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Neural-network-based parameter estimation in S-system models of biological networks.

The genomic and post-genomic eras have been blessing us with overwhelming amounts of data that are of increasing quality. The challenge is that most of these data alone are mere snapshots of the functioning organism and do not reveal the organizational structure of which the particular genes and metabolites are contributors. To gain an appreciation of their roles and functions within cells and organisms, genomic and metabolic data need to be integrated in systems models that allow the testing of hypotheses, generate experimentally testable predictions, and ultimately lead to true explanations. One type of data that is particularly well suited for such integration consists of time profiles, which show gene activities, metabolite concentrations, or protein prevalences at dense series of time points. We show with a specific example how such time series can be analyzed and evaluated, if some structural information about the data is available, even if this information is incomplete. The method consists of three components. The first is a particularly suitable mathematical modeling framework, namely Biochemical Systems Theory, in which parameters are direct indicators of the organization of the underlying phenomenon, the second is the training of an artificial neural network for data smoothing and complementation, and the third is a technique for reinterpreting differential equations in a fashion that facilitates parameter estimation. A prototype webtool for these analyses is available at https://bioinformatics.musc.edu/webmetabol/.

Biology↗

[Kinetics and action mechanism of vitamin D3 in the process of lipid and blood plasma oxidation in model system].

Kinetics and mechanism of vitamin D3 action were investigated in the process of initiated oxidation of various modeling systems in comparison with activity of various antioxidants such as: alpha-tocopherol, dibunol, alpha-tocopheryl quinone, ubiquinone Q10, philloquinone and beta-carotene. Vitamin D3 addition increased initial and maximal rates of oxygen consumption. The length of circuits, value of a kinetic parameter k2/square root k6, describing oxidability of system as a whole was also increased. Cholecalciferol concentrations exceeding 7.5 x 10(-6) M inhibited these processes. Increase of conjugated dienes was proportional to vitamin D3 concentration. Vitamin D3 did not influence kinetics of accumulation of TBA-reactive products. These results may be explained by high lability of cholecalciferol, which may represent an additional source of free radicals.

Antioxidants↗

Identification and minimization of nonideal binding effects in BIAcore analysis: ferritin/anti-ferritin Fab' interaction as a model system.

The interaction of human spleen ferritin with a monoclonal antibody Fab' fragment has been studied as a model system for BIAcore analysis. In particular, the influence of nonideal binding effects has been examined both experimentally and by the theoretical simulation of sensorgram curves. Mass transfer effects were found to have a small but significant influence on the observed binding kinetics of the ferritin/antiferritin Fab' interaction; however, this nonideal behavior could be overcome by systematic manipulation of experimental conditions such as the flow rate and the surface density of the immobilized antigen. Because of the multivalent nature of ferritin with 12 antiferritin Fab' binding sites per molecule, immobilization of the antigen by amine coupling had little effect on the majority of free binding sites on the molecule. Consequently, the binding data for both ferritin and apoferritin correlated well with an ideal binding model which assumes binding homogeneity. On the other hand, when ferritin was dissociated to its subunit dimer form (containing one Fab' binding site) prior to surface immobilization significant deviation from this model was observed. This nonideal behavior was probably due to heterogeneity of the immobilized ferritin subunit dimer on the sensor surface, resulting from the nonspecific amine coupling procedure.

Alkylation↗

Reproduction rates in multiregion modeling systems for HIV / AIDS.

The persistence of HIV/AIDS has seen a revival of academic interest in the development of modeling systems to assist understanding the population dynamics of this infection. Moreover, it has become increasingly recognized that a key component of these systems for interpreting disease prevention is their reproduction rate, which provides an indication of whether an epidemic might start in a community described by a particular set of epidemiological characteristics. The properties of these rates have been explored in detail for models of a single risk behavior but not for multiregion formats that allow for the transfer of infection between geographical units. Therefore, in this paper the author derives reproduction rates for a multiregion HIV/AIDS model together with their associated critical thresholds that estimate the minimum population of susceptibles necessary for an epidemic to begin. These statistics are interpreted for a simplified global setting representing regional variations in the potential onset of HIV/AIDS. In the discussion the author examines the potential applicability of these results to understanding HIV/AIDS prevention.

Acquired Immunodeficiency Syndrome↗

SLE: translating lessons from model systems to human disease.

Systemic lupus erythematosus (SLE, lupus) results from immune-mediated damage to multiple organs. Its pathogenesis should be viewed as a series of steps, beginning with impaired immune regulation that permits self-reactive T-B-cell activation, which results in the production of autoantibodies. Activated T and B cells then infiltrate tissues, which along with autoantibody and immune complex deposition, triggering local events that ultimately cause organ damage. Although improved understanding of early autoimmune events might open up avenues for disease prevention, future investigations must focus on the mechanisms of end-organ damage in model systems and how to translate this knowledge into human disease. Understanding the mechanisms of each pathogenetic step would provide a rational basis for the development of disease stage-specific diagnostic markers and treatments.

Animals↗

Transformation by viruses: simian virus 40 as a model system.

Simian virus 40 (SV40), a DNA-containing tumor virus in the papovavirus group, represents an ideal model system for the analysis of the mechanism of viral-induced tumorigenesis because of the small size of its genome and its broad range of oncogenic potential. Viral genes persist and are expressed in SV40-transformed cells. Temperature-sensitive (ts) mutants of the virus have proved to be valuable tools for the identification and analysis of viral gene expression in transformed cells. Through the use of such mutants, it has been determined that a specific gene product (A-protein) is required to initiate cellular transformation. The role of virus genes in the maintenance of the transformed state was determined by transformation of the cells of mouse, hamster, and human origin by ts virus containing A-gene mutations. These cells were then examined under permissive and nonpermissive conditions for the presence of a variety of intracellular and surface alterations commonly associated with neoplastic transformation. From the results of such experiments, it has been concluded that an SV40-specific function is also necessary for the maintenance of at least some of the phenotypic properties of the transformed state. Indirect evidence, derived from a comparison of the biological and biochemical properties of the SV40-induced tumor (T) antigen and the gene A-protein, supports the idea that T-antigen is a product of the A-gene. One model devised to explain the mechanism by which the gene A-protein might function as an effector of transformation is presented.

Animals↗

On-line immunoaffinity sample pre-treatment for column liquid chromatography: evaluation of desorption techniques and operating conditions using an anti-estrogen immuno-precolumn as a model system.

An immunoaffinity precolumn (immuno-precolumn) containing an immobilized antibody directed against estrogen steroids, was used as a model system for the evaluation of different desorbing techniques, suitable for on-line coupling to column liquid chromatography (LC). Desorption of estrogen analytes from the immuno-precolumn proved to be impossible with the buffers and chaotropic solutions frequently used in affinity desorption. Micellar solutions are effective in obstructing the antibody-antigen reaction, but their use as desorbing solutions was not found to be practical because of the large interferences introduced into the chromatograms. Desorption with aqueous solutions at elevated temperature, created by microwave action or conventional heating, although effective is not practical in this instance, because the agarose used in this study as the stationary phase for the immuno-precolumn is prone to heat decomposition. The most effective and practical approach is desorption with a methanol-water mixture (95 + 5 v/v). On-line dilution of the eluate allows the concentration of the desorbed analytes using a reversed-phase LC system with subsequent separation and ultraviolet detection. The performance of the system with spiked urine and plasma samples, which were introduced directly into the system, was evaluated and the results were compared with immunoselective desorption.

Antibodies↗

A cell-free model system for the study of antigen processing.

Antigen processing is an essential step in the presentation of most protein antigens to class 2 MHC restricted T cells, but many of the details of processing remain unknown. In this study we show that a whole cell lysate, as well as membrane fractions from an antigen-presenting B cell lymphoma, can process ovalbumin. In this system native ovalbumin incubated with these membranes at acidic pH can be presented to an antigen-specific hybridoma by gluteraldehyde-fixed, antigen-presenting cells. This processing is inhibited by pepstatin, a selective inhibitor of aspartyl proteases. This is the first study of processing by subcellular fractions, and this cell-free system will provide a good model in which to dissect further the molecular requirements of antigen processing.

Animals↗

Testing transposable elements as genetic drive mechanisms using Drosophila P element constructs as a model system.

The use of transposable elements (TEs) as genetic drive mechanisms was explored using Drosophila melanogaster as a model system. Alternative strategies, employing autonomous and nonautonomous P element constructs were compared for their efficiency in driving the ry+ allele into populations homozygous for a ry- allele at the genomic rosy locus. Transformed flies were introduced at 1%, 5%, and 10% starting frequencies to establish a series of populations that were monitored over the course of 40 generations, using both phenotypic and molecular assays. The transposon-borne ry+ marker allele spread rapidly in almost all populations when introduced at 5% and 10% seed frequencies, but 1% introductions frequently failed to become established. A similar initial rapid increase in frequency of the ry+ transposon occurred in several control populations lacking a source of transposase. Constructs carrying ry+ markers also increased to moderate frequencies in the absence of selection on the marker. The results of Southern and in situ hybridization studies indicated a strong inverse relationship between the degree of conservation of construct integrity and transposition frequency. These finding have relevance to possible future applications of transposons as genetic drive mechanisms.

Animals↗

A model system involving anti-concanavalin A for antibody targeting of diphtheria toxin fragment A1.

Results obtained in a model system strongly suggest that antibodies to cell surface determinants may be used to direct the toxic potential of the A chain of diphtheria toxin (DTA). The A chain (M.W. 21,000) was covalently attached to antibody against concanavalin A (anti-Con A) by means of a disulfide-containing cross-bridge. This DTA-SS-(anti-Con A) conjugate was toxic for 3T3 cells containing Con A on their surface but was not toxic in the same concentration range for: (a) cells lacking Con A; (b) Con A-treated cells washed with buffer containing alpha-methyl-D-mannoside; (c) cells containing wheat germ agglutinin on their surface; or (d) Con A-treated mutant Chinese hamster ovary cells containing altered, toxin-insensitive elongation factor 2. Conjugates containing DTA disulfide linked to anti-wheat germ agglutinin antibody or to nonspecific rabbit immunoglobulin G were not toxic for cells coated with Con A. The results suggest a new approach to the construction of antibody-directed, tumor-specific chemotherapeutic agents. Conjugates containing DTA disulfide linked to antibody against specific cell surface antigens may also be generally useful as specific selective agents for the isolation of mutant cell lines.

Animals↗

The zebrafish (Danio rerio) embryo as a model system for identification and characterization of developmental toxins from marine and freshwater microalgae.

The zebrafish (Danio rerio) embryo has emerged as an important model of vertebrate development. As such, this model system is finding utility in the investigation of toxic agents that inhibit, or otherwise interfere with, developmental processes (i.e. developmental toxins), including compounds that have potential relevance to both human and environmental health, as well as biomedicine. Recently, this system has been applied increasingly to the study of microbial toxins, and more specifically, as an aquatic animal model, has been employed to investigate toxins from marine and freshwater microalgae, including those classified among the so-called "harmful algal blooms" (HABs). We have developed this system for identification and characterization of toxins from cyanobacteria (i.e. "blue-green algae") isolated from the Florida Everglades and other freshwater sources in South and Central Florida. Here we review the use of this system as it has been applied generally to the investigation of toxins from marine and freshwater microalgae, and illustrate this utility as we have applied it to the detection, bioassay-guided fractionation and subsequent characterization of developmental toxins from freshwater cyanobacteria.

Animals↗

Human circulatory system model based on Frank's mechanism.

A new analytical model of the left ventricle as a pump, developed from isolated canine experiments, was adapted to describe each of the four heart chambers in a complete human circulatory system model. Each chamber is embodied as a volume and time dependent isovolumic pressure source, after Otto Frank's classic experiments. Analytical results show that a small set of equations is sufficient to describe the main features of the heart as a pump, including isovolumic and ejecting beats for a wide range of ventricular and circulation conditions. This model allows interactive teaching of cardiovascular system dynamics. Computed results demonstrate that, with additional experiments, a quantitative description of the human circulation for research purposes may emerge from this approach.

Animals↗

Concomitant alterations of desmosomes, adhesiveness, and diffusion through gap junction channels in a rat ovarian transformation model system.

Gap junctional intercellular communication (GJIC), desmosomes, and cell movement were evaluated in a rat ovarian epithelial cell model system which consisted of an immortalized clonal cell line (SIGC), a pSV3neotransfected clonal derivative (SV-SIGC), and a nude mouse SV-SIGC-tumor-derived cell line (T-SV-SIGC). Complementary ultrastructural, indirect immunofluorescence, and Western blot data identified a relatively small loss of desmosomes and associated cytokeratins in SV-SIGC compared to SIGC but a near total loss in T-SV-SIGC. SIGC and SV-SIGC migrated outward from monolayer-coated microcarrier beads as epithelial sheets, whereas in T-SV-SIGC there was dissociation and migration of individual fibroblastoid cells. GJIC was assessed by fluorescence recovery after photobleaching (gap FRAP) and equations based on Fick's first law of diffusion were derived to quantitatively compare GJIC of systems with different recovery equilibria after photobleaching. Taken together the data suggested that GJIC in SIGC was quantitatively reduced to similar levels by various conditions associated with reduced cell-cell adhesiveness including transformation to T-SV-SIGC, mitosis, and culture in low calcium medium. These results supported linkage between changes in desmosomal adhesiveness, cell movement, and GJIC.

Animals↗

Urine saturation with calcium salts in normal subjects and idiopathic calcium stone-formers estimated by an improved computer model system.

The state of saturation of urine with calcium salts has been estimated by means of a computer model system whose accuracy has been improved by the use of stability constants of 31 complexes which were re-determined at 37 degrees C and at the actual ionic strength of urine. The experimental determination of the concentration solubility products of calcium oxalate monohydrate (CaOx) and of calcium hydrogen phosphate dihydrate (bsh) allows an expression of the saturation degree as free concentration product ratio beta CaOx and beta bsh. Morning urine samples from 50 healthy controls and 50 idiopathic calcium stone-formers and 24 h urines from 40 normal subjects and 192 stone-formers, taking normal diet were investigated by this technique. From our results urine supersaturation with calcium oxalate salts seems to play an important role in calcium stone disease. Hypercalciuria and hyperoxaluria seem to be the main pathological features in this regard. The data concerning beta bsh values have not confirmed previous reports in which this parameter was found to be increased in stone-formers.

Calcium↗

Use of a human visual system model to predict observer performance with CRT vs LCD display of images.

This Project evaluated a human visual system model (JNDmetrix) based on just noticeable difference (JND) and frequency-channel vision-modeling principles to assess whether a Cathode ray tube (CRT) or a liquid crystal display (LCD) monochrome display monitor would yield better observer performance in radiographic interpretation. Key physical characteristics, such as veiling glare and modulation transfer function (MTF) of the CRT and LCD were measured. Regions of interest from mammographic images with masses of different contrast levels were shown once on each display to six radiologists using a counterbalanced presentation order. The images were analyzed using the JNDmetrix model. Performance as measured by receiver operating characteristic (ROC) analysis was significantly better overall on the LCD display (P = 0.0120). The JNDmetrix model predicted the result (P = 0.0046) and correlation between human and computer observers was high (r (2) (quadratic) = 0.997). The results suggest that observer performance with LCD displays is superior to CRT viewing, at least for on-axis viewing.

Breast Neoplasms↗

The effect of retinoids on the activity of the membrane form of galactosyltransferase, studied in an enzyme/liposome model system.

In the present study the effect of retinoids on the membrane form of galactosyltransferase was tested. A model system consisting of pure bovine milk galactosyltransferase and phosphatidylserine vesicles was used for this investigation. Retinol, retinal and retinylphosphate were able to overcome the modulating effect of phosphatidylserine, that is, activated the enzyme. Retinoic acid and retinylpalmitate were ineffective in this system.

Animals↗

A Rigid Chlorin-Naphthalene Diimide Conjugate. A Possible New Noncovalent Electron Transfer Model System.

Described in this paper is the synthesis and study of a rigid "coplanar" noncovalent electron-transfer model system. This putative noncovalent complex juxtaposes a novel donor (chlorin) and acceptor (naphthalene diimide) via a three-point hydrogen bonding interaction (CDCl(3), K(a) = 364 +/- 47 M(-)(1)). It was studied by steady state fluorescence, time-resolved luminescence, and transient absorption methods. The results of the studies are consistent with (1) forward intraensemble electron transfer (ET) taking place rapidly following photoexcitation of the chlorin donor at 575 nm (k(ET) = 7.6 x 10(8) s(-)(1); DeltaG(cs) approximately -457 mV; Phi = 0.91) and (2) back electron transfer occurring even more rapidly.

Journal Article↗

[Modulation of lipid peroxidation by biogenic amines in model systems].

Specific effects of serotonin, histamine, noradrenaline and tyramine on the rate of lipid peroxidation were studied in model systems by means of measurement of malonic dialdehyde and Schiff base concentration as well as of kinetics of O2 consumption. Alterations in the lipid peroxidation rate in the presence of biogenic amines occurred dissimilarly depending on localization of oxidation substrates either in bilayer membranes or in micellar solution. The antioxidative effect of serotonin was the most pronounced as a result of its ability to react with lipid peroxidation radicals.

Biogenic Amines↗