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Effects of colestipol hydrochloride on drug absorption in the rat II.

The effects of colestipol hydrochloride, a hypocholesterolemic bile acid-binding anion-exchange polymer, on the GI absorption of drugs commonly used in humans were studied in the rat. Colestipol hydrochloride was given by gavage in single doses of 71.5 or 214.5 mg/kg, equivalent to 5 or 15 g, respectively, in a 70-kg human; controls received equivalent amounts of microcrystalline cellulose. Single oral doses of labeled drugs were given concurrently with colestipol hydrochloride or microcrystalline cellulose at the human therapeutic dose range on a milligrams per kilogram basis. Subsequent changes in serum drug levels were measured at several time periods, and absorption was evaluated as the total area under the time-concentration curve. Colestipol hydrochloride at either dose did not significantly alter the absorption of 6-14C-nicotinic acid, 7-3H-tetracycline, 35S-chlorpromazine, 12alpha-3H-digoxin, warfarin (alpha-14C-benzyl), or clofibrate (14C-carboxyl). In addition, the effects of 214.5 mg/kg of colestipol hydrochloride were compared with the same dose of cholestyramine with respect to the absorption of 3-14C-hydrochlorothiazide, 2-14C-phenobarbital, and 3H-digitoxin. Cholestyramine reduced absorption of hydrochlorothiazide by 42%, but colestipol hydrochloride had no significant effect. Neither resin altered phenobarbital or digitoxin absorption when compared with the the control, but a significant difference occurred between the two resins with digitoxin; areas under the time-concentration curve [in (dpm/0.1 ml serum) x hr] were: colestipol hydrochloride, 2001; cholestyramine, 16,300; and cellulose, 17, 067. These results indicate that colestipol hydrochloride and cholestyramine can differ in their effects on the absorption of certain drugs from the GI tract of the rat.

Animals

The effect of colestipol on digitoxin plasma levels.

The effect of colestipol (colestipol hydrochloride; U-26 597 A), a copolymer of tetraethylenepentamine and epichlorhydrine, on plasma digitoxin levels has been investigated. Recently, it has been stated that colestipol decreases the enterohepatic circulation and the plasma half-life of digitoxin. Colestipol was administered to 11 patients having a digitoxin plasma level which is generally accepted to be above the therapeutic range (greater than 40 ng/ml). The elimination rate of digitoxin measured by serial radioimmunoassay in these colestipol treated patients was compared with the elimination rate of digitoxin in 11 patients not treated with colestipol. The results of this study did not demonstrate a significant difference in the mean (+/- S.D.) digitoxin plasma half-life between the colestipol treated (6.3 +/- 1.3 days) and the non-colestipol treated patients (6.8 +/- 1.0 days).

Antidotes

Colestipol, clofibrate, cholestyramine and combination therapy in the treatment of familial hyperbetalipoproteinaemia.

Fifty-seven patients, mean age 26 years, suffering from familial hyperbetalipoproteinaemia (Fredrickson type lla and llb), were treated on a low cholesterol, modified polyunsaturated fat diet for a period of 6-12 weeks prior to the introduction of drug therapy. No significant reduction in the serum levels of total cholesterol, low density lipoprotein (LDL) cholesterol or triglyceride was found. Fifty patients were then treated with colestipol for 6 weeks; total and LDL cholesterol decreased by 23%, but triglyceride levels were unaffected. During the following 6 weeks, placebo was administered, and total and LDL cholesterol returned to pretreatment levels. The patients were then randomly allocated into two groups of 16. The first group continued with clofibrate therapy, while the second group received cholestyramine. In the clofibrate group a reduction in total and LDL cholesterol of the order of 17% was noted, similar to cholestethat achieved in this group on colestipol. Triglyceride levels were 15% lower on clofibrate therapy than on colestipol. In the cholestyramine group, there was a 25% decrease in total and LDL cholesterol, compared with pretreatment levels. This reduction was similar to that found when colestipol was administered. Triglyceride values were significantly raised during cholestyramine therapy. Thirteen patients were then subjected to a 6-week period of combination therapy, either clofibrate or colestipol, or clofibrate and cholestyramine. Total and LDL cholesterol were reduced by 32% on combination therapy compared with 18% on colestipol and 23% on either clofibrate or cholestyramine alone. Furthermore, on combined therapy, triglyceride concentrations fell by 20% when compared with the levels found when colestipol, clofibrate or cholestyramine were administered on their own.

Adolescent

Colestipol, clofibrate, and phytosterols in combined therapy of hyperlipidemia.

Studies were carried out to determine effects of combined chemotherapy in patients with hyperlipidemia. In one study, 14 patients were treated first with colestipol and then with the combination of colestipol and clofibrate. In a second study, six patients were given clofibrate followed by addition of phytosterols. The following measurements were made in most patients: (1) plasma lipid concentrations, (2) fecal excretions of neutral steroids and bile acids, and (3) lipid composition of gallbladder bile. In six patients of the first study, hepatic secretion rates of biliary lipids and pool sizes of bile acids were also estimated. In the first study, colestipol alone caused a marked increase in fecal bile acids that resulted in a sizable decrease in plasma cholesterol concentrations (average 21 percent). In several patients, however, triglycerides were increased somewhat by colestipol. Despite interruption of the enterohepatic circulation of bile acids, the bile acid pool was not reduced, since a compensatory increase took place in bile acid synthesis. Also, except in one patient who developed gallstones following institution of colestipol, saturation of gallbladder bile with cholesterol was not markedly increased by this drug alone. Addition of clofibrate frequently produced a further decrement in plasma cholesterol, and the mild hypertriglyceridemia induced by colestipol was reversed. However, colestipol plus clofibrate usually caused a striking increase in saturation of gallbladder bile. Previous studies have shown that clofibrate causes a flux of cholesterol from tissue pools by simultaneously decreasing cholesterol synthesis and increasing its excretion. To further increase cholesterol excretion, phytosterols, which block cholesterol absorption, were added to clofibrate in the second study. Although phytosterols did not cause a further reduction in plasma cholesterol in these particular patients, they nevertheless greatly enhanced cholesterol excretion.

Adult

Pediatric familial type II hyperlipoproteinemia: therapy with diet and colestipol resin.

Effects of a low-cholesterol, polyunsaturate-rich diet and a synthetic organic bile sequestrant polymer (U26,597A, colestipol) were studied in 21 children, heterozygous for familial hypercholesterolemia. Total cholesterol, beta-lipoprotein cholesterol, and triglyceride were measured twice on habitual diet, monthly for six months on a low-cholesterol diet, and monthly for six months on low-cholesterol diet plus 10 gm of colestipol per day. Total cholesterol (mean +/- 1 SD) was 295 +/- 37 on habitual diet, 278 +/- 29 on low-cholesterol diet, and fell significantly to 242 +/- 29 mg/100 ml on diet plus colestipol. Low-density lipoprotein (LDL) cholesterol was 234 +/- 37 on habitual diet, 220 +/- 28 on low-cholesterol diet, and fell significantly to 179 +/- 26 mg/100 ml on diet plus drug. Plasma triglyceride levels on habitual diet were 79 +/- 31, remained unchanged on low-cholesterol diet, 86 +/- 22, and were unaffected by low-cholesterol diet plus drug, 85 +/- 17 mg/100 ml. On diet alone, plasma LDL was not normalized (less than 170 mg/100 ml) in any of the 21 children, and cholesterol fell to within normal limits (less than 230 mg/100 ml) in only one child. The combination of diet plus colestipol resin normalized total and LDL cholesterol in 52% of the children. Cholesterol was lowered to a "moderately elevated" range of 230 to 250 mg/100 ml in an additional 14% of the children and LDL was lowered to a range of 170 to 190 mg/100 ml in an additional 29%. In 33% of the children, cholesterol remained greater than 250 mg/100 ml despite diet plus colestipol, while LDL was greater than 190 mg/100 ml in 19%. Colestipol is an effective and well-tolerated cholesterol lowering compound which, in conjunction with diet, may prove to be very useful in the treatment of children heterozygous for familial hypercholesterolemia.

Adolescent

[Colestipol in the treatment of heterozygous familial hypercholesterolemia].

In the specialized clinic for disorders of the lipid metabolism 27 patients, 8 men and 19 women, heterozygotes with familial hypercholesterolaemia were treated for 8 weeks with Colestid (colestipol bags a 5 g, Upjohn, Belgium). The administered dose was 15 g colestipol per day. After colestipol treatment the authors recorded a statistically significant decline of total cholesterol by 18% and of LDL-cholesterol by as much as 27%. The apolipoprotein B concentration declined during treatment by 9% and concurrently there was a favourable rise of apolipoprotein A-1 by 20%. The authors recorded also a slight rise of the HDL-cholesterol concentration which, however, was not statistically significant. The serum triglyceride level increased slightly after colestipol treatment. It did not prove possible to influence the lipoprotein(a) level by colestipol administration. As compared with other hypolipidaemic agents from the group of ion exchange resins, the patients tolerated Colestid surprisingly well. Only one female patient discontinued treatment because of dyspeptic complaints, severe constipation.

Adolescent

Clofibrate-induced low density liporotein elevation. Therapeutic implications and treatment by colestipol resin.

Plasma lipid and lipoprotein responses to clofibrate were assessed in fifteen hypertriglyceridemic patients for the purpose of ascertaining low-density lipoprotein (LDL) changes. Subjects were grouped into either Type IV (11) or IIB (4) subgroups according to initial LDL level. Clofibrate was without effect on LDL in the IIB group, but consistent, often large, elevations were noted in Type IV cases (mean increase, 37.6%, P less than 0.001). In the IIB subgroup, addition of the bile-acid sequestrant, colestipol, lowered LDL (27.8%, P less 0.02) and total cholesterol (21.3%, P less 0.01) below pre-treatment values. In the Type IV subgroup, LDL fell to 19.5% above baseline (P great than 0.05). Significant LDL elevations induced by clofibrate in three of six subjects were restored to initial levels. In both groups, triglycerides and very-low density lipoproteins (VLDL) were not affected. The efficacy of colestipol in reducing LDL levels, expressed as either absolute or percentage reductions, increased as a function of increasing post-clofibrate LDL concentration (r = 0.84, P less than 0.001). In these subjects the level of LDL after treatment with clofibrate depended upon their LDL level prior to drug therapy, the effect of clofibrate on this level, and lipoprotein phenotype. Thus colestipol was most effective in IIB subjects, Type IV subjects with the lowest baseline VLDL and hence reciprocally highest LDL, and Type IV individuals who exhibited the largest LDL induction by clofibrate. The reported ineffectiveness of clofibrate on mortality and morbidity in patients with established coronary heart disease might be related to elevations and infrequent reductions of LDL. From the perspective of lipoprotein lowering, the combination with colestipol appears more favorable.

Adult

Long-term trial with colestipol plus clofibrate in familial hypercholesterolemia.

Twenty subjects with familial hypercholesterolemia (12 Type IIa and 8 Type IIb), previously treated with Colestipol for 16 months, were subjected to therapy with Colestipol (15 g/day) + clofibrate (2 g/day) for 15 months. During the second treatment period these patients continued to follow the isocaloric hypocholesterolemic diet initiated during the original trial. In Type IIa patients, the association of these drugs enhanced the decrease in plasma cholesterol levels. The total mean decrease was -40 +/- 17 mg/dl (P less than 0.05). In Type IIb patients, on the other hand, the association of clofibrate with Colestipol induced an increase in plasma cholesterol levels. The total mean increase was +24 +/- 7 mg/dl (P less than 0.05). A markedly significant decrease in plasma triglyceride levels was observed in this group (- 107 +/- 30; P less than 0.01). These results seem to indicate that, in Type IIa, clofibrate increased the resin's hypocholesterolemic effect. In Type IIb, on the other hand, the association of these drugs did not seem to be indicated since a marked hypotriglyceridemic effect was accompanied by an increase in plasma cholesterol levels. These results are briefly discussed in the light of recent data obtained on the effects of Colestipol and clofibrate on lipoprotein metabolism.

Adult

Colestipol hydrochloride for treatment of hypercholesterolemia in a family practice: five-year study.

Colestipol hydrochloride (Colestid) lowered the serum cholesterol level significantly more than did placebo in hypercholesterolemic patients (21 colestipol, 19 placebo) treated for up to 5 years. In the 21 colestipol-treated patients, the average decrease in serum cholesterol levels was 19 percent during the first year and 23 percent during the second through fifth years. Seven patients (age range, 44 to 59 years) took colestipol for the full 5 years. The data showed a consistent lowering of the serum cholesterol level. The only side effect was constipation.

Adult

Successful management of primary hypercholesterolaemia with simvastatin and low-dose colestipol.

OBJECTIVE: To examine whether a small dose of bile acid sequestrant used in combination with a hydroxymethylglutaryl coenzyme A reductase inhibitor is more effective in reducing serum and low-density lipoprotein (LDL) cholesterol levels than inhibitor used alone. DESIGN: A randomised, double-blind study. SETTING: Subjects receiving tertiary care at a hospital lipid clinic. PATIENTS: Subjects with severe primary hypercholesterolaemia (types IIa and IIb), already stabilised on a cholesterol-lowering diet, with serum cholesterol levels of 7.0 mmol/L or more and triglyceride levels of 6.0 mmol/L or less. Sixty-four subjects were randomly assigned to the treatment groups; three withdrew before any outcome observations; 61 completed the trial and their results were analysed. INTERVENTIONS: Subjects were randomly assigned to receive either colestipol placebo or colestipol 5 g or 10 g each morning in fixed dosage for 18 weeks. They simultaneously received incremental doses of simvastatin: placebo for six weeks, then 20 mg/night for six weeks, then 40 mg/night for a final six weeks. MAIN OUTCOME MEASURES: Lipids, lipoproteins, and haematological and biochemical safety parameters were measured at the end of each treatment period. Adverse events were monitored. RESULTS: Respective maximum reductions (95% confidence intervals) in serum cholesterol, LDL cholesterol and apolipoprotein B (apo-B) values in subjects taking combination therapy were 41% (38%-45%), 50% (46%-53%) and 43% (39%-46%), compared with lesser reductions of 32% (26%-37%), 38% (31%-45%) and 37% (32%-41%) in those taking simvastatin monotherapy. The percentage changes in LDL cholesterol with combination therapy were independent of baseline cholesterol level or lipid phenotype. Combination therapy reduced serum triglyceride levels by up to 24% (15%-32%) and increased high-density lipoprotein (HDL) cholesterol levels by up to 9% (3%-15%). Three subjects withdrew within a few weeks because of severe gastrointestinal side effects related to colestipol; 19 experienced milder gastrointestinal side effects, 15 were taking combination therapy. CONCLUSIONS: A combination of low-dose colestipol and simvastatin was found to be more effective in reducing serum and LDL cholesterol than simvastatin used alone. Such combination therapy offers the possibility of improved cholesterol lowering without the need for full dosage of either drug.

Anticholesteremic Agents

[Long term treatment of familial hypercholesterolemia with Colestipol, a new anionic exchange resin (author's transl)].

Results relative to long term treatment with Colestipol (a new resin sequestering bile acids) in 23 subjects with familial hypercholesterolemia, 12 with Type II A, 8 with Type II B and 3 homozygotes are reported. The patients had previously undergone treatment with clofibrate together with a hypocholesterolemic diet. After six weeks with placebo, the patients were given 15 g/die active drug for a period of 12 months and a double dose (30 g/die) for a successive period of 4 months. During the experimental trial the same hypocholesterolemic, isocaloric diet which had been followed during the previous hypolipidemic treatment was maintained. In the entire group taken as a whole, the total mean decrease was --56,9 +/- 15 mg/dl (P less than 0,01) after 12 months of 15 g/die Colestipol and --62,8 +/- 13 mg/dl (P less than 0,01) during the following 4 months with 30 g/die Colestipol. The difference between the two periods of treatment (15 g and 30 g/die) is not statistically significant. During the active drug treatment a slight but not statistically significant triglyceride increase was observed. The increase was most marked in the Type II B patients: the triglyceride variations in this group could be partly caused by slight variations in mean body weight. Starting from a mean basal value of 3,9 +/- 0,2 mg/dl, serum uric acid showed a significant increase which was maintained throughout the entire period of treatment, reaching a peak of 5,6 +/- 0,3 mg/dl (P less than 0,001) at the twelfth month. During the experimental trial no significant modifications were observed in the hematological routine analysis and liver functional tests, no malabsorption syndrome and no signs of toxicity were seen. Most frequent side effects were constipation, nausea, metheorism which, with the exception of four cases, which were withdrawn from the study, were reported as being transitory and mild. In conclusion, since Colestipol treatment significantly lowers cholesterol levels in patients with familial hypercholesterolemia and does not manifest any toxicity or serious side effects, it can be used effectively in the long term treatment of this disease which is characterized by an elevated frequency of cardiovascular complications.

Adult

Long-term treatment of hypercholesterolemia with colestipol hydrochloride.

Colestipol hydroxhloride (15 gm/day) (an anion exchange resin that binds bile acids) of placebo was administered to 92 patients with hypercholesterolemia who were followed for periods up to 36 months. There was a prompt (1 month), significant (p smaller than 0.05 minus 0.001), and sustained (36 months) lowering of serum cholesterol in the colestipol HCl-treated group, but no significant change in the placebo group. Serum triglycerides increased in both treatment groups in parallel; the reason was not apparent. Side effects were equally distributed between colestipol HCl and placebo and were primarily gastrointestinal (upper abdominal distress, constipation). Colestipol HCl appears to be a safe and effective treatment for hypercholesterolemia; tolerance does not seem to develop.

Adult

Colestipol in familial type II hyperlipoproteinemia: a three-year trial.

Colestipol, a new bile acid sequestrant polymer, has been shown to lower the serum cholesterol level more than 30% in 13 patients with familial type II hyperlipoproteinemia. Placebo for 6 wk was followed by colestipol for periods up to 36 mo. A slight but not significant increase of serum triglyceride concentrations was observed during the first 18 no, but they returned to values under the baseline level thereafter. No signs of impaired intestinal fat resorption were noted. Side effects were primarily gastrointestinal (mild and transient constipation). Colestipol seems to be an effective and safe drug in the treatment of the famiial type II hyperlipoproteinemia, without escape phenonmenon.

Adolescent

The effect of colestipol hydrochloride on the bioavailability and pharmacokinetics of clofibrate.

Since it has been reported by several authors that colestipol HCl and clofibrate have an additive effect in lowering serum cholesterol levels, it was felt advisable to evaluate the blood levels of clofibrate when given simultaneously with colestipol HCl to see whether there was any evidence for drug interaction between the two products that might dictate a need for separation of their administration time. After concomitant single-dose administration, the serum p-chlorophenoxyisobutyric acid levels, bioavailability parameters, and pharmacokinetic parameters investigated provided no evidence for an interaction and suggested that colestipol and clofibrate can be administered concomitantly or at separated in tervals according to whichever dosage regimen is deemed advisable by the physician.

Adult

Long-term effects of colestipol (U-26,597 A) on plasma lipids in familial type II hyperbetalipoproteinaemia.

Results related to long term treatment with Colestipol (a new resin sequestering bile acids) in 23 subjects with familial hypercholesterolaemia, 12 with Type IIA, 8 with Type IIB and 3 homozygotes are reported. Patients were given 15 g/day active drug for a period of 12 months and a double dose (30 g/day) for a successive period of 4 months along with a low cholesterol, low saturated fat, polyunsaturated fat-rich diet. Mean cholesterol decrease was --42 +/- 18 mg/dl (P less than 0.05) after 12 months of 15 g/day Colestipol and --69 +/- 17 mg/dl (P less than 0.01) after the following 4 months of 30 g/day Colestipol. The difference between the two periods of treatment (15 g and 30 g/day was not statistically significant. A slight but not significant increase in triglyceride levels was observed. Serum uric acid showed a significant increase throughout the entire period of treatment. No malabsorption syndrome or signs of toxicity were seen. Most frequent side effects were constipation, nausea, and metheorism which, with the exception of 4 cases which were withdrawn from the study, were reported as being transitory and mild.

Adult

Cholesterol-lowering effect of colestipol hydrochloride given twice daily in hypercholesterolemic patients.

In a randomized design study in 66 hypercholesterolemic patients, dosages of 10 g of colestipol HCl twice daily lowered serum cholesterol an average of 19% more than placebo therapy. These results are comparable to those in other studies in which the same total daily dose was given in three or four doses. The most common side effect was constipation, reported by 6 patients on colestipol HCl and 3 patients on placebo. No untoward systemic reactions or abnormal laboratory data were seen except for a slight rise in serum alkaline phosphatase during colestipol HCl therapy. The drug was well accepted by most patients.

Adolescent

Results of colestipol therapy in Type II hyperlipoproteinemia.

Twenty-five patinets with well defined Type ii hyperlipoproteinemia were treated with a divided 15 g daily dose of colestipol, a bile acid sequestrant, for periods of up to 20 months. The patients were divided into 3 groups: Those with no obvious sequelae, those with arcus corneae, xanthomas, and/or xanthelasmas only, and those with atherosclerotic complications. Colestipol lowered plasma cholesterol in all 3 groups, but reduced it to normal or near-normal levels in only 9 of the 25 patients (36%). The response of plasma triglycerides was highly varible; the mean for each group was elevated by the drug. Colestipol was well-tolerated and its effect did not diminish with time. It is a useful drug in the treatment of hypercholesterolemia.

Adolescent

Use of combined diet and colestipol in long-term (7--7 1/2 years) treatment of patients with type II hyperlipoproteinemia.

Long-term effects of diet and colestipol (a bile acid sequestrant) were studied in 25 patients with familial type II hyperlipoproteinemia. Serum lipids and body weights of an initial group of 30 patients were stabilized by low cholesterol-saturated fat-refined carbohydrate diet and the patients were then randomized into placebo and drug-treatment groups. After explaining that the drug is nontoxic and effective in lowering serum lipids, total cholesterol (C) and low-density lipoprotein cholesterol (LDL-C), colestipol (30 g/day) and diet were given to the 25 patients who remained in the long-term follow-up program. The treatment resulted in highly significant lowering of serum lipids (mg/dl, mean +/- SEM): C and LDL-C from 412.7 +/- 24.4 and 331.1 +/- 22.8 to 270 +/- 11.0 and 188.1 +/- 13.8, respectively (p less than 0.001 in each instance) over 7--7 1/2 years. Although we observed no absolute increase in high density lipoprotein (HDL), the HDL/LDL ratio was elevated. Long-term colestipol and diet treatment reduced the xanthoma size and stabilized serially angiographically visualized atherosclerotic lesions in 21 of the 25 patients who showed a satisfactory hypolipemic response. It did not cause nutritional or metabolic disturbances.

Adult