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Published on: November 10, 2017
Effect of ezetimibe in patients who cannot tolerate statins or cannot get to the low density lipoprotein cholesterol
Irene F Gazi1, Stella S Daskalopoulou, Devaki R Nair
1Department of Clinical Biochemistry (Vascular Disease Prevention Clinics), Royal Free Hospital (and University College of Medicine), London, UK.
Insights
Ezetimibe effectively lowers low-density lipoprotein cholesterol (LDL-C) and improves lipid ratios in patients with hyperlipidemia. This study indicates ezetimibe is well-tolerated and may offer benefits beyond cholesterol reduction.
Area of Science:
- Cardiology
- Pharmacology
- Metabolic Disorders
Background:
- Recent guidelines emphasize strict low-density lipoprotein cholesterol (LDL-C) targets for high-risk patients.
- Combination therapy, such as statin plus ezetimibe, is recommended to achieve these goals.
Purpose of the Study:
- To assess the efficacy and tolerability of ezetimibe in patients with hyperlipidemia.
- To evaluate ezetimibe's response in patients intolerant to statins, on high-dose statins, or not achieving LDL-C targets.
Main Methods:
- Retrospective case-note audit of three patient groups receiving ezetimibe.
- Group 1: Statin-intolerant patients.
- Group 2: Patients on high-dose statins.
- Group 3: Patients not achieving LDL-C targets despite statin therapy.
Main Results:
- Ezetimibe reduced LDL-C by 20-29% across all groups after 2-3 months.
- Favorable changes in LDL-C/HDL-C ratio and triglyceride levels were observed.
- Ezetimibe was well-tolerated with no significant liver or muscle enzyme abnormalities.
Conclusions:
- Ezetimibe effectively lowers LDL-C and improves lipid profiles when used alone or with statins.
- Ezetimibe is a well-tolerated option for patients with statin intolerance.
- Potential renal function improvement warrants further investigation.
Background:
Recent guidelines underline the need for high-risk patients to reach strict low density lipoprotein cholesterol (LDL-C) targets (1.8-2.6 mmol/L; 70-100 mg/dL), and specifically mention the possible use of combination therapy (e.g.statin + ezetimibe) to achieve these goals.
Methods:
A retrospective case-note audit was carried out to assess the response to administering ezetimibe in patients unable to tolerate statins (Group 1), or high dose of statins (Group 2) and patients who cannot achieve the LDL-C target (2.6 mmol/L; 100 mg/dL) despite taking a statin (Group 3).
Results:
Ezetimibe lowered LDL-C levels by 20-29% across the 3 patient groups after 2-3 months of treatment. High density lipoprotein cholesterol (HDL-C) levels tended to remain unchanged, although there was a consistent trend for a fall if baseline values were 'high'. However, the LDL-C/HDL-C ratio changed significantly and favourably in all groups. The fall in fasting triglyceride levels in all groups was greater (reaching 19-25%) when baseline levels were > or = 1.5 or 1.7 mmol/L (136-150 mg/dL). There were no marked abnormalities in liver function tests or creatine kinase activity. In Group 3 there was a significant trend for a fall in serum creatinine levels across the tertiles of baseline creatinine values. Limitations of the present study include the small sample size (especially in Groups 1 and 2), its short-term duration and the absence of event-based end-points. Therefore, the results are hypothesis-generating rather than conclusive.
Conclusions:
When used alone or added to a statin, ezetimibe favourably altered the LDL-C/HDL-C ratio and lowered triglyceride levels. Ezetimibe was well tolerated in patients with statin intolerance and was associated with a 26% fall in LDL-C. An additional action may be some degree of improved renal function. Further studies are needed to confirm these findings.
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