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Role of hyperhomocystinemia in retinal vascular occlusive disease
Gianluca Sottilotta1, Vincenzo Oriana, Caterina Latella
1Hemophilia Centre, Hemostasis and Thrombosis Service, Azienda Ospedaliera Bianchi-Melacrino-Morelli, Reggio Calabria, Italy.
Insights
High homocysteine levels are common in patients with retinal vascular occlusive disease (RVOD). This suggests elevated homocysteine may be an independent risk factor for RVOD, warranting further investigation and management strategies.
Area of Science:
- Ophthalmology
- Vascular Medicine
- Clinical Biochemistry
Background:
- Elevated plasma homocysteine (Hcy) is a known risk factor for vascular diseases.
- Emerging evidence suggests a potential link between hyperhomocysteinemia and retinal vascular occlusive disease (RVOD).
Purpose of the Study:
- To compare the prevalence of elevated homocysteine in patients with recent RVOD versus a healthy control group.
- To investigate the association between hyperhomocysteinemia and RVOD.
Main Methods:
- A case-control study involving 49 patients with RVOD and 71 healthy controls.
- Laboratory evaluation included plasma fasting total homocysteine, thrombophilia markers (APC resistance, Protein C, Protein S, Antithrombin III), antiphospholipid antibodies, and genetic mutations (FII G20210A, Factor V Leiden).
- Exclusion of subjects with other prothrombotic risk factors.
Main Results:
- A high prevalence of hyperhomocysteinemia (higher than 15 mumol/L) was observed in 48.9% of RVOD patients (P < .0005).
- This finding indicates a significant association between RVOD and elevated fasting homocysteine levels.
Conclusions:
- Hyperhomocysteinemia appears to be prevalent in patients with RVOD.
- Elevated homocysteine may serve as an independent risk factor for RVOD.
- Assessment of homocysteine levels could be crucial in the investigation and management of RVOD patients.
Abstract:
Elevated plasma homocysteine (Hcy) level is considered a risk factor for vascular diseases. In recent years, many scientific reports have suggested that hyperhomocystinemia may be associated with an increased risk of retinal vascular occlusive disease (RVOD). The prevalence of elevation of homocysteine in patients with a recent retinal vascular occlusion was compared to a health control group in this study. Forty-nine consecutive patients (22 M; 27 F) (age 26-85 years, mean 69) with diagnosis of retinal vascular occlusion were compared with 71 healthy controls. These patients underwent laboratory evaluation for plasma fasting total homocysteine, activated protein C resistance, protein C, protein S, antithrombin III, and antiphospholipid and anticardiolipin antibodies. The G20210 prothrombin gene mutation (FII G20210A) and Factor V Leiden mutation (FVL) were evaluated. None of these enrolled subjects had other prothrombic risk factors. The health control group consisted of healthy subjects from the general population, with no history or clinical evidence of retinal vascular disease, recruited during the same 2-year period. High fasting homocystinemia (higher than 15 mumol/L) was detected in 24/49 subjects (48.9%) (P < .0005). There was a high prevalence of hyperhomocystinemia: these data suggest an association between RVOD and high fasting homocystinemia. Elevated homocysteine may be an independent risk factor, and its assessment may be important in the investigation, management, and follow-up of patients with RVOD. Further controlled studies are necessary to clarify the exact role of hyperhomocystinemia in RVOD and to evaluate the appropriate therapeutic approach.
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