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Biomedical subjects

M Balal

Publications and source records attributed to M Balal.

9 recordsLinked to original sources

Efficacy and safety of vardenafil in renal transplant recipients with erectile dysfunction.

Erectile dysfunction (ED) profoundly affects the quality of life. The prevalence of ED in renal transplant recipients is reported by high as 50% to 60%. We evaluated the efficacy and safety of vardenafil in these patients with ED as well as its effects on graft function and on cylosporine or tacrolimus concentrations. Thirty-nine recipients with ED and serum creatinine values<2 mg/dL were treated with vardenafil. ED was assessed using the self-administered International Index of Erectile Function (IIEF). ED was diagnosed by using penile color-Doppler ultrasonography and intracavernosal injection. Vardenafil efficacy was assessed by readministering the IIEF questionnaire after 4 weeks of therapy. Serum creatinine levels, creatinine clearances, and cyclosporine/tacrolimus concentrations were measured before and after vardenafil therapy. Twenty-one recipients with ED served as placebo controls and 15 without ED as another control group. The IIEF scores improved from 12.80+/-3.5 to 26.46+/-2.4 in vardenafil-treated patients with ED (P<.001). Renal function and cyclosporine/tacrolimus concentrations did not change with vardenafil therapy. Side effects were observed in 7 (18%) patients: headache in three, palpitations in one, flushing in two, and dyspepsia in one. This study demonstrated that ED improved with vardenafil in renal transplant recipients with ED. For 4 weeks vardenafil therapy was free of side effects. Renal function tests did not change. Also, no dose change in immunosuppressive drugs was required during 4 weeks of verdanafil therapy.

Adult↗

Effects of pentoxifylline on the cytokines that may play a role in rejection and resistive index in renal transplant recipients.

Pentoxifylline (PTX) is a nonselective phosphodiesterase inhibitor that inhibits the production of TNFalpha and IL6 and IL-10 cytokines. In renal rejection TNFalpha, IL-6, and IL-10 may have important roles. In this study, 22 renal transplant recipients treated with tacrolimus, prednisolone, and mycophenolate mofetil were prescribed PTX (2 x 600 mg/d) for 3 months (GI), and 20 similar patients not receiving PTX were used as controls (GII). Stable subjects whose serum creatinine was lower than 1.8 mg/dL and were more than 6 months posttransplant, were enrolled into this study if the blood pressure was well controlled and there was no diabetes mellitus, infection, or inflammation. At the end of 3 months TNF-alpha decreased from 4.2 +/- 2.1 to 2.4 +/- 0.7 (P = .001) and 4.0 +/- 2.2 to 3.9 +/- 1.7 (P = .718), IL-10 also decreased from 3.90 +/- 1.9 to 2.38 +/- 0.6 (P = .001) and 4.02 +/- 1.6 to 3.82 +/- 1.5 (P = .225) in GI and GII, respectively. For IL-10 and TNF-alpha the alterations between baseline and the last visit of GI and GII were significant (P < .002 for all). Resistive index (RI) decreased in GI but the difference in alterations between baseline and the last visit of GI and GII was marginal. In summary IL-10 and TNF-alpha levels decreased in stable recipients treated with PTx. RI also decreased marginally secondary to PTx treatment. PTx was well tolerated and free side effects. PTx did not affect tacrolimus levels or other biochemical and hematological parameters.

Adult↗

Dyslipidemia and weight gain secondary to lifestyle changes in living renal transplant donors.

We evaluated renal function, lipid profile, body weight, and physical activity of living donors in long-term follow-up after nephrectomy. A total of 121 living donors were compared with 81 healthy subjects with normal renal function and no history of any surgery or disease. Before and after donor nephrectomies, we recorded age, body weight, systolic and diastolic blood pressures, serum creatinine, creatinine clearance, lipids, and serum glucose levels of the donors. Preoperative (baseline) and postoperative (last visit) physical activities of donors and controls were evaluated through the Modified Baecke Questionnaire (occupational activities, sports activities, leisure-time activities). There were no differences between donors and controls for age (P = .772), gender (P = .927), and follow-up period (P = .564). According to baseline levels, blood pressure and serum creatinine were increased and creatinine clearance was decreased (P < .001 for all). The mean increases in body weight (P = .012), LDL (P = .004), and triglyceride (P < .001) were higher in donors than in controls. But the mean decrease in HDL was not different between controls and donors (P = .057). Indices of sports and total activities were lower in donors than in controls on the last visit (P < .001). Indices of occupational and leisure-time activities were similar on the last visit in donors and in controls (P = .126, P = .083). The alterations in total cholesterol and total activity showed significant negative correlations in donors (r = -.581, P < .001). Also, the alterations in total cholesterol and body weight showed a significant correlation (r = .25, P = .02). We followed donors together with serum lipid levels, body weight, and total physical activities as well as blood pressure and renal function tests.

Adult↗

Uncommon side effect of MMF in renal transplant recipients.

Mycophenolate mofetil (MMF) is a potent immunosuppressive agent used in renal transplantation. Gastrointestinal and hematological side effects are commonly observed, but hepatotoxicity has not been reported. In this study, we assessed MMF-related hepatotoxicity in renal transplant recipients. A total of 124 renal transplantation recipients (RTRs) were evaluated for elevated liver enzymes associated with MMF, and 79 patients were enrolled to the study. Patients used MMF 2 g/day. The patients who had progressive increase in liver enzymes after renal transplantation and their AST, ALT, GGT, ALP, bilirubin levels, hepatitis, cytomegalovirus (CMV), abdominal ultrasonography, duration of hepatotoxicity, and decreased dosage or withdrawal of MMF were recorded. Also, we evaluated their liver enzymes while the patients were on the waiting list. Of the 79 patients, 11 patients (13.9%) had a progressive increase in liver enzymes. The median (min-max) age of the patients with MMF-hepatotoxicity was 29 (19-54) and 72.7% of them were male. None of the patients had hepatitis B or C, CMV infection, or other possible causes for elevated liver enzymes and their abdominal ultrasonography were normal. High liver enzyme levels regressed after the withdrawal (n=6) or reduce dosage (n=5) of MMF. The median time of the increase in liver enzymes was 28 (4-70) days and after 50% reduction or withdrawal of MMF, returned to normal values in 16 (4-210) days. The median levels of ALT in waiting list (I), before (II), and after (III) reduction dosage or withdrawal of MMF were 22.0 (3-22), 222.0 (51-508), and 33.0 (21-64) U/L, respectively (p I-II=0.004,p I-II=0.013, andp II-III=0.005). There were no differences for ALP, GGT, total bilirubin, and direct bilirubin levels. Also, the correlation between recovery time of ALT and persistence time of ALT elevation before adjustment of MMF was significant (r=0.739, p=0.009). Consequently, after renal transplantation, hepatotoxicity can occur due to a lot of reason including MMF usage. If hepatotoxicity related to MMF is not considered, especially in the early period of renal transplantation, resolution of hepatotoxicity can be required long term.

Adult↗

Dipyridamole for renal phosphate leak in successfully renal transplanted hypophosphatemic patients.

AIM AND BACKGROUND: Hyphosphatemia can be seen in renal transplant recipients. Hyperparathyroidism, glucocorticoid treatment, renal denervation and impairment of renal tubular phosphate reabsorption are the most common causes of hyphosphatemia in these patients. It is well-known that dipyridamole enhances renal tubular phosphate reabsorption in some clinical conditions. We did not find any information about the effect of dipyridamole in renal transplant recipients (RTRs) with hypophosphatemia. For this reason, we decided to give dipyridamole 11 RTRs with hypophosphatemia. PATIENTS AND METHODS: Eleven RTRs whose serum phosphate and creatinine levels were below 2.5 mg/dl and 2 mg/dl, respectively, were included in this study. None of the patients received drugs altering phosphate metabolism and they did not change their routine diets. Urinary phosphate excretion and tubular phosphate reabsorption (TPR) were calculated before and 3 weeks after dipyridamole treatment. RESULTS: The mean levels of serum-urine (daily) phosphate and TPR before dipyridamole treatment were 1.94 +/- 0.46 mg/dl, 7,187.5 +/- 1,833.49 mg/day and -2.78 +/- 0.62, respectively. After treatment, the mean levels of serum-urine phosphate and TPR were 2.73 +/- 0.46 mg/dl, 4,845.27 +/- 1,138.99 mg/day and -1.48 +/- 0.80, respectively. Serum and urine phosphate levels and TPR were found to be significantly different before and after dipyridamole therapy (p < 0.05). CONCLUSION: Short-term dipyridamole therapy increased TPR and serum phosphate levels and decreased urinary phosphate excretion. We did not observe negative effect on renal functions in these cases. Although the number of the cases included in this study is small, dipyridamole is an effective choice in management of hypophosphatemic RTRs.

Administration, Oral↗

Long-term comparative results of C0 and C2 monitoring of CyA in renal transplanted patients.

The purpose of this study was to evaluate the effects of CyA monitoring using C0 monitoring (fasting level after 12 h from last dose), and C2 monitoring (2 h after morning dose) on renal functions, lipid levels, CyA levels, and daily dosages of CyA in renal transplanted patients in the posttransplant period from the first month to the 36th month. In our center between 1992-2003, 37 of the 54 renal transplanted patients were treated with CyA, prednisolone, and mycophenolate mofetil or azathioprine. The mean age was 32.36 +/-10.32 and 35.00 +/- 10.23 (p = 0.39) in C0 (M/F: 18/7) and in C2 (9/3), respectively. Cadaveric donor (d), living related d, and living unrelated d were in four patients (p), 17 p and four p in C0, and two p, seven p, and three p in C2, respectively (p = 0.79). Chronic allograft nephropathy (CAN) developed in 13 p (52%) and one p (8.3%) in C0 and in C2, respectively (p =0.013). Creatinine clearance values were 72.31 +/- 23.10 mL/min and 78.73 +/- 22.42 mL/min (p:0.621) at first month, 64.97 +/- 22.58 mL/min and 78.00 +/- 19.90 mL/min (p:0.065) at sixth month, 56.50 +/- 19.62 mL/min and 76.62 +/- 21.06 mL/min (p:0.006) at 12th month, 50.28 +/- 24.79 mL/min and 80.87 +/- 18.24 mL/min (p < 0.001) at 24th month, and 55.15 +/- 19.21 mL/min and 86.65 +/- 14.97 mL/min (p:0.004) at 36th month in C0 and C2, respectively. The mean daily dosages of CyA were 354.35 +/- 122.63 and 266.67 +/- 64.95 mg/d (p:0.031) at first month, 277.17 +/- 77.94 and 250.00 +/- 73.31 mg/d (p:0.228) at sixth month, 247.92 +/- 58.48 and 211.36 +/- 62.61 mg/ d (p:0.09) at 12th month, 232.95 +/- 56.90 and 170.45 +/- 41.56 mg/ d (p:0.003) at 24th month, and 240.63 +/- 52.34 and 153.57 +/- 46.61 mg/d (p:0.002) at 36th month in C0 and C2, respectively. In C2, systolic and diastolic blood pressure, uric acid, total cholesterol (C), LDL-C, and triglyceride levels were lower than those monitored with C0. In C2, HDL-C levels were also higher than those monitored with C0. None of these patients returned to dialysis or died in this period. In conclusion, during the first 36 months with monitoring C2, preservation of renal function, control of blood pressure serum lipids and uric acid were better than those with monitoring C0. In addition, daily dose of CyA was lower in C2 method and, at the same time, this effect of C2 can be accepted as cost effective.

Adult↗

Report of a renal transplanted patient with fibroadenoma occurring in a short time.

The incidence of breast cancer in renal transplant patients is similar to that of general population. But fibroadenomas may be seen as a result of exposure to cyclosporine (CyA). Herein we report the case of a 32-year-old woman who received a renal transplant and had a breast fibroadenoma. She had been prescribed CyA, azathioprine, and steroids for 4 years. At the end of the first year a palpable mass had been detected in her right breast; the pathologic diagnosis was fibroadenoma. At the 4th year after transplantation, immunosuppressive treatment was switched to CyA and mycopholate mofetil (MMF) because of an increased serum creatinine level. Two years later seven breast nodes from both breasts were detected by ultrasonography. Totally excision was performed revealing a histopathologic diagnosis of fibroademata as before. In this case, the combination of CyA and MMF administration seemed to cause an increase in the number of nodules in a short time. The cause of fibroadenomas may be related to drug-induced secretion of proliferative or anti-apoptotic cytokines.

Adult↗

Coexistence of cystic intra-abdominal lymphangiomas and diffuse venous haemangiomas in adult life.

Diffuse haemangioma and intra-abdominal lymphangioma are rare in adults. In this case report, we present a 33-year-old female with coexisting multiple cutaneous and visceral cavernous haemangiomas and two huge intra-abdominal lymphangiomas of 25 and 35 cm in diameter. The organs involved were the liver, pericardium, renal hilus and bladder. She died due to disseminated intravascular coagulation and multiorgan failure, which resembled Kasabach-Merritt syndrome. The coexistence of generalised haemangiomas and intra-abdominal lymphangiomas and the lack of complaints until the age of 33 years makes her an unusual case in the literature. We also emphasise the other clinical conditions that should be considered in the differential diagnosis.

Abdominal Neoplasms↗