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Biomedical subjects

B Kristiansson

Publications and source records attributed to B Kristiansson.

At least 19 recordsLinked to original sources

Scandinavian CDG-Ia patients: genotype/phenotype correlation and geographic origin of founder mutations.

Congenital disorders of glycosylation type Ia, (previous name carbohydrate-deficient glycoprotein syndrome type Ia; CDG-Ia) is an inherited disorder of the glycosylation of certain glycoproteins. The defect is caused by mutations in the phosphomannomutase 2 (PMM2) gene located in chromosome region 16p13. The purpose of this study was twofold: (1) to investigate the possible correlation between certain genotypes and the phenotype of the patients and their PMM activity, and (2) to study further the founder origin of the Scandinavian mutations. Sixty-four CDG-Ia patients were studied. Regardless of mutation combination, the patients showed the basic neurological symptoms associated with CDG-Ia. However, patients carrying the mutation 548T-->C had less severe disease, e.g., no pericardial effusions, malnutrition, or clinical coagulation disturbances. Liver dysfunction and peripheral neuropathy were milder. In contrast, patients carrying mutation 691G-->A showed a high incidence of severe malnutrition and hepatopathy, and they had the highest mortality including affected siblings. Heterozygotes for the two most common mutations (422G-->A and 357C-->A) displayed a phenotype of variable severity sometimes leading to early death. PMM activity showed no correlation with either genotype or phenotype but was reduced in most patients. There was a pronounced geographic clustering for some of the Scandinavian mutations. For example, 548T-->C was almost exclusively found in patients stemming from southeastern parts of Sweden, whereas 26G-->A was found to cluster in a region in the most southern parts of Sweden, suggesting that these mutations originated in these two regions separately as founder mutations. The most frequent mutation (422G-->A) did not show a specific geographic focus. The widespread 422G-->A mutation is probably an older mutation, although haplotype data from intragenic polymorphisms indicate that this mutation also arose only once. The detailed information of the origin of mutations and their respective associated phenotypic pattern should enable improvements to be made regarding tools for genetic counseling and for prenatal diagnoses in CDG-Ia families.

Base Sequence↗

Genome-wide linkage analysis of Scandinavian affected sib-pairs supports presence of susceptibility loci for celiac disease on chromosomes 5 and 11.

Celiac disease (CD) is a common chronic inflammatory disorder of the small intestine with a multifactorial aetiology. HLA is a well-known risk factor, but other genetic factors also influence disease susceptibility. To identify the genes involved in this disorder, we performed a genome-wide scan on 106 well-defined Swedish and Norwegian families with at least two affected siblings. We investigated familial segregation of 398 microsatellite markers, and utilised non-parametric linkage analysis. The strongest linkage with disease was found to the HLA locus (6p) (P<0.000006). There were eight regions besides HLA with a point wise P value below 0.05. Among these eight regions were 11q and 5q, both of which have been suggested in several linkage studies of independent celiac disease families. We also performed a stratification analysis of families according to their HLA genotypes. This resulted in significant differences on chromosome 2q. These results indicate that 11q, 5q and possibly also 2q are true susceptibility regions in CD.

Adolescent↗

Two different doses of gluten show a dose-dependent response of enteropathy but not of serological markers during gluten challenge in children with coeliac disease.

UNLABELLED: In order to study dose-dependency in histopathological reactions and in changes of serological markers of mucosal relapse, gluten challenge was performed with two defined amounts of gluten in 54 children with earlier enteropathy. Gluten was provided in the form of powder and the patients were randomly allotted to either 0.2 (group A, n = 27) or 0.5 (group B, n = 27) grams per kg body weight per day. At the start and after 4 wk of challenge a small intestinal biopsy was performed. Biopsy specimens were evaluated, in accordance with defined criteria, graded and summarized in an enteropathy score. Blood was sampled at the start and after 2 and 4 wk of challenge. Serum levels of anti-gliadin antibodies (AGA) and anti-endomysium antibodies (EmA) were measured. Within 4 wk of challenge, 24 out of 27 patients in group A and all patients in group B had relapsed. After increasing the gluten dose to 0.5 g/kg/d during the subsequent 4 wk, the three non-relapsing patients also relapsed. CONCLUSION: The severity of mucosal inflammation was significantly higher for group B (p = 0.04) indicating a dose-related severity of the enteropathy. No significant difference was found for maximum AGA level, or in the proportion of patients that converted to pathological values for AGA or EmA.

Biomarkers↗

Henna causes life threatening haemolysis in glucose-6-phosphate dehydrogenase deficiency.

Haemolytic crisis in glucose-6-phosphate dehydrogenase deficient individuals following topical application of henna occurred in four children: a female neonate (haemoglobin 50 g/l, serum bilirubin 700 micromol/l), who recovered after exchange transfusion; a male infant (haemoglobin 28 g/l) who died despite transfusion; and two preschool children (haemoglobin 40 and 41 g/l respectively).

Acute Disease↗

The decrease of IGF-I, IGF-binding protein-3 and bone alkaline phosphatase isoforms during gluten challenge correlates with small intestinal inflammation in children with coeliac disease.

OBJECTIVE: In children with coeliac disease, the ingestion of gluten causes small intestinal inflammation and a clinical picture of malabsorption, weight reduction and short stature. Decreased alkaline phosphatase (ALP) during gluten challenge was found in a previous study. ALP is a marker of bone formation and ALP activities are correlated with growth velocity. The aim of this study was to characterise the previously observed decrease of total ALP by investigating three specific bone ALP isoforms (bone/intestinal, B1 and B2) and three specific liver ALP isoforms (L1, L2 and L3) and, moreover, to correlate these ALP isoforms with other growth factors and growth markers. In addition, we also studied the association with possible weight changes, small intestinal mucosa inflammation, sex, age and gluten dose during gluten challenge. MATERIALS AND METHODS: Bone and liver ALP isoforms, IGF-I, IGF-binding protein (IGFBP)-3 and serum cross-linked carboxy-terminal telopeptide of type I collagen (ICTP) were measured together with change in weight and small intestinal mucosa histopathology in 54 children with earlier enteropathy who participated in a 4-week gluten challenge. RESULTS: We observed a decreased total ALP activity after 4 weeks of gluten challenge, 7.8+/-1.8 to 6.5+/-1.7 microkat/l (means +/- s.d.), which was mainly due to a reduction of the bone ALP isoforms. The sum of all three bone ALP isoforms decreased from 6.3+/-1.7 to 5.1+/-1.6 microkat/l. The decreased activities of the bone ALP isoforms correlated with the observed reductions of IGF-I (r=0.74, P<0.001), IGFBP-3 (r=0.51, P<0.001) and ICTP (r=0.57, P<0.001). The decrease of the growth factors and growth markers correlated with weight reduction, but when influences from the change in weight were adjusted for, the partial correlation of the small intestinal mucosa inflammation was significant for IGF-I (r=-0.56, P<0.001) and IGFBP-3 (r=-0.55, P<0.001). CONCLUSION: The decrease of total ALP was due to a reduction of bone ALP. The decrease of IGF-I and IGFBP-3 was independently correlated with weight change and small intestinal inflammation.

Alkaline Phosphatase↗

PMM2 mutation spectrum, including 10 novel mutations, in a large CDG type 1A family material with a focus on Scandinavian families.

Carbohydrate-deficient glycoprotein syndrome type IA (CDG IA) is an autosomal recessive disease characterized clinically by severe involvement of the central and peripheral nervous system, and biochemically by complex defects in carbohydrate residues in a number of serum glycoproteins. CDG IA is caused by mutations in the PMM2 gene located in chromosome region 16p13. In this study, 61 CDG type IA patients (122 chromosomes) were screened for mutations in the PMM2 gene using a combination of SSCP and sequence analysis. More than 95% of the mutations could be detected. All of them were missense mutations. Mutations 422G>A and 357C>A were strikingly more common in the material and comprised 58% of mutations detected. Of the 20 mutations found, 10 were not reported previously. Seven mutations, e.g. 26G>A (five alleles) and 548T>C (seven alleles), were found only in Scandinavian families. The most common genotype was 357C>A/422G>A (36%). Three patients were homozygous, 357C>A/357C>A (two cases), and 548T>C/548T>C (one case). No patients homozygous for the most common mutation 422G>A were detected. The different mutations were clustered e.g., in that most were located in exon 5 (five) and exon 8 (six), while no mutation was detected in exon 2. When the frequencies of each mutation were included, exon 5 comprised 61% (65 chromosomes) of the mutations; in Scandinavian patients the frequency of these mutations was 72%. Thus, analysis of exon five in these patients enables both reliable and time-saving first screening in prenatal diagnostic cases. This could be followed by a second step of additional strategies for the detection of other mutations.

Alleles↗

The CTLA4/CD28 gene region on chromosome 2q33 confers susceptibility to celiac disease in a way possibly distinct from that of type 1 diabetes and other chronic inflammatory disorders.

The effect of the gene region on chromosome 2q33 containing the CD28 and the cytotoxic T-lymphocyte associated (CTLA4) genes has been investigated in several diseases with chronic inflammatory nature. In addition to celiac disease (CD), type I diabetes, Grave's disease, rheumatoid arthritis and multiple sclerosis have all demonstrated associations to the A/G single nucleotide polymorphism (SNP) in exon 1, position +49 of the CTLA4 gene. The purpose of this study was to investigate this gene region in a genetically homogeneous population consisting of 107 Swedish and Norwegian families with CD using genetic association and linkage methods. We found a significant association with preferential transmission of the A-allele of the exon 1 +49 polymorphism by using the transmission disequilibrium test (TDT). Suggestive linkage of this region to CD was moreover demonstrated by non-parametric linkage (NPL) analysis giving a NPL-score of 2.1. These data strongly indicates that the CTLA4 region is a susceptibility region in CD. Interestingly, of the several chronic inflammatory diseases that exhibit associations to the CTLA4 +49 A/G dimorphism, CD appears to be the only disease associated to the A allele. This suggests that the +49 alleles of the CTLA4 gene are in linkage disequilibrium with two distinct disease predisposing alleles with separate effects. The peculiar association found in the gut disorder CD may possibly relate to the fact that the gastrointestinal immune system, in contrast to the rest of the immune system, aims to establish tolerance to foreign proteins.

Abatacept↗

Denaturing high-performance liquid chromatography is a suitable method for PMM2 mutation screening in carbohydrate-deficient glycoprotein syndrome type IA patients.

The phosphomannomutase 2 gene (PMM2; MIM 601785) has been identified as the carbohydrate-deficient glycoprotein syndrome type 1A gene (CDGS type 1A; MIM 212065). The gene spans 8 exons and 741 bp of coding DNA. Previously, we have identified 20 different mutations in the PMM2 gene using mutation screening with single-stranded conformation polymorphism (SSCP) and sequencing of DNA from 61 CDGS type 1A patients. Because eight of these could not be detected by SSCP, we were not satisfied with the sensitivity of the mutation detection technique used. Thus, we wanted to investigate if denaturing high-performance liquid chromatography (DHPLC) was a more suitable mutation screening method for PMM2. DHPLC was set up for PMM2 by optimizing eight different PCR fragments, one for each exon. The mutation detection was optimized empirically with PCR fragments from controls. First, control samples were run at a universal gradient and after modification and shortening of the gradient, also run at 10 different temperatures, 50-70 degrees C with 2-degree intervals, to enable setting of the temperature with the highest resolution. Then, PCR products with known mutations from the previous study were analyzed, and the results were compared to the control chromatograms for aberrations. We detected 19/20 mutations with DHPLC, and several mutations not detected by earlier screening techniques were readily detected by DHPLC. We conclude that DHPLC is a suitable detection technique for a rapid and reliable first scan of CDGS type 1A patients.

Chromatography, High Pressure Liquid↗

Chronic hepatitis B in children in Gothenburg, Sweden.

Sweden is a low prevalence area for hepatitis B, but the number of chronic carriers has increased during the last decade due to immigration. Out of a total of 120 children with identified chronic hepatitis B in Gothenburg, Sweden, 93 were investigated during the 2-year period 1994-95. The children had a mean age of 10.9 years and originated from 21 different countries. Most infections were discovered during various screening programmes after arrival in Sweden. A total of 90 of the 93 children were HBV-DNA positive by Amplicor HBV Monitor (Roche Diagnostics) and 58% (54/93) were HBeAg positive. All children either originated from areas with a high or medium prevalence of HBV infection (81/93, 87%) or were born in Sweden to mothers originating from high or medium prevalence countries (12/93, 13%). Three of these 12 children were vertically infected in spite of adequate immunoprophylaxis and 8 were born to mothers with undiscovered chronic HBV infection. In all, 34 children had mothers who were HBsAg positive. No overt case of transmission was notified in day-care centres or schools, or from a child to a non-immune parent. None of the children reported any symptoms of liver disease, but 38% (35/93) had elevated aminotransferases. Therefore, screening programmes are essential to identify chronic HBV infection in children in order to prevent transmission and to find individuals at risk of progressive liver damage who should be considered for treatment.

Acute Disease↗

[CDGS-1--a recently discovered hereditary metabolic disease. Multiple organ manifestations, incidence 1/80,000, difficult to treat].

Carbohydrate-deficient glycoprotein syndrome type 1 (CDGS-1) is an autosomal recessive hereditary metabolic disorder, the gene locus of which is chromosome 16p13. The disorder is characterised by genetic heterogeneity, and by decrease in the gene product, phosphomannomutase 2, though the heterogeneity is far less manifest in affected Swedish families. Its incidence is 1/80,000 live births, and the under-5 mortality rate over 30 per cent. The causes of death are liver failure, cardiac tamponade, haemorrhaging, and severe infection. The characteristic biochemical aberration is the occurrence of deficient carbohydrate chains in many but not all circulating glycoproteins, and the serum and blood concentrations of some glycoproteins may be above or below normal. These changes may improve over time, but never normalise. The clinical picture is generally more problematic during the first years of life when psychomotor retardation is complicated by failure to thrive, liver dysfunction, pericardial effusions, and stroke-like episodes. In addition, strabismus, lipocutaneous anomalies, and gluteal fat pads are always present, and muscular hypotonia and restricted joint mobility are common. Failure to thrive is common, with vomiting and diarrhoea and subsequent slow growth. Inflammation is a constant finding in the liver, and very common in the small bowel. Pancreatic function is also affected. Pericardial effusion has been reported in 50 per cent of the youngest children, requiring pericardectomy in 30 per cent of cases. Haemorrhaging and thromboembolic complications may occur, and the serum concentrations of several factors and inhibitors are low, particularly those of factors V and XI, protein C and antithrombin. Stroke-like episodes occur in about 30 per cent of cases, often following an infection, with coma lasting for hours to several days. Such sequelae as hemiplegia, blindness, and other focal neurological pathology have been observed transiently. Diagnosis is based on the serum carbohydrate-deficient transferrin level, verified by isoelectric focusing. Molecular genetic procedures enable point mutations to be identified and prenatal diagnosis to be performed in many families.

Adolescent↗

The heart and pericardial effusions in CDGS-I (carbohydrate-deficient glycoprotein syndrome type I).

Pericardial effusions were found in 6 of 10 children with carbohydrate-deficient glycoprotein syndrome type I (CDGS-I). In three cases pericardectomy was necessary. Blood concentrations of several glycoproteins and albumin were low. Similar abnormal isoforms of four glycoproteins were found in blood (B) and pericardial fluid (PF). There was a significant negative correlation between the mean concentration ratio PF/B and the molecular mass (MW) of 11 proteins. For proteins with MW < 100 kDa there were significant correlations in the controls, but not in the patients, between the PF/B ratio and both the MW and the sialic acid contents in the (glyco-)proteins. The pericardium exhibited focal mixed inflammatory changes with mesothelial proliferation, with widened endoplasmic reticulum and flocculent and/or lamellated material. Damage to a pericardial protein barrier is suggested to be involved in pericardial effusion in CDGS-I.

Adolescent↗

Isoforms and levels of transferrin, antithrombin, alpha(1)-antitrypsin and thyroxine-binding globulin in 48 patients with carbohydrate-deficient glycoprotein syndrome type I.

Carbohydrate-deficient glycoprotein syndrome type I (CDGS I) is an autosomal recessive disease with multiple organ manifestations. The diagnostic biochemical marker has been typical carbohydrate-deficient isoforms of transferrin (Tf). Many other glycoproteins in blood may show similar defects, but have not been systematically studied before. Forty-eight CDGS I patients and 22 controls were examined for total concentrations and isoform distribution of Tf, antithrombin (AT), alpha(1)-antitrypsin (alpha(1)-AT) and thyroxine-binding globulin (TBG), and for the level of carbohydrate-deficient transferrin (CDT). The absolute values varied with age. The most frequent persistent quantitative changes were reduced levels of AT (97%) and elevated CDT values (100%). Isoforms lacking one to eight of four to eight possible sialic acid residues were found in AT, TBG and Tf in all cases, with variable intensity and frequency, and in all except one patient in alpha(1)-AT. The isoform changes were most constant and pronounced in Tf. The other three glycoproteins showed more abnormal heterogeneity in the youngest than in the older patients. The results indicated that the biochemical defect stabilizes with age, and suggested partial hypoglycosylation rather than non-glycosylation of these glycoproteins. Analysis of Tf isoforms is still the safest diagnostic marker of CDGS I from full-term birth and over the ages.

Adolescent↗

Failure of short-term mannose therapy of patients with carbohydrate-deficient glycoprotein syndrome type 1A.

Carbohydrate-deficient glycoprotein syndrome type 1A (CDGS1A) is an inherited disorder with multisystemic abnormalities resulting from failure to generate sufficient lipid-linked oligosaccharide precursor or to transfer the sugar chain to many glycoproteins. Cultured fibroblasts from these patients have reduced incorporation of mannose into glycoproteins which can be corrected by adding D-mannose to the culture medium. Providing dietary mannose to elevate mannose concentrations in vivo therefore might remedy some of the underglycosylation in the patients. Five children with CDGS1A aged 15 months to 14 y completed a protocol of enteral supplementation with D-mannose 100 mg/kg every 3 h for 9 d. The mean S-mannose level increased from 32 microM (range 22-42 microM) to a trough value of 72 microM (range 39-103 microM). No serious side effects were observed. Surprisingly, the mean serum concentration of four glycoproteins (transferrin, alpha1-antitrypsin, antithrombin, and thyroxine-binding globulin) tended to decrease, and the mean serum concentration of carbohydrate-deficient transferrin (CDT) increased. Furthermore, the initially present abnormal isoforms of these glycoproteins and of protein C became more prominent and/or additional abnormal isoforms appeared. This short-term trial does not support a benefit of mannose to the deficient glycosylation of CDGS1A patients.

Adolescent↗

Intestinal, pancreatic and hepatic involvement in carbohydrate-deficient glycoprotein syndrome type I.

BACKGROUND: Children with carbohydrate-deficient glycoprotein syndrome type I during infancy have gastrointestinal symptoms and growth impairment, the cause of which is largely unknown. METHODS: Seven children were investigated with small intestinal biopsy, liver biopsy, duodenal intubation with determination of lipolytic and proteolytic activity, and test meal. Weight, length-height, and head circumference were recorded regularly. RESULTS: Growth was affected from early infancy, with an initial low rate of weight gain followed by impaired linear growth. Vomiting and diarrhea were dominant symptoms. Four of seven children had abnormal findings in light microscopic examination of small intestinal biopsy specimens, with short villi and increased inflammatory cells in the stroma, that did not respond to elimination of such food proteins as cow's milk or gluten. Electron microscopic study showed dilatation of smooth endoplasmic reticulum and abnormal inclusions containing lipids. The liver was abnormal in all. Besides steatosis and fibrosis or cirrhosis, there was a remarkable increase of inflammatory cells in portal zones. Activity of lipolytic enzymes in duodenal juice was low, except in one child, who no longer had growth problems or symptoms. Two of six had abnormal proteinolytic activity in duodenal juice. Digestion of triglycerides and absorption were within normal limits, as was the absorption of glucose and xylose. CONCLUSIONS: Inflammation of small intestine and liver may be the cause of gastrointestinal symptoms. In all likelihood, the growth failure was because of low caloric intake and increased losses related to vomiting. Growth and gastrointestinal symptoms improved spontaneously as time elapsed.

Biopsy↗

Fine mapping of the gene for carbohydrate-deficient glycoprotein syndrome, type I (CDG1): linkage disequilibrium and founder effect in Scandinavian families.

Carbohydrate-deficient glycoprotein syndrome type I (CDG I) is characterized clinically by severe nervous system involvement and biochemically by defects in the carbohydrate residues in a number of serum glycoproteins. The CDG1 gene was recently localized by us to a 13-cM interval in chromosome region 16p13. In this study 44 CDG I families from nine countries were analyzed with available markers in a region ranging from marker D16S495 to D16S497, and haplotype and linkage disequilibrium analyses were performed. One specific haplotype was found to be markedly overrepresented in CDG I patients from a geographically distinct region in Scandinavia, strongly indicating that CDG I families in this region share the same ancestral CDG1 mutation. furthermore, analysis of the extent of the common haplotype in these families indicates that the CDG1 gene is located in the region defined by markers D16S513-AFMa284wd5-D16S768-D16S406-D16S502 . The critical CDG1 region, in strong linkage disequilibrium with markers AFMa284wd5, D16S768, and D16S406, thus constitutes less than 1 Mb of DNA and less than 1 cM in the very distal part of the CDG1 region defined by us previously.

Chromosome Mapping↗