Javascript must be enabled to continue!
Discovery of free glycated amines and glycated urea as potential markers of diabetic nephropathy
View through CrossRef
Abstract
The role of protein glycation in the pathogenesis of diabetes is well established. Akin to proteins, free amino acids and other small-molecule amines are also susceptible to glycation in hyperglycemic conditions and may have a role in the pathogenesis of the disease. However, the information on glycation of free amino acids and other small- molecule amines is relatively obscure. In the quest to discover small molecule glycated amines in the plasma, we have synthesized glycated amino acids, glycated creatine, and glycated urea, and by using a high-resolution accurate mass spectrometer, a mass spectral library was developed comprising the precursor and predominant fragment masses of glycated amines. Using this information, we report the discovery of glycation of free lysine, arginine, and leucine/isoleucine from the plasma of diabetic patients. This has great physiological significance as glycation of these amino acids may create their deficiency and affect vital physiological processes such as protein synthesis, cell signaling and insulin secretion. Also, these glycated amino acids could serve as potential markers of diabetes and its complications. On the other hand, accumulation of creatinine and urea in the plasma act as biomarkers of diabetic nephropathy diagnosis. For the first time, we report the detection of glycated urea in diabetes, which is confirmed by matching the precursor and fragment masses with the
in vitro
synthesized glycated urea by using
12
C6 and
13
C6-glucose. Further, we quantified glycated urea detected in two forms, monoglycated urea (MGU) and diglycated urea (DGU), by a targeted mass spectrometric approach in the plasma of healthy, diabetes, and diabetic nephropathy subjects. Both MGU and DGU showed a positive correlation with clinical parameters such as blood glucose and HbA1c. Given that urea gets converted to glycated urea in hyperglycemic conditions, it is crucial to quantify MGU and DGU along with the urea for the diagnosis of diabetic nephropathy.
Title: Discovery of free glycated amines and glycated urea as potential markers of diabetic nephropathy
Description:
Abstract
The role of protein glycation in the pathogenesis of diabetes is well established.
Akin to proteins, free amino acids and other small-molecule amines are also susceptible to glycation in hyperglycemic conditions and may have a role in the pathogenesis of the disease.
However, the information on glycation of free amino acids and other small- molecule amines is relatively obscure.
In the quest to discover small molecule glycated amines in the plasma, we have synthesized glycated amino acids, glycated creatine, and glycated urea, and by using a high-resolution accurate mass spectrometer, a mass spectral library was developed comprising the precursor and predominant fragment masses of glycated amines.
Using this information, we report the discovery of glycation of free lysine, arginine, and leucine/isoleucine from the plasma of diabetic patients.
This has great physiological significance as glycation of these amino acids may create their deficiency and affect vital physiological processes such as protein synthesis, cell signaling and insulin secretion.
Also, these glycated amino acids could serve as potential markers of diabetes and its complications.
On the other hand, accumulation of creatinine and urea in the plasma act as biomarkers of diabetic nephropathy diagnosis.
For the first time, we report the detection of glycated urea in diabetes, which is confirmed by matching the precursor and fragment masses with the
in vitro
synthesized glycated urea by using
12
C6 and
13
C6-glucose.
Further, we quantified glycated urea detected in two forms, monoglycated urea (MGU) and diglycated urea (DGU), by a targeted mass spectrometric approach in the plasma of healthy, diabetes, and diabetic nephropathy subjects.
Both MGU and DGU showed a positive correlation with clinical parameters such as blood glucose and HbA1c.
Given that urea gets converted to glycated urea in hyperglycemic conditions, it is crucial to quantify MGU and DGU along with the urea for the diagnosis of diabetic nephropathy.
Related Results
Transcription factor 7 like 2 gene polymorphism and advanced glycation end products as risk factors for diabetic nephropathy
Transcription factor 7 like 2 gene polymorphism and advanced glycation end products as risk factors for diabetic nephropathy
Diabetic nephropathy (DN) is the most serious and prevalent complication, being a major contributing factor to end-stage renal disease, that can lead to death in diabetic patients....
CD4 and CXCR5 in Patients with Diabetic Nephropathy
CD4 and CXCR5 in Patients with Diabetic Nephropathy
Background: Diabetes is a metabolic condition characterized by hyperglycemia caused by defects in insulin secretion, insulin activity, or both. Diabetic nephropathy (DN) is one of ...
Diabetic Nephropathy: Advancement in Molecular Mechanism, Pathogenesis, and Management by Pharmacotherapeutics and Natural Compounds
Diabetic Nephropathy: Advancement in Molecular Mechanism, Pathogenesis, and Management by Pharmacotherapeutics and Natural Compounds
The primary cause of End-stage Renal Disease (ESRD) and a possible chronic microvascular
consequence of diabetes mellitus is Diabetic Nephropathy (DN). The early stages of diabetic...
Applying Logistic Regression to Predict Diabetic Nephropathy Based on Some Clinical and Paraclinical Characteristics of Type 2 Diabetic Patients
Applying Logistic Regression to Predict Diabetic Nephropathy Based on Some Clinical and Paraclinical Characteristics of Type 2 Diabetic Patients
Today, the incidence of type 2 diabetes mellitus is increasing rapidly on global. This disease is shown with many complications that significantly affect public health. One of them...
The Number of Teeth Is Associated with Diabetic Nephropathy
The Number of Teeth Is Associated with Diabetic Nephropathy
Background: Progression of diabetic nephropathy has serious effects on the life expectancy of diabetic patients. Although diagnoses, lifestyle interventions, and treatment of diabe...
Renal biopsy in diabetic patients: Histopathological and clinical correlations
Renal biopsy in diabetic patients: Histopathological and clinical correlations
Introduction: Diabetes is the leading cause of chronic kidney disease and end-stage kidney disease worldwide. A kidney biopsy in a diabetic patient must be considered when non-diab...
MO623: Risk Factors of Diabetic Nephropathy Among Newly Detected Type 2 Diabetic Subjects: Preliminary Report from A Tertiary Care Hospital of Bangladesh
MO623: Risk Factors of Diabetic Nephropathy Among Newly Detected Type 2 Diabetic Subjects: Preliminary Report from A Tertiary Care Hospital of Bangladesh
Abstract
BACKGROUND AND AIMS
Patients with type 2 diabetes mellitus may present with different macro- and micro-vascular complic...
Standardized Oral Urea for the Treatment of Hyponatraemic Conditions: Pharmacological and Pharmacoeconomic Consideration
Standardized Oral Urea for the Treatment of Hyponatraemic Conditions: Pharmacological and Pharmacoeconomic Consideration
Hyponatremia (HN) is the most common disorder of electrolytes encountered in clinical setting [1]. HN is a frequent finding in hospitalized subjects with a reported frequency of 10...

