Studies with Concomitant CGM and ECG Monitoring
4.3. ‘Dead in Bed’ Syndrome
4.4. Studies on Cerebral Ischemia and Stroke
4.5. Studies on Peripheral Artery Disease
4.6. Meta-Research Data
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
References
- ElSayed, N.A.; Aleppo, G.; Aroda, V.R.; Bannuru, R.R.; Brown, F.M.; Bruemmer, D.; Collins, B.S.; Hilliard, M.E.; Isaacs, D.; Johnson, E.L.; et al. 6. Glycemic Targets: Standards of Care in Diabetes-2023. Diabetes Care 2023, 46, S97–S110. [Google Scholar] [CrossRef] [PubMed]
- ElSayed, N.A.; Aleppo, G.; Aroda, V.R.; Bannuru, R.R.; Brown, F.M.; Bruemmer, D.; Collins, B.S.; Cusi, K.; Hilliard, M.E.; Isaacs, D.; et al. 4. Comprehensive Medical Evaluation and Assessment of Comorbidities: Standards of Care in Diabetes-2023. Diabetes Care 2023, 46, S49–S67. [Google Scholar] [CrossRef] [PubMed]
- Cryer, P.E. The Barrier of Hypoglycemia in Diabetes. Diabetes 2008, 57, 3169–3176. [Google Scholar] [CrossRef] [PubMed]
- UK Hypoglycaemia Study Group. Risk of Hypoglycaemia in Types 1 and 2 Diabetes: Effects of Treatment Modalities and Their Duration. Diabetologia 2007, 50, 1140–1147. [Google Scholar] [CrossRef] [PubMed]
- Frier, B.M. Hypoglycaemia in Diabetes Mellitus: Epidemiology and Clinical Implications. Nat. Rev. Endocrinol. 2014, 10, 711–722. [Google Scholar] [CrossRef] [PubMed]
- Henriksen, M.M.; Andersen, H.U.; Thorsteinsson, B.; Pedersen-Bjergaard, U. Asymptomatic Hypoglycaemia in Type 1 Diabetes: Incidence and Risk Factors. Diabet. Med. 2019, 36, 62–69. [Google Scholar] [CrossRef] [PubMed]
- Wild, D.; von Maltzahn, R.; Brohan, E.; Christensen, T.; Clauson, P.; Gonder-Frederick, L. A Critical Review of the Literature on Fear of Hypoglycemia in Diabetes: Implications for Diabetes Management and Patient Education. Patient Educ. Couns. 2007, 68, 10–15. [Google Scholar] [CrossRef] [PubMed]
- McCrimmon, R.J.; Frier, B.M.; Deary, I.J. Appraisal of Mood and Personality during Hypoglycaemia in Human Subjects. Physiol. Behav. 1999, 67, 27–33. [Google Scholar] [CrossRef]
- Evans Kreider, K.; Pereira, K.; Padilla, B.I. Practical Approaches to Diagnosing, Treating and Preventing Hypoglycemia in Diabetes. Diabetes Ther. 2017, 8, 1427–1435. [Google Scholar] [CrossRef]
- Tu, E.; Twigg, S.M.; Duflou, J.; Semsarian, C. Causes of Death in Young Australians with Type 1 Diabetes: A Review of Coronial Postmortem Examinations. Med. J. Aust. 2008, 188, 699–702. [Google Scholar] [CrossRef]
- Morrish, N.J.; Wang, S.L.; Stevens, L.K.; Fuller, J.H.; Keen, H. Mortality and Causes of Death in the WHO Multinational Study of Vascular Disease in Diabetes. Diabetologia 2001, 44 (Suppl. S2), S14–S21. [Google Scholar] [CrossRef] [PubMed]
- Rana, O.A.; Byrne, C.D.; Greaves, K. Intensive Glucose Control and Hypoglycaemia: A New Cardiovascular Risk Factor? Heart 2014, 100, 21–27. [Google Scholar] [CrossRef] [PubMed]
- Hanefeld, M.; Duetting, E.; Bramlage, P. Cardiac Implications of Hypoglycaemia in Patients with Diabetes—A Systematic Review. Cardiovasc. Diabetol. 2013, 12, 135. [Google Scholar] [CrossRef] [PubMed]
- Service, F.J. Hypoglycemic Disorders. N. Engl. J. Med. 1995, 332, 1144–1152. [Google Scholar] [CrossRef] [PubMed]
- Yang, S.-W.; Park, K.-H.; Zhou, Y.-J. The Impact of Hypoglycemia on the Cardiovascular System: Physiology and Pathophysiology. Angiology 2016, 67, 802–809. [Google Scholar] [CrossRef] [PubMed]
- Impaired Awareness of Hypoglycaemia. Available online: https://onlinelibrary.wiley.com/doi/10.1002/9781118695432.ch6 (accessed on 7 April 2023).
- Dagogo-Jack, S.; Philip, E.; Cryer, M.D. Seminal Contributions to the Understanding of Hypoglycemia and Glucose Counterregulation and the Discovery of HAAF (Cryer Syndrome). Diabetes Care 2015, 38, 2193–2199. [Google Scholar] [CrossRef]
- Dagogo-Jack, S.E.; Craft, S.; Cryer, P.E. Hypoglycemia-Associated Autonomic Failure in Insulin-Dependent Diabetes Mellitus. Recent Antecedent Hypoglycemia Reduces Autonomic Responses to, Symptoms of, and Defense against Subsequent Hypoglycemia. J. Clin. Investig. 1993, 91, 819–828. [Google Scholar] [CrossRef]
- Fisher, B.M.; Gillen, G.; Hepburn, D.A.; Dargie, H.J.; Frier, B.M. Cardiac Responses to Acute Insulin-Induced Hypoglycemia in Humans. Am. J. Physiol. 1990, 258, H1775–H1779. [Google Scholar] [CrossRef]
- Hilsted, J.; Bonde-Petersen, F.; Nørgaard, M.B.; Greniman, M.; Christensen, N.J.; Parving, H.H.; Suzuki, M. Haemodynamic Changes in Insulin-Induced Hypoglycaemia in Normal Man. Diabetologia 1984, 26, 328–332. [Google Scholar] [CrossRef]
- Sommerfield, A.J.; Wilkinson, I.B.; Webb, D.J.; Frier, B.M. Vessel Wall Stiffness in Type 1 Diabetes and the Central Hemodynamic Effects of Acute Hypoglycemia. Am. J. Physiol. Endocrinol. Metab. 2007, 293, E1274–E1279. [Google Scholar] [CrossRef]
- Wright, R.J.; Frier, B.M. Vascular Disease and Diabetes: Is Hypoglycaemia an Aggravating Factor? Diabetes. Metab. Res. Rev. 2008, 24, 353–363. [Google Scholar] [CrossRef] [PubMed]
- Reno, C.M.; Daphna-Iken, D.; Chen, Y.S.; VanderWeele, J.; Jethi, K.; Fisher, S.J. Severe Hypoglycemia-Induced Lethal Cardiac Arrhythmias Are Mediated by Sympathoadrenal Activation. Diabetes 2013, 62, 3570–3581. [Google Scholar] [CrossRef] [PubMed]
- Reno, C.M.; VanderWeele, J.; Bayles, J.; Litvin, M.; Skinner, A.; Jordan, A.; Daphna-Iken, D.; Fisher, S.J. Severe Hypoglycemia-Induced Fatal Cardiac Arrhythmias Are Augmented by Diabetes and Attenuated by Recurrent Hypoglycemia. Diabetes 2017, 66, 3091–3097. [Google Scholar] [CrossRef] [PubMed]
- Lindström, T.; Jorfeldt, L.; Tegler, L.; Arnqvist, H.J. Hypoglycaemia and Cardiac Arrhythmias in Patients with Type 2 Diabetes Mellitus. Diabet. Med. 1992, 9, 536–541. [Google Scholar] [CrossRef] [PubMed]
- Koivikko, M.L.; Karsikas, M.; Salmela, P.I.; Tapanainen, J.S.; Ruokonen, A.; Seppänen, T.; Huikuri, H.V.; Perkiömäki, J.S. Effects of Controlled Hypoglycaemia on Cardiac Repolarisation in Patients with Type 1 Diabetes. Diabetologia 2008, 51, 426–435. [Google Scholar] [CrossRef]
- Robinson, R.T.C.E.; Harris, N.D.; Ireland, R.H.; Lee, S.; Newman, C.; Heller, S.R. Mechanisms of Abnormal Cardiac Repolarization during Insulin-Induced Hypoglycemia. Diabetes 2003, 52, 1469–1474. [Google Scholar] [CrossRef] [PubMed]
- QT Interval Prolongation during Rapid Fall in Blood Glucose in Type I Diabetes. Available online: http://cinc.mit.edu/archives/2007/pdf/0345.pdf (accessed on 7 April 2023).
- Lipponen, J.A.; Kemppainen, J.; Karjalainen, P.A.; Laitinen, T.; Mikola, H.; Kärki, T.; Tarvainen, M.P. Dynamic Estimation of Cardiac Repolarization Characteristics during Hypoglycemia in Healthy and Diabetic Subjects. Physiol. Meas. 2011, 32, 649–660. [Google Scholar] [CrossRef] [PubMed]
- Al-Khatib, S.M.; LaPointe, N.M.A.; Kramer, J.M.; Califf, R.M. What Clinicians Should Know about the QT Interval. JAMA 2003, 289, 2120–2127. [Google Scholar] [CrossRef]
- Cox, A.J.; Azeem, A.; Yeboah, J.; Soliman, E.Z.; Aggarwal, S.R.; Bertoni, A.G.; Carr, J.J.; Freedman, B.I.; Herrington, D.M.; Bowden, D.W. Heart Rate-Corrected QT Interval Is an Independent Predictor of All-Cause and Cardiovascular Mortality in Individuals with Type 2 Diabetes: The Diabetes Heart Study. Diabetes Care 2014, 37, 1454–1461. [Google Scholar] [CrossRef]
- Rossing, P.; Breum, L.; Major-Pedersen, A.; Sato, A.; Winding, H.; Pietersen, A.; Kastrup, J.; Parving, H.H. Prolonged QTc Interval Predicts Mortality in Patients with Type 1 Diabetes Mellitus. Diabet. Med. 2001, 18, 199–205. [Google Scholar] [CrossRef]
- Soydan, N.; Bretzel, R.G.; Fischer, B.; Wagenlehner, F.; Pilatz, A.; Linn, T. Reduced Capacity of Heart Rate Regulation in Response to Mild Hypoglycemia Induced by Glibenclamide and Physical Exercise in Type 2 Diabetes. Metabolism 2013, 62, 717–724. [Google Scholar] [CrossRef] [PubMed]
- Frier, B.M.; Schernthaner, G.; Heller, S.R. Hypoglycemia and Cardiovascular Risks. Diabetes Care 2011, 34 (Suppl. S2), S132–S137. [Google Scholar] [CrossRef] [PubMed]
- Lee, S.P.; Yeoh, L.; Harris, N.D.; Davies, C.M.; Robinson, R.T.; Leathard, A.; Newman, C.; Macdonald, I.A.; Heller, S.R. Influence of Autonomic Neuropathy on QTc Interval Lengthening during Hypoglycemia in Type 1 Diabetes. Diabetes 2004, 53, 1535–1542. [Google Scholar] [CrossRef]
- Tu, E.; Bagnall, R.D.; Duflou, J.; Lynch, M.; Twigg, S.M.; Semsarian, C. Post-Mortem Pathologic and Genetic Studies in “Dead in Bed Syndrome” Cases in Type 1 Diabetes Mellitus. Hum. Pathol. 2010, 41, 392–400. [Google Scholar] [CrossRef] [PubMed]
- Jones, T.W.; Porter, P.; Sherwin, R.S.; Davis, E.A.; O’Leary, P.; Frazer, F.; Byrne, G.; Stick, S.; Tamborlane, W.V. Decreased Epinephrine Responses to Hypoglycemia during Sleep. N. Engl. J. Med. 1998, 338, 1657–1662. [Google Scholar] [CrossRef] [PubMed]
- Chow, E.; Bernjak, A.; Williams, S.; Fawdry, R.A.; Hibbert, S.; Freeman, J.; Sheridan, P.J.; Heller, S.R. Risk of Cardiac Arrhythmias during Hypoglycemia in Patients with Type 2 Diabetes and Cardiovascular Risk. Diabetes 2014, 63, 1738–1747. [Google Scholar] [CrossRef] [PubMed]
- Trovati, M.; Anfossi, G.; Cavalot, F.; Vitali, S.; Massucco, P.; Mularoni, E.; Schinco, P.; Tamponi, G.; Emanuelli, G. Studies on Mechanisms Involved in Hypoglycemia-Induced Platelet Activation. Diabetes 1986, 35, 818–825. [Google Scholar] [CrossRef] [PubMed]
- Gajos, G.; Konieczynska, M.; Zalewski, J.; Undas, A. Low Fasting Glucose Is Associated with Enhanced Thrombin Generation and Unfavorable Fibrin Clot Properties in Type 2 Diabetic Patients with High Cardiovascular Risk. Cardiovasc. Diabetol. 2015, 14, 44. [Google Scholar] [CrossRef] [PubMed]
- Fisher, B.M.; Quin, J.D.; Rumley, A.; Lennie, S.E.; Small, M.; MacCuish, A.C.; Lowe, G.D. Effects of Acute Insulin-Induced Hypoglycaemia on Haemostasis, Fibrinolysis and Haemorheology in Insulin-Dependent Diabetic Patients and Control Subjects. Clin. Sci. 1991, 80, 525–531. [Google Scholar] [CrossRef] [PubMed]
- Dalsgaard-Nielsen, J.; Madsbad, S.; Hilsted, J. Changes in Platelet Function, Blood Coagulation and Fibrinolysis during Insulin-Induced Hypoglycaemia in Juvenile Diabetics and Normal Subjects. Thromb. Haemost. 1982, 47, 254–258. [Google Scholar] [CrossRef]
- Chow, E.; Iqbal, A.; Walkinshaw, E.; Phoenix, F.; Macdonald, I.A.; Storey, R.F.; Ajjan, R.; Heller, S.R. Prolonged Prothrombotic Effects of Antecedent Hypoglycemia in Individuals With Type 2 Diabetes. Diabetes Care 2018, 41, 2625–2633. [Google Scholar] [CrossRef]
- Eyileten, C.; Wicik, Z.; Keshwani, D.; Aziz, F.; Aberer, F.; Pferschy, P.N.; Tripolt, N.J.; Sourij, C.; Prietl, B.; Prüller, F.; et al. Alteration of Circulating Platelet-Related and Diabetes-Related microRNAs in Individuals with Type 2 Diabetes Mellitus: A Stepwise Hypoglycaemic Clamp Study. Cardiovasc. Diabetol. 2022, 21, 79. [Google Scholar] [CrossRef]
- Razavi Nematollahi, L.; Kitabchi, A.E.; Stentz, F.B.; Wan, J.Y.; Larijani, B.A.; Tehrani, M.M.; Gozashti, M.H.; Omidfar, K.; Taheri, E. Proinflammatory Cytokines in Response to Insulin-Induced Hypoglycemic Stress in Healthy Subjects. Metabolism 2009, 58, 443–448. [Google Scholar] [CrossRef] [PubMed]
- Wright, R.J.; Newby, D.E.; Stirling, D.; Ludlam, C.A.; Macdonald, I.A.; Frier, B.M. Effects of Acute Insulin-Induced Hypoglycemia on Indices of Inflammation: Putative Mechanism for Aggravating Vascular Disease in Diabetes. Diabetes Care 2010, 33, 1591–1597. [Google Scholar] [CrossRef] [PubMed]
- Gogitidze Joy, N.; Hedrington, M.S.; Briscoe, V.J.; Tate, D.B.; Ertl, A.C.; Davis, S.N. Effects of Acute Hypoglycemia on Inflammatory and pro-Atherothrombotic Biomarkers in Individuals with Type 1 Diabetes and Healthy Individuals. Diabetes Care 2010, 33, 1529–1535. [Google Scholar] [CrossRef] [PubMed]
- Ratter, J.M.; Rooijackers, H.M.M.; Tack, C.J.; Hijmans, A.G.M.; Netea, M.G.; de Galan, B.E.; Stienstra, R. Proinflammatory Effects of Hypoglycemia in Humans With or Without Diabetes. Diabetes 2017, 66, 1052–1061. [Google Scholar] [CrossRef] [PubMed]
- Verhulst, C.E.M.; van Heck, J.I.P.; Fabricius, T.W.; Stienstra, R.; Teerenstra, S.; McCrimmon, R.J.; Tack, C.J.; Pedersen-Bjergaard, U.; de Galan, B.E. Sustained Proinflammatory Effects of Hypoglycemia in People with Type 2 Diabetes and in People without Diabetes. Diabetes 2022, 71, 2716–2727. [Google Scholar] [CrossRef]
- Ceriello, A.; Novials, A.; Ortega, E.; Pujadas, G.; La Sala, L.; Testa, R.; Bonfigli, A.R.; Genovese, S. Hyperglycemia Following Recovery from Hypoglycemia Worsens Endothelial Damage and Thrombosis Activation in Type 1 Diabetes and in Healthy Controls. Nutr. Metab. Cardiovasc. Dis. 2014, 24, 116–123. [Google Scholar] [CrossRef] [PubMed]
- Ceriello, A.; Novials, A.; Ortega, E.; La Sala, L.; Pujadas, G.; Testa, R.; Bonfigli, A.R.; Esposito, K.; Giugliano, D. Evidence That Hyperglycemia after Recovery from Hypoglycemia Worsens Endothelial Function and Increases Oxidative Stress and Inflammation in Healthy Control Subjects and Subjects with Type 1 Diabetes. Diabetes 2012, 61, 2993–2997. [Google Scholar] [CrossRef]
- Verma, S.; Anderson, T.J. Fundamentals of Endothelial Function for the Clinical Cardiologist. Circulation 2002, 105, 546–549. [Google Scholar] [CrossRef] [PubMed]
- Wright, R.J.; Macleod, K.M.; Perros, P.; Johnston, N.; Webb, D.J.; Frier, B.M. Plasma Endothelin Response to Acute Hypoglycaemia in Adults with Type 1 Diabetes. Diabet. Med. 2007, 24, 1039–1042. [Google Scholar] [CrossRef] [PubMed]
- Dagher, Z.; Ruderman, N.; Tornheim, K.; Ido, Y. Acute Regulation of Fatty Acid Oxidation and Amp-Activated Protein Kinase in Human Umbilical Vein Endothelial Cells. Circ. Res. 2001, 88, 1276–1282. [Google Scholar] [CrossRef] [PubMed]
- Cardoso, S.; Santos, R.X.; Correia, S.C.; Carvalho, C.; Santos, M.S.; Baldeiras, I.; Oliveira, C.R.; Moreira, P.I. Insulin-Induced Recurrent Hypoglycemia Exacerbates Diabetic Brain Mitochondrial Dysfunction and Oxidative Imbalance. Neurobiol. Dis. 2013, 49, 1–12. [Google Scholar] [CrossRef] [PubMed]
- Singh, P.; Jain, A.; Kaur, G. Impact of Hypoglycemia and Diabetes on CNS: Correlation of Mitochondrial Oxidative Stress with DNA Damage. Mol. Cell. Biochem. 2004, 260, 153–159. [Google Scholar] [CrossRef] [PubMed]
- Dewan, N.; Shukla, V.; Rehni, A.K.; Koronowski, K.B.; Klingbeil, K.D.; Stradecki-Cohan, H.; Garrett, T.J.; Rundek, T.; Perez-Pinzon, M.A.; Dave, K.R. Exposure to Recurrent Hypoglycemia Alters Hippocampal Metabolism in Treated Streptozotocin-Induced Diabetic Rats. CNS Neurosci. Ther. 2020, 26, 126–135. [Google Scholar] [CrossRef] [PubMed]
- Shukla, V.; Fuchs, P.; Liu, A.; Cohan, C.H.; Dong, C.; Wright, C.B.; Perez-Pinzon, M.A.; Dave, K.R. Recurrent Hypoglycemia Exacerbates Cerebral Ischemic Damage in Diabetic Rats via Enhanced Post-Ischemic Mitochondrial Dysfunction. Transl. Stroke Res. 2019, 10, 78–90. [Google Scholar] [CrossRef]
- Rooijackers, H.M.M.; Wiegers, E.C.; Tack, C.J.; van der Graaf, M.; de Galan, B.E. Brain Glucose Metabolism during Hypoglycemia in Type 1 Diabetes: Insights from Functional and Metabolic Neuroimaging Studies. Cell. Mol. Life Sci. 2016, 73, 705–722. [Google Scholar] [CrossRef]
- Davignon, J.; Ganz, P. Role of Endothelial Dysfunction in Atherosclerosis. Circulation 2004, 109, III27–III32. [Google Scholar] [CrossRef] [PubMed]
- Antoniou, S.; Naka, K.K.; Papadakis, M.; Bechlioulis, A.; Tsatsoulis, A.; Michalis, L.K.; Tigas, S. Effect of Glycemic Control on Markers of Subclinical Atherosclerosis in Patients with Type 2 Diabetes Mellitus: A Review. World J. Diabetes 2021, 12, 1856–1874. [Google Scholar] [CrossRef]
- Adler, G.K.; Bonyhay, I.; Curren, V.; Waring, E.; Freeman, R. Hypoglycaemia Increases Aldosterone in a Dose-Dependent Fashion. Diabet. Med. 2010, 27, 1250–1255. [Google Scholar] [CrossRef]
- Giménez, M.; Gilabert, R.; Monteagudo, J.; Alonso, A.; Casamitjana, R.; Paré, C.; Conget, I. Repeated Episodes of Hypoglycemia as a Potential Aggravating Factor for Preclinical Atherosclerosis in Subjects with Type 1 Diabetes. Diabetes Care 2011, 34, 198–203. [Google Scholar] [CrossRef] [PubMed]
- Diabetes Control and Complications Trial Research Group; Nathan, D.M.; Genuth, S.; Lachin, J.; Cleary, P.; Crofford, O.; Davis, M.; Rand, L.; Siebert, C. The Effect of Intensive Treatment of Diabetes on the Development and Progression of Long-Term Complications in Insulin-Dependent Diabetes Mellitus. N. Engl. J. Med. 1993, 329, 977–986. [Google Scholar] [PubMed]
- Nathan, D.M.; Cleary, P.A.; Backlund, J.-Y.C.; Genuth, S.M.; Lachin, J.M.; Orchard, T.J.; Raskin, P.; Zinman, B. Diabetes Control and Complications Trial/Epidemiology of Diabetes Interventions and Complications (DCCT/EDIC) Study Research Group Intensive Diabetes Treatment and Cardiovascular Disease in Patients with Type 1 Diabetes. N. Engl. J. Med. 2005, 353, 2643–2653. [Google Scholar] [PubMed]
- UK Prospective Diabetes Study (UKPDS) Group. Intensive Blood-Glucose Control with Sulphonylureas or Insulin Compared with Conventional Treatment and Risk of Complications in Patients with Type 2 Diabetes (UKPDS 33). Lancet 1998, 352, 837–853. [Google Scholar] [CrossRef]
- Holman, R.R.; Paul, S.K.; Bethel, M.A.; Matthews, D.R.; Neil, H.A.W. 10-Year Follow-up of Intensive Glucose Control in Type 2 Diabetes. N. Engl. J. Med. 2008, 359, 1577–1589. [Google Scholar] [CrossRef] [PubMed]
- Action to Control Cardiovascular Risk in Diabetes Study Group; Gerstein, H.C.; Miller, M.E.; Byington, R.P.; Goff, D.C., Jr.; Bigger, J.T.; Buse, J.B.; Cushman, W.C.; Genuth, S.; Ismail-Beigi, F.; et al. Effects of Intensive Glucose Lowering in Type 2 Diabetes. N. Engl. J. Med. 2008, 358, 2545–2559. [Google Scholar] [PubMed]
- Bonds, D.E.; Miller, M.E.; Bergenstal, R.M.; Buse, J.B.; Byington, R.P.; Cutler, J.A.; Dudl, R.J.; Ismail-Beigi, F.; Kimel, A.R.; Hoogwerf, B.; et al. The Association between Symptomatic, Severe Hypoglycaemia and Mortality in Type 2 Diabetes: Retrospective Epidemiological Analysis of the ACCORD Study. BMJ 2010, 340, b4909. [Google Scholar] [CrossRef] [PubMed]
- Riddle, M.C.; Ambrosius, W.T.; Brillon, D.J.; Buse, J.B.; Byington, R.P.; Cohen, R.M.; Goff, D.C., Jr.; Malozowski, S.; Margolis, K.L.; Probstfield, J.L.; et al. Epidemiologic Relationships between A1C and All-Cause Mortality during a Median 3.4-Year Follow-up of Glycemic Treatment in the ACCORD Trial. Diabetes Care 2010, 33, 983–990. [Google Scholar] [CrossRef]
- ADVANCE Collaborative Group; Patel, A.; MacMahon, S.; Chalmers, J.; Neal, B.; Billot, L.; Woodward, M.; Marre, M.; Cooper, M.; Glasziou, P.; et al. Intensive Blood Glucose Control and Vascular Outcomes in Patients with Type 2 Diabetes. N. Engl. J. Med. 2008, 358, 2560–2572. [Google Scholar]
- Zoungas, S.; Chalmers, J.; Neal, B.; Billot, L.; Li, Q.; Hirakawa, Y.; Arima, H.; Monaghan, H.; Joshi, R.; Colagiuri, S.; et al. Follow-up of Blood-Pressure Lowering and Glucose Control in Type 2 Diabetes. N. Engl. J. Med. 2014, 371, 1392–1406. [Google Scholar] [CrossRef]
- Duckworth, W.; Abraira, C.; Moritz, T.; Reda, D.; Emanuele, N.; Reaven, P.D.; Zieve, F.J.; Marks, J.; Davis, S.N.; Hayward, R.; et al. Glucose Control and Vascular Complications in Veterans with Type 2 Diabetes. N. Engl. J. Med. 2009, 360, 129–139. [Google Scholar] [CrossRef] [PubMed]
- ORIGIN Trial Investigators; Gerstein, H.C.; Bosch, J.; Dagenais, G.R.; Díaz, R.; Jung, H.; Maggioni, A.P.; Pogue, J.; Probstfield, J.; Ramachandran, A.; et al. Basal Insulin and Cardiovascular and Other Outcomes in Dysglycemia. N. Engl. J. Med. 2012, 367, 319–328. [Google Scholar] [PubMed]
- Novodvorsky, P.; Bernjak, A.; Chow, E.; Iqbal, A.; Sellors, L.; Williams, S.; Fawdry, R.A.; Parekh, B.; Jacques, R.M.; Marques, J.L.B.; et al. Diurnal Differences in Risk of Cardiac Arrhythmias during Spontaneous Hypoglycemia in Young People with Type 1 Diabetes. Diabetes Care 2017, 40, 655–662. [Google Scholar] [CrossRef] [PubMed]
- Stahn, A.; Pistrosch, F.; Ganz, X.; Teige, M.; Koehler, C.; Bornstein, S.; Hanefeld, M. Relationship between Hypoglycemic Episodes and Ventricular Arrhythmias in Patients with Type 2 Diabetes and Cardiovascular Diseases: Silent Hypoglycemias and Silent Arrhythmias. Diabetes Care 2014, 37, 516–520. [Google Scholar] [CrossRef] [PubMed]
- Desouza, C.; Salazar, H.; Cheong, B.; Murgo, J.; Fonseca, V. Association of Hypoglycemia and Cardiac Ischemia: A Study Based on Continuous Monitoring. Diabetes Care 2003, 26, 1485–1489. [Google Scholar] [CrossRef] [PubMed]
- Tattersall, R.B.; Gill, G.V. Unexplained Deaths of Type 1 Diabetic Patients. Diabet. Med. 1991, 8, 49–58. [Google Scholar] [CrossRef]
- Secrest, A.M.; Becker, D.J.; Kelsey, S.F.; Laporte, R.E.; Orchard, T.J. Characterizing Sudden Death and Dead-in-Bed Syndrome in Type 1 Diabetes: Analysis from Two Childhood-Onset Type 1 Diabetes Registries. Diabet. Med. 2011, 28, 293–300. [Google Scholar] [CrossRef]
- Shirayama, H.; Ohshiro, Y.; Kinjo, Y.; Taira, S.; Teruya, I.; Nakachi, K.; Tawata, M.; Takasu, N. Acute Brain Injury in Hypoglycaemia-Induced Hemiplegia. Diabet. Med. 2004, 21, 623–624. [Google Scholar] [CrossRef]
- Böttcher, J.; Kunze, A.; Kurrat, C.; Schmidt, P.; Hagemann, G.; Witte, O.W.; Kaiser, W.A. Localized Reversible Reduction of Apparent Diffusion Coefficient in Transient Hypoglycemia-Induced Hemiparesis. Stroke 2005, 36, e20–e22. [Google Scholar] [CrossRef]
- ORIGIN Trial Investigators; Mellbin, L.G.; Rydén, L.; Riddle, M.C.; Probstfield, J.; Rosenstock, J.; Díaz, R.; Yusuf, S.; Gerstein, H.C. Does Hypoglycaemia Increase the Risk of Cardiovascular Events? A Report from the ORIGIN Trial. Eur. Heart J. 2013, 34, 3137–3144. [Google Scholar] [PubMed]
- Rosso, C.; Corvol, J.-C.; Pires, C.; Crozier, S.; Attal, Y.; Jacqueminet, S.; Deltour, S.; Multlu, G.; Leger, A.; Meresse, I.; et al. Intensive versus Subcutaneous Insulin in Patients with Hyperacute Stroke: Results from the Randomized INSULINFARCT Trial. Stroke 2012, 43, 2343–2349. [Google Scholar] [CrossRef] [PubMed]
- McCormick, M.; Hadley, D.; McLean, J.R.; Macfarlane, J.A.; Condon, B.; Muir, K.W. Randomized, Controlled Trial of Insulin for Acute Poststroke Hyperglycemia. Ann. Neurol. 2010, 67, 570–578. [Google Scholar] [PubMed]
- Naidech, A.M.; Levasseur, K.; Liebling, S.; Garg, R.K.; Shapiro, M.; Ault, M.L.; Afifi, S.; Batjer, H.H. Moderate Hypoglycemia Is Associated with Vasospasm, Cerebral Infarction, and 3-Month Disability after Subarachnoid Hemorrhage. Neurocrit. Care 2010, 12, 181–187. [Google Scholar] [CrossRef]
- Lee, A.K.; Warren, B.; Lee, C.J.; McEvoy, J.W.; Matsushita, K.; Huang, E.S.; Sharrett, A.R.; Coresh, J.; Selvin, E. The Association of Severe Hypoglycemia With Incident Cardiovascular Events and Mortality in Adults With Type 2 Diabetes. Diabetes Care 2018, 41, 104–111. [Google Scholar] [CrossRef] [PubMed]
- Li, Y.; Mu, Y.; Ji, Q.; Huang, Q.; Kuang, H.; Ji, L.; Yang, X. Hypoglycaemia, Abnormal Lipids, and Cardiovascular Disease among Chinese with Type 2 Diabetes. Biomed Res. Int. 2015, 2015, 862896. [Google Scholar] [CrossRef] [PubMed]
- Tschöpe, D.; Bramlage, P.; Binz, C.; Krekler, M.; Deeg, E.; Gitt, A.K. Incidence and Predictors of Hypoglycaemia in Type 2 Diabetes—An Analysis of the Prospective DiaRegis Registry. BMC Endocr. Disord. 2012, 12, 23. [Google Scholar] [CrossRef] [PubMed]
- Peled, S.; Pollack, R.; Elishoov, O.; Haze, A.; Cahn, A. Association of Inpatient Glucose Measurements With Amputations in Patients Hospitalized With Acute Diabetic Foot. J. Clin. Endocrinol. Metab. 2019, 104, 5445–5452. [Google Scholar] [CrossRef]
- Mattishent, K.; Loke, Y.K. Meta-Analysis: Association between Hypoglycaemia and Serious Adverse Events in Older Patients. J. Diabetes Complicat. 2016, 30, 811–818. [Google Scholar] [CrossRef] [PubMed]
- Goto, A.; Goto, M.; Terauchi, Y.; Yamaguchi, N.; Noda, M. Association Between Severe Hypoglycemia and Cardiovascular Disease Risk in Japanese Patients With Type 2 Diabetes. J. Am. Heart Assoc. 2016, 5, e002875. [Google Scholar] [CrossRef]
- Fitzpatrick, C.; Chatterjee, S.; Seidu, S.; Bodicoat, D.H.; Ng, G.A.; Davies, M.J.; Khunti, K. Association of Hypoglycaemia and Risk of Cardiac Arrhythmia in Patients with Diabetes Mellitus: A Systematic Review and Meta-Analysis. Diabetes Obes. Metab. 2018, 20, 2169–2178. [Google Scholar] [CrossRef] [PubMed]
- Control Group; Turnbull, F.M.; Abraira, C.; Anderson, R.J.; Byington, R.P.; Chalmers, J.P.; Duckworth, W.C.; Evans, G.W.; Gerstein, H.C.; Holman, R.R.; et al. Intensive Glucose Control and Macrovascular Outcomes in Type 2 Diabetes. Diabetologia 2009, 52, 2288–2298. [Google Scholar] [CrossRef] [PubMed]
Blood Glucose Thresholds * | Hormone Responses |
---|---|
<80–85 mg/dL | ↓ Insulin |
<65–70 mg/dL | ↑ Glucagon |
<65–70 mg/dL | ↑ Epinephrine |
<65–70 mg/dL | ↑ Cortisol and growth hormone |
Symptoms and signs (usually when glucose < 50–58 mg/dL) | |
Autonomic: | |
Adrenergic: tremors, palpitations/tachycardia, pallor, anxiety, and arousal. | |
Cholinergic: sweating, hunger, salivation, nausea, and paraesthesias. | |
Neuroglycopenic: | |
Weakness, fatigue, confusion, behavioral changes, emotional lability, slurred speech, blurred vision, headache, dizziness, seizures, incoordination, focal neurological deficits (diplopia, hemiparesis), and loss of consciousness. If hypoglycemia is severe and prolonged, brain damage and even death may occur. |
Study | Patients | CV Outcomes with Intensive Therapy | Hypoglycemia Risk with Intensive Therapy |
---|---|---|---|
DCCT/EDIC [64,65] | T1D adolescents and adults | ↓ CVD only evident in the follow-up trial after >12-yr. | ↑ severe hypoglycemia |
UKPDS [66,67] | Newly diagnosed T2D adults | ↓ CVD only evident in the follow-up trial after >10-yr. | ↑ severe hypoglycemia |
ACCORD [68] | T2D adults with CVD or CV risk factors | Early interrupted due to ↑ overall and CV mortality | ↑ severe hypoglycemia |
ADVANCE [71] | T2D adults with vascular complications or CV risk factors | No CV benefit | ↑ severe hypoglycemia |
VADT [73] | T2D adults poorly controlled | No CV benefit | ↑ hypoglycemia |
ORIGIN [74] | Adults with CV risk factors plus prediabetes or T2D | No CV benefit | ↑ severe hypoglycemia |
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Christou, M.A.; Christou, P.A.; Kyriakopoulos, C.; Christou, G.A.; Tigas, S. Effects of Hypoglycemia on Cardiovascular Function in Patients with Diabetes. Int. J. Mol. Sci. 2023, 24, 9357. https://doi.org/10.3390/ijms24119357
Christou MA, Christou PA, Kyriakopoulos C, Christou GA, Tigas S. Effects of Hypoglycemia on Cardiovascular Function in Patients with Diabetes. International Journal of Molecular Sciences. 2023; 24(11):9357. https://doi.org/10.3390/ijms24119357
Chicago/Turabian StyleChristou, Maria A., Panagiota A. Christou, Christos Kyriakopoulos, Georgios A. Christou, and Stelios Tigas. 2023. "Effects of Hypoglycemia on Cardiovascular Function in Patients with Diabetes" International Journal of Molecular Sciences 24, no. 11: 9357. https://doi.org/10.3390/ijms24119357
APA StyleChristou, M. A., Christou, P. A., Kyriakopoulos, C., Christou, G. A., & Tigas, S. (2023). Effects of Hypoglycemia on Cardiovascular Function in Patients with Diabetes. International Journal of Molecular Sciences, 24(11), 9357. https://doi.org/10.3390/ijms24119357