| Literature DB >> 21127702 |
Abstract
Pitavastatin was first developed in Japan and is expanding the regions in which it is clinically available. A considerable number of clinical studies have been conducted and published to date on the usefulness of pitavastatin for patients with primary hypercholesterolemia or combined dyslipidemia. Pitavastatin demonstrates potent low-density lipoprotein cholesterol reduction at low doses of 1-4 mg/day. It also affects the regression of coronary plaques, as observed in intravascular ultrasound-guided percutaneous coronary intervention studies. Moreover, the persistent, long-term high-density lipoprotein cholesterol elevation observed in the populations treated with pitavastatin is worthy of further attention. The reported improvements in lipid profiles are consistent among the studies conducted in Japan, Korea, Thailand, and Europe. In light of accumulating clinical experience worldwide, pitavastatin is now expected to establish its position for preventing and treating cardiovascular disease.Entities:
Keywords: Europe; Japan; Korea; Thailand; randomized clinical trial
Mesh:
Substances:
Year: 2010 PMID: 21127702 PMCID: PMC2988623 DOI: 10.2147/VHRM.S7802
Source DB: PubMed Journal: Vasc Health Risk Manag ISSN: 1176-6344
Lipid baselines, percent changes, and safety results of randomized clinical studies of pitavastatin compared with the other statin
| Subject | Study | Lipid criteria (mg/dL) | Study drug | Duration | n | Percent change from baseline | Baseline level (mg/dL) | Safety | ||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| LDL-C | TG | HDL-C | TC | LDL-C | TG | HDL-C | TC | |||||||
| Japan | Saito et al | TC ≥ 220, TG < 400 | PTV 2 mg | 12 wks | 120 | −37.6 | 8.9 | −28.0 | 194.2 | 158.0 | 56.8 | 279.7 | Both treatments well tolerated | |
| PRV 10 mg | 105 | −18.4 | 9.8 | −13.8 | 195.3 | 166.8 | 52.9 | 278.8 | ||||||
| CHIBA | TC ≥ 220, TG < 400 | PTV 2 mg | 12 wks | 93 | −42.6 | −17.3 | 3.2 | −29.7 | 177.1 | 155.2 | 58.5 | 262.8 | AST, ALT, γ-GTP elevated in ATV | |
| ATV 10 mg | 98 | −44.1 | −10.7 | 1.7 | −31.1 | 178.3 | 138.9 | 60.2 | 265.8 | |||||
| PIAT | LDL-C ≥ 140, HDL-C < 80, TG < 500 | PTV 2 mg | 8 wks | 88 | −36.8 | 8.2 | 163.7 | 155.1 | 51.9 | 246.9 | No significant differences | |||
| ATV 10 mg | 85 | −37.9 | 3.4 | 161.9 | 171.9 | 51.6 | 246.7 | |||||||
| Korea | Park et al | LDL-C > 130, TG < 600 | PTV 2 mg | 8 wks | 49 | −38.2 | 8.3 | −26.9 | 170.0 | 168.1 | 51.0 | 246.8 | More incidence of ADRs in SMV | |
| SMV 20 mg | 46 | −39.4 | 3.6 | −28.5 | 165.7 | 153.6 | 52.1 | 240.0 | ||||||
| Lee et al | LDL-C > 130, TG < 400 | PTV 2 mg | 4 wks | 110 | −44.4 | −13.4 | 4.6 | −30.1 | 159 | 142 | 52 | 239 | No significant differences | |
| ATV 10 mg | 112 | −43.2 | −13.3 | 5.7 | −29.3 | 160 | 136 | 52 | 239 | |||||
| Thailand | Sansanayudh et al | Indicated for statin therapy by NCEP-ATP III | PTV 1 mg | 8 wks | 50 | −37.4 | −10.4 | 2.8 | −27.6 | 176.0 | 145.2 | 53.4 | 258.4 | Both treatments well tolerated |
| ATV 10 mg | 50 | −45.8 | −7.1 | −0.4 | −32.3 | 172.9 | 141.9 | 53.9 | 255.2 | |||||
| Europe | Budinski et al | 160 ≤ LDL-C ≤ 220, TG ≤ 400 | PTV 2 mg | 12 wks | 315 | −37.9 | −14.1 | 4 | −27.7 | 183.6 | 157.8 | 48.5 | 263.6 | All treatments well tolerated |
| ATV 10 mg | 102 | −37.8 | −17.7 | 3 | −28.1 | 179.8 | 156.8 | 50.2 | 261.3 | |||||
| PTV 4 mg | 298 | −44.6 | −19 | 5 | −32.4 | 182 | 156.8 | 49.9 | 263.3 | |||||
| ATV 20 mg | 102 | −43.5 | −22.3 | 2.5 | −32.7 | 181.9 | 161.9 | 48.4 | 262.7 | |||||
| Ose et al | 160 ≤ LDL-C ≤ 220, TG ≤ 400 | PTV 2 mg | 12 wks | 307 | −39.0 | −15.9 | 6.0 | −27.9 | 183.6 | 163.8 | 51.3 | 267.6 | All treatments well tolerated | |
| SMV 20 mg | 107 | −35.0 | −15.6 | 5.5 | −25.4 | 184.1 | 166.7 | 51.0 | 268.4 | |||||
| PTV 4 mg | 319 | −44.0 | −16.8 | 6.2 | −31.5 | 184.1 | 155.4 | 52.8 | 268.0 | |||||
| SMV 40 mg | 110 | −42.8 | −16.1 | 6.8 | −30.5 | 184.0 | 153.9 | 52.3 | 267.0 | |||||
| Hounslow | 130 ≤ LDL-C ≤ 220 | PTV 1 mg | 12 wks | −31.4 | All treatments well tolerated | |||||||||
| PRV 10 mg | −22.4 | |||||||||||||
| PTV 2 mg | −39.0 | 162.8– | ||||||||||||
| PRV 20 mg | −28.8 | 166.6 | ||||||||||||
| PTV 4 mg | −44.3 | |||||||||||||
| PRV 40 mg | −34.0 | |||||||||||||
| Japan | JAPAN-ACS | TC ≥ 180, LDL-C ≥ 100 | PTV 4 mg | 8–12 mos | 125 | −36.2 | 16.2 | 9.9 | −21.6 | 130.9 | 119.2 | 45.0 | 196.5 | No significant differences |
| ATV 20 mg | 127 | −35.8 | 21.2 | 8.0 | −21.9 | 133.8 | 116.7 | 43.9 | 197.9 | |||||
| Toi et al | Unspecified | PTV 2 mg | 2–3 wks | 80 | −31.0 | −8.0 | −2.6 | −22.5 | 114.7 | 86.2 | 45.5 | 178.0 | NA | |
| ATV 10 mg | 80 | −27.9 | 0.8 | −5.1 | −22.0 | 122.0 | 120.3 | 45.5 | 191.1 | |||||
Note: Patients with impaired glucose tolerance or Type 2 diabetes mellitus.
Abbreviations: ACS, acute coronary syndrome; n, number of patients; PTV, pitavastatin; PRV, pravastatin; ATV, atorvastatin; SMV, simvastatin; NA, data not available; ADRs, adverse drug reactions; TC, toal cholesterol; TG, triglycerides; LDL-C, low-density lipoprotein cholesterol; HDL-C, high-density lipoprotein cholesterol.
Figure 1Time course of high-density lipoprotein cholesterol levels in long-term clinical studies of pitavastatin.
Note: Data are expressed as mean ± standard deviation. Reference 52 is subanalysis for patients whose baseline high-density lipoprotein cholesterol was <40 mg/dL.