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Updated: May 9, 2026

Differential Effects of Lipid-lowering Drugs in Modulating Morphology of Cholesterol Particles
Published on: November 10, 2017
Role of colesevelam in combination lipid-lowering therapy
Michael R Jones1, Oliseyenum M Nwose
1, Port St. Lucie, FL, USA.
Insights
Colesevelam, a bile acid sequestrant, effectively lowers low-density lipoprotein cholesterol (LDL-C) when combined with other lipid-lowering drugs. It offers an additional benefit by offsetting potential negative glycemic effects of other therapies.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Metabolic Disorders
Background:
- Hyperlipidemia increases cardiovascular event risk, necessitating effective low-density lipoprotein cholesterol (LDL-C) reduction.
- Statins are first-line therapy but may be insufficient or poorly tolerated, creating a need for alternative or adjunctive treatments.
- Colesevelam, a second-generation bile acid sequestrant, is reviewed for its role in combination therapy.
Purpose of the Study:
- To review available literature on colesevelam used in combination with other lipid-lowering agents.
- To assess the efficacy and safety of colesevelam in various combination regimens.
Main Methods:
- Literature review of studies involving colesevelam combined with statins, niacin, fibrates, and ezetimibe.
- Analysis of effects on LDL-C, apolipoprotein B (apo B), apolipoprotein A-I (apo A-I), high-sensitivity C-reactive protein (hs-CRP), triglycerides, and glycemic control.
Main Results:
- Colesevelam demonstrated additive LDL-C reduction with all tested combinations.
- Observed benefits included reductions in apo B and hs-CRP, and increases in apo A-I.
- Triglyceride levels were largely unchanged, except for a decrease with a triple combination including niacin.
- Colesevelam offset negative glycemic effects of statins and niacin in at-risk patients.
- Gastrointestinal adverse events, primarily constipation, were the main side effects.
Conclusions:
- Colesevelam provides additive cholesterol-lowering effects when combined with other lipid-lowering therapies.
- Its non-systemic absorption minimizes metabolic drug-drug interactions.
- Colesevelam may offer beneficial glucose-lowering effects in specific patient populations.
Abstract:
Hyperlipidemia is associated with an increased risk of cardiovascular events; reducing low-density lipoprotein cholesterol (LDL-C), the primary target for cholesterol-lowering therapy, lowers the risk for such events. Although bile acid sequestrants were the first class of drugs to show a mortality benefit related to LDL-C lowering, statins are now considered first-line pharmacological therapy for reducing LDL-C levels because of their potency and their remarkable record of successful outcomes studies. Nevertheless, a substantial proportion of patients do not achieve LDL-C goals with statin monotherapy. In addition, because of adverse effects (primarily myopathy), some patients may be unwilling to use or unable to tolerate statin therapy at all or may not tolerate a full therapeutic statin dose. Also, statins may increase risk of new-onset diabetes in patients at high risk for diabetes. Thus, there remains a need for other lipid-lowering drugs to be used in combination with or in place of statins. The purpose of this article is to review available data from the literature on the use of colesevelam, a second-generation bile acid sequestrant, in combination with other lipid-lowering agents. Colesevelam has been studied in combination with statins, niacin, fibrates, and ezetimibe (including some three-drug combinations). An additive reduction in LDL-C was seen with all combinations. Other observed effects of colesevelam in combination with other lipid-lowering drugs include reductions in apolipoprotein (apo) B (with statins, fibrates, ezetimibe, statin plus niacin, or statin plus ezetimibe) and high-sensitivity C-reactive protein (with statins), and increases in apo A-I (with statins, ezetimibe, or statins plus niacin). Triglyceride levels remained relatively unchanged when colesevelam was combined with statins, fibrates, ezetimibe, or statin plus ezetimibe, and decreased with the triple combination of colesevelam, statin, and niacin. Colesevelam offset the negative glycemic effects of statins and niacin in subjects with insulin resistance or impaired glucose tolerance. Colesevelam was generally well tolerated when added to other lipid-lowering therapies in clinical trials, with gastrointestinal effects such as constipation being the predominant adverse events. Since colesevelam is not absorbed and works primarily in the intestine, it has a low potential for systemic metabolic drug-drug interactions with other drugs. Colesevelam has been shown to not interact with the lipid-lowering drugs lovastatin and fenofibrate; where interaction may be anticipated, separating dosing times by 4 h reduces the impact of any interaction. Available data confirms that colesevelam has additive cholesterol-lowering effects when used in combination with other lipid-lowering therapies. Furthermore, in some patient populations, the additional glucose-lowering effect of colesevelam may be beneficial in offsetting hyperglycemic effects of other lipid-lowering drugs.
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