Search PubMedSearch

Biomedical subjects

F G Cosio

Publications and source records attributed to F G Cosio.

At least 19 recordsLinked to original sources

Receptors for the anaphylatoxin C5a (CD88) on human mesangial cells.

In these studies, we determined whether there are receptors for the anaphylatoxin C5a (C5aR, CD88) on human mesangial cells (HMC). To prepare Abs to C5aR, we first synthesized an immunogenic peptide spanning residues 8-32 of the molecule, and this peptide was used to immunize rabbits. Anti-C5aR antiserum, but not preimmune serum, stained fixed and unfixed HMC in culture. By Western blotting anti-C5aR, Abs identified a 49.6-kDa protein in HMC. By reverse-transcription PCR, a cDNA product of 558 bp was amplified corresponding to the expected size of C5aR cDNA. A cDNA of the same size was amplified simultaneously from human PBL. Restriction mapping of the products amplified from HMC and from PBL gave restriction fragments of the same size. Incubation of HMC with increasing doses of C5a caused a progressive increase in the levels of the transcription factors activator protein-1 (AP-1) and cAMP response element binding protein (CREB), but C5a had no effect on the level of nuclear factor-kappaB (NF-kappaB). The effects of C5a on AP-1 were concentration and time dependent and peaked after 60 min. In contrast, the C5a metabolite C5adesArg had no significant effect on AP-1 levels. Preincubation of HMC with rabbit anti-C5aR antiserum inhibited partially the effect of C5a on AP-1. However, anti-C5aR Abs alone had no appreciable effects on AP-1. C5a caused a significant up-regulation of mRNA for the early response genes c-jun and c-fos on HMC. These results provide evidence for the presence of C5aR in adult HMC in culture and indicate that, after binding to C5aR, the anaphylatoxin C5a causes significant up-regulation of certain transcription factors and early response genes.

Adult

Function and survival of renal allografts from the same donor transplanted into kidney-only or kidney-pancreas recipients.

BACKGROUND: The aim of this study was to assess whether kidney-pancreas transplantation (KPT) compromises the prognosis of kidney transplantation (KT). METHODS: This study included 368 paired recipients who received grafts from the same donor (184 KPT/184 KT), i.e., renal grafts with the same pretransplant functional and pathologic characteristics. RESULTS: KPT recipients (KPR) were significantly younger and included fewer African-Americans (22% vs. 6%, P=0.0005) than recipients of kidney alone (KR). During year 1 after transplant surgery, KPR were re-admitted more often than KR (4.2+/-2 vs. 2.8+/-2, P < 0.0001). The number of acute rejections (AR) and the serum creatinine were not significantly different in KR and KPR up to 3 years after transplant. After 44+/-29 months, 13% of KR and 17% of KPR died (NS), and 17% of KR and 16% of KPR lost their kidneys (NS). In KPR, reduced renal graft survival did not correlate with AR (P=0.44), but it correlated with: older donors, younger recipients, elevated serum creatinine at 6 months, pancreas loss, and the number of episodes of acute graft dysfunction evaluated by biopsy (multivariate analysis). By Cox, graft and patient survival were not significantly different in KR and KPR. However, the patient survival of KPR < 40 years of age was lower than that of KR (P=0.02). Renal biopsies (n=165) in 40 paired recipients showed no significant differences in AR, interstitial fibrosis, or vascular pathology. CONCLUSIONS: Renal graft function, structure, and survival are not different in KPR and KR, but the correlates of renal graft survival are different in these two groups of recipients.

Adult

Patient survival after renal transplantation: I. The impact of dialysis pre-transplant.

Patients on dialysis and recipients of renal transplants have higher mortality than individuals without kidney disease. In this study we evaluated the possible impact of dialysis therapy before transplantation on patient survival after the transplant. This analysis includes all of the patients who received a cadaveric renal transplant at The Ohio State University from 1984 to 1991 and who remained alive with functioning grafts for at least six months after the transplant (N = 523). After a follow-up of 84 +/- 14 months, 28% of the patients died and 23% lost their grafts. By multivariate analysis, reduced patient survival (censored at the time of graft loss) correlated with these pre-transplant variables: Older age (P < 0.0001), the presence of diabetes (P = 0.0002), smoking (P = 0.009), and the length of time on dialysis (P = 0.0002). Thus, 7% of patients who were never dialyzed, 23% of those dialyzed for less than three years, and 44% of patients dialyzed for > or = three years died post-transplant. By Cox regression, patient survival months correlated with time on dialysis pre-transplant (P = 0.0003). The type of dialysis (CAPD vs. hemodialysis) did not correlate with patient survival. Graft survival, censored for patient death, did not correlate with any of these pre-transplant variables. The relationship between time on dialysis and patient mortality is due to at least two factors: (1) transplant recipients who had dialysis for > or = 3 years had higher mortality due to infections (22%) than those who had dialysis for < 3 years (3%, P = 0.01 by X2); and (2) increasing time on dialysis increases the prevalence of both left ventricular hypertrophy (P = 0.008) and cardiomegaly (P = 0.004), and these relationships are statistically independent of other factors that also correlate with the prevalence of cardiovascular disease. In conclusion, increased time on dialysis prior to renal transplantation is associated with decreased survival of transplant recipients.

Adult

DNA binding of activator protein-1 is increased in human mesangial cells cultured in high glucose concentrations.

Human mesangial cells (HMC) grown in high glucose environments synthesize excessive amounts of extracellular matrix proteins (ECM). The promoter regions of certain ECM genes contain TPA (phorbol ester)-responsive element (TRE) motifs that bind the transcription factor, activator protein-1 (AP-1), a complex of Jun and other phosphoproteins. AP-1 binding to the TRE promoter is regulated by the quantity, composition and post-translational modifications of proteins in the AP-1 complex. We report an increased binding of AP-1 to TRE oligonucleotides in HMC cultured chronically (5 days) in high glucose environments (30 mM d-glucose). This increased binding is not due to differences in the nuclear quantity of AP-1 proteins or in the composition of the AP-1 complex when compared to AP-1 proteins from cells grown in normal glucose (5 mM d-glucose). A 30 mM l-glucose environment also increased AP-1 binding, but to a degree less than d-glucose. The increased AP-1 binding was partly reversed by treatment of HMC with Calphostin C or Bisindolylmaleimide I suggesting a partial role of the protein kinase C (PKC) pathway in mediating AP-1 binding. AP-1 binding was unaffected by treatment of cells with the MEK inhibitor PD 98059. In addition, increased AP-1 binding persisted for at least 48 hours after media glucose concentrations were normalized. The level of Jun-NH2-terminal kinase (JNK) activity and the phosphorylation of the JNK kinase, SEK1, were unchanged by chronic high glucose concentrations. These studies suggest that in HMC cultured in chronic high glucose, post-translational modifications increase the binding of AP-1 to the TRE motif.

Binding Sites

Impact of acute rejection and early allograft function on renal allograft survival.

Both acute rejection and the function of a renal allograft early after transplantation correlate with long-term graft survival. In this study we assessed the relationship between these two factors in 843 adult recipients of first cadaveric renal grafts, transplanted at a single institution and followed for a minimum of 3.5 years. Patients were divided into four groups according to (1) history of acute rejection (AR) during the first 6 months after transplantation, and (2) concentration of serum creatinine at 6 months after transplantation (SCr(6mo) < or > or = 2 mg/dl). Death censored allograft survival was not significantly different among patients without AR and with low SCr(6mo) (group 1, n=376), patients without AR but with an elevated SCr(6mo) (group 2, n=117), and patients with AR but low SCr(6mo) (group 3, n=185). In contrast, graft survival was significantly worse in patients with AR and an elevated SCr(6mo) (group 4, n=165) compared with patients in the other three groups (Cox, P<0.0001). The elevated SCr(6mo) in group 4 patients was not necessarily the consequence of AR, as 32% of patients in group 4 had a SCr at 10 days after transplantation (SCr(10d)), before they had AR, that was equal to or higher than the SCr(6mo). Based on this observation we investigated the implications of the SCr(10d) concentration for graft prognosis. The SCr(10d) correlated weakly with graft survival (Cox, P=0.05). However, an elevated SCr(10d) correlated with other potential risk factors for graft survival including: Older donors (P<0.0001), male recipients (P<0.0001), and heavier recipients (P<0.0001, all by multivariate regression); and posttransplant factors such as, increasing numbers of AR (P<0.0001), higher posttransplant blood pressure (P<0.0001), and lower doses of cyclosporine (P<0.0001, all by multivariate regression). In conclusion, graft dysfunction predicts poor graft survival only when associated with AR. Similarly, AR predicts a poor renal allograft survival only when associated with graft dysfunction. The SCr(10d) is an indicator of risk factors from both the donor and recipient, and an elevated SCr(10d) predicts a higher risk of acquiring additional risk factors early after transplantation.

Acute Disease

Effect of enalapril therapy on glomerular accumulation of immune complexes and mesangial matrix in experimental glomerulonephritis in the nonhuman primate.

The present study is a prospective, controlled, blinded trial of enalapril therapy in experimental immune complex (IC)-mediated glomerulonephritis (GN) in the nonhuman primate (cynomolgus monkey [CYN]). Two groups of CYNs were studied: those with established GN (study A) and those in which GN was being induced (study B). In study A, 12 CYNs had GN established by 8 or 10 weeks of daily intravenous infusion of bovine gamma-globulin (BGG). These CYNs were then assigned to either 4 weeks of daily oral enalapril therapy (n = 6) or daily oral placebo therapy (n = 6). The daily BGG infusions were continued during the 4 weeks of enalapril or placebo therapy. At the start of the enalapril/placebo protocol, the two groups were similar with respect to proteinuria and level of precipitating antibody to BGG, which determined the daily BGG dose. Renal biopsy was performed in each CYN at the start and end of the 4-week period of enalapril/placebo protocol. In study B, 15 normal CYNs were immunized to BGG over a period of 4 weeks. The CYNs were then assigned to daily oral enalapril therapy (n = 8) or placebo therapy (n = 7) based on level of precipitating antibody to BGG. At this point, daily intravenous BGG was begun along with daily enalapril or placebo for 8 weeks. Renal biopsy was performed in each CYN before and at the end of this 8-week period. In study A, enalapril therapy was associated with a significant decrease in mesangial matrix volume (mean change, -27.7%; P = 0.031) and a trend toward decreased mesangial matrix deposits (mean change, -34.1%; P = 0.188). By contrast, in CYNs receiving placebo therapy, mesangial matrix volume increased compared with the enalapril group (P = 0.002) and mesangial deposits were unchanged. In study B, both the enalapril and placebo groups showed significant increases in mesangial matrix volume, mesangial deposits, mesangial cell volume, and capillary wall deposits during the 8 weeks of daily BGG infusion. However, none of the differences between the groups achieved statistical significance. Changes in mesangial cell volume and capillary wall deposits were also evaluated in study A and study B, but were not found to be different between the enalapril and placebo groups. In both study A and study B, blood pressure was lower in the enalapril groups. In conclusion, in the initial phase of IC-GN induction (0 to 8 weeks), enalapril therapy does not significantly influence the glomerular accumulation of mesangial matrix or immune deposits. However, in established IC-GN (after 8 weeks of GN induction), enalapril therapy significantly decreases the further accumulation of mesangial matrix and may decrease the further accumulation of mesangial deposits. Whether this benefit of enalapril therapy was related to lower blood pressure or to other effects of angiotensin-converting enzyme (ACE) inhibition was not determined in this study.

Angiotensin-Converting Enzyme Inhibitors

Relationships between arterial hypertension and renal allograft survival in African-American patients.

In previous studies, we showed that in African-American patients arterial hypertension during the first 6 months after transplantation is associated with a high risk of renal allograft loss. In this study, we sought to examine the relationships between pretransplant blood pressure (preBP), blood pressure early after transplantation (postBP), and allograft function and survival. The study included 116 African-American recipients of first cadaveric renal allografts followed for 64 +/- 40 months. Prior to transplantation, 78% of the patients required antihypertensive medications and 59% had poorly controlled BP (average mean arterial pressure, > or =107 mm Hg). Blood pressure levels increased significantly during the first month posttransplant, particularly in patients with poorly controlled preBP. During the first 6 months posttransplant, 95% of patients required antihypertensive drugs; after the transplant, patients required significantly more and higher doses of antihypertensives compared with pretransplant. In 38% of the patients, postBP remained high despite therapy. The level of postBP correlated with the patient's weight pretransplant and with the level of preBP. Pretransplant BP correlated with postBP 1 month after transplantation (r = 0.4, P < 0.0001), and 70% of the patients with poorly controlled postBP had uncontrolled preBP. Patients with poorly controlled preBP had worse graft survival than patients with well-controlled preBP (P = 0.03 by Cox regression). Furthermore, compared with patients with well-controlled postBP, patients with high postBP had higher serum creatinine at 10 days (P = 0.04) and at 6 months (P = 0.0004) posttransplant; these patients had reduced graft survival (P = 0.0006 by Cox). We found no objective evidence of differences in patient compliance between individuals with high postBP and those with well-controlled postBP. This study confirms the association between high postBP and reduced renal allograft survival in African-American patients. In addition, these results show that the level of preBP can be used to identify patients at high risk of developing severe hypertension immediately after transplantation and those at risk for renal allograft failure.

Adult

Rapid-onset diabetic nephropathy in type II diabetes mellitus.

We report a case of rapidly progressive diabetic nephropathy, from little diabetic change on renal biopsy to severe, nodular, diabetic nephrosclerosis over 32 months. The patient was taking an angiotensin converting enzyme inhibitor and had a mean arterial pressure of 95 mm Hg over this time period. Her dietary protein intake was low, at least upon presentation. She had three additional mechanisms or potential mechanisms of injury: monoclonal kappa light chains; IgA immune deposits on the first, but not the second biopsy; and longstanding hypertension. Her renal histology was typical for diabetic nephropathy but was not characteristic of kappa light chain disease. We suggest that diabetic nephropathy may develop more rapidly than previously assumed, especially when additional mechanisms of injury, or additional promoters of mesangial matrix accumulation are present.

Aged

Factors related to the donor organ are major determinants of renal allograft function and survival.

In this study, we analyzed the relative impact of donor and recipient variables on cadaveric renal allograft function and survival. The unique feature of the study population is that each pair of recipients received their allografts from a single donor. The study includes 378 adult patients. In 129 pairs both recipients were Caucasian, and in 60 pairs one recipient was Caucasian and the other was African-American. All transplants were done in one center, thus minimizing differences in preservation time and providing uniform posttransplant management. The initial analysis showed a relationship between the function of the allograft 6 months after transplantation (serum creatinine [SCr]6 mo) and donor variables (P = 0.0004, analysis of variance). Furthermore, it was calculated that 64% of the variability in the SCr 6mo among patients was due to donor factors and 36% was due to recipient factors. An elevated SCr 6 mo was significantly associated with older donors, male recipients, and patients with acute rejection episodes. Furthermore, other unidentified donor factors may have an impact on allograft function. Reflecting the importance of donor factors, there was a significant relationship between SCr 6mo in paired recipients (P < 0.0008 by Spearman). Analysis of racially dissimilar pairs showed that the SCr 6mo and graft survival 6 months after transplantation were not significantly different between Caucasians and African-Americans. However, beyond 6 months, graft survival was worse in African-Americans (P < 0.0001 by Cox). Compared with Caucasians, graft survival was significantly worse in African-Americans with poorly controlled blood pressure (mean arterial pressure > 105 mmHg) (P = 0.002, Cox), but not in those patients with mean arterial pressure < 105 mmHg. In conclusion, donor factors are major determinants of renal allograft function. However, those factors may not be easily identifiable or quantifiable. Donor factors do not contribute to racial differences in allograft survival. However, poorly controlled hypertension correlates with poor renal graft survival in African-Americans.

Adult

The high prevalence of severe early posttransplant renal allograft pathology in hepatitis C positive recipients.

In the USA approximately 10% of candidates for renal transplantation have serum antibodies to hepatitis C (HCV). To assess the possible impact of HCV infection on early posttransplant events we assessed allograft complications during the first 6 months following renal transplantation in three groups of adult renal allograft recipients: (1) HCV antibody positive recipients (R-HCV) (n=32); (2) HCV negative recipients who received kidneys from HCV antibody positive donors (D-HCV) (n=48); and (3) HCV negative recipients of HCV negative allografts who were transplanted during the same time period as R-HCV (Ctrl) (n=204). Allograft biopsies were done for evaluation of allograft dysfunction during the first 6 months posttransplant in 58% of Ctrl, 42% of D-HCV, and 63% of R-HCV (not significantly different). The prevalence of acute tubulointerstitial rejection was similar among the 3 groups of patients. In contrast, compared with Ctrl, both R-HCV and D-HCV had a significantly higher prevalence of acute transplant glomerulopathy (Ctrl, 6%; R-HCV, 55%, P<.0001; D-HCV 40%, P=.0004). Acute vascular rejection was more common in R-HCV (60%) than in Ctrl (28%) (P=.009) and the prevalence of chronic vascular rejection was also higher in R-HCV (60%) than in Ctrl (31%) (P=.01). Furthermore, chronic vascular rejection was diagnosed earlier in R-HCV (64% of cases within one month posttransplantation) than in Ctrl (19% within one month) (P=.01). Death censored renal allograft losses occurred in 14% of Ctrl, 17% of D-HCV, and 26% of R-HCV (not significant). In conclusion, R-HCV patients have a high prevalence of severe acute pathologic findings in renal allograft biopsies obtained early after transplantation and develop chronic vascular rejection more often and earlier than HCV negative recipients. These studies also confirm the previously reported association of HCV with acute transplant glomerulopathy.

Adult

Progressive histologic injury in kidneys from heart and liver transplant recipients receiving cyclosporine.

Cyclosporine (CsA) causes both acute and chronic nephrotoxicity. The goal of the present studies was to examine the nature of the chronic renal pathologic lesions of CsA nephrotoxicity and to determine whether these lesions progress with prolonged exposure to the drug. With this purpose, we examined large sections of kidneys obtained at autopsy from 15 heart transplant recipients, 7 liver transplant recipients, and 10 nontransplanted controls. Tissue sections were examined blindly by light microscopy, histomorphometry, and color computer image analysis. With increasing time following transplantation, there was a progressive increase in renal arteriolar hyalinosis and in the percentage of glomeruli demonstrating global sclerosis. In addition, there was a statistically significant relationship between arteriolar hyalinosis and global glomerulosclerosis (r=0.61, P<0.003). The percentage of glomeruli with focal glomerulosclerosis was also increased in transplant recipients followed for more than 80 days. The kidneys of heart and liver recipients who died less than 80 days after transplantation, that is, those patients who received no CsA or low doses of CsA, demonstrated significantly more interstitial fibrosis than the kidneys of control individuals. Furthermore, there was no significant increase in the amount of renal interstitial fibrosis in allograft recipients followed for prolonged periods of time. There were no significant relationships between the severity of renal pathologic changes and serum creatinine or systemic blood pressure levels. In conclusion, non-renal transplant recipients demonstrate renal damage that affects primarily the preglomerular arterioles and results in glomerular obliteration. This renal damage increases in relation to the time of exposure to CsA and in relation to the total dose of CsA that the patient receives. These renal structural changes are not reflected initially in changes in glomerular filtration rate, as determined by serum creatinine.

Adult

Prevalence of hepatitis C in patients with idiopathic glomerulopathies in native and transplant kidneys.

Previous studies suggest that there is an association between hepatitis C (HCV) infection and glomerular diseases in native and transplanted kidneys. However, the data are controversial. To reexamine this issue, we determined the prevalence of serum anti-HCV antibodies in patients with glomerulopathies of native kidneys (n = 105) and in patients with acute and chronic transplant glomerulopathy (TxGN) (n = 62). Compared with a control group of patients with diabetic nephropathy (n = 37, 0% HCV+), the prevalence of HCV antibodies was significantly higher in patients with focal glomerulosclerosis (FGS) (4 of 32, 13%, P = 0.04 by chi-square), but not in patients with membranous nephropathy (MGN) (1 of 19, 5%) or in patients with membranoproliferative glomerulonephritis (MPGN) (2 of 17, 12%). All of the patients with positive HCV serology had histories of intravenous (IV) drug use. Thus, HCV serology was negative in all of the patients with native glomerulopathies without histories of IV drug use. Compared with a group of 105 transplant patients without TxGN (1.8% HCV+), the prevalence of HCV antibodies was significantly higher in patients with acute (A)TxGN (12 or 41: 29%. P = 0.0004) and in patients with chronic (C)TxGN (9 of 27: 33%. P = 0.0004). Compared with controls, patients with ATxGN also had a significantly higher prevalence of serum immunoglobulin (Ig) M antibodies to cytomegalovirus (CMV) (3% and 26% of patients, respectively, P = 0.0004). However, there were no statistical associations between HCV and CMV serologies. These results do not support the postulate that HCV infection is associated with idiopathic native glomerulopathies; instead, the data suggest that the presence of HCV positivity in these patients can be explained by the inclusion of patients with a history of IV drug use. In contrast, these studies demonstrate for the first time an association between HCV infection and transplant glomerulopathies.

Case-Control Studies

Loin pain-hematuria syndrome associated with thin glomerular basement membrane disease and hemorrhage into renal tubules.

Loin pain-hematuria (LPH) syndrome is a poorly understood disorder in which the patients, mainly young women, experience unexplained severe chronic unilateral or bilateral flank pain associated with gross and/or microscopic hematuria. By contrast, thin glomerular basement membrane (GBM) disease is generally thought to be a benign disorder, affecting males and females equally, in which the major manifestation is asymptomatic microscopic hematuria. Herein we describe seven patients (6 females, 1 male) in whom thin GBM appeared to be the cause of the LPH syndrome. The gross hematuria in these patients could be attributed to thin GBM disease because the renal biopsy demonstrated red cells in renal tubules (indicating glomerular hematuria) and the only glomerular abnormality present with thin GBM. In addition, the other causes of gross hematuria were excluded by appropriate testing. The flank pain in these patients might also have been the result of their thin GBM disease. This is suggested by renal biopsy findings of multiple renal tubules filled with red cells, apparently occluding the tubules. We suggest that occlusion of a relatively small fraction of renal tubules could cause renal pain if back-leak of glomerular filtrate occurred that was of sufficient magnitude to expand renal parenchymal volume and stretch the renal capsule. Preliminary observations suggest that treatment with the angiotensin converting enzyme (ACE) inhibitor enalapril importantly reduces the frequency and severity of the episodes of gross hematuria and flank pain in most patients. ACE inhibition might decrease glomerular hemorrhage in patients with think GBM by decreasing glomerular hydrostatic pressure. We conclude that (1) Thin GBM disease can be the cause of gross hematuria, apparently as a result of rupture of thin GBM. (2) Rupture of thin GBM resulting in hemorrhage into renal tubules may be the cause of the flank pain and gross hematuria in some patients with the LPH syndrome.

Adult

Atrial flutter mapping and ablation. I. Studying atrial flutter mechanisms by mapping and entrainment.

Endocardial mapping has led to a detailed knowledge of reentry mechanisms in atrial flutter. Multipolar and deflecting tip catheters allow recording local electrograms from multiple areas of the right atrium, and from the coronary sinus. In common flutter, with the typical "sawtooth" pattern, there is circular activation of the right atrium in a "counterclockwise" direction, descending in the anterior and lateral walls, and ascending in the septum and posterior wall. Superior and inferior vena cava, linked by a "line" of functional block in the posterolateral wall, make the central obstacle for circular activation. The cranial and caudal turning points are the atrial "roof," and the isthmus between the inferior vena cava and the tricuspid valve. Complex conduction patterns, probably including slow conduction are detectable in the low septal area, around the coronary sinus. Atypical flutter, without the sharp negative deflections of common flutter, sometimes shows circular activation in the right atrium, rotating in the opposite direction of common flutter (clockwise). Other atypical flutters show no circular right atrial activation, and only partial data from coronary sinus activation, combined with the response to atrial stimulation (entrainment) allow the diagnosis of left atrial reentry, without a precise delimitation of the circuits. In patients having undergone cardiac surgery, atypical flutter may be based on reentry around surgical scars. To our knowledge, the mechanism of type II flutter has not been disclosed in humans.

Atrial Flutter

Atrial flutter mapping and ablation II. Radiofrequency ablation of atrial flutter circuits.

The definition of the anatomical substrate of reentry in atrial flutter has allowed the recognition of narrow, critical areas of the circuit, where radiofrequency ablation can interrupt reentry. In common flutter the isthmus between the inferior vena cava and the tricuspid valve appears the best target, but ablation between the coronary sinus and tricuspid valve can also be effective in some cases. In atypical flutter using the same circuit as common flutter in a "clockwise" direction, ablation of the same isthmus is effective. Flutter interruption is the main objective, but it does not mean complete isthmus ablation. If flutter remains inducible, new applications are delivered in the isthmus, until it is made noninducible. Complications are rare. Despite attaining noninducibility, flutter may recur, and new procedures may be needed to prevent recurrence. Atrial fibrillation can occur in up to 30% of the cases during follow-up, but it is generally well controlled with antiarrhythmic drugs, that were ineffective to treat flutter before ablation. In reentry circuits based on surgical atrial scars, ablation of an isthmus between the scar and the inferior vena cava can also be effective. Left atrial circuits are not known well enough to guide successful ablation.

Animals

Radiofrequency ablation of atrial flutter.

Activation mapping in common atrial flutter has shown circular (reentrant) activation of the right atrium around anatomic structures and areas of functional block. The direction of rotation is counterclockwise (in a frontal view), and in the low right atrium the myocardium between the inferior vena cava (IVC) and the tricuspid valve (TV) is critical to close the activation circle. The circuit can be interrupted by radiofrequency ablation of the myocardium between the TV and the IVC, and, in some cases, by ablation between the coronary sinus and TV. Flutter interruption does not mean complete isthmus ablation, as it may remain inducible, requiring further ablation. Despite attaining noninducibility, flutter may recur, and new procedures may be needed for complete ablation. Atrial fibrillation occurs in up to 30% of the cases during follow-up but is generally well controlled with antiarrhythmic drugs that were ineffective in treating flutter before ablation. Some noncommon atrial flutters show circular right atrial activation in a reversed (clockwise) direction, with the same critical areas in the low right atrium, and in these isthmus ablation is effective. Other noncommon flutters have different substrates in the right or left atrium, and mapping has to define specific critical isthmuses as ablation targets in each case. Left atrial flutter circuits remain inaccessible to ablation.

Atrial Fibrillation

Favorable prognostic significance of raised serum C3 concentration in patients with idiopathic focal glomerulosclerosis.

This study examined the relationship between the clinical and pathologic variables and renal outcome in patients with idiopathic focal glomerulosclerosis (FGS). The study population included 106 patients with biopsy proven idiopathic FGS followed for a mean of 31 months. Forty-nine patients (46%) maintained stable renal function, 21 patients (20%) had a progressive deterioration of renal function and an additional 36 patients (34%) progressed to end-stage kidney disease. By multivariate analysis the following baseline variables (i.e. variables measured at the time of renal biopsy) were associated with the loss of renal function: 1. An elevated serum creatinine; 2. an elevated systemic blood pressure; 3. extensive interstitial fibrosis and tubular atrophy by kidney biopsy; 4. a low-normal serum C3 level. At baseline serum C3 levels were abnormally high in 31 patients (29%). Baseline C3 levels were inversely correlated with baseline serum creatinine levels (p < 0.0001), the severity of histologic changes (p < 0.0001), and better preservation of renal function during follow-up (p < 0.0001). Serum C3 levels did not correlate with proteinuria or with other clinical variables tested. The presence of C1q in the mesangium did not correlate with renal outcome. In conclusion, serum C3 levels measured at the time of biopsy correlate with renal outcome in patients with idiopathic FGS. The basis for this correlation is unknown but it cannot be fully explained by relationships between serum C3 levels and other clinical variables.

Adult