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New genes in inflammatory bowel disease: lessons for complex diseases?

The chronic inflammatory bowel diseases Crohn's disease and ulcerative colitis are common causes of gastrointestinal disease in northern Europe, affecting as many as one in 250 people. Although mortality is low, morbidity associated with these diseases is substantial. We review the recent advances in the genetics of inflammatory bowel disease, with particular emphasis on the data that have been generated since the discovery of the CARD15 (NOD2) gene in 2001.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Immunologic and allergic lung diseases. 2. Endogenous and exogenous immune complex diseases].

For the respiratory tract immunologic reactions of type I and type III according to Coombs and Gell are most important. The classical example for type-I-reaction is extrinsic (= "allergic") asthma. Mechanisms of sensitzation, of mediator release out of mast cells and of immunotherapy by specific hyposensitization are summarized. Immunologic type-III-reactions may lead to immune complex diseases of the lung. There are two different pathways: In the several forms of extrinsic alveolitis the interstitial lung tissue is involved, whereas the intrinsic forms of immune complex diseases mainly result in lung vasculitis. The diagnostic and therapeutical essentials of immunologic and allergic lung disease are discussed in detail.

Adrenal Cortex Hormones↗

Intravenous gamma-globulin therapy in systemic lupus erythematosus and immune complex disease.

Immune complexes (ICs) are felt to be of primary pathological importance in the mediation of many human glomerular diseases. This is based on the demonstration of Ig and C' in renal cortex tissue of affected individuals. Systemic lupus erythematosus (SLE) is a prototype IC disease where ICs have been demonstrated in target tissues. Moreover, glomerulonephritis (GN) is a common feature of many autoimmune and infectious diseases associated with IC generation. Current therapeutic alternatives are restricted to immunosuppressive agents. Tomino et al. (Clin. Exp. Immunol. 58, 42, 1984) demonstrated that glomerular IC deposits could be solubilized with HGG. Palla et al. (Clin. Nephrol. 26, 314, 1986) treated four membranous nephritis patients with IVGG and had dramatic resolution of proteinuria in three of them. Gaedlicke et al. (Blut 48, 387, 1984) reported improvement in vasculitis in one of two patients treated with IVGG. We have experienced exacerbation of GN with IVGG therapy in two SLE patients. IVGG is useful in treating the common variable immunodeficiency that occurs in some SLE patients and in treating the immunodeficiency associated with florid nephrotic syndrome. IVGG given to one patient with Henoch-Schönlein purpura resulted in the onset of gross hematuria. In sum, IVGG may be useful in treating specific IC renal diseases by solubilization of circulating or in situ ICs but definitive proof is lacking. In other situations, IVGG may exacerbate the glomerulonephritis, possibly through enhanced IC formation. Furthermore, IVGG may induce modulation of immune responses by induction of auto-anti-idiotypic immunity.

Antibodies, Anti-Idiotypic↗

Genome-wide multilocus analysis for immune-mediated complex diseases.

In postgenomic era, searching and identification of disease genes associated with complex diseases are still one of the great challenge for dissecting human complex diseases. To improve the disease gene localization for complex diseases, a group of closely immune-mediated disease loci were overlapped on each chromosome based on previously reported genome-wide scanning data. Interestingly, five overlapping chromosomal regions (1q21, 2q33, 5q31.1-q33.1, 6p21, and 11q13) were identified by co-localizing disease loci for the following diseases: diabetes, asthma, atopic dermatitis, osteoporosis, and inflammatory bowel disease. The development of specific disease was associated with different combinations of disease loci among five overlapped chromosomal regions. Therefore, the analysis of multiple genetic loci should be considered to determine the effects of multiple genes responsible for complex diseases resulting from the influence of multiple genes.

Chromosome Mapping↗

Biological Foundation Models for Complex Disease Research and Clinical Translation.

Complex diseases, including cancer, rare genetic disorders, neurodevelopmental and psychiatric conditions, and neurodegenerative diseases, arise from interactions among genetic variation, gene regulation, and cellular states that are difficult to capture using a single data type or biological scale. Biological foundation models address this challenge by treating nucleotides and genes as tokens and learning representations that can be transferred to downstream biomedical and clinical tasks. In this review, we examine two major model classes, genomic sequence foundation models and cell foundation models, and compare their tokenization strategies, model architectures, pretraining objectives, and adaptation methods. We summarize their emerging applications in regulatory variant interpretation, disease-associated cell-state analysis, drug-response prediction, and therapeutic target discovery across complex diseases. We distinguish applications supported by experimental or retrospective validation from those that remain primarily computational or conceptual. We further discuss key challenges to clinical translation, including multimodal data integration, model interpretability, benchmarking, patient-specific prediction, and privacy protection. We highlight future opportunities to integrate biological foundation models with emerging frameworks of medical digital twins, agentic AI, and federated learning. By linking model design to translational goals, this review provides a practical framework for evaluating biological foundation models and their readiness for complex disease research and clinical use.

biological foundation model↗

[The peripartal disease complex of the sow in the industrial swine breeding facility. 4. The effect of prophylactic oral medication on the occurrence of the peripartal disease complex of the sow with the symptoms of urinary tract infection and vaginal-vulvar discharge].

In an industrial pig production unit 20 sows were selected at random. All the sows had a puerperal disease in their anamnesis. The sows were divided in two groups consisting of ten sows each. Group 1 received Ampicillin per os (3 g per sow and day) four days a.p. and four days p.p. The majority of the sows showed a significant E. coli bacteriuria and non of the sows showed a significant Enterococcus bacteriuria prior to treatment. The development of puerperal disease was registered. The treated group showed less occurrence of disease compared to the control. Group 1 revealed significant (p < 0.05) less early postnatal losses than the untreated control. Group 1 showed better four weeks weaning weights as well. It is the authors opinion that sows having significant bacteriuria a.p. should be treated a.p. and p.p. before periparturient disease occurs.

Ampicillin↗

The immunology of the bovine respiratory disease complex.

The bovine respiratory disease complex continues to be an economically important syndrome in an era when immunologic control is likely to become increasingly important. Recent studies have yielded a better understanding of the interaction, at the molecular level, of various pathogens with the bovine immune system. Improved challenge models for important viral pathogens such as bovine viral diarrhea virus and bovine respiratory syncytial virus have provided evidence of the efficacy of immune responses stimulated by vaccination. This article highlights recent advances in understanding of the role of the immune response in the pathogenesis and prophylaxis of bovine respiratory disease complex.

Animals↗

Multi-locus interactions predict risk for post-PTCA restenosis: an approach to the genetic analysis of common complex disease.

The complexity of recognizing the potential contribution of a number of possible predictors of complex disorders is increasingly challenging with the application of large-scale single nucleotide polymorphism (SNP) typing. In the search for putative genetic factors predisposing to coronary artery restenosis following balloon angioplasty, we determined genotypes for 94 SNPs representing 62 candidate genes, in a prospectively assembled cohort of 342 cases and 437 controls. Using a customized coupled-logistic regression procedure accounting for both additive and interactive effects, we identified seven SNPs in seven genes that, together, showed a statistically significant association with restenosis incidence (P <0.0001), accounting for 11.6% of overall variance observed. Among them are candidate genes for cardiovascular pathophysiology (apolipoprotein-species and NOS), inflammatory response (TNF receptor and CD14), and cell-cycle control (p53 and p53-associated protein). Our results emphasize the need to account for complex multi-gene influences and interactions when assessing the molecular pathology of multifactorial medical entities.

Angioplasty, Balloon, Coronary↗

Testing for contributions of mitochondrial DNA mutations to complex diseases.

Several complex disorders are suspected of being associated with mitochondrial DNA (mtDNA) mutations. We studied the statistical properties of a test based on proband-relative pairs to identify potential mtDNA mutation involvement in a complex disorder. The test compares the recurrence risk of relatives of probands along the mitochondrial lineage with that of relatives along the nonmitochondrial lineage. If mtDNA mutations are involved, the recurrence risk will be higher among relatives in the mitochondrial lineage. The form of the test is independent of the assumed models of inheritance and interaction of the nuclear autosomal mutations with mtDNA mutations. The power of the test, however, differs among the different models and by the type of proband-relative pairs used in the test. We considered heterogeneity models with and without phenocopies, a three-state heteroplasmic mtDNA transmission model, and a multiplicative epistasis model. Under the heterogeneity model, the power of the test increases as the relationship between the proband and the relative becomes more distant. Under the multiplicative epistasis model, the power of the test decreases as the relationship between the proband and the relative becomes more distant.

DNA, Mitochondrial↗

Plasma exchange and immune complex diseases: the predictability of immune complexes removal to clinical response.

58 patients were treated by discontinuous flow plasma exchange because of an immune complex (IC) disease. 41 patients who had a high level of circulating IC prior to plasmapheresis showed both clinical and immunochemical evidence of improvement with plasma exchange. Only 2 patients with a high level of IC did not improve after therapy: these patients suffered from multiple sclerosis and idiopathic thrombocytopenic purpura, respectively. Prior to PE therapy the level of circulating IC in 15 patients was within the normal range, when measured according to Manca et al. In this group none of the patients worsened after therapy, whereas 8 patients showed an objective improvement. The positive correlation between IC removal and clinical results suggests that patients with a high level of circulating IC are most likely to benefit from apheretic treatment.

Amyotrophic Lateral Sclerosis↗

A survey of haplotype variants at several disease candidate genes: the importance of rare variants for complex diseases.

BACKGROUND: The haplotype based association method offers a powerful approach to complex disease gene mapping. In this method, a few common haplotypes that account for the vast majority of chromosomes in the populations are usually examined for association with disease phenotypes. This brings us to a critical question of whether rare haplotypes play an important role in influencing disease susceptibility and thus should not be ignored in the design and execution of association studies. METHODS: To address this question we surveyed, in a large sample of 1873 white subjects, six candidate genes for osteoporosis (a common late onset bone disorder), which had 29 SNPs, an average marker density of 13 kb, and covered a total of 377 kb of the DNA sequence. RESULTS: Our empirical data demonstrated that two rare haplotypes of the parathyroid hormone (PTH)/PTH related peptide receptor type 1 and vitamin D receptor genes (PTHR1 and VDR) with frequencies of 1.1% and 2.9%, respectively, had significant effects on osteoporosis phenotypes (p = 4.2 x 10(-6) and p = 1.6 x 10(-4), respectively). Large phenotypic differences (4.0 approximately 5.0%) were observed between carriers of these rare haplotypes and non-carriers. Carriers of the two rare haplotypes showed quantitatively continuous variation in the population and were derived from a wide spectrum rather than from one extreme tail of the population phenotype distribution. CONCLUSIONS: These findings indicate that rare haplotypes/variants are important for disease susceptibility and cannot be ignored in genetics studies of complex diseases. The study has profound implications for association studies and applications of the HapMap project.

Apolipoproteins E↗

Proteomic analysis of the brain in Alzheimer's disease: molecular phenotype of a complex disease process.

Alzheimer's disease (AD) is a progressive neurodegenerative disorder accounting for about 50% of all dementias, yet its pathogenic mechanisms remain poorly understood. In order to provide a more complete picture of pathogenesis in AD, we analysed six human brain regions for alterations in their proteomes. Quantitative proteome analysis was used to compare signals corresponding to individual proteins between post mortem brain tissues from persons with AD, and those from age-matched nondemented control (NC) tissues. In severely injured brain regions, 76 proteins were differentially expressed in AD hippocampus compared with NC, 62 proteins were differentially expressed in temporal cortex, and 39 proteins were differentially expressed in entorhinal cortex. Significant differences were also present in relatively spared regions. Thus, 34 proteins were differentially expressed in AD cerebellum compared with NC, 125 proteins were differentially expressed in cingulate gyrus, and 75 proteins were differentially expressed in sensorimotor cortex. The identity of 37 of these proteins was determined, and the possible relevance of changes in key pathogenic pathways analysed. These studies provide a unique snapshot illustrating the complexity of interrelated disease mechanisms at work in a complex, multifactorial disease, and show that comparative proteome analysis is a method with the power to develop important new insights into pathogenic mechanisms in the dementias.

Alzheimer Disease↗

Genetics of complex disease: approaches, problems, and solutions.

Complex or multifactorial diseases are defined as diseases that are ultimately determined by a number of genetic and environmental factors. Although there are many technologies and strategies that can be used to detect genetic factors influencing complex diseases, these technologies and strategies have inherent limitations. In fact, the very name "complex disease" suggests that the results from relevant studies will not be simple to decipher. Ultimately, both the detection and precise characterization of a factor's contribution to a complex disease are difficult undertakings, because the effect of any one factor may be obscured or confounded by other factors. However, the genetic dissection of complex diseases can be greatly facilitated by paying heed to two very basic distinctions. The first distinction is between complexity at the level of individuals and complexity at the level of populations. The second distinction is between the two sequentially pursued components of gene discovery paradigms: gene identification and gene effect characterization. Although genetic epidemiology, as a research field, is oriented to both components of gene discovery for complex diseases, it is suited to gene effect characterization at the population level more than anything else. This paper reviews the origins of the genetic basis of complex traits, as well as the problems plaguing genetic epidemiologic analysis strategies, with the hope of showing how greater attention to these distinctions, as well as a greater integration of relevant knowledge, can alleviate confusion and shape future investigations. In addition, a new discipline, "phenomics" or "phenometrics," could be initiated that would complement genomic research as presently performed.

Chromosome Mapping↗

Optimal two-stage strategy for detecting interacting genes in complex diseases.

BACKGROUND: The mapping of complex diseases is one of the most important problems in human genetics today. The rapid development of technology for genetic research has led to the discovery of millions of polymorphisms across the human genome, making it possible to conduct genome-wide association studies with hundreds of thousands of markers. Given the large number of markers to be tested in such studies, a two-stage strategy may be a reasonable and powerful approach: in the first stage, a small subset of promising loci is identified using single-locus testing, and, in the second stage, multi-locus methods are used while taking into account the loci selected in the first stage. In this report, we investigate and compare two possible two-stage strategies for genome-wide association studies: a conditional approach and a simultaneous approach. RESULTS: We investigate the power of both the conditional and the simultaneous approach to detect the disease loci for a range of two-locus disease models in a case-control study design. Our results suggest that, overall, the conditional approach is more robust and more powerful than the simultaneous approach; the conditional approach can greatly outperform the simultaneous approach when one of the two disease loci has weak marginal effect, but interacts strongly with the other, stronger locus (easily detectable using single-locus methods in the first stage). CONCLUSION: Genome-wide association studies hold the promise of finding new genes implicated in complex diseases. Two-stage strategies are likely to be employed in these large-scale studies. Therefore we compared two natural two-stage approaches: the conditional approach and the simultaneous approach. Our power studies suggest that, when doing genome-wide association studies, a two-stage conditional approach is likely to be more powerful than a two-stage simultaneous approach.

Alleles↗

Polygenic disease: methods for mapping complex disease traits.

Improved genotyping technology has made it feasible to use a genetic approach to map genes involved in the etiology of common human diseases. We discuss here recent developments in several different statistical approaches to linkage analysis of these traits, including affected-sib-pair methods, the affected-pedigree-member method, regressive models and linkage-disequilibrium-based approaches. We discuss advantages and disadvantages of the various approaches, as well as factors influencing study design and the ability to detect loci. Statistical methodology in this area is advancing rapidly and will help enable the mapping and cloning of loci involved in susceptibility to common multifactorial diseases.

Autistic Disorder↗