Related Experiment Videos
Tetracyclines inhibit protein glycation in experimental diabetes
M E Ryan1, N S Ramamurthy, L M Golub
1Department of Oral Biology and Pathology, School of Dental Medicine, State University of New York at Stony Brook 11794-8702, USA.
Abstract:
Glycation of proteins, which is accelerated in the diabetic state, has been implicated in many of the long-term complications of diabetes. This process can be inhibited by members of the tetracycline family of compounds. This novel finding is supported by studies conducted on drug (streptozotocin)induced Type I and genetic (ZDF/Gmi-fa/fa) Type II diabetic rats. These animals were orally gavaged daily with 5 mg of doxycycline and a variety of non-antimicrobial chemically modified tetracycline derivatives for time periods of 3 weeks to 11 months, while control untreated diabetic and nondiabetic animals were gavaged with vehicle alone (2% CMC). Blood and tissue samples were collected and analyzed for glucose and glycated proteins. None of the treatments had any effect on the severity of hyperglycemia or the intracellular glycation of hemoglobin of either Type I or II diabetic animals. However, the tetracycline analogues did affect the extracellular glycation of several proteins such as those found in the serum as well as skin collagen. In the Type II (ZDF) animals, initial mortality (3-5 months) was seen only in the doxycycline-treated animals, associated with infection by tetracycline-resistant micro-organisms, which was eventually surpassed by mortality rates in the untreated diabetics (6-9 months). CMT treatment not only decreased mortality but also increased longevity in the Type II diabetic animals, most likely by preventing the development of a number of long-term complications of uncontrolled diabetes, including glycation of proteins, that eventually lead to the demise of untreated diabetic animals.
Insights
Chemically modified tetracycline derivatives inhibit protein glycation, a key factor in diabetes complications. These compounds extended lifespan in Type II diabetic rats by reducing long-term diabetic damage.
Area of Science:
- Biochemistry
- Pharmacology
- Endocrinology
Background:
- Protein glycation is accelerated in diabetes and linked to long-term complications.
- Tetracycline compounds show potential for inhibiting this glycation process.
Purpose of the Study:
- To investigate the efficacy of tetracycline analogues in inhibiting protein glycation in diabetic animal models.
- To assess the impact of these compounds on hyperglycemia, glycation, mortality, and longevity in diabetes.
Main Methods:
- Drug-induced (streptozotocin) Type I and genetic (ZDF/Gmi-fa/fa) Type II diabetic rats were used.
- Animals received daily oral doses of doxycycline or chemically modified tetracycline (CMT) derivatives.
- Blood and tissue samples were analyzed for glucose and glycated proteins; mortality and longevity were monitored.
Main Results:
- Tetracycline treatments did not affect blood glucose levels or hemoglobin glycation.
- Extracellular protein glycation in serum and skin collagen was reduced by tetracycline analogues.
- CMT treatment decreased mortality and increased longevity in Type II diabetic rats, likely by preventing diabetic complications.
Conclusions:
- Chemically modified tetracyclines can inhibit extracellular protein glycation in diabetes.
- These compounds may offer therapeutic benefits by mitigating long-term diabetic complications and improving survival rates.