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Biomedical subjects

C Holmberg

Publications and source records attributed to C Holmberg.

At least 19 recordsLinked to original sources

Glomerular sclerosis in kidneys with congenital nephrotic syndrome (NPHS1).

Congenital nephrotic syndrome of the Finnish type (NPHS1) is a rare genetic disease caused by mutations in the NPHS1 gene encoding a major podocyte slit-diaphragm protein, nephrin. Patients with NPHS1 have severe nephrotic syndrome from birth and develop renal fibrosis in early childhood. In this work, we studied the development of glomerular sclerosis in kidneys removed from 4- to 44-month-old NPHS1 patients. The pathological lesions and expression of glomerular cell markers were studied in nephrectomized NPHS1 and control kidneys using light and electron microscopy and immunohistochemistry. An analysis of 1528 glomeruli from 20 patients revealed progressive mesangial sclerosis and capillary obliteration. Although few inflammatory cells were detected in the mesangial area, paraglomerular inflammation and fibrosis was common. The podocytes showed severe ultrastructural changes and hypertrophy with the upregulation of cyclins A and D1. Podocyte proliferation, however, was rare. Apoptosis was hardly detected and the expression of antiapoptotic B-cell lymphoma-2 and proapoptotic p53 were comparable to controls. Moderate amounts of podocytes were secreted into the urine of NPHS1 patients. Shrinkage of the glomerular tuft was common, whereas occlusion of tubular opening or protrusion of the glomerular tuft into subepithelial space or through the Bowman's capsule were not detected. The results indicate that, in NPHS1 kidneys, the damaged podocytes induce progressive mesangial expansion and capillary obliteration. Podocyte depletion, glomerular tuft adhesion, and misdirected filtration, however, seem to play a minor role in the nephron destruction.

Apoptosis↗

Expression of SLC26A3, CFTR and NHE3 in the human male reproductive tract: role in male subfertility caused by congenital chloride diarrhoea.

Congenital chloride diarrhoea (CLD) is a rare inherited disease caused by mutations in the solute carrier family 26 member 3 (SLC26A3) gene. Disruption of intestinal Cl(-)/HCO(3)(-) exchange causes watery Cl(-) rich diarrhoea from birth, and recently male subfertility was observed as a novel manifestation. Expression of SLC26A3, together with interacting proteins cystic fibrosis transmembrane conductance regulator (CFTR) and Na(+)/H(+) exchanger 3 (NHE3), was studied using immunohistochemistry in the testis (n = 2) and efferent ducts (ED) (n = 1) of patients with CLD (V317del genotype) and in the testis and epididymis (n = 11), seminal vesicle (n = 9) and prostate (n = 4) of the controls. SLC26A3 was immunolocalized in the head of the elongating spermatids (stages III-VI) and CFTR in the elongating spermatids (stages III and IV) and pachytene (stages III-V) and diplotene spermatocytes. In the non-ciliated cells of the ED, apical expression of all three proteins was observed, but only SLC26A3 and CFTR were detected on the luminal border of the apical mitochondria-rich cells (AMRC) of the ductus epididymis and in the epithelium of the seminal vesicle. Only CFTR was present in the epithelium of the prostatic duct. In the patient with CLD, the expression of both SLC26A3 and CFTR was absent in the ED, but testicular expression was identical to that of the controls. These results suggest a primary role for SLC26A3 in male reproduction. Tissue-specific co-expression with CFTR and NHE3 supports diverse functions of SLC26A3 and may have an impact on pathophysiology of male subfertility both in CLD and in cystic fibrosis (CF), as well as spermatoceles.

Adult↗

Scoliosis after solid organ transplantation in children and adolescents.

The occurrence of scoliosis in children after solid organ transplantation is not known. A total of 196 children, which is 93% of patients surviving kidney, liver and heart transplantation in our country, participated in a cross-sectional survey. All children were screened for rib hump, and those with clinically significant hump (over 6 degrees ) underwent radiographs of the spine. The occurrence of scoliosis was compared to data obtained from a previously published comparison group. Forty-three (21.9%) of the patients had scoliosis greater than 10 degrees , and 21 (10.7%) of them had curves greater than 20 degrees . The RR (95% CI) for scoliosis needing treatment (over 20 degrees ) was 17.0 (6.75-42.7) in the patients as compared with control population. The occurrence of scoliosis was 17.9% of the kidney, 13.6% of the liver and 51.7% of the heart transplant patients (p < 0.001). In a logistic regression model, heart transplantation (OR (95% CI) 7.27 (2.62-20.2)) and growth hormone treatment (3.98 (1.77-8.94)) were most significant risk factors for scoliosis. The risk of scoliosis is increased in patients with solid organ transplantation. Pediatricians treating these patients should be aware of this increased risk to diagnose early curves and to refer these patients to an orthopedic surgeon.

Adolescent↗

Methylprednisolone exposure in pediatric renal transplant patients.

Glucocorticoid (GC) dosing is commonly based on body mass or surface area in children, although the drug effects appear to correlate with steroid exposure, rather than dose. We compared the area under the serum concentration-time curve (AUC) of methylprednisolone (MP) with a recombinant cell bioassay measuring serum glucocorticoid bioactivity (GBA), in prediction of side effects in 16 pediatric patients (5.4-18.4 years of age) 2.0-14.9 years after renal transplantation (TX). They received 0.3 mg/kg of MP orally and timed blood samples were drawn up to 8 h postdose. Serum MP concentrations correlated moderately with GBA (r= 0.65, p < 0.0001) with best linear fit at 6 and 8 h (r= 0.72, 0.79, respectively, p < 0.001). MP-AUC(t = 0-8) and GBA(t = 6) were significantly greater in patients who gained excessive weight soon after TX. Change in growth after TX was inversely correlated with MP-AUC (r= 0.73, p < 0.05) and GBA(t = 6) (r= 0.62, p < 0.05). No correlation of MP-AUC or GBA was found with blood glucose or serum lipid concentrations, glomerular filtration rate, bone mineral density or graft histology. In conclusion, GC exposure varies individually and dosing should be adjusted accordingly to control the adverse effects. GBA might provide a complementary tool for monitoring GC exposure but further studies are needed.

Adolescent↗

Depletion of the AP-1 repressor JDP2 induces cell death similar to apoptosis.

JDP2 is a ubiquitously expressed nuclear protein that efficiently represses the activity of the transcription factor AP-1. Thus far, all studies of JDP2 function have relied on the ectopic expression of the protein. In this study, we use a different approach: depletion of JDP2 from cells. Specific depletion of JDP2 resulted in p53-independent cell death that resembles apoptosis and was evident at 72 h. The death mechanism was caspase dependent as the cells could be rescued by treatment with caspase inhibitor zVAD. Our studies suggest that JDP2 functions as a general survival protein, not only following UV-irradiation, as reported earlier, but also under normal culture conditions. Thus, our data support that JDP2 is a cellular survival protein whose presence is necessary for normal cellular function.

Amino Acid Chloromethyl Ketones↗

Substantial increase in cadaveric organ donors in hospitals implementing the donor action program in Finland.

The results of solid organ transplantation have improved during the last decade. Five-year patient survivals over 80% and graft survivals over 70% are common in many transplant centers. Also, quality-of-life assessments show that not only adults but even small children have a good quality of life after successful organ transplantation. Furthermore, transplantation programs have proved to be cost-effective. However, the organ shortage is a worldwide problem, which has in many countries led to prolonged waiting times, deaths on the waiting list, increased living related donations, acceptance of lower-quality organs, and in some instances even commercialization of the organ supply. Thus, it is extremely important to find strategies that increase the number of cadaveric organs for donation. In Finland organ transplantation is concentrated in one center with about 250 transplantations of different organs performed annually. The number of patients needing a new cadaveric organ is steadily increasing, but the number of donors has remained the same during the last decade. To improve cadaveric organ procurement the Donor Action (DA) program, which consists of a Hospital Attitude Survey and a medical records review performed by the donor hospital, has proved to increase the number of cadaveric donors. We introduced the DA program in Finland in 2000. Here in we report the results of this program in terms of its impact on the availability of cadaveric donors.

Adult↗

JNK2 mediates TNF-induced cell death in mouse embryonic fibroblasts via regulation of both caspase and cathepsin protease pathways.

Recent studies strongly suggest an active involvement of the c-Jun N-terminal kinase (JNK) signaling pathway in tumor necrosis factor (TNF)-induced apoptosis. The direct evidence for the role of JNK and its isoforms has been missing and the mechanism of how JNK actually could facilitate this process has remained unclear. In this study, we show that Jnk2-/- primary mouse embryonic fibroblasts (pMEFs) exhibit resistance towards TNF-induced apoptosis as compared to corresponding wild-type and Jnk1-/- pMEFs. JNK2-deficient pMEFs could be resensitized to TNF via retroviral transduction of any of the four different JNK2 splicing variants. Jnk2-/- pMEFs displayed deficient and delayed effector caspase activation as well as impaired cytosolic cystein cathepsin activity: processes that both were needed for efficient TNF-induced apoptosis in pMEFs. Our work demonstrates that JNK has a central role in the promotion of TNF-induced apoptosis in pMEFs, and that the JNK2 isoform can regulate both mitochondrial and lysosomal death pathways in these cells.

Alternative Splicing↗

Maternal and paternal chromosomes 7 show differential methylation of many genes in lymphoblast DNA.

Genomic imprinting, the differential expression of paternal and maternal alleles, involves many chromosomal regions and plays a role in development and growth. Differential methylation of maternal and paternal alleles is a hallmark of imprinted genes, and thus methylation assays are widely used to support the identification of novel imprinted genes. Either blood or lymphoblast DNAs are most often used in these assays, even though methylation levels may change in cell culture. We undertook a systematic survey of parent-of-origin-specific methylation of chromosome 7 genes and ESTs by comparing DNA samples from cases of maternal and paternal uniparental disomy for chromosome 7 using DNA from fresh blood and lymphoblast cell lines. Our results revealed that up to 41% of genes and ESTs show parent-of-origin-specific methylation differences in lymphoblast DNA after only a short time in culture, whereas methylation differences were not seen in blood DNA. The methylation changes occurred most commonly on paternal chromosome 7, whereas alterations on maternal chromosome 7 were more infrequent and weaker. These findings indicate that methylation patterns may change significantly during cell culture in a parent-of-origin-dependent manner and suggest that methylation is maintained differently on maternal and paternal chromosomes 7.

Adolescent↗

Fine-needle aspiration biopsy allows early detection of acute rejection in children after renal transplantation.

UNLABELLED: analysis detected rejections often before clinical signs. Half of the patients had increased serum creatinine concentration and 38% had fever at the time of rejection diagnosis. Both signs were present in only 19% of the episodes. A decrease in urine output (>20%) was seen in a third of the episodes. The rejections responded well to oral methylprednisolone (3 mg/kg/day), and lymphoglobulins were needed in only 12% of the episodes. More than 90% of the rejections were completely reversible and no transplant was lost because of acute rejection. CONCLUSION: The results indicate that FNAB is a safe and sensitive method for the diagnosis and follow-up of acute cellular rejection in pediatric recipients of different ages.

Adolescent↗

Identification of seven novel mutations including the first two genomic rearrangements in SLC26A3 mutated in congenital chloride diarrhea.

Congenital chloride diarrhea (CLD) is an autosomal recessive disorder characterized by defective intestinal electrolyte absorption, resulting in voluminous osmotic diarrhea with high chloride content. A variety of mutations in the solute carrier family 26, member 3 gene (SLC26A3, previously known as CLD or DRA) are responsible for the disease. Since the identification of the SLC26A3 gene and the determination of its genomic structure, altogether three founder and 17 private mutations have been characterized within miscellaneous ethnic groups. We screened for mutations in seven unrelated families with CLD. The diagnoses were confirmed by fecal chloride measurements. The combined PCR-SSCP and sequencing analyses revealed altogether seven novel mutations including two missense mutations (S206P, D468V), two splicing defects (IVS12-1G>C, IVS13-2delA), one nonsense mutation (Q436X), one insertion/deletion mutation (2104-2105delGGins29-bp), and an intragenic deletion of SLC26A3 exons 7 and 8. Two previously identified mutations were also found. This is the first report of rearrangement mutations in SLC26A3. Molecular features predisposing SLC26A3 for the two rearrangements may include repetitive elements and palindromic-like sequences. The increasingly wide diversity of SLC26A3 mutations suggests that mutations in the SLC26A3 gene may not be rare events.

Antiporters↗

Hypertension, cardiac state, and the role of volume overload during peritoneal dialysis.

The cardiac state and the prevalence of high blood pressure (BP) were analyzed in 21 pediatric patients (mean age 5.3 +/- 5.3 years) on chronic peritoneal dialysis (CPD), the aim being to specify the impact of hypervolemia in the etiology of hypertension. C- and N-terminal atrial natriuretic peptide (ANP-C, ANP-N) were measured as possible additional markers of hypervolemia. Baseline investigations were carried out 0.2 years after initiation of PD, and repeated after 0.9 +/- 0.2 years. Fifty-two percent of the patients had high BP, and in 40% the nocturnal BP decline was decreased. Left ventricular hypertrophy was present in 45%, but the systolic and diastolic functions of the heart were not impaired. Left ventricular mass correlated significantly with the severity of hypertension and with ANP-N (r = 0.79, P < 0.01 and r = 0.66, P < 0.01, Spearman rank correlation). Significant correlations were also found between the severity of hypertension and ANP-N and ANP-C (r = 0.82, P < 0.01 and r = 0.66, P < 0.01, Spearman rank correlation). High BP and cardiac impairment were more frequent in the younger and nephrectomized patients in whom volume overload seemed to be the most-important etiological factor. Our results suggest further that an ANP-N over 3.0 nmol/l combined with hypertension is strongly indicative of volume overload in patients on PD.

Atrial Natriuretic Factor↗

Distinct outcomes of chloride diarrhoea in two siblings with identical genetic background of the disease: implications for early diagnosis and treatment.

BACKGROUND: Congenital chloride diarrhoea (CLD, OMIM 214700) is a serious inherited defect of intestinal electrolyte absorption transmitted in an autosomal recessive fashion. The major clinical manifestation is diarrhoea with high chloride content which can be balanced by substitution. The molecular pathology involves an epithelial Cl(-)/HCO(3)(-) exchanger protein, encoded by the solute carrier family 26, member 3 gene (SLC26A3), previously known as CLD or DRA (downregulated in adenomas). To date, almost 30 different mutations in the SLC26A3 gene have been identified throughout the world. No clear genotype-phenotype correlation has been established. PATIENTS/METHODS: Two siblings presenting with CLD were studied for disease history, supplementation, or other treatments, and for mutations in the SLC26A3 gene. RESULTS: Mutation analysis revealed a homozygous I544N mutation in both patients. However, despite the uniform genetic background of CLD in this family, the clinical picture and outcome of the disease were remarkably different between siblings. The older sibling had a late diagnosis and chronic course of the disease whereas the younger one, who was diagnosed soon after birth and immediately received supplementation therapy, grows and develops normally. CONCLUSION: Time of diagnosis, substitution therapy, compliance, and compensatory mechanisms are more important modulators of the clinical picture of CLD than the type of mutation in the SLC26A3 gene.

Chloride Channels↗

Genetic kidney diseases disclose the pathogenesis of proteinuria.

The sieving of plasma components occurs in the kidney through the glomerular capillary wall. This filter is composed of three layers: endothelium, glomerular basement membrane (GBM), and podocyte foot processes connected by slit diaphragms. Defects in this barrier lead to proteinuria and nephrotic syndrome. Previously, defective GBM was regarded to be responsible for proteinuria. However, recent work on genetic diseases has indicated that podocytes and the slit diaphragm are crucial in restricting protein leakage. Congenital nephrotic syndrome of the Finnish type (NPHS1) is caused by mutations in a novel NPHS1 gene, which encodes for a cell adhesion protein, nephrin. This protein is synthesized by podocytes, and seems to be a major component of the slit diaphragm. In severe NPHS1, lack of nephrin leads to missing slit diaphragm. The role of nephrin in acquired kidney diseases remains unknown. In addition to nephrin, other podocyte proteins (podocin, alpha-actinin-4, CD2AP, FAT) have recently been identified and associated with the development of proteinuria. It seems that the slit diaphragm and its interplay with the podocyte cytoskeleton is critical for the normal sieving process, and defects in one of these components easily lead to proteinuria.

Glomerulosclerosis, Focal Segmental↗

Course of renal allograft histopathology after transplantation in early childhood.

BACKGROUND: We report a long-term prospective follow-up of renal allograft histology in children <5 years of age at transplantation (Tx). METHODS: Fifty-one kidney allograft recipients were prospectively followed for renal allograft histology and function up to 7 years after Tx. Twenty patients were recipients of kidneys from living related donors, and 31 were cadaveric kidney recipients. All patients received triple immunosuppression. Biopsies were analyzed according to the Banff classification and scored semiquantitatively. The "chronic allograft damage index" (CADI) was calculated. RESULTS: Five of seven grafts were lost because of nephrosis in patients with congenital nephrotic syndrome of the Finnish type. Most of the biopsies (52-69%) were considered normal (Banff classification), and the proportion with chronic allograft nephropathy did not increase with time. The median CADI score was 2.5 (scale: 0-36) at 1.5 years and 3.5 at 7 years. Recipients with an acute rejection episode had higher CADI scores than recipients without acute rejection episode. Patients with a high CADI score at 3 years had inferior graft function at 5 years. Recipients <2 years of age had CADI scores and numbers of acute rejection episode similar to recipients between 2 and 5 years of age. However, in contrast to the older recipients, the younger recipients did not improve their absolute glomerular filtration rate with time. CONCLUSIONS: The long-term histopathological findings were mostly mild and stable with time. Acute rejection episode had an impact on these changes and CADI predicted later graft function. Nonimmunological risk factors seem to be more important in the youngest recipients.

Acute Disease↗

Infections in pediatric kidney and liver transplant patients after perioperative hospitalization.

BACKGROUND: Infectious complications are a major cause of morbidity and mortality after organ transplantation. There are several reports on infections during the first months after transplantation, but there are very few data regarding infections in long-term survivors of pediatric organ transplantation. METHODS: The incidence and type of infections were retrospectively analyzed in 56 children who underwent 59 liver or renal transplantations. Follow-up was begun when the patient was sent home after a successful operation. All of the children received triple immunosuppression. RESULTS: During a mean follow-up of 4.8 years (total, 286 patient years), 1540 episodes of infection were recorded. The median incidence was 4.8 episodes/patient year. The greatest number was seen in the smallest children, 3 to 6 months after transplantation. Viral upper respiratory tract infections were the most common problem, accounting for half of the episodes (2.7 episodes/patient year). Gastroenteritis was the second most common viral infection. Only 45 episodes of infection with herpesviruses were recorded, and seven of those were caused by cytomegalovirus. Otitis media and sinusitis were the most common bacterial infections and complicated upper respiratory infection in 23% of episodes. Thirty-nine episodes of urinary tract infections were diagnosed, thirty-one in children with renal transplants. Other bacterial infections were rare, and only three episodes of verified bacterial sepsis were diagnosed. CONCLUSION: The frequency and type of infections in children with liver and renal transplants who are on triple immunosuppression are quite similar to those in age-matched healthy children.

Adolescent↗

Clinical outcome of pediatric patients on peritoneal dialysis under adequacy control.

Clinical outcome under adequacy control was studied in 10 pediatric patients under 5 years and 11 patients over 5 years of age on continuous peritoneal dialysis (PD). Outcome was compared between the age groups and with our previous results in patients under 5 years of age. Peritoneal equilibration test and 24-h dialysate collection were performed. Laboratory data, clinical status, and diet were recorded. PD prescription was adjusted for these parameters. The mean weekly urea Kt/V was similar and stable in the two age groups (3.1+/-0.6 vs. 3.2+/-0.4 at baseline). The mean weekly creatinine clearance (C(Cr)) was at baseline significantly lower in the younger age group (58.7+/-11.9 vs. 78.0+/-14.9 l/week per 1.73 m2, P=0.004), but later similar. Urea Kt/V and C(Cr) correlated significantly. Hematological and biochemical parameters were stable, and catch-up growth was observed in 62% of the patients during 9 months of follow-up. The outcome for children under and over 5 years of age did not differ significantly. The clinical outcome in patients under 5 years of age improved under adequacy control, when compared with our previous results in patients of the same age. This suggests a positive effect of adequacy control on clinical outcome.

Adolescent↗