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May 2023
Shani Sultani MD, Nerel Cohen MD, Matan Fischer MD

Sulfonylureas have been used to treat patients with diabetes for the last 80 years. The main side effect of this drug class is hypoglycemia, which might be severe and protracted. With the emergence of new medications with improved safety and better efficacy in preventing diabetes complications and cardiovascular morbidity and mortality, the use of these agents is waning.

Sulfonylureas are historically classified into two generations. The generation first includes drugs such as tolbutamide and chlorpropamide, which are no longer used. The second generation includes glibenclamide and glimepiride, which have different pharmacokinetic properties and active metabolites.

In this case report, we present a patient with diabetes and end-stage renal disease (ESRD) who developed prolonged hypoglycemia following the unauthorized use of a food supplement containing the first-generation sulfonylurea - tolbutamide.

February 2020
Gal Aviel MD, Victoria Doviner MD, Rivka Pollak-Dresner MD, Avraham Rivkind MD and Shmuel Chen MD PhD
November 2019
Ram Mazkereth MD, Ayala Maayan-Metzger MD, Leah Leibovitch MD, Irit Schushan-Eisen MD, Iris Morag MD and Tzipora Straus MD M.Sc

Background: The need for postnatal monitoring of infants exposed to intrauterine beta blockers (BBs) has not been clearly defined.

Objectives: To evaluate infants exposed to intrauterine BBs in order to estimate the need for postnatal monitoring.

Methods: This retrospective case-control study comprised 153 term infants born to mothers who had been treated with BBs during pregnancy. Treatment indications included hypertension 76 mothers (49.7%), cardiac arrhythmias 48 (31.4%), rheumatic heart disease 14 (9.1%), cardiomyopathy 11 (7.2%) and migraine 4 (2.6%). The controls were infants of mothers with hypertension not exposed to BBs who were born at the same gestational age and born closest (before or after) to the matched infant in the study group.

Results: Compared to the control group, the infants in the study group had a higher prevalence of early asymptomatic hypoglycemia (study 30.7% vs. control 18.3%, P = 0.016), short symptomatic bradycardia events, other cardiac manifestations (P = 0.016), and longer hospitalization (P < 0.001). No life-threatening medical conditions were documented. The birth weight was significantly lower for the high-dose subgroup compared to the low-dose subgroup (P = 0.03), and the high-dose subgroup had a higher incidence of small-for-gestational-age (P = 0.02).

Conclusions: No alarming or life-threatening medical conditions were observed among term infants born to BB treated mothers. These infants can be safely observed for 48 hours after birth close to their mothers in the maternity ward. Glucose follow-up is needed, especially in the first hours of life.

 

January 2019
Itay Wiser MD PHD, Roni Averbuch Sagie MD, Liran Barzilai MD, Moti Haratz MD and Josef Haik MD MPH

Background: Burn injury pathophysiology is characterized by severe catabolic state and poor glycemic control. A tight glycemic control protocol using insulin for burn victims has yielded inconsistent mortality and morbidity outcomes.

Objectives: To compare the effect of standard and tight glycemic control protocols on mortality and hypoglycemia events in critical care burn patients.

Methods: We conducted a case-control study of burn victims admitted to the burn intensive care unit between 2005 and 2011. Patients were assigned to either a standard or a tight glycemic control protocol.

Results: Of the 38 burn patients in the study, 28 were under a tight glycemic control protocol. No differences in glucose area-under-the-curve per day levels were observed between the groups (148.3 ± 16 vs. 157.8 ± 16 mg/dl in the standard and tight glycemic control protocol groups respectively, P < 0.12). The hypoglycemic event rate was higher in the tight glycemic control protocol group (46.4% vs. 0%, P < 0.008). No difference in mortality rate was noted (67.9% vs. 50%, P < 0.31). Mortality-independent risk factors found on multivariate analysis included total body surface area (adjusted hazard ratio [AHR] 1.039, 95% confidence interval  [95%CI] 1.02–1.06, P < 0.001), white blood cell count on admission (AHR 1.048, 95%CI 1.01–1.09, P < 0.02) and surgery during hospitalization (AHR 0.348, 95%CI 0.13–0.09, P < 0.03).

Conclusions: The tight glycemic control protocol in burn patients was associated with higher rates of hypoglycemic events, and no association was found with improved survival in the acute setting of burn trauma care.

March 2007
R. Farah, A. Samokhvalov, F. Zviebel and N. Makhou

Background: Hyperglycemia is common among patients admitted to intensive care units, and carries the risk for complications and prolonged ICU[1] stay. With intensive insulin control of blood glucose, morbidity and mortality can be reduced.

Objectives: To determine whether intensive or conventional insulin control of blood glucose in hyperglycemic ICU patients correlated with the prognosis.

Methods: Following admission to the ICU, hyperglycemic patients were randomly assigned to a group treated intensively with insulin targeting glucose at 110–140 mg/dl, or to a conventional insulin therapy group, where glucose, upon exceeding 200 mg/dl, was controlled at 140–200 mg/dl. Rates of morbidity and mortality, hypoglycemic episodes, and insulin dosage were compared.

Results: In the 41 patients treated intensively with insulin the glucose level was 142 ± 14 mg/dl, as compared to 174 ± 20 mg/dl in the 48 patients on conventional insulin treatment. Both groups were similar in age, acute physiology and chronic health evaluation score. Morbidity was also similar, except for increased vascular damage in the conventional treatment group and slightly shorter ICU stay in the intensive therapy group. Both groups had similar in-ICU, in-hospital, and 28 day mortalities, and similar rates of hypoglycemic episodes. The daily dosage of insulin was significantly higher with the conventional treatment (P = 0.004).

Conclusions: Intensive insulin treatment did not affect the mortality or morbidity rates in ICU patients. The increased insulin dosage of conventional insulin treatment was attributable to the group's higher prevalence of diabetes. Future studies should address this bias and determine the optimal glucose target.  

 






[1] ICU = intensive care unit


March 2005
A.L. Alkalay, H.B. Sarnat, L. Flores-Sarnat and C.F. Simmons
Profound neonatal hypoglycemia is one of the leading causes of brain injury. Hypoglycemic encephalopathy is caused by lack of glucose availability to brain cells. Although sharing a similar pathogenesis with hypoxic-ischemic encephalopathy, hypoglycemic brain insult has distinctive metabolic, brain imaging, electroencephalographic, and histopathologic findings.

February 2005
M.S. Shapiro, Z. Abrams and N. Lieberman

Background: Repaglinide, a new insulin secretagogue, is purported to be as effective as sulphonylurea but is less hypoglycemic-prone.

Objectives: To assess the efficacy of repaglinide and its proclivity for hypoglycemia in a post-marketing study.

Methods: The study group comprised 688 patients, aged 26–95 years, clinically diagnosed with non-insulin-dependent type 2 diabetes. The patients were divided into three groups based on previous therapy: a) sulphonylurea-treated (group 1, n=132); b) metformin with or without sulphonylurea where sulphonylurea was replaced with repaglinide. (group 2, n=302); and c) lifestyle modification alone (drug-naïve) (group 3, n=254). At initiation of the study, all patients were transferred from their current treatment to repaglinide. Only patients in group 2, with combined sulphonylurea plus metformin, continued with metformin plus repaglinide. Fasting blood sugar, hemoglobin A1c and weight were measured at study entry and 4–8 weeks following repaglinide therapy. A questionnaire documented the number of meals daily and the presence of eating from fear of hypoglycemia.

Results: The fasting blood sugar level of the entire cohort dropped from 191 ± 2.4 to 155 ± 2.0 mg/dl (P < 0.0001); HbA1c from 8.8 ± 0.1 to 7.7 ± 0.1% (P < 0.0001). The drop of HbA1c in groups 1, 2 and 3 respectively were: 1.04 ± 0.22% (P < 0.0001), 1.14 ± 0.24% (P < 0.0001), and 1.51 ± 0.31% (P = 0.0137). Weight dropped from 81 ± 0.7 to 80.2 ± 0.7 kg (P < 0.0001), and eating from fear of hypoglycemia from 157 to 97 (P < 0.001). The daily number of meals decreased from 2.9 ± 0.4 to 2.4 ± 0.4 (P < 0.001). No serious adverse reactions occurred during the study.

Conclusions: Repaglinide is an effective oral hypoglycemic agent taken either as monotherapy or combination therapy. There is less eating to avoid hypoglycemia, fewer meals consumed, and weight loss.

 
 

M.S. Shapiro, Z. Abrams and N. Lieberman

Background: Repaglinide, a new insulin secretagogue, is purported to be as effective as sulphonylurea but is less hypoglycemic-prone.

Objectives: To assess the efficacy of repaglinide and its proclivity for hypoglycemia in a post-marketing study.

Methods: The study group comprised 688 patients, aged 26–95 years, clinically diagnosed with non-insulin-dependent type 2 diabetes. The patients were divided into three groups based on previous therapy: a) sulphonylurea-treated (group 1, n=132); b) metformin with or without sulphonylurea where sulphonylurea was replaced with repaglinide. (group 2, n=302); and c) lifestyle modification alone (drug-naïve) (group 3, n=254). At initiation of the study, all patients were transferred from their current treatment to repaglinide. Only patients in group 2, with combined sulphonylurea plus metformin, continued with metformin plus repaglinide. Fasting blood sugar, hemoglobin A1c and weight were measured at study entry and 4–8 weeks following repaglinide therapy. A questionnaire documented the number of meals daily and the presence of eating from fear of hypoglycemia.

Results: The fasting blood sugar level of the entire cohort dropped from 191 ± 2.4 to 155 ± 2.0 mg/dl (P < 0.0001); HbA1c from 8.8 ± 0.1 to 7.7 ± 0.1% (P < 0.0001). The drop of HbA1c in groups 1, 2 and 3 respectively were: 1.04 ± 0.22% (P < 0.0001), 1.14 ± 0.24% (P < 0.0001), and 1.51 ± 0.31% (P = 0.0137). Weight dropped from 81 ± 0.7 to 80.2 ± 0.7 kg (P < 0.0001), and eating from fear of hypoglycemia from 157 to 97 (P < 0.001). The daily number of meals decreased from 2.9 ± 0.4 to 2.4 ± 0.4 (P < 0.001). No serious adverse reactions occurred during the study.

Conclusions: Repaglinide is an effective oral hypoglycemic agent taken either as monotherapy or combination therapy. There is less eating to avoid hypoglycemia, fewer meals consumed, and weight loss.
 

September 2002
Alla Shnaider, MD, Anna Basok, MD, Boris Rogachev, MD and Marcus Mostoslavsky, MD
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