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Hyperhomocysteinemia: A Predictor of Microvascular Complications in Type 2 Diabetes Mellitus
Shali S1, Gopalakrishna Pillai1, Namitha Salim2
1Internal Medicine, Amrita Institute of Medical Sciences and Research Center, Kochi, IND.
Insights
High homocysteine levels are significantly associated with microvascular complications in type 2 diabetes mellitus (T2DM). This finding suggests elevated homocysteine may serve as a novel predictor for diabetic complications like neuropathy, nephropathy, and retinopathy.
Area of Science:
- Endocrinology
- Vascular Biology
- Metabolic Disorders
Background:
- Diabetes mellitus (DM) affects millions globally, with microvascular complications posing significant health risks.
- Elevated homocysteine levels are implicated in various adverse health outcomes, including vascular damage.
- Hyperhomocysteinemia is a potentially treatable condition, making its link to DM complications a critical research area.
Purpose of the Study:
- To evaluate homocysteine levels in type 2 diabetes mellitus (T2DM) patients with and without microvascular complications.
- To determine the association between hyperhomocysteinemia and microvascular complications in T2DM.
- To identify elevated homocysteine as a potential predictor of diabetic microangiopathy.
Main Methods:
- Prospective observational study conducted at Amrita Institute of Medical Sciences, Kochi.
- Comparison of fasting plasma homocysteine levels between T2DM patients with and without microvascular complications.
- Sample size calculated for 90% power and 95% confidence, with approximately 92 participants.
Main Results:
- Significantly higher mean serum homocysteine levels were observed in patients with diabetic retinopathy (17.1±5.4 µmol/L), neuropathy (17.0±5.5 µmol/L), and nephropathy (17.7±4.9 µmol/L) compared to those without.
- Receiver operating characteristic (ROC) curve analysis showed an area under the curve (AUC) of 0.9, indicating serum homocysteine as a strong predictor of complications.
- A cutoff level of 11.8 µmol/L for serum homocysteine demonstrated 83% sensitivity and 87% specificity for predicting complications.
Conclusions:
- A significant association exists between elevated plasma homocysteine levels and microvascular complications in T2DM.
- Elevated homocysteine is a potential novel predictor for diabetic neuropathy, nephropathy, and retinopathy.
- Nutritional management of hyperhomocysteinemia may offer therapeutic benefits for preventing diabetic microvascular complications.
Abstract:
Background Diabetes mellitus (DM) is a very crippling illness that affects a large number of people around the world. Raised homocysteine levels are linked to a number of harmful health issues. It is possible that homocysteine contributes to the development of diabetic microangiopathy because it is involved in a complex and dynamic system of vascular damage and repair. Given that hyperhomocysteinemia can be treated nutritionally, this highly debated topic has significant scientific and therapeutic ramifications. Hence, the purpose of this study is to ascertain the correlation between hyperhomocysteinemia and microvascular complications in type 2 diabetes mellitus (T2DM). Thus, the expected outcomes of this study will be the discovery of a novel predictor of diabetic microangiopathy: elevated homocysteine. Aim This study aims to evaluate the levels of homocysteine in diabetes mellitus patients with and without microvascular complications and to find the association between hyperhomocysteinemia and microvascular complications of type 2 diabetes mellitus. Method This is a prospective observational study involving all type 2 diabetes mellitus patients from outpatient and inpatient settings from general medicine, endocrinology, nephrology, ophthalmology, and podiatry departments of Amrita Institute of Medical Sciences (AIMS), Kochi, conducted between February 2022 and June 2024. The study population is categorized as patients with complications and controls without complications. Fasting plasma homocysteine levels are compared. Based on the results of the mean and standard deviation (SD) of fasting plasma homocysteine among diabetic patients with complications (9.4±3.1) and without complications (7.4±2.8), as mentioned in an earlier publication, with 90% power and 95% confidence, the minimum sample size is approximately 46 participants in each group, totaling 92. Results Among the 92 study participants who are patients with diabetes mellitus, 46 were without any of the major or minor complications of diabetes mellitus, grouped as Group 1, and the remaining 46 had at least one of the minor complications of diabetes mellitus, grouped as Group 2. In the diabetic retinopathy population, the mean serum homocysteine was 17.1±5.4 µmol/L, while in those who do not have diabetic retinopathy, it was 9.8±4.3 µmol/L, with a significantly higher p-value of <0.001. In those with diabetic neuropathy, the mean serum homocysteine was 17.0±5.5 µmol/L, while in those without diabetic neuropathy, it was 9.9±4.3 µmol/L, which is significantly higher, with a p-value of <0.001. In the diabetic nephropathy population, the mean serum homocysteine was 17.7±4.9 µmol/L, while in those without diabetic nephropathy, it was 9.7±4.2 µmol/L, which is significantly higher, with a p-value of <0.001. Using the receiver operating characteristic (ROC) curve, the area under the curve (AUC) was 0.9, with a 95% confidence interval (CI) of 0.83-0.97. Serum homocysteine is showing higher AUC; hence, it can be used as a predictor of complications (p<0.001), and the cutoff is taken as 11.8 µmol/L, with a sensitivity of 83% and a specificity of 87%. Conclusion This study was able to draw a significant association between high levels of plasma homocysteine and microvascular complications such as diabetic neuropathy, nephropathy, and retinopathy.
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