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Ladina Joos

Publications and source records attributed to Ladina Joos.

7 recordsLinked to original sources

Functional genomics and gene microarrays--the use in research and clinical medicine.

In the year 2000, the Human Genome Project Consortium presented the first complete draft of the human genome together with Celera Genetics. Since then, the so-called "post-genome era" has started. Microarrays are capable of profiling gene expression patterns of tens of thousands of genes in a single experiment and thus allow a systematic analysis of DNA and RNA variation. They seem likely to become a standard tool of both molecular biology research and clinical diagnostics. These prospects have attracted great interest and investment from both the public and private sectors. This review introduces the principle of microarray technology and gives an overview of its current and future potential in clinical medicine.

Animals↗

The role of matrix metalloproteinase polymorphisms in the rate of decline in lung function.

The matrix metalloproteinases (MMPs) comprise a family of at least 20 proteolytic enzymes that play an essential role in tissue remodeling. MMP1 (interstitial collagenase), MMP9 (gelatinase B) and MMP12 (macrophage elastase) are thought to be important in the development of emphysema. A number of naturally occurring polymorphisms of human MMP gene promoters have been identified and found to alter transcriptional activity. Additionally, we detected a novel polymorphism in the MMP12 coding region (Asn357Ser). The aim of this study was to investigate the role of MMP polymorphisms in the development of chronic obstructive lung disease. We determined the prevalence of these polymorphisms in 590 continuing smokers chosen from the National Heart Lung and Blood Institute, Lung Health Study for having the fastest (n = 284) and slowest (n = 306) 5 year rate of decline of lung function. Of the five polymorphisms, only G-1607GG was associated with a rate of decline in lung function. The -1607GG allele was associated with a fast rate of decline (P = 0.02) [corrected]. However, haplotypes consisting of alleles from the MMP1 G-1607GG and MMP12 Asn357Ser polymorphisms were associated with rate of decline of lung function (P = 0.0007). These data suggest that polymorphisms in the MMP1 and MMP12 genes, but not MMP9, are either causative factors in smoking-related lung injury or are in linkage disequilibrium with causative polymorphisms.

Base Sequence↗

Genetic risk factors of chronic obstructive pulmonary disease.

Cigarette smoking is the major risk factor for chronic obstructive pulmonary disease (COPD). However, only a minority of cigarette smokers develop symptomatic disease. Family and twin studies suggest that genetic factors also contribute to the development of COPD. We present a detailed literature review of the genes which have been investigated as potential risk factors for this disease.

Cystic Fibrosis Transmembrane Conductance Regulato↗

Array-based diagnostic gene-expression score for atopy and asthma.

Whether gene expression is useful in discriminating different atopic phenotypes is unclear. The aim of the study was to evaluate a gene-expression score for the diagnosis of atopy and asthma and to assess disease activity as a guide for therapeutic decisions. Purified mRNA from PBMCs of 18 atopic asthmatic subjects, 8 atopic nonasthmatic subjects, and 14 healthy control subjects was hybridized to cDNA membranes. A composite atopy gene expression (CAGE) score was determined by using 10 genes dysregulated in atopic individuals according to a specific algorithm. The CAGE score was better than total IgE in differentiating atopic from nonatopic subjects (sensitivity, 96%; specificity, 92%). Correlation between the CAGE score and total IgE (P <.001) was found, and there was a trend for correlation with asthma severity (P =.051). The CAGE score was able to quantify phenotype-specific alteration in gene expression of atopic individuals. The CAGE score might be used as a diagnostic tool or to monitor the effects and side effects of therapy.

Adolescent↗

Genotype predictors of response to asthma medications.

The search for the genetic basis of asthma and other allergic diseases has identified many candidate genes. Some of these genes have been investigated to determine whether they influence a person's response to asthma medication. Several studies have shown that polymorphisms in the beta 2 -adrenergic receptor gene influence responsiveness to beta-agonists. Polymorphisms in the 5-lipoxygenase gene and the leukotriene C 4 synthase gene have been associated with response to medications that target leukotriene metabolism. Results such as these suggest the potential for pharmacogenetic tailoring of therapy for individual asthmatic patients. To date, no polymorphisms have been identified that influence response to anticholinergics or are involved in steroid resistance.

5-Lipoxygenase-Activating Proteins↗

Genetic risk factors for chronic obstructive pulmonary disease.

Cigarette smoking is clearly the major risk factor for chronic obstructive pulmonary disease. However, only a minority of cigarette smokers develops chronic obstructive pulmonary disease, indicating that other factors are involved. Family and twin studies suggest that at least some of those factors are genetic. This article reviews the genes investigated as potential risk factors for this disease, focusing on the recent literature. The only established genetic risk factor for chronic obstructive pulmonary disease is homozygosity for the Z allele of the alpha1 -antitrypsin gene. There is increasing evidence that heterozygotes for the Z allele may also be at increased risk. Variants in genes involved in xenobiotic metabolism, antioxidation, and the inflammatory response have also been associated with chronic obstructive pulmonary disease. Thus, the genetic basis for chronic obstructive pulmonary disease has begun to be elucidated, and it is likely that several genes will be implicated in the pathogenesis of this disease.

Alleles↗