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J Hulkkonen

Publications and source records attributed to J Hulkkonen.

At least 19 recordsLinked to original sources

Matrix metalloproteinase 9 (MMP-9) gene polymorphism and MMP-9 plasma levels in primary Sjogren's syndrome.

OBJECTIVES: To determine whether plasma matrix metalloproteinase 9 (MMP-9) and MMP9 (-1562C-->T) polymorphism have an effect on the disease phenotype in primary Sjogren's syndrome (pSS). METHODS: Plasma MMP-9 concentrations and polymorphism of the MMP9 gene were analysed in 66 patients with pSS. These data were studied in relation to the clinical data of the patients. The genetic data of patients were compared with the data of 66 healthy subjects. RESULTS: Plasma MMP-9 was higher in patients with definite pSS than in patients with possible pSS. This association was principally caused by higher plasma MMP-9 in patients with a positive Schirmer test and keratoconjunctivitis sicca. pSS patients with purpura, SS-A autoantibodies and RF had significantly lower plasma MMP-9 than patients without these characteristics. The overall MMP9 (-1562C-->T) allele frequencies were similar in patients and control subjects. The frequency of the allele T was higher in patients without Raynaud's phenomenon than in the control group. CONCLUSIONS: MMP9 (-1562C-->T) could not be used for risk assessment in pSS. The presence of the rarer allele T may decrease the risk of Raynaud's phenomenon in pSS. High plasma MMP-9 is indicative of definite pSS but may paradoxically have a preventive effect on the eruption of purpura and on the development of autoantibody reaction in pSS.

Aged↗

IL-10 gene polymorphism and herpesvirus infections.

Genetics has an important role in resistance to various infections and it also may modify the clinical picture of an infectious disease. Here, we briefly review our recent data demonstrating that the polymorphism of the IL-10 gene is associated with resistance to some common herpesviruses and, additionally, that this same gene is involved in the regulation of the severity of the infection and in the reactivation process.

Cytomegalovirus Infections↗

The IL1A genotype is associated with nasal polyposis in asthmatic adults.

BACKGROUND: Nasal polyposis (NP) is a chronic inflammatory disease often found coexisting with asthma. As this disorder tends to cluster in families, a genetic predisposition has been suggested. Interleukin-1 (IL-1) has been proposed to play a role in the pathogenesis of NP. METHODS: We analysed the single G-to-T base exchange polymorphism in exon 5 at +4845 of the gene encoding IL-1alpha (IL1A) and the C-to-T base exchange polymorphism at -511 of the gene encoding IL-1beta (IL1B) in a population-based sample of adult asthma patients (n = 245). The data were assessed for correlation with data on history of NP and other phenotype-related characteristics. RESULTS: The prevalence of NP in our study group was 14.3%. The distribution of the IL1A genotype differed significantly between asthmatics with and without NP (P = 0.005). The risk of NP was markedly increased in allele G homozygous subjects (OR = 2.73; 95%CI = 1.40-5.32). In the case of IL1B we found no significant associations. Asthmatics with NP had more symptoms than others, but lung function and blood eosinophil counts were similar. CONCLUSIONS: Our study demonstrates an association of IL1A with NP inasthmatic patients and addresses the role of IL-1alpha as an inflammatory modulator in the pathogenesis of this disease.

Asthma↗

Interleukin-10 gene promoter region polymorphism is associated with eosinophil count and circulating immunoglobulin E in adult asthma.

BACKGROUND: IL-10 has several functional effects relevant to asthma. It can modulate IgE production and induce apoptosis in eosinophils. Polymorphisms of IL-10 gene have been shown to affect IL-10 production. OBJECTIVE: To establish whether IL-10 polymorphisms are associated with asthma and phenotype-related characteristics. METHODS: The frequency of three single base exchange polymorphisms (at positions - 1082, - 819 and - 592) and corresponding haplotypes of the IL-10 gene were analysed in 245 adult asthmatic subjects and 405 controls using PCR and restriction fragment length polymorphism (RFLP). The data were assessed for correlations with the eosinophil count, serum IgE and lung function. RESULTS: The IL-10 haplotype frequencies were similar in asthmatics and controls. Eosinophil count median was 2.0- to 3.2-fold higher among asthmatics with rare ATA/ATA genotype than in asthmatics with other genotypes. No such difference was seen in the control group. When analysed by IL-10 haplotype carrier state and gender, male asthmatics with ATA haplotype had 2.8-fold higher serum IgE than those without ATA. A converse association was found in male controls with ATA haplotype, who had 1.9-fold lower serum IgE than their ATA-negative counterparts. The high IL-10-producing GCC haplotype was associated with impaired lung function in smoking male controls while in asthmatics no clear effect on lung function was found with any of the haplotypes studied. CONCLUSION: These results suggest that the eosinophil counts and serum IgE are differently regulated by IL-10 genotype in asthmatic and in normal subjects. However, IL-10 polymorphism is not related to susceptibility in asthma.

Aged↗

Immunoglobulin G3 and immunoglobulin M isotype plasma levels are influenced by interleukin-1alpha genotype.

The immunoglobulin (Ig) plasma levels are known to be, at least partially, genetically regulated, but all the genes involved are not known. Interleukin-1 (IL-1) is a potent proinflammatory cytokine able to serve as an adjuvant for immune responses. IL-1alpha gene is polymorphic, and at least one of the polymorphisms has been identified in the 5' regulatory region of the promoter, a biallelic base exchange (C-->T) at position -889. We set out to study whether the IL-1alpha genotype might contribute to the genetic component seen in the steady-state antibody levels of healthy individuals. Four hundred healthy blood donors (218 males and 182 females) were genotyped, and the plasma levels of IgM, IgG as well as IgG subclasses were measured. An association was found between IgG3 plasma levels and the IL-1alpha genotype; the 1.1 homozygotes had increased IgG3 levels compared with the 1.2 heterozygotes (P < 0.001 in males and P = 0.04 in females, Mann-Whitney U-test). A similar significant association was also found between IgM plasma levels and the IL-1alpha genotype in males, but it was no longer present in females; the 1.1 homozygotes had higher IgM levels than the 2.2 homozygotes (P = 0.03, Mann-Whitney U-test). The data suggest that IL-1alpha-mediated signals are critical for IgG3 and IgM responses, which are induced by thymus-independent antigens and are important in activating complement.

Adult↗

Surface antigen expression in chronic lymphocytic leukemia: clustering analysis, interrelationships and effects of chromosomal abnormalities.

Chronic lymphocytic leukemia (CLL) is a phenotypically distinguishable form of B-lymphoid leukemias. The regularity of surface membrane antigen expression patterns, their interrelationships as well as the effects of the three frequent chromosomal aberrations, ie 11q deletion, 13q deletion and trisomy 12, were investigated in 35 classic CLL cases by flow cytometry. The two-way cluster analysis of 31 individual antigens revealed three expression patterns: (1) most cells in most cases positive (CD5, CD19, CD20, CD23, CD27, CD40, CD45, CD45RA); (2) most cells in most cases negative (CD10, CD14, CD34, CD122, CD154, mIgG); and (3) a mixed pattern with a variable number of positive cases and a variable percentage of positive cells in individual cases (CD11c, CD21, CD22, CD25, CD38, CD45RO, CD79b, CD80, CD95, CD124, CD126, CD130, FMC7, mIgD, mIgkappa, mIglambda, mIgM). The expressions of several antigens were strongly interdependent, even when antigens belonged to entirely different gene families. Such antigen pairs were: CD11c/CD21; CD19/CD45; CD19/CD79b; CD22/CD45RA; CD23/Igkappa; CD25/mIgM; CD27/CD45; CD45/CD79b; CD45RA/Igkappa. In contrast, the expression of some antigens was mutually exclusive, the best examples being CD45RA/CD45RO, CD38/CD80 and CD45RA/CD80. Deletion of chromosome arm 11q attenuated expression of splicing variant CD45RA, but enhanced CD45RO expression. In contrast, cases of trisomy 12 were associated with enhanced CD45RA and attenuated CD45RO expression. Similarly, trisomy 12 was associated with enhanced CD27 and mIgkappa expression. The variable levels of signaling surface membrane antigens, their interactions and interference by genetic aberrations are likely to affect the clinical progression and drug response of CLL.

ADP-ribosyl Cyclase↗

Surface membrane antigen expression changes induced in vitro by exogenous growth factors in chronic lymphocytic leukemia cells.

The factors determining the growth and survival of cells in B chronic lymphocytic leukemia (CLL) have remained poorly understood. We investigated the effects of optimal mitogen combinations (OMCs) on the expression of 26 surface membrane antigens among 33 CLL patients. The seven OMCs used were selected after pre-testing 14 combinations of (1) S. aureus Cowan I (SAC), (2) interleukin-2 (IL-2), (3) tumor necrosis factor alpha (TNF-alpha) and (4) 12-O-tetradecanoylphorbol 13-acetate (TPA; also known as phorbol 12-myristate 13-acetate or PMA). In flow cytometry we revealed that OMCs induced statistically highly significant upregulation of the expression of CD5, CD11c, CD19, CD22, CD23, CD25, CD38, CD40, CD45, CD45RO, CD95, CD126, CD130 and FMC7, and downregulation of CD20 and CD124 expression. Interestingly, the expression of CD27, CD45RA, CD79b, CD80, CD122 and that of the immunoglobulin gene superfamily members CD21, Ig-kappa, Ig-lambda, Ig-delta and Ig-micro were not significantly affected under similar conditions. The expression of several antigens was co-regulated, suggesting common regulatory pathways. These antigens include CD11c/CD5, CD11c/CD22, CD11c/CD126, CD11c/FMC7 as well as CD27/CD45, CD27/CD45RA and CD27/CD79b. Upregulation of surface antigen expression, induced by OMCs, should be applicable in antibody therapy in vitro and in vivo, and in negative stem cell selection for autotransplantation. Furthermore, the current strategy to enhance cell surface antigen expression may be a versatile tool to raise humoral and cell-mediated host defense against CLL cells. Upregulation of proteins mediating positive growth signals (eg CD25, CD40) and negative signals or apoptosis (eg CD95) may be used to sensitize cells to chemotherapy and programmed cell death.

Aged↗

The significance of mannan-binding lectin gene alleles in patients with primary Sjögren's syndrome.

OBJECTIVE AND METHODS: To investigate the significance or mannan-binding lectin (MBL) gene alleles in patients with primary Sjogren's syndrome (pSS). Genotypes were determined in 65 pSS patients and 138 controls. RESULTS: No difference in MBL genotype or allele frequencies was detected between the pSS patients and controls. However, when the effect of MBL genotypes on the diagnostic findings in pSS patients was assessed, none of the eight patients with 52/w genotype fulfilled four (definite) Californian criteria (P = 0.007). Among these eight the Chisholm-Mason histological grade was > or = 3 in only three (P = 0.017). Furthermore, the MBL concentration was lower in patients with 52/w genotype compared to those with wild-type (w/w) genotype (P = 0.035). CONCLUSION: Our findings suggest that MBL structural gene polymorphisms do not influence on susceptibility to pSS. However, MBL may be associated with salivary gland destruction in pSS, and its concentration may be comparable with the intensity of inflammatory reaction. Further studies are warranted to clarify the possible mechanisms involved.

Adult↗

Genetic association between interleukin-10 promoter region polymorphisms and primary Sjögren's syndrome.

OBJECTIVE: To determine whether the haplotypes formed on the basis of single-base-exchange polymorphisms at positions -1082, -819, or -592 of the interleukin-10 (IL-10) gene predispose subjects to primary Sjögren's syndrome (SS). METHODS: The frequency of IL-10 polymorphisms was analyzed in 62 patients with primary SS and in 400 healthy subjects. These data were assessed for correlations with the concentration of IL-10 in the plasma. RESULTS: The frequency of the IL-10 GCC haplotype (G at position -1082, C at position -819, and C at position -592 of the IL-10 gene) was increased (P < 0.05, odds ratio [OR] 1.90, 95% confidence interval [95% CI] 0.955-3.62) and the frequency of the ACC haplotype decreased (P < 0.05, OR 0.443, 95% CI 0.257-0.764) in primary SS patients compared with healthy controls. Moreover, the frequency of the ATA haplotype was similar in primary SS patients and healthy controls, but the incidence of the GCC/ATA genotype was elevated in the primary SS patients (P < 0.05, OR 2.19, 95% CI 1.19-4.03). The concentration of plasma IL-10 was significantly higher in patients carrying the GCC haplotype than in non-carriers of GCC. CONCLUSION: These results suggest that the presence of the GCC haplotype or the GCC/ATA genotype and the absence of the ACC haplotype of the IL-10 gene are associated with an increased susceptibility to primary SS. This effect is probably mediated by the increased capability to produce IL-10 among carriers of the GCC haplotype.

Adolescent↗

Elevated interleukin-6 plasma levels are regulated by the promoter region polymorphism of the IL6 gene in primary Sjögren's syndrome and correlate with the clinical manifestations of the disease.

OBJECTIVES: To determine whether plasma interleukin-6 (IL-6) and G/C base exchange polymorphism at position -174 of the IL6 gene have an effect on the clinical manifestations of primary Sjögren's syndrome (pSS). METHODS: Levels of circulating IL-6 protein and polymorphism of the IL6 gene were analysed in 66 patients with pSS and in 400 healthy subjects. These data were studied in relation to clinical data on the pSS patients. RESULTS: Plasma IL-6 was elevated in pSS patients compared with healthy controls. pSS patients with coeliac disease, pulmonary fibrosis or alveolitis or peripheral nervous system symptoms had significantly higher IL-6 levels than patients without these manifestations. IL-6 levels increased in parallel with the histological grade of minor salivary gland biopsy and the number of pSS criteria fulfilled. IL6 allele frequencies were similar in patients and normal subjects. Plasma IL-6 levels were regulated by the IL6 genotype in pSS patients. CONCLUSIONS: The G/C polymorphism of the IL6 gene does not predispose patients to pSS, but the circulating IL-6 concentration is related to specific manifestations of the disease and the levels of IL-6 are regulated by the IL6 promoter polymorphism in pSS.

Adolescent↗

The promoter polymorphism of the interleukin-6 gene regulates interleukin-6 production in neonates but not in adults.

In the promoter region of the IL-6 gene there is a single base exchange (G --> C) polymorphism at position -174. Recent findings suggest that this polymorphism may affect the transcription rate of the IL-6 gene and IL-6 plasma levels. To analyse its biological significance, we examined IL-6 plasma levels in cord blood and IL-6 production by neonatal cells after LPS-stimulation in relation to the presence of the IL-6G and IL-6C alleles. We hypothesized that since healthy neonates lack a previous exposure to exogenous antigens, their cytokine production could be genetically regulated. We also assumed that the normal labour-related stress could provide a physiological stimulus for IL-6 production. Cord blood was collected from 50 healthy, full-term neonates after normal vaginal delivery (VD) and from 42 healthy, full-term neonates after elective caesarean section (ECS). Adult samples were obtained from 450 healthy adult controls. The -174 polymorphism was analysed using PCR. IL-6 plasma levels and in vitro IL-6 production were measured using an ELISA method. Generally, IL-6 plasma levels in neonates were significantly higher than those in adults (neonates born by VD versus adults p < 0.001 and neonates born by ECS versus adults p < 0.001); the median value for neonates born by VD was 11.4 pg/ml (4.5-45.9), for neonates born by ECS 2.9 pg/ml (1.9-6.4) and for adults, 1.2 pg/ml (0.7-2.0). Surprisingly, cord blood IL-6 levels after VD differed significantly from those after ECS (p < 0.001). An analysis was carried out to ascertain if there was a genetic association between different IL-6 genotypes and IL-6 plasma levels in neonates. In the group of VD neonates with the CC genotype, non-carriers of the G allele, secreted significantly more IL-6 than carriers of the G allele (p < 0.03); 21.4 pg/ml (9.5-81.3) and 9.6 pg/ml (3.5-36.2) respectively. In line with this, ECS newborns with the CC genotype had higher IL-6 plasma levels than carriers of the G allele (p < 0.02); respective median values were 6.3 pg/ml (2.2-12.9) and 2.7 pg/ml (1.7-4.1). These findings were also supported when in vitro IL-6 production by neonatal mononuclear cells was compared carriers of the G allele and non-carriers of the G allele. IL-6 levels were significantly lower in carriers of the G allele than in non-carriers (p < 0.04); respective median values were 6,980 pg/ml (4,175-16,800) and 17,425 pg/ml (11,400-33,900). In vivo or in vitro production of IL-6 of adult controls was not associated with the IL-6 -174 polymorphism. The difference between cord blood IL-6 levels after VD and after ECS suggests that normal labour-related stress induces IL-6 production. Our data also suggest that the -174 polymorphism of the IL-6 gene participates in the regulation of IL-6 responses in both groups of neonates. Furthermore, the naive IL-6 response of stimulated neonatal cells is associated with the -174 polymorphism of the IL-6 gene. In healthy adults, the regulation of IL-6 responses differs from that of healthy neonates, since baseline and inducible IL-6 levels in adults were not associated with this polymorphism. This indicates that the genetic regulation of IL-6 production can be observed in naive cells, while in adult cells previous contact with exogenous antigens probably modifies their responses.

Adult↗