Hyperosmolar Hyperglycemic State

Hyperosmolar Hyperglycemic State (HHS) is a life-threatening metabolic complication of diabetes marked by extreme hyperglycemia, severe dehydration, and increased blood osmolality, usually with little or no ketoacidosis. It develops when relative insulin deficiency permits glucose to accumulate in the blood while remaining sufficient to limit substantial ketone production; excess glucose drives osmotic diuresis, causing profound water and electrolyte loss and impairing brain function. In biology and medicine, understanding HHS supports the interpretation of glucose regulation, fluid balance, and neurological changes in diabetes. Recognition of its mechanisms guides laboratory assessment, fluid and electrolyte replacement, insulin therapy, and prevention of organ damage.

Hyperosmolar Hyperglycemic State - Related Videos

Education

JoVE Core - Pathophysiology

Hyperosmolar Hyperglycemic State

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2026

Hyperosmolar Hyperglycemic State, or HHS, is a serious and life-threatening complication of type 2 diabetes mellitus. It is characterized by three main features: severe hyperglycemia, profound dehydration, and elevated serum osmolality, all occurring without significant ketoacidosis.HHS typically develops in older adults or individuals with limited access to fluids. This may result from illness, cognitive impairment, or medications such as diuretics or corticosteroids. These factors reduce...

Research

JoVE Journal - Medicine

Hyperglycemic Clamp and Hypoglycemic Clamp in Conscious Mice

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Cited by 4 •

2024

A hyperglycemic clamp is used for measuring insulin release with a maintained higher blood glucose concentration. A hypoglycemic clamp is for measuring glucose production induced by counter-regulatory responses. Both methods use the same surgical procedure. Here, we present a clamp technique to assess systemic glucose metabolism.

A Zebrafish Model of Diabetes Mellitus and Metabolic Memory

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Cited by 69 •

2013

Metabolic memory is the phenomenon by which diabetic complications persist and progress unimpeded even after euglycemia is achieved pharmaceutically. Here we describe a diabetes mellitus zebrafish model which is unique in that it allows for the examination of the mitotically transmissible epigenetic components of metabolic memory in vivo.

Acute and Chronic Models of Hyperglycemia in Zebrafish: A Method to Assess the Impact of Hyperglycemia on Neurogenesis and the Biodistribution of Radiolabeled Molecules

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Cited by 25 •

2017

This work describes methods to establish acute and chronic hyperglycemia models in zebrafish. The aim is to investigate the impact of hyperglycemia on physiological processes, such as constitutive and injury-induced neurogenesis. The work also highlights the use of zebrafish to follow radiolabeled molecules (here, [18F]-FDG) using PET/CT.

A Model of Chronic Nutrient Infusion in the Rat

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Cited by 1 •

2013

A protocol for chronic infusions of glucose and Intralipid in rats is described. This model can be used to study the impact of nutrient excess on organ function and physiological parameters.

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