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1.
Adv Ther ; 41(4): 1553-1575, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38363466

ABSTRACT

INTRODUCTION: Risk factors for thromboembolic events in patients with dialysis-dependent chronic kidney disease (CKD) receiving roxadustat are unknown. Iron deficiency has been reported as a risk factor for thrombosis in the general population. METHODS: Thromboembolic events with onset before and after week 12 in patients receiving roxadustat were evaluated in this pooled analysis of four global phase 3 trials, PYRENEES, SIERRAS, HIMALAYAS, and ROCKIES. Baseline risk factors for thromboembolic events were investigated by Cox regression analyses. Nested case-control analyses with matched pairs of case-control data explored the relationship between thromboembolic events and last known laboratory parameters before event onset. RESULTS: Of 2354 patients, 1026 thromboembolic events were observed in 568 patients. Baseline risk factors found included hemodialysis (vs peritoneal dialysis), advanced age (≥ 65 years), Black race, high high-sensitivity C-reactive protein, and history of thromboembolism, cardiovascular disease, or diabetes. Univariate case-control analyses revealed that high hemoglobin rate of rise (≥ 0.5 g/dL/week; odds ratio [OR] 2.09; 95% confidence interval [CI] 0.98-4.46) showed a trend towards increased risk of thromboembolic events before week 12, and high rate of hemoglobin decline was associated with events after week 12 (< - 0.5 g/dL/week; OR 3.73; 95% CI 1.68-8.27) as compared to stable hemoglobin levels (≥ - 0.1 to < 0.1 g/dL/week). Multivariate case-control analyses showed that low last known hemoglobin level (< 10 g/dL: adjusted OR 1.91; 95% CI 1.04-3.50; vs ≥ 12 g/dL) and low last known transferrin saturation (TSAT < 10%: adjusted OR 3.78; 95% CI 1.71-8.39; vs ≥ 30%) before event onset were associated with events after week 12. In patients with last known TSAT < 30%, higher roxadustat dose was associated with thromboembolic events; however, no association was observed in those with TSAT ≥ 30%. CONCLUSIONS: Among various risk factors for thromboembolic events, it is reasonable to avoid a rapid increase and decline in hemoglobin levels as well as ensure TSAT ≥ 30%, rather than increasing the roxadustat dose. Graphical Abstract available for this article. TRIAL REGISTRATION: NCT02278341, NCT02273726, NCT02052310, NCT02174731.


Roxadustat is an oral treatment for patients with anemia, or low hemoglobin levels, due to chronic kidney disease. Thromboembolic events are caused by a blood clot blocking blood vessels, and they have occurred in clinical trials of roxadustat. This analysis evaluated risk factors for thromboembolic events in patients receiving roxadustat to treat anemia of chronic kidney disease who are on dialysis. Two different statistical approaches were used to investigate risk factors for thromboembolic events that occurred before and after 12 weeks of roxadustat treatment. We found that rapid improvement of anemia after starting roxadustat treatment may be associated with an increased risk of thromboembolic events occurring in the first 12 weeks of treatment. In contrast, severe anemia or worsening of anemia was associated with an increased risk of thromboembolic events after week 12. Low iron levels in the blood or greater decline of available iron in the blood from baseline were also detected as risk factors for the events after week 12, suggesting that iron supplementation is important in patients who are iron-deficient. Moreover, thromboembolic events were also associated with older age (≥ 65 years), Black race, high levels of inflammation, and having had a previous thromboembolic event or having a history of cardiovascular disease or diabetes. Some risk factors, such as iron status and hemoglobin levels, can be changed after beginning roxadustat treatment and should be monitored and modified, as needed.


Subject(s)
Anemia , Renal Insufficiency, Chronic , Thromboembolism , Humans , Aged , Anemia/etiology , Renal Dialysis/adverse effects , Renal Insufficiency, Chronic/complications , Renal Insufficiency, Chronic/therapy , Hemoglobins/analysis , Glycine/adverse effects , Isoquinolines/adverse effects , Risk Factors , Thromboembolism/etiology , Thromboembolism/chemically induced
2.
Clin J Am Soc Nephrol ; 11(1): 108-18, 2016 Jan 07.
Article in English | MEDLINE | ID: mdl-26681132

ABSTRACT

BACKGROUND AND OBJECTIVES: Hemodialysis (HD) per se entails vascular dysfunction in patients with ESRD. Endothelial dysfunction is a key step in atherosclerosis and is characterized by impaired flow-mediated dilation (FMD). Interventional studies have shown that cocoa flavanol (CF)-rich supplements improve vascular function. Aim of this study was to investigate the effect of flavanol-rich bioactive food ingredients on acute and chronic HD-induced vascular dysfunction in ESRD. DESIGN, SETTING, PARTICIPANTS, & MEASUREMENTS: We conducted a randomized, double-blind, placebo-controlled trial from 2012 to 2013. Fifty-seven participants were enrolled, ingested CF-rich beverages (900 mg CF per study day), and were compared with those ingesting CF-free placebo. This included (1) a baseline cross-over acute study to determine safety and efficacy of CF and (2) a subsequent chronic parallel group study with a 30-day follow-up period to study effects of CF on HD-mediated vascular dysfunction entailing (3) an acute substudy during HD in flavanol-naive patients and (4) an acute on chronic study during HD. Primary and secondary outcome measures included changes in FMD and hemodynamics. RESULTS: CF ingestion was well tolerated. Acute ingestion improved FMD by 53% (3.2±0.6% to 4.8±0.9% versus placebo, 3.2±0.7% to 3.3±0.8%; P<0.001), with no effects on BP or heart rate. A 30-day ingestion of CF led to an increase in baseline FMD by 18% (3.4±0.9% to 3.9±0.8% versus placebo, 3.5±0.7% to 3.5±0.7%; P<0.001), with reduced diastolic BP (73±12 to 69±11 mmHg versus placebo, 70±11 to 73±13 mmHg; P=0.03) and increased heart rate (70±12 to 74±13 bpm versus placebo, 75±15 to 74±13 bpm; P=0.01). No effects were observed for placebo. Acute ingestion of CF during HD alleviated HD-induced vascular dysfunction (3.4±0.9% to 2.7±0.6% versus placebo, 3.5±0.7% to 2.0±0.6%; P<0.001). This effect was sustained throughout the study (acute on chronic, 3.9±0.9% to 3.0±0.7% versus placebo, 3.5±0.7% to 2.2±0.6; P=0.01). CONCLUSIONS: Dietary CF ingestion mitigates acute HD-induced and chronic endothelial dysfunction in patients with ESRD and thus, improves vascular function in this high-risk population. Larger clinical trials are warranted to test whether this translates into an improved cardiovascular prognosis in patients with ESRD.


Subject(s)
Cacao/chemistry , Kidney Failure, Chronic/physiopathology , Polyphenols/pharmacology , Renal Dialysis/adverse effects , Vasodilation/drug effects , Adult , Aged , Catechin/pharmacology , Cross-Over Studies , Dietary Supplements , Double-Blind Method , Endothelium, Vascular/drug effects , Endothelium, Vascular/physiopathology , Female , Humans , Kidney Failure, Chronic/therapy , Male , Middle Aged , Protective Agents/pharmacology
3.
Nephrol Dial Transplant ; 29(5): 1061-73, 2014 May.
Article in English | MEDLINE | ID: mdl-24302608

ABSTRACT

BACKGROUND: This study compared the effects of short-term titrated colestilan (a novel non-absorbable, non-calcium, phosphate binder) with placebo, and evaluated the safety and efficacy of colestilan over 1 year compared with sevelamer, in patients with chronic kidney disease (CKD) 5D. METHODS: This prospective multicentre study comprised a 4-week phosphate binder washout period, a 16-week short-term, flexible-dose, treatment period (including a 4-week placebo-controlled withdrawal period) and a 40-week extension treatment phase. RESULTS: At Week 16 (the end of the 4-week placebo-controlled withdrawal period), serum phosphorus level was 0.43 mmol/L (1.32 mg/dL) lower with colestilan than placebo (P < 0.001; primary end point). Serum LDL-C level was also lower with colestilan than with placebo (P < 0.001). Both colestilan and sevelamer produced significant reductions from baseline in serum phosphorus levels (P < 0.001), maintained for 1 year, and the proportion of patients achieving target levels of ≤1.78 mmol/L (5.5 mg/dL) or ≤1.95 mmol/L (6.0 mg/dL) at study end were similar (65.3 and 73.3%, respectively, for colestilan, and 66.9 and 77.4%, respectively, for sevelamer). Serum calcium level remained stable in the colestilan group but tended to increase slightly in the sevelamer group (end-of-study increase of 0.035 mmol/L over baseline). Both binders produced similar reductions from baseline in LDL-C level (P < 0.001), and responder rates after 1 year, using a target of <1.83 mmol/L (70 mg/dL) or <2.59 mmol/L (100 mg/dL) were similar in both groups (50.7 and 85.3% for colestilan and 54.0 and 80.6% for sevelamer). Colestilan was generally well tolerated. CONCLUSIONS: Colestilan is effective and safe for the treatment of hyperphosphataemia in patients with CKD 5D, and affords similar long-term phosphorus and cholesterol reductions/responder rates to sevelamer.


Subject(s)
Bile Acids and Salts/therapeutic use , Hyperphosphatemia/drug therapy , Polyamines/therapeutic use , Renal Dialysis , Renal Insufficiency, Chronic/therapy , Adult , Aged , Aged, 80 and over , Biomarkers/blood , Calcium/blood , Cholesterol/blood , Female , Humans , Hyperphosphatemia/etiology , Male , Middle Aged , Phosphorus/blood , Prospective Studies , Renal Insufficiency, Chronic/complications , Sevelamer , Young Adult
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