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Biomedical subjects

Josep M Campistol

Publications and source records attributed to Josep M Campistol.

At least 19 recordsLinked to original sources

Novel Insights into the Clinical Features, Genetic Spectrum and Clonal Evolution of Patients Carrying NLRP3 Mosaicism.

NLRP3 mosaicism is a well-established mechanism causing the monogenic autoinflammatory disease named cryopyrin-associated periodic syndromes (CAPS). The number of reported patients with NLRP3 mosaicism is small, and the knowledge about the long-term disease behavior is limited. Herein we assembled the largest cohort of individuals with NLRP3 mosaicism reported to date to obtain additional evidence that strengthens the understanding of this disease. The novel genetic data were obtained by using Sanger and next-generation sequencing methods, whereas in vitro analyses determined the functional consequences of detected variants. A total of seventeen individuals with NLRP3 mosaicism were enrolled, with 16/17 experiencing different CAPS phenotypes. An overrepresentation of late-onset forms was detected (37.5%). Overall, clinical manifestations, analytical results, and outcomes of treatments were markedly similar to those detected in patients with germline variants. A large mutational diversity was identified, with 16 different variants among 17 individuals. Two main patterns of mosaicism (extended vs. myeloid-restricted) were detected, with the last one overrepresented in the late-onset group. The evaluation of mosaicism over time identified three different patterns, being the group with stable mosaicism the largest one. Collected evidence supports the marked similarities among patients carrying somatic or germline NLRP3 variants. The overrepresentation of NLRP3 mosaicism in late-onset forms should be considered in patients with inflammatory manifestations starting in adulthood. Analysis of mosaicism at the biological level confirms the two known patterns of corporal distribution and reveals that mosaicism remains stable over time in most patients, but it may also vary during the course of the disease.

Humans↗

Increase of proteinuria after conversion from calcineurin inhibitor to sirolimus-based treatment in kidney transplant patients with chronic allograft dysfunction.

BACKGROUND: Conversion from calcineurin inhibitor to sirolimus, rapamycin has become an option in patients with chronic allograft dysfunction (CAD). However, in many cases an increase of proteinuria has been observed. The aim was to characterize the course of this so far unexplained proteinuria after conversion. METHODS: In 149 renal transplant patients from various Spanish centres, proteinuria and renal function were analysed 6 months before until 6 months after conversion. Patients were divided into three groups according to mean proteinuria before conversion (1: 300-3500 mg/day; 3:>3.5 g/day). RESULTS: Generally patients showed an increase of proteinuria from 864+/-1441 (0-12125) to 1541+/-1878 (0-10976) mg/day after conversion; P<0.001. Group 1: 145+/-92 vs 669+/-868 mg/day, P<0.001; group 2: 1041+/-799 vs 1995+/-2021 mg/day, P<0.001; group 3: 6205+/-3184 vs 4859+/-2122 mg/day, P=NS. Patients with an increase of proteinuria of >500 mg/day (n=60; 40%) had a higher serum creatinine before conversion compared with patients with no or moderate increase (2.5+/-0.8 vs 2.15+/-0.72 mg/dl; P=0.002). The group that experienced an increase>500 mg/day had a higher serum creatinine after conversion compared with the patients with no or moderate increase (2.8+/-1.0 vs 2.1+/-1.2; P<0.001). Of 64 patients, 19 in group 1 showed an increase>500 mg/day. CONCLUSION: Conversion for CAD can be associated with an increase of proteinuria in patients with pre-existing renal damage; however, it preserves renal function in patients with better creatinine and proteinuria before conversion, and might not be of benefit if advanced loss of renal function and high proteinuria are already present before conversion.

Calcineurin Inhibitors↗

Potential role of proliferation signal inhibitors on atherosclerosis in renal transplant patients.

Over the last decade, there has been a decrease in acute graft rejection rates following renal transplantation; however, this has not corresponded with an improvement in long-term outcomes of transplantation. One of the major causes of long-term morbidity and mortality in renal transplant recipients is cardiovascular disease. Immunosuppressive regimens, especially those including steroids and calcineurin inhibitors, have a negative role in the induction of cardiovascular risk factors. The proliferation signal inhibitors (PSIs)/mammalian target of rapamycin (mTOR) inhibitors sirolimus and everolimus have shown considerable promise in reducing acute rejection in renal transplant recipients. Although PSIs are associated with an increase in hyperlipidaemia (hypercholesterolaemia and hypertriglyceridaemia), which is a major risk factor for atherosclerosis and associated cardiovascular disease, recent studies with sirolimus have demonstrated protection from atheroma progression in hyperlipidaemic apolipoprotein E-deficient mice. Here, we summarize the results of pre-clinical and clinical studies with sirolimus and everolimus, with particular emphasis on the beneficial and adverse effects that these drugs exert on the cardiovascular system, and the underlying molecular mechanisms.

Atherosclerosis↗

Sirolimus therapy after early cyclosporine withdrawal reduces the risk for cancer in adult renal transplantation.

Sirolimus (SRL) is a mammalian target of rapamycin inhibitor that, in contrast to cyclosporine (CsA), has been shown to inhibit rather than promote cancers in experimental models. At 3 mo +/- 2 wk after renal transplantation, 430 of 525 enrolled patients were randomly assigned to remain on SRL-CsA-steroids (ST) or to have CsA withdrawn and SRL troughs increased two-fold (SRL-ST). Median times to first skin and nonskin malignancies were compared between treatments using a survival analysis. Mean annualized rates of skin malignancy were calculated, and the relative risk was determined using a Poisson model. Malignancy-free survival rates for nonskin malignancies were compared using Kaplan-Meier estimates and the log-rank test. At 5 yr, the median time to a first skin carcinoma was delayed (491 versus 1126 d; log-rank test, P = 0.007), and the risk for an event was significantly lower with SRL-ST therapy (relative risk SRL-ST to SRL-CsA-ST 0.346; 95% confidence interval 0.227 to 0.526; P < 0.001, intention-to-treat analysis). The relative risks for both basal and squamous cell carcinomas were significantly reduced. Kaplan-Meier estimates of nonskin cancer were 9.6 versus 4.0% (SRL-CsA-ST versus SRL-ST; P = 0.032, intention-to-treat analysis). Nonskin cancers included those of the lung, larynx, oropharynx, kidney, gastrointestinal tract, prostate, breast, thyroid, and cervix as well as glioma, liposarcoma, astrocytoma, leukemia, lymphoma, and Kaposi's sarcoma. Patients who received SRL-based, calcineurin inhibitor-free therapy after CsA withdrawal at month 3 had a reduced incidence of both skin and nonskin malignancies at 5 yr after renal transplantation compared with those who received SRL therapy combined with CsA. Longer follow-up and additional trials are needed to confirm these promising results.

Adult↗

Sirolimus monotherapy: feasible immunosuppression for long-term follow-up of kidney transplantation--a pilot experience.

Chronic allograft nephropathy (CAN), cardiovascular mortality, and posttransplant malignancy are complications of conventional immunosuppression after kidney transplantation. The aim was to study feasibility of sirolimus (SRL) maintenance monotherapy in a pilot experience. All patients with SRL monotherapy of at least 6 months follow-up were included. In 19 patients, age 58 (34-74) years, SRL monotherapy was introduced 98.1 (49-193) months after transplantation by withdrawing concomitant immunosuppressants from protocols already including SRL or introducing SRL and withdrawing other immunosuppressants. Follow-up is 20.0 (6-41) months. One patient died from hepatocellular carcinoma, diagnosed before SRL monotherapy, with functioning graft. No rejections occurred. SRL trough concentration was 10.7 (4.6-16.1) microg/L. Creatinine (1.77 [1.0-2.9] mg/dL vs. 1.68 [0.8-3.3] mg/dL after 6 months, 1.97 [0.8-4.6] mg/dL at last follow-up; P=NS). Proteinuria increased tendentially (333 [67-893] vs. 890 [46-4011] mg/day). No significant changes of hemoglobin, triglycerides, or cholesterol occurred. SRL monotherapy late after kidney transplantation is feasible in selected patients.

Adult↗

Conversion from calcineurin inhibitors to sirolimus in chronic allograft dysfunction: changes in glomerular haemodynamics and proteinuria.

BACKGROUND: The study was conducted in order to describe possible intraglomerular haemodynamic changes inducing proteinuria after 14 patients with chronic allograft dysfunction were converted from calcineurin inhibitors (CIs) to sirolimus without changing concomitant immunosuppression or antihypertensive treatment. METHODS: Creatinine, glomerular filtration rate (GFR), proteinuria, renal functional reserve (RFR) and effective renal plasma flow (ERPF) were determined before and 8 months after conversion. Intraglomerular pressure (P(G)), afferent arteriolar resistance (AAR) and efferent arteriolar resistance (EAR) were calculated using Gomez's formula. RESULTS: Creatinine (1.97 vs 2.075 mg/dl; P = 0.270) and GFR (40 vs 43 ml/min; P = 0.505) remained unchanged, proteinuria increased (338 vs 1146 mg/24 h; P = 0.006), RFR decreased (34.84 vs 13.47%; P = 0.019), ERPF (248 vs 310.6 ml/min; P = 0.0625) and P(G) (42.72 vs 46.17 mmHg; P = 0.0625) tendentially increased and AAR tendentially decreased (14.12 vs 10.28 dyne/s/cm(5); P = 0.0625). CONCLUSION: After conversion, P(G) shows a tendency to increase and RFR decreases significantly-characteristics of hyperfiltration, which could possibly partially explain the increase of proteinuria. Therefore, the application of angiotensin-converting enzyme inhibitors or angiotensin II receptor blockers seems promising. To avoid hyperfiltration, conversion should be performed early when renal insufficiency is still moderate.

Adult↗

Early cyclosporine withdrawal from a sirolimus-based regimen results in better renal allograft survival and renal function at 48 months after transplantation.

We report the 48-month results of a trial testing whether withdrawal of cyclosporine (CsA) from a sirolimus (SRL)-CsA-steroid (ST) regimen would impact renal allograft survival. Eligible patients receiving SRL-CsA-ST from transplantation were randomly assigned at 3 months to remain on triple therapy (SRL-CsA-ST, n = 215) or to have CsA withdrawn and SRL trough concentrations increased (SRL-ST, n = 215). SRL-ST therapy resulted in significantly better graft survival, either when including death with a functioning graft as an event (84.2% vs. 91.5%, P = 0.024) or when censoring it (90.6% vs. 96.1%, P = 0.026). Calculated glomerular filtration rate (43.8 vs. 58.3 ml/min, P < 0.001) and mean arterial blood pressure (101.3 vs. 97.1 mmHg, P = 0.047) were also improved with SRL-ST. Differences in the incidences of biopsy-proven acute rejection after randomization (6.5% vs. 10.2%, SRL-CsA-ST versus SRL-ST, respectively) and mortality (7.9% vs. 4.7%) were not significant. SRL-CsA-ST-treated patients had significantly higher incidences of adverse events generally associated with CsA, whereas those in the SRL-ST group experienced greater frequencies of events commonly related to higher trough levels of SRL. In conclusion, early withdrawal of CsA from a SRL-CsA-ST regimen rapidly improves renal function and ultimately results in better graft survival.

Adrenal Cortex Hormones↗

Bone metabolism in renal transplant patients treated with cyclosporine or sirolimus.

Sirolimus is a new immunosuppressive agent used as treatment to prevent acute renal allograft rejection. One of the complications of renal transplantation and subsequent long-term immunosuppression is bone loss associated with osteoporosis and consequent fracture. Two open-label, randomized, phase 2 studies comparing sirolimus versus cyclosporine (CsA) included indices of bone metabolism as secondary end-points. Markers of bone turnover, serum osteocalcin and urinary N-telopeptides, were measured over a 1-year period in 115 patients receiving either CsA or sirolimus as a primary therapy in combination with azathioprine and glucocorticoids (study A) or mycophenolate mofetil (MMF) and glucocorticoids (study B). Urinary excretion of N-telopeptides and the concentrations of serum osteocalcin were consistently higher in the CsA-treated patients and significantly different at week 24 for N-telopeptides and at weeks 12, 24, and 52 for osteocalcin. In conclusion, future trials are warranted to test whether a sirolimus-based regimen conserves bone mineral density compared with a CsA-based regimen.

Adult↗

Early cyclosporine a withdrawal in kidney-transplant recipients receiving sirolimus prevents progression of chronic pathologic allograft lesions.

BACKGROUND: Nephrotoxicity of calcineurin inhibitors (CNIs) is partially responsible for the development of chronic allograft nephropathy (CAN). Sirolimus has demonstrated its potential to substitute for CNIs because it lacks significant nephrotoxicity and shows a short-term immunosuppressive capacity comparable with that of cyclosporine. This results in the maintenance of better renal function when cyclosporine is eliminated, but it has not been demonstrated whether this benefit is associated with an improvement in the pathologic substrate and a reduction in CAN. METHODS: We analyzed pretransplant and 1-year renal-allograft biopsies from 64 patients enrolled in a multicenter trial. Patients received cyclosporine and sirolimus during the first 3 months after transplant and were then randomly assigned to continue with cyclosporine or have it withdrawn. Histologic chronic allograft lesions were compared between groups. RESULTS: The percentage of patients in whom chronic pathologic lesions progressed was lower in the group of cyclosporine elimination. Significant differences were observed in chronic interstitial and tubular lesions (70% vs. 40.9% [P<0.05] and 70% vs. 47.8% [P<0.05], respectively), whereas no differences were observed in acute lesions (subclinical rejection). Prevalence of CAN at 1 year was lower in this group, as was the severity and incidence of new cases (P<0.05). CONCLUSIONS: Early cyclosporine withdrawal associated with sirolimus administration is followed by an improvement in renal function, a reduction in the progression of chronic pathologic allograft lesions, and a lower incidence of new cases and severity of CAN during the first year after transplantation. This benefit may result in better long-term graft outcome.

Adolescent↗

Low-dose cyclosporine with mycophenolate mofetil induces similar calcineurin activity and cytokine inhibition as does standard-dose cyclosporine in stable renal allografts.

One strategy to minimize nephrotoxicity in maintenance immunosuppression in renal transplantation is reduction of cyclosporine (CsA) with addition of mycophenolate mofetil (MMF). This approach seems safe, but concern exists about whether it yields adequate immunosuppression in the long term. Thus, we investigated the pharmacodynamic response to CsA in stable renal allografts treated with standard CsA (n = 17, CsA-C0h > or = 125 ng/mL) and low CsA plus MMF (n = 18 CsA-C0h <100 ng/mL). Patients treated with MMF without CsA (n = 13) and healthy subjects (n = 7) were used as controls. We observed that inhibition of calcineurin (CN) activity in peripheral blood mononuclear cells (PBMC), as well as interleukin (IL)-2 and interferon (IFN)-gamma production were similar in Standard-CsA and Low-CsA+MMF groups. Moreover, addition of MMF to a low CsA dose regime improved the correlation between CsA-C2h and both CN activity and IL-2 production. Thus, our results suggest that MMF could be synergistic with the pharmacodynamic effect of low CsA in maintenance immunosuppression.

Adult↗

Conversion to sirolimus: a successful treatment for posttransplantation Kaposi's sarcoma.

The increased incidence of Kaposi's sarcoma (KS) in organ transplantation has been related to the KS herpesvirus and the permissive effect of immunosuppressive therapy. Calcineurin inhibitors are the cornerstone of immunosuppression in organ transplantation, although they could promote tumor progression. In contrast, sirolimus, a new immunosuppressive agent, exhibits potent antitumor activity. We postulated that conversion from cyclosporine to sirolimus in patients with KS could favor regression of KS lesions without increasing the risk of graft rejection. Two renal transplant recipients with KS underwent conversion from cyclosporine to sirolimus. Both patients showed complete regression of KS lesions and excellent clinical and functional results. Sirolimus offers a new and promising approach to the management of posttransplantation KS and probably to other types of malignancies in organ transplant recipients.

Aged↗

A severe autosomal-dominant periodic inflammatory disorder with renal AA amyloidosis and colchicine resistance associated to the MEFV H478Y variant in a Spanish kindred: an unusual familial Mediterranean fever phenotype or another MEFV-associated periodic inflammatory disorder?

Familial Mediterranean fever (FMF) is an autosomal recessive disease characterized by recurring short attacks of fever and serositis. Secondary AA amyloidosis is the worst complication of the disease and often determines the prognosis. The MEFV gene, on chromosome 16p13.3, is responsible for the disease and around 30 mutations have been reported to date. Colchicine is the standard FMF treatment today, and prevents both attacks and amyloid deposition in 95% of patients. Here we describe a three-generation Spanish kindred with five family members affected by a severe periodic inflammatory disorder associated with renal AA amyloidosis and colchicine unresponsiveness. Clinical diagnosis of definite FMF disease was made based on the Tel-Hashomer criteria set. Genetic analyses revealed that all subjects were heterozygous for the new H478Y MEFV variant, segregating with the disease. In addition, mutations in the TNFRSF1A and CIAS1/PYPAF1/NALP3 genes, related to the dominantly inherited autoinflammatory periodic syndromes, were ruled out. However, the dominant inheritance of the disease, the long fever episodes with a predominant joint involvement, and the resistance to colchicine in these patients raise the question of whether the periodic syndrome seen in this kindred is a true FMF disease with unusual manifestations or rather another MEFV-associated periodic syndrome. We conclude that the new H478Y MEFV mutation is the dominant pathological variant causing the inflammatory periodic syndrome in this kindred and that full-length analyses of the MEFV gene are needed to obtain an adequate diagnosis of patients with clinical suspicion of a hereditary periodic fever syndrome, especially those from non-ancestral populations.

Adult↗

Rapamycin attenuates atherosclerosis induced by dietary cholesterol in apolipoprotein-deficient mice through a p27 Kip1 -independent pathway.

Activation of immune cells and dysregulated growth and motility of vascular smooth muscle cells contribute to neointimal lesion development during the pathogenesis of vascular obstructive disease. Inhibition of these processes by the immunosuppressant rapamycin is associated with reduced neointimal thickening in the setting of balloon angioplasty and chronic graft vessel disease (CGVD). In this study, we show that rapamycin elicits a marked reduction of aortic atherosclerosis in apolipoprotein E (apoE)-null mice fed a high-fat diet despite sustained hypercholesterolemia. This inhibitory effect of rapamycin coincided with diminished aortic expression of the positive cell cycle regulatory proteins proliferating cell nuclear antigen and cyclin-dependent kinase 2. Moreover, rapamycin prevented the normal upregulation of the proatherogenic monocyte chemoattractant protein-1 (MCP-1, CCL2) seen in the aorta of fat-fed mice. Previous studies have implicated the growth suppressor p27(Kip1) in the antiproliferative and antimigratory activities of rapamycin in vitro. However, our studies with fat-fed mice doubly deficient for p27(Kip1) and apoE disclosed an antiatherogenic effect of rapamycin comparable with that found in apoE-null mice with an intact p27(Kip1) gene. Taken together, these findings extend the therapeutic application of rapamycin from the restenosis and CGVD models to the setting of diet-induced atherosclerosis. Our results suggest that rapamycin-dependent atheroprotection occurs through a p27(Kip1)-independent pathway that involves reduced expression of positive cell cycle regulators and MCP-1 within the arterial wall.

Animals↗