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PubMed · 15887451

Hyperosmolar hyperglycemic state.

Abstract

Hyperosmolar hyperglycemic state is a life-threatening emergency manifested by marked elevation of blood glucose, hyperosmolarity, and little or no ketosis. With the dramatic increase in the prevalence of type 2 diabetes and the aging population, this condition may be encountered more frequently by family physicians in the future. Although the precipitating causes are numerous, underlying infections are the most common. Other causes include certain medications, non-compliance, undiagnosed diabetes, substance abuse, and coexisting disease. Physical findings of hyperosmolar hyperglycemic state include those associated with profound dehydration and various neurologic symptoms such as coma. The first step of treatment involves careful monitoring of the patient and laboratory values. Vigorous correction of dehydration with the use of normal saline is critical, requiring an average of 9 L in 48 hours. After urine output has been established, potassium replacement should begin. Once fluid replacement has been initiated, insulin should be given as an initial bolus of 0.15 U per kg intravenously, followed by a drip of 0.1 U per kg per hour until the blood glucose level falls to between 250 and 300 mg per dL. Identification and treatment of the underlying and precipitating causes are necessary. It is important to monitor the patient for complications such as vascular occlusions (e.g., mesenteric artery occlusion, myocardial infarction, low-flow syndrome, and disseminated intravascular coagulopathy) and rhabdomyolysis. Finally, physicians should focus on preventing future episodes using patient education and instruction in self-monitoring.

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BibTeXRIS

Gregg D Stoner. 2005-05-01. Hyperosmolar hyperglycemic state.. https://pubmed.ncbi.nlm.nih.gov/15887451/

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Collaborative services among community pharmacies for patients with diabetes.

BACKGROUND: Patients performing self-monitoring of blood glucose (SMBG) may benefit from community pharmacy services. However, wide-scale implementation of these services is limited. Many pharmacy characteristics (eg, physical layout of the pharmacy, knowledge and competence of the pharmacy team) are reported to be relevant when implementing these services. Still, the importance of local agreements on the division of roles with, for example, local general practitioners or diabetes nurses, is less clear. OBJECTIVE: To study the association between local collaboration and the level of services provided by community pharmacies to patients performing SMBG. METHODS: In 2004, we performed a cross-sectional survey among all 1692 Dutch community pharmacies. Data were gathered on provision of services for SMBG, local agreements, and pharmacy characteristics. Data were analyzed using logistic regression. Associations were adjusted for pharmacy characteristics. RESULTS: About 44% (724) of the community pharmacies returned the questionnaire. Pharmacies that were not involved in local collaborative services on patient counseling reported to provide fewer services compared with those that were involved in such agreements (OR 0.26, 95% CI 0.13 to 0.53). Similar findings were observed for agreements on calibration of SMBG equipment (0.17, 0.04 to 0.71). The associations remained after adjusting for pharmacy characteristics. CONCLUSIONS: Local collaboration on the division of roles in diabetes care between healthcare professionals is independently associated with the number of pharmacy services provided to patients performing SMBG.

Blood Glucose Self-Monitoring↗