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Biomedical subjects

F G Silva

Publications and source records attributed to F G Silva.

At least 19 recordsLinked to original sources

The performance of fungal xylan-degrading enzyme preparations in elemental chlorine-free bleaching for Eucalyptus pulp.

Cellulase-free xylan-degrading enzyme preparations from Acrophialophora nainiana, Humicola grisea var. thermoidea and two Trichoderma harzianum strains were used as bleaching agents for Eucalyptus kraft pulp, prior to a chlorine dioxide and alkaline bleaching sequence. In comparison to the control sequence (performed without xylanase pretreatment), the sequence incorporating enzyme treatment was more effective. Removal of residual lignin was indicated by a reduction in kappa number. Overall, enzyme preparations from T. harzianum were marginally more effective in reducing pulp viscosity and chlorine chemical consumption and improving the brightness of the kraft pulp. However, the highest reduction in pulp viscosity was mediated by the xylanase preparation from A. nainiana. Xylanase pretreatment compares very favorably with that of chemical pulping.

Eucalyptus↗

Down-regulation of endothelial expression of endothelial cell protein C receptor and thrombomodulin in coronary atherosclerosis.

Coronary atherosclerosis with occlusive thrombosis is the major cause of acute myocardial infarction. Although plaque rupture is usually hypothesized to be the predisposing event in coronary thrombosis, the possibility cannot be excluded that local changes in the anticoagulant properties of the endothelium overlying the plaque contribute to this process. It is evident that thrombomodulin and the endothelial cell protein C receptor are critical players in the control of the thrombogenic process. This study examined whether thrombomodulin and the endothelial cell protein C receptor are down-regulated on endothelial cells overlying the atherosclerotic plaque in coronary arteries and thus could potentially favor local thrombus formation. Sections of archival left and right coronary arteries (n = 18 each) with severe atherosclerosis from the native heart of six patients who underwent heart transplantation were immunostained for CD31, CD34, endothelial cell protein C receptor, and thrombomodulin using a streptavidin-biotin-peroxidase method. Controls included left and right coronary arteries from autopsy cases with no atherosclerosis (n = 6), and also from cases with mild atherosclerosis (n = 5). The apparent density of all of these proteins was much higher in control than in atherosclerotic arteries. Our findings support the hypothesis that both endothelial cell protein C receptor and thrombomodulin are down-regulated in coronary arteries with atherosclerosis. These changes would be expected to result in reduced inhibition of thrombogenic and anti-inflammatory activity on the endothelium overlying atherosclerotic regions and thus could contribute to coronary thrombosis.

Antigens, CD34↗

Isolation of a Xanthomonas oryzae pv. oryzae flagellar operon region and molecular characterization of flhF.

An 8.1-kb DNA fragment from Xanthomonas oryzae pv. oryzae that contains six open reading frames (ORF) was cloned. The ORF encodes proteins similar to flagellar proteins FlhB, FlhA, FlhF, and FliA, plus two proteins of unknown function, ORF234 and ORF319, from Bacillus subtilis and other organisms. These ORF have a similar genomic organization to those of their homologs in other bacteria. TheflhF gene product, FlhF, has a GTP-binding motif conserved in its homologs. Unlike its homologs, however, X. oryzae pv. oryzae FlhF carries two transmembrane-like domains. Insertional mutations of theflhF gene with the omega cassette or the kanamycin resistance gene significantly retard but do not abolish the motility of the bacteria. Complementation of the mutants with the wild-type flhF gene restored the motility. The X. oryzae pv. oryzae FlhF interacts with itself; the disease resistance gene product XA21; and a protein homologous to the Pill protein of Pseudomonas aeruginosa, XooPilL, in the yeast two-hybrid system. The biological relevance of these interactions remains to be determined.

Amino Acid Sequence↗

Down-regulation of renal endothelial nitric oxide synthase expression in experimental glomerular thrombotic microangiopathy.

Infection with certain strains of Escherichia coli and endotoxemia results in renal glomerular thrombotic microangiopathy (TMA) characterized by endothelial swelling and prominent glomerular microthrombus formation. Nitric oxide (NO) is an endogenous biologic modulator with diverse physiologic functions including vasodilation and inhibition of platelet adhesion and aggregation. NO is synthesized from conversion of L-arginine to L-citrulline by a family of NO synthases (NOS), which include constitutive and inducible isoforms. Indirect evidence supports the hypothesis that TMA is associated with depressed intrarenal NO production. However, the effect of TMA on renal tissue NOS expression has not been fully elucidated. We studied rats with TMA induced by iv bolus injection of high dose (20 mg/kg) E. coli endotoxin. Subgroups of six animals each were sacrificed before or at 30, 90, 180, 360, and 720 minutes after the administration of endotoxin. Renal histology and tissue expression of endothelial and inducible nitric oxide synthases (eNOS and iNOS) were examined. Additionally, we examined the effect of endotoxin on glomerular NO production, and eNOS and iNOS protein expression in vitro. Glomerular capillary thrombosis developed by 180 minutes after endotoxin administration in approximately half of the animals. The glomeruli without thrombotic lesions apparent by light microscopy disclosed early signs of TMA characterized by endothelial swelling, platelet accumulation/adhesion, and patchy fibrinogen deposition. These morphologic changes were associated with a marked reduction of renal tissue eNOS expression beyond 180 minutes after the endotoxin administration. The fall in eNOS expression was coupled with a significant rise in iNOS protein abundance, which was expressed largely by glomerular circulating neutrophils and endothelial cells, peritubular vascular endothelium, and collecting ducts of cortex and medulla. In vitro incubation of isolated glomeruli with endotoxin also resulted in a marked reduction in eNOS expression and a significant rise in iNOS content. Administration of E. coli endotoxin leads to a sustained fall in renal eNOS expression both in vivo and in vitro. The associated decline in intrarenal endothelial NO production/availability may result in renal vasoconstriction and a hypercoagulative state, which may contribute to the pathogenesis of endotoxin-induced TMA.

Animals↗

Association of renal injury with increased oxygen free radical activity and altered nitric oxide metabolism in chronic experimental hemosiderosis.

Chronic iron (Fe) overload is associated with a marked increase in renal tissue iron content and injury. It is estimated that 10% of the American population carry the gene for hemochromatosis and 1% actually suffer from iron overload. The mechanism of iron overload-associated renal damage has not been fully elucidated. Iron can accelerate lipid peroxidation leading to organelle membrane dysfunction and subsequent cell injury/death. Iron-catalyzed generation of reactive oxygen species (ROS) is responsible for initiating the peroxidatic reaction. We investigated the possible association of oxidative stress and its impact on nitric oxide (NO) metabolism in iron-overload-associated renal injury. Rats were randomized into Fe-loaded (given 0.5 g elemental iron/kg body weight as iron dextran; i.v.), Fe-depleted (given an iron-free diet for 20 weeks), and control groups. Renal histology, tissue expression of endothelial and inducible nitric oxide synthases (eNOS and iNOS), renal tissue expression of nitrotyrosine, plasma, and renal tissue lipid peroxidation product, malondialdehyde (MDA), and plasma and urinary NO metabolites (NOx) were examined. Iron overload was associated with mild proteinuria, tissue iron deposition together with significant glomerulosclerosis, tubular atrophy, and interstitial fibrosis. Rare focal glomerulosclerosis and tubulointerstitial changes were noted in normal controls. No renal lesions were observed in Fe-depleted rats. Iron deposits were seen in glomeruli, proximal tubules, and interstitium. The iron staining in the distal tubules was negligible. Both plasma and renal tissue MDA and renal tissue nitrotyrosine were increased significantly in Fe-loaded rats compared with control rats. In contrast, Fe-depleted animals showed a marked reduction in plasma and renal tissue MDA and nitrotyrosine together with significant elevation of urinary NOx excretion. In addition, iron-overload was associated with up-regulation of renal eNOS and iNOS expressions when compared with the control and Fe-depleted rats that showed comparable values. In conclusion, chronic iron overload resulted in iron deposition in the glomeruli and proximal tubules with various renal lesions and evidence of increased ROS activity, enhanced ROS-mediated inactivation, and sequestration of NO and compensatory up-regulation of renal eNOS and iNOS expressions. However, iron depletion was associated with reduced MDA and tissue nitrotyrosine abundance, increased urinary NOx excretion, normal nitric oxide synthase (NOS) expression, and absence of renal injury. These findings point to the possible role of ROS in chronic iron overload-induced renal injury.

Animals↗

Renal cell carcinoma in an end-stage kidney of a patient with a functional transplant: cytogenetic and molecular genetic findings.

Renal cell carcinomas (RCCs) occur at an increased rate and at a younger age in patients with end-stage renal disease (ESRD) than in the general population. A papillary RCC from a patient with ESRD treated by hemodialysis and then by renal transplantation was karyotyped and showed a 55,XY,+2,+4,+7,+10,+12,+16,+17,+17,+20 mainline. No loss of gene sequences in the short arm of chromosome 3 was identified by chromosomal or molecular genetic analysis. Together with one prior report of a cytogenetic study of a RCC in an end-stage kidney, the findings indicate that papillary RCCs that arise in ESRD patients have genetic changes that are similar to those found in sporadic tumors. The increased frequency of tumors and the younger age of the patients may be due to an increased rate at which abnormal mitoses occur in diseased renal tissues.

Adult↗

Analysis of 3p allelic loss in papillary and nonpapillary renal cell carcinomas. Correlation with tumor karyotypes.

Nonpapillary renal cell carcinomas (RCCs) are characterized by deletions of the short arm of chromosome 3 (3p) and papillary RCCs by increased numbers of selected chromosomes. Although recent molecular genetic studies have reported some papillary RCCs to show loss of heterozygosity (LOH) on 3p, a 3p deletion has not been demonstrated in a papillary RCC by karyotype analysis. To investigate this apparent discrepancy between molecular methods and chromosomal changes in the genetic evaluation of RCC, a series of 13 papillary and nonpapillary RCCs was investigated for 3p LOH by PCR-based restriction fragment length polymorphism (PCR-RFLP) analysis and for 3p and 3q LOH by microsatellite analysis. Karyotypes were obtained in six cases. Loss of 3p but not of 3q alleles was found in 8 of 10 nonpapillary RCCs. The region of overlapping deletion was 3p14--p21, and in six cases the deletion involved 3pter loci. One papillary RCC displayed 3p and 3q LOH, but the tumor had two morphologically normal chromosomes 3 and several trisomies. This indicated that nondisjunction of a chromosome from one parent compensated a whole chromosome loss from the other parent during tumor development. LOH in this papillary RCC constituted a reduction of chromosome 3 alleles to homozygosity, but the karyotype change, consisting of an increased number of whole chromosomes and an absence of a structural chromosome 3 abnormality, is regarded as being more characteristic of papillary than nonpapillary RCC.

Alleles↗

Renal cell carcinoma of end-stage renal disease: a histopathologic and molecular genetic study.

Renal cell carcinomas (RCC) are responsible for the deaths of 3% to 4% of patients with ESRD. The clear cell carcinoma of the kidney, which comprises 80% of sporadic RCC within the general population, shows a deletion of gene sequences in the short arm of chromosome 3 (3p) in as many as 100% of cases. The von Hippel-Lindau tumor suppressor gene at 3p25-26 is found to be mutated in the nondeleted allele in 57% of these sporadic clear cell carcinomas. This study was undertaken to determine the histopathologic types of RCC occurring in ESRD patients in the United States and to investigate the frequency with which 3p genetic changes can be found in these ESRD tumors. Seventeen end-stage kidneys containing RCC were collected from 15 ESRD patients at ten US medical centers. The tumors were classified by Thoenes' histopathologic typing. DNA extracted from paraffin blocks of tumor and nontumorous tissue was analyzed by single-stranded conformational polymorphism analysis for von Hippel-Lindau mutations and by microsatellite amplification for deletion of 3p gene sequences. Twenty-one RCC were identified in the 18 kidneys. The 21 RCC were classified histopathologically as follows: clear cell, compact, three cases; chromophilic, tubulopapillary, 15 cases; chromophilic, compact, three cases. Among the three clear cell carcinomas, one showed 3p genetic loss. None of the chromophilic RCC showed a 3p deletion and none of 19 tumors studied by single-stranded conformational polymorphism analysis disclosed von Hippel-Lindau mutations. In contrast to the general population, clear cell RCC with 3p abnormalities represent only a small proportion of the renal carcinomas in this collection of ESRD tumors. The findings indicate that the genetic changes underlying the development of most ESRD tumors are different from those occurring in sporadic clear cell RCC and do not characteristically involve the inactivation of a 3p tumor suppressor gene.

Adult↗

Mast cells in acute cellular rejection of human renal allografts.

Mast cells (MCs), few in the normal kidney, are found in increased number in the renal parenchyma in diseases associated with persistent chronic inflammation. MCs are not easily identified in routinely processed archival tissue sections with histochemical stains. A more reliable method of detection was provided with the introduction of MC tryptase-specific monoclonal antibodies. To determine the possible role of MCs in renal allograft rejection, we studied 28 biopsy specimens from renal allografts that had been in place for various lengths of time (from 3 days to 40 months) in patients whose primary diagnosis was acute interstitial rejection; the specimens were associated with varying degrees of interstitial fibrosis, edema, and hemorrhage. The specimens were graded on a semiquantitative scale (from 0 to 3+) for the severity of rejection, the degree of interstitial fibrosis, interstitial edema, and interstitial hemorrhage. Eosinophils, plasma cells, and MCs were quantitatively evaluated in these biopsy specimens. MCs were detected by use of a commercially available anti-MC tryptase monoclonal antibody, which proved to be an excellent tool to detect MCs in routinely processed paraffin sections. A positive correlation was found between the number of MCs and the time since transplantation (R = 0.841, P < 0.005) and between the number of MCs and the severity of interstitial fibrosis (R = 0.489, P < 0.005), as well as with interstitial edema (R = 0.517, P < 0.005). MCs were increased in number in patients with moderate (n = 18; mean, 18.00 MCs per 10 high power fields [HPFs]) and severe (n = 5; mean, 12.20 MCs per 10 HPFs) acute rejection compared with patients with mild (n = 5; mean, 2.44 MCs per 10 HPFs) acute rejection and normal kidneys (n = 6; mean, 1.75 MCs per 10 HPFs). These results suggested that MCs might play a role in the process of acute rejection of renal allografts and in the development of interstitial fibrosis.

Acute Disease↗

Human acute tubular necrosis: a lectin and immunohistochemical study.

To determine the nephron segment distribution of tubular epithelial damage and regeneration and the proliferative activity of various nephron segments in human acute tubular necrosis (ATN) with an antibody to proliferating cell nuclear antigen (PCNA) and to compare the findings in native kidneys with ATN with those in transplant kidneys with ATN, archival tissues from 12 native and 21 transplant kidney biopsy specimens and nine transplant nephrectomy specimens were collected that all showed obvious morphological signs of ATN. Nineteen patients with transplant kidneys with ATN were immunosuppressed with cyclosporine and 11 were immunosuppressed with prednisone and azathioprine. There was a predominance of "regenerating" tubules (tubules with thin epithelium) in the distal nephron in native kidneys with ATN; in the transplant kidneys this was less conspicuous. The number of Tamm-Horsfall protein (THP)-positive tubules was decreased in all kidneys with ATN compared with normal human kidneys. In contrast, the number of THP-positive casts was much higher in all kidneys with ATN than in the normal kidneys. In transplant kidneys with ATN the number of THP-positive casts was substantially lower than in native kidneys with ATN. The macula densa appears to maintain its morphological integrity in kidneys with ATN. Both regenerating and normal appearing tubules expressed vimentin and HLA-DR. The proliferation index (PI; ie, percentage of PCNA-positive nuclei) of the renal tubular epithelium in normal control kidneys varied between 0.22 and 0.33, depending on the tubule segment. The highest PI was noted in the transplant kidneys with ATN not treated with cyclosporine (8.0), followed by the native kidneys with ATN (4.4) and the transplant kidneys with ATN treated with cyclosporine (4.3). We did not find any significant difference in the PI between the regenerating (5.0) and normal appearing (5.6) tubules. Proximal tubules (8.7) showed significantly higher PI values than distal tubules (3.5) in transplant kidneys with ATN. Our results show substantial differences between native kidneys and transplant kidneys with ATN. Tubular epithelial cell proliferation in human ATN is prominent and appears to correlate with the severity of ATN. Light microscopically normal appearing tubules and regenerating tubules participate equally in the regeneration of injured tubules. Cyclosporine may have an inhibitory effect on cell regeneration (proliferation) in human transplant kidneys with ATN.

Cell Division↗

Renal thrombotic microangiopathy associated with multicentric Castleman's disease. Report of two cases.

Castleman's disease (also called giant lymph node hyperplasia or angiofollicular lymph node hyperplasia) is a clinicopathological entity of unknown etiology. Two histologic patterns of lymph nodes are classically recognized: the hyaline-vascular and plasma-cell variants. Recently, multicentric Castleman's disease has emerged as a separate clinical entity manifested primarily by generalized lymphadenopathy and systemic manifestations, such as thrombocytopenia, hemolytic anemia, hepatosplenomegaly, altered liver function tests, central nervous system alterations, and autoimmune manifestations. A number of renal alterations have been described in association with the two pathological variants of Castleman's disease, but thrombotic microangiopathy has been previously reported only once in a patient with Castleman's disease. No renal biopsy was performed in that patient, although there was evidence of renal dysfunction. We report two cases of biopsy-proven renal thrombotic microangiopathy associated with multicentric Castleman's disease. In addition to having lymph node pathology characteristic of Castleman's disease, both patients presented with generalized lymphadenopathy and systemic manifestations, including acute renal failure, hypergammaglobulinemia, anemia, thrombocytopenia, and hypoalbuminemia. Autoantibodies were present in both patients, including antiphospholipid antibodies in one patient. The renal biopsies, examined by light, immunofluorescence, and electron microscopy, were diagnostic for renal thrombotic microangiopathy. The simultaneous development of two rather uncommon syndromes, multicentric Castleman's disease and renal thrombotic microangiopathy, suggests a possible link between Castleman's disease and renal thrombotic microangiopathy. Furthermore, we propose that the production of autoantibodies, in particular antiphospholipid antibodies, may lead to the development of thrombotic microangiopathy in some patients with multicentric Castleman's disease.

Adult↗

Proliferative activity of cyst epithelium in human renal cystic diseases.

Increased proliferative activity of the renal tubular epithelium is thought to be a prerequisite for renal cyst formation by many investigators. However, in humans, the exact in vivo proliferation rate of epithelial cells lining these cysts is not known. In this study, which used immunohistochemical methods with an antibody to proliferating cell nuclear antigen (PCNA), the proliferation index (PI) (percentage of PCNA positive cell nuclei among epithelial cells lining the renal cysts) was determined in 10 cases of autosomal dominant polycystic kidney disease (ADPKD), 8 cases of autosomal recessive polycystic kidney disease (ARPKD), and 8 cases of acquired cystic kidney disease (ACKD). Cysts with proximal and distal nephron phenotype and cysts with markedly thickened basement membranes, as well as cysts lined by atrophic (flattened), "regular" (cuboidal or cylindrical), and hyperplastic epithelium, were evaluated separately. The overall PI of cyst epithelium (excluding hyperplastic cysts) was 2.58 in ADPKD, was 10.5 in ARPKD, and was 3.61 in ACKD. Overall, there were only minor differences in the PI between the various types of cysts. Cysts with hyperplastic epithelium in ACKD (unlike in ADPKD) showed a high PI (9.1). For comparison, the PI of two renal cell carcinomas occurring in two ACKD cases was also determined (13.70 and 8.67%). The PI of tubular epithelium in normal kidneys was only 0.22 to 0.33%, depending on the tubule segment. In contrast, in polycystic kidneys, those noncystic segments of the nephron from which the cysts are thought to originate (distal nephron (specifically collecting duct)) in ARPKD, primarily distal in ADPKD, proximal and distal in ACKD, had PI values similar to those of the cyst epithelium.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Interpretation of multiple isolate urine cultures in adult male patients.

A retrospective analytical study examined the records of 220 adult males (mean age 64.9 years) to determine the relative probability that multiple urine culture isolates (MUI) represent urinary tract infection (UTI) versus contamination or colonization. Nonculture laboratory data were used to determine the likelihood of UTI. Patients were classified into three categories: group 1 (those with single isolate cultures; n = 110), group 2 (those with MUI and either symptomatic UTI or an underlying pathologic condition; n = 71) and group 3 (those with MUI and either surgically altered urinary passages or absence of UTI symptoms; n = 39). Nonculture laboratory data suggested UTI in 48.2% of patients in group 1, 46.5% in group 2, and 23.1% in group 3. Patients in groups 1 or 2 with cultures yielding isolate counts of 10(5) colony forming units/mL were 6.2 times more likely to be classified as having a UTI (by nonculture laboratory data) compared with patients having only one or more of these two criteria. This study proposes a more objective approach to interpretation of MUI cultures using the results of nonculture laboratory data, clinical profiles, and colony counts.

Aged↗

Prognostic indicators in children with IgA nephropathy--report of the Southwest Pediatric Nephrology Study Group.

Investigators in 13 pediatric nephrology centers reviewed clinical and pathological features in 218 children and adolescents with IgA nephropathy (IgAN), with particular emphasis on 80 patients who had follow-up periods of at least 4 years. Potential prognostic markers in the 80 children were compared between 12 (15%) who developed end-stage renal disease (ESRD) versus 68 who did not. The relationship between clinical and pathological features and the subsequent development of ESRD was examined using stepwise linear discriminant analysis in addition to standard univariate analysis. Seven variables were found to be predictive of ESRD: the presence of glomerular sclerotic changes, especially when this was associated with proliferation or sclerosis in 20% or more of the glomeruli; black race; hypertension at biopsy; proteinuria at biopsy; age at presentation; crescents; male sex. Using the resulting discriminant function, development of ESRD could be correctly predicted in 95% of the subjects. We conclude that ESRD is more common in American children with IgAN than was realized previously. Risk factors previously documented in adult studies have been confirmed, especially the presence of glomerular sclerosis, proteinuria, and hypertension.

Adolescent↗

Tubular atrophy in the end-stage kidney: a lectin and immunohistochemical study.

Atrophic tubules in end-stage renal disease (ESRD) may have various morphologic appearances: some show microscopic features of "classic" atrophic tubules (thick, wrinkled tubular basement membrane and simplified epithelium), others show "thyroidization" (round tubules with simplified epithelium and casts), and many have the appearance of "endocrine" tubules (small tubules with narrow lumina, clear cells, and relatively thin basement membranes). Other tubules in ESRD may be enlarged and dilated with hypertrophic cells ("super" tubules). The exact segment of the nephron from which these tubules arise in ESRD has not been well studied. We examined paraffin sections of 28 end-stage kidneys with a panel of nephron-segment-specific renal epithelial markers (proximal nephron markers: Tetragonolobus purpureas and Phaseolus vulgaris erythroagglutinin lectins; distal nephron markers: antibodies to epithelial membrane antigen, low molecular weight cytokeratin [AE1/AE3], the lectin Arachis hypogaea, and an antibody to Tamm-Horsfall protein labeling the thick ascending limb of Henle). In addition, an antibody to proliferating cell nuclear antigen was applied to determine the proliferation index (proliferating cell nuclear antigen-positive nuclei/all counted nuclei x 100, ie, the percentage of proliferating cell nuclear antigen-positive nuclei) of the various atrophic and "super" tubules in ESRD. Classic atrophic tubules and the "super" tubules showed primarily a proximal phenotype. Tubules showing thyroidization were consistently positive with markers of the distal tubular epithelium. "Endocrine" tubules stained primarily with distal tubular markers; however, some proximal staining also was noted. The widened renal interstitium contained single cells or loosely organized small cell clusters positive with both the AE1/AE3 and the epithelial membrane antigen antibodies. Serial sectioning showed that the majority of these single cells were not forming tubules. The proliferation index of the "classic" atrophic tubules was the highest (3.08%), followed by the "super" tubules (2.39%), the "endocrine" tubules (1.58%), and the "thyroid" tubules (1.09%). These indexes are all considerably higher than the proliferation index of the normal renal tubular epithelium. Our findings suggest that different types of tubular atrophy may arise from different segments of the nephron, and that the renal interstitium in ESRD may harbor isolated cells with epithelial characteristics. Furthermore, the end-stage kidney is not a resting organ; on the contrary, it shows a high proliferative activity, particularly in the epithelium of the "classic" atrophic and the "super" tubules.

Adult↗

Proliferative activity of intrinsic cell populations in the normal human kidney.

The proliferative activity of various normal human renal cell populations is unknown. Recently, antibodies to cell proliferation-associated nuclear proteins, such as proliferating cell nuclear antigen (PCNA) and KI-67, which are applicable to archival paraffin sections, became available. With antibodies to PCNA and Ki-67 after microwave pretreatment of the paraffin sections, the proliferation indexes (ratio of positive nuclei with PCNA and Ki-67 antibodies/all nuclei counted x 100, i.e. percentage of positive cells) of 12 different intrinsic renal cell populations in 20 normal human kidneys have been determined. The following proliferation indexes (percentages of positive cells) were found with the PCNA and the Ki-67 antibodies, respectively: proximal tubular epithelium, 0.22, 0.24; thin limb of Henle, 0.29, 0.30; thick ascending limb of Henle, 0.32, 0.29; distal tubular epithelium (distal convoluted tubules and cortical collecting ducts, 0.33, 0.44; medullary collecting ducts, 0.32, 0.3; glomerular mesangial cells, 0.07, 0.12; glomerular visceral epithelial cells, 0.04, 0.08; glomerular parietal epithelial cells, 0.07, 0.1; glomerular capillary endothelium, 0.42, 0.47; peritubular capillary endothelial cells, 0.38, 0.43; endothelium of large intrarenal vessels (arteries and veins), 0.09, 0.12. Thus, normally capillary endothelium (glomerular and peritubular) appears to have the highest proliferation index in the human kidney by these techniques. These results indicate major variation in the proliferative activity of normal human renal cell populations, along with a significant correlation between PCNA and Ki-67 staining. Furthermore, this study provides normal values for the proliferative activity of different human renal cell populations.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗