Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0011849 (diabetes)
277,896 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

If hypertension in patients with diabetes mellitus type II is not adequately controlled by angiotensin-converting enzyme inhibitors (ACE-i), a beta-blocker is frequently added as second-line therapy. Recently, large randomized trials demonstrated the beneficial effect of second-generation dihydropyridine calcium-channel blockers in these patients. These compounds are increasingly being used to replace beta-blockers. Withdrawal of beta-blockers may influence diabetic control and may cause rebound hypertension. Any rebound hypertension from beta-blocker withdrawal may not occur if the beta-blocker is replaced with a calcium-channel blocker. A calcium-channel blocker will influence vascular resistance (VR) and blood pressure differently than a beta-blocker. Thirty-four patients with diabetes mellitus type II and a resting diastolic blood pressure above 90 mm Hg despite enalapril 10 mg daily (or equipotent dosages of other ACE-i) for at least 3 months were treated in an open label sequential comparison with the same ACE-i in combination with the beta-blocker metoprolol 100 mg for 3 months, and, subsequently for 3 more months with the same ACE-i in combination with the dihydropyridine calcium-channel blocker lercanidipine 10 mg once daily. After 6 weeks, patients with a diastolic blood pressure above 90 mm Hg were titrated up to 200 mg metoprolol or 20 mg lercanidipine once daily. Patients were examined every 6 weeks during the trial, and after 2 weeks while receiving lercanidipine. In addition to blood pressure measurements, VR was measured by iridium strain gauge plethysmography and expressed in units (1 unit = 1 mm Hg/mL blood/100 mL tissue per minute). Two of 34 patients did not complete the protocol because of non-compliance with the lercanidipine treatment in the first 2 weeks of treatment. Their data are included in the analysis. No rebound hypertension 14 days after the change-over of therapies was observed. (Mean arterial pressures [MAPs] were not significantly different from the point of withdrawal of the beta-blockers.) However, heart rate rose from 69+/-7 to 94+/-10 beats/min (p < 0.001). After 3 months on lercanidipine, MAP fell by 6+/-10 mm Hg (p = 0.002) compared to the point of withdrawal of the beta-blocker. Vascular resistance fell by 6.28+/-11.91 units (p<0.01), while glucosylated hemoglobin (HbA1c) rose by 0.4+/-0.5% (p<0.001) and body weight rose by 0.6+/-0.6 kg (p < 0.01). Multiple regression analysis revealed significant associations between decrease in VR, increase in HbAlc, and decrease in MAP, and partial dependence of these variables on one another. In hypertensive patients with diabetes type II, replacement of ACE-i and metoprolol with ACE-i and lercanidipine does not appreciably influence metabolic control and does not cause rebound hypertension. Lercanidipine was more effective than metoprolol as a second-line antihypertensive drug in these patients. At least two mechanisms may be involved: withdrawal of a pressor effect from the beta-blocker, and calcium-channel-mediated vasodilation.
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PMID:Diabetics with hypertension not controlled with ACE inhibitors: alternate therapies. 1151 86

Increased levels of metalloproteinase (MMP)-9 have been shown in hypertensive patients. Lercanidipine is a calcium channel blocker with antioxidant actions. We examined whether lercanidipine produces antioxidant effects and reduces MMP-9 activity in hypertensive patients in a placebo-controlled, crossover, single-blinded design study including 18 healthy volunteers (control group), and 14 hypertensive patients without (N = 7) or with (N = 7) diabetes mellitus. Hypertensive patients were randomized to treatment with placebo (15 days) or lercanidipine 20 mg/d (15 days). Arterial blood pressure was evaluated with ambulatory blood pressure monitoring. Plasma thiobarbituric acid reactive species (TBA-RS) levels were measured to assess oxidative stress, and plasma MMP-2 and MMP-9 were assayed by gel zymography before and after treatment with placebo or lercanidipine. Plasma concentrations of tissue inhibitor of metalloproteinases (TIMP)-1 were measured by ELISA. Lercanidipine reduced mean arterial pressure by 7% in hypertensive patients without diabetes (P < 0.05), but not in hypertensive patients with diabetes. It significantly decreased plasma TBA-RS levels in hypertensive patients without and with diabetes (95% confidence interval [CI], -26 to -46%, P = 0.048, and -22 to -33%, P = 0.036, respectively). In addition, lercanidipine decreased activated MMP-9 in hypertensive patients without and with diabetes (95% CI, -19 to -47%, P = 0.047, and -80 to -96%, P = 0.010, respectively). No effects were seen on MMP-2. No significant differences or changes in plasma TIMP-1 concentrations were found. Therefore, we demonstrate for the first time that lercanidipine consistently decreased MMP-9 activity and reduced oxidative stress in hypertensive patients, thus suggesting a mechanism probably involved in the pleotropic actions of lercanidipine.
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PMID:Lercanidipine reduces matrix metalloproteinase-9 activity in patients with hypertension. 1642 95

The study was undertaken to determine the effect of treatment with the dihydropyridine-type calcium antagonist lercanidipine on the renal vasculature in Cohen-Rosenthal diabetic hypertensive rats, a genetic model of hypertension associated with type 2 diabetes mellitus. Eight animals were given a daily oral dose of 3 mg/kg lercanidipine in drinking water for 8 weeks, and 6 control animals received no treatment. The effects on blood pressure, glucose level, and kidney microanatomy were evaluated. Lercanidipine reduced systolic blood pressure and glucose level. In the control group small arteries and glomerular arterioles exhibited wall thickening and luminal narrowing. Lercanidipine administration prevented the changes in small-sized arteries and glomerular arterioles. The glomerular changes observed in the untreated Cohen-Rosenthal diabetic hypertensive rats were not seen in the lercanidipine-treated animals. Lercanidipine also had beneficial effects on the renal vasculature, suggesting that the compound may be considered for treating hypertension associated with diabetes.
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PMID:Effect of lercanidipine on kidney microanatomy in Cohen-Rosenthal diabetic hypertensive rats. 1756 85

Abnormal matrix metalloproteinases (MMPs) activity causes cardiovascular diseases. Because hyperglycemia increase MMPs activities through increased oxidative stress, we hypothesized that antioxidant effects produced by lercanidipine could attenuate the increases in MMP-2 expression/activity in diabetic rats. Control and diabetic (alloxan-induced diabetes) rats received lercanidipine 2.5 mg/kg/day (or tap water) starting three weeks after alloxan (or vehicle) injections. Blood pressure was monitored weekly. After six weeks of treatment, vascular reactivity and structural changes were assessed in aortic rings. MMP-2 levels were determined by gelatin zymography, and MMP-2/tissue inhibitor of metalloproteinases (TIMP)-2 mRNA levels were determined by quantitative real time RT-PCR. Plasma thiobarbituric acid reactive substances concentrations were determined by fluorimetry. Lercanidipine produced antihypertensive effects (201+/-5 vs. 163+/-7 mm Hg in diabetic rats untreated and treated with lercanidipine, respectively; P<0.01) and reversed the impairment in endothelium-dependent vasorelaxation in diabetic rats. Increased MMP-2 and Pro-MMP-2 levels were found in the aortas of diabetic rats (both P<0.001). Lercandipine attenuated the increases in oxidative stress and in MMP-2 (both P<0.05). While diabetes induced no major structural changes, it caused a 16-fold increase in the ratio of MMP-2/TIMP-2 mRNA expression, which was completely reversed by lercanidipine (both P<0.001). These results show that antioxidant and beneficial vascular effects produced by lercanidipine in diabetic rats are associated with reversion of the imbalance in vascular MMP-2/TIMP-2 expression.
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PMID:Lercanidipine decreases vascular matrix metalloproteinase-2 activity and protects against vascular dysfunction in diabetic rats. 1893 Jul 22

The review of literature presents the basic principles of treatment of arteril hypertension in patients with chronic kidney disease. The possibilities of combination therapy with dihydropyridine calcium antagonist lercanidipine and third-generation ACE inhibitor enalapril. Presented studies showing nephroprotective properties of each of the drugs included in the fixed combination in patients with nephropathy. Lercanidipine is highly lipophilic and vazoselektivnost proved its clinical efficacy in patients with proteinuria and decreased kidney function. Given in the literature demonstrating the combination of lercanidipine + enalapril. This combination makes it possible to achieve a more pronounced reduction in blood pressure, including elderly patients, patients with diabetes and obesity. The combination of pharmacological effects of lercanidipine and enalapril, creates additional opportunities for organo and reduce the risk of side effects of therapy.
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PMID:[Treatment of arteril hypertension in patients with chronic kidney disease: a fixed combination of lercanidipine and enalapril]. 2480 Apr 84

Calcium channel blockers (CCBs), particularly dihydropyridine-CCBs, (DHP-CCBs), have an established role in antihypertensive therapy, either as monotherapy or in combination with other antihypertensive drugs. Two hundred and fifty-one papers published in PubMed in English between January 1, 1990, and October 31, 2016, were identified using the keyword "lercanidipine." Lercanidipine is a lipophilic third-generation DHP-CCB, characterized by high vascular selectivity and persistence in the smooth muscle cell membranes. Lercanidipine is devoid of sympathetic activation, and unlike the first and second generation of DHP-CCBs, it dilates both the afferent and the efferent glomerular arteries, while preserving the intraglomerular pressure. In addition, lercanidipine prevents renal damage induced by angiotensin II and demonstrates anti-inflammatory, antioxidant, and anti-atherogenic properties through an increasing bioavailability of endothelial nitric oxide. It is associated with a regression of microvascular structural modifications in hypertensive patients. The efficacy of lercanidipine has been demonstrated in patients with different degrees of hypertension, in the young and elderly and in patients with isolated systolic hypertension. In patients with diabetes and renal impairment, lercanidipine displays a renal protection with a significant decrease of microalbuminuria and improvement of creatinine clearance. Lercanidipine is well tolerated and is associated with a very low rate of adverse events, particularly ankle edema, compared with amlodipine and nifedipine. In conclusion, lercanidipine produces a sustained blood pressure-lowering activity with a high rate of responder/normalized patients, associated with a favorable tolerability profile.
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PMID:Lercanidipine in the Management of Hypertension: An Update. 2947 47