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Characterization of recombinant factor VIII and a recombinant factor VIII deletion mutant using a rabbit immunogenicity model system.

The use of factor VIII prepared genetically engineered cell lines (rFVIII) may avoid some of the problems inherently associated with administering plasma-derived factor VIII (pdFVIII) concentrates to hemophilia A patients. Although rFVIII may represent an improvement over traditional therapeutics, the chance exists that protein production in cell culture may result in the presence of novel epitopes that may enhance the formation of inhibitor antibodies capable of neutralizing either rFVIII or pdFVIII. To assess the differences between rFVIII and its plasma-derived homologue, a rabbit immunogenicity model system was developed. Antibodies raised to rFVIII in rabbits were tested for the presence of antibodies capable of binding rFVIII but not pdFVIII, the presence of which would suggest that novel epitope(s) were present. This analysis was performed using a competitive enzyme-linked immunosorbent assay, as well as immunoadsorption. For either technique, rFVIII-specific antibodies were not detected, indicating that differences between rFVIII and pdFVIII were not found. When a rFVIII B-region deletion mutant was similarly tested, antibodies specific for this protein were found. These specific antibodies appeared to bind in the vicinity of the deletion site and their binding was not affected by carbohydrate removal. These results indicate that the rabbit immunogenicity model system is sensitive to alterations in the factor VIII molecule and suggest that full-length rFVIII will not be any more immunogenic in human patients than pdFVIII.

Animals↗

In vitro bioassay for human serum follicle-stimulating hormone (FSH) based on L cells transfected with recombinant rat FSH receptor: validation of a model system.

FSH plays a central role in normal reproductive function, i.e. control of follicular maturation in the female and initiation and maintenance of spermatogenesis in the male. The effects of FSH are mediated by its interaction with a specific receptor that belongs to the superfamily of guanine nucleotide-binding protein-coupled receptors. Due to the microheterogeneity of gonadotropins, measurement of immunoreactivity does not necessarily reflect their bioactivity. Mutations in gonadotropin beta-subunits, which affect bioreactivity and/or immunoreactivity of gonadotropins, have been described as causes of infertility, thus highlighting the need for rapid and convenient methods to measure bioactivity. To establish a model system for recombinant in vitro bioassays for FSH that would obviate the use of live animals, we developed a strategy for efficient expression of the rat FSH receptor (FSHR) in L cells. A cell line, FSHR 7/12, was developed that bound [125I]FSH with high affinity (Kd 1.42 nM) and responded to human FSH with an increase in cAMP accumulation. Untreated human serum was found to have an unspecific inhibitory effect on cAMP formation. This effect could be thoroughly avoided by mild heating (10 min at 56 C) of serum samples before addition to cells without detectable loss of FSH immunoactivity or bioactivity. Studies on the hormone-sensitive adenylyl cyclase system of transformed FSHR 7/12 cells and of the parental Ltk- cells showed that the cellular response to FSH was highly specific. Using a parallel line assay design, FSHR 7/12 cells were used to validate a novel recombinant in vitro bioassay relying on intracellular cAMP accumulation as a readout system. Up to 10% of serum could be added to the incubation buffer without leading to nonparallelism to the standard curve. When 70 serum samples of male patients attending an infertility clinic were analyzed, the novel assay system displayed high sensitivity and a close correlation (r > 0.8; P < 0.01) to the established rat Sertoli cell aromatase bioassay and to a highly specific fluoroimmunoassay. When sera of 25 normal menstruating women were analyzed for FSH bioactivity at different stages of the menstrual cycle, a midcycle FSH peak followed by a decline in the late luteal phase could be discerned. The analysis of 26 serum samples of postmenopausal women revealed a close correlation between FSH values obtained by the novel in vitro bioassay and by a fluoroimmunoassay (r = 0.90; P < 0.01). Thus, the present in vitro bioassay represents a sensitive, rapid, and convenient model system to measure bioactive FSH in human serum.

Animals↗

Sexy sons from re-mating do not recoup the direct costs of harmful male interactions in the Drosophila melanogaster laboratory model system.

The empirical foundation for sexual conflict theory is the data from many different taxa demonstrating that females are harmed while interacting with males. However, the interpretation of this keystone evidence has been challenged because females may more than counterbalance the direct costs of interacting with males by the indirect benefits of obtaining higher quality genes for their offspring. A quantification of this trade-off is critical to resolve the controversy and is presented here. A multi-generation fitness assay in the Drosophila melanogaster laboratory model system was used to quantify both the direct costs to females due to interactions with males and indirect benefits via sexy sons. We specifically focus on the interactions that occur between males and nonvirgin females. In the laboratory environment of our base population, females mate soon after eclosion and store sufficient sperm for their entire lifetime, yet males persistently court these nonvirgin females and frequently succeed in re-mating them. Females may benefit from these interactions despite direct costs to their lifetime fecundity if re-mating allows them to trade-up to mates of higher genetic quality and thereby secure indirect benefits for their offspring. We found that direct costs of interactions between males and nonvirgin females substantially exceeded indirect benefits through sexy sons. These data, in combination with past studies of the good genes route of indirect benefits, demonstrate that inter-sexual interactions drive sexually antagonistic co-evolution in this model system.

Animals↗

A model system for studying nutritional interventions on colon tumor growth: effects of marine oil.

Lipid nutrition effects were evaluated on the growth of a transplantable colon tumor (CT-26) at various sites in the BALB/c mouse. CT-26 implanted into the back or flank of these mice grew well independent of the quality or quantity of fat in the diet. However, when implanted in the mid-portion of the descending colon, tumor growth was related to the level of dietary saturated (coconut oil) or n-6 unsaturated (safflower oil) fat in the diet. Similar findings were obtained when the tumor was utilized in a pulmonary colonization assay. Dietary marine oil (mainly EPA, and DHA n-3 polyunsaturated oils) was found to markedly impair the growth of CT-26 implanted in the bowel and lung, but not in the back. Thus, CT-26 exhibits nutrition responsiveness at certain sites, but not at others. This may help to explain contradictory findings concerning dietary lipids in certain studies. Inhibition of tumor growth by marine oils may afford preventive or chemotherapeutic implications as its mode of action unfolds. Histologic findings in bowel tumors from mice fed marine oil but not other oils revealed focal areas of necrosis. It is appreciated that arachidonate metabolism is competitively interfered with by EPA in both cyclooxygenase and lipoxygenase pathways. The possibility is raised that the metabolism of marine oils in this model system may generate lipid peroxidation products to a greater extent than n-6 lipids and in turn is associated with focal areas of necrosis. A model system of nutritionally non-responsive and nutritionally responsive sites for the post-promotional growth of a bowel tumor affords the opportunity to explore lipid effects with control and test tumors in hosts fed identical lipid nutriture.

Animals↗

Model system to study classical nuclear export signals.

Signal-mediated protein transport through the nuclear pore complex is of considerable interest in the field of molecular pharmaceutics. Nuclear localization signals can be used to target genes/antisense delivery systems to the nucleus. Studying nuclear export is useful in enhancing the expression and the efficiency of action of these therapeutic agents. The mechanism of nuclear import has been well studied and most of the proteins participating in this mechanism have been identified. The subject of nuclear export is still in the initial stages, and there is a considerable amount of uncertainty in this area. Two main export receptors identified so far are Exportin 1 (Crm1) and Calreticulin. Crm1 recognizes certain leucine-rich amino acid sequences in the proteins it exports called classical nuclear export signals. This paper describes a model system to study, identify, and establish these classical nuclear export signals using green fluorescent protein (GFP). Two putative export signals in the human progesterone receptor (PR) and the strongest nuclear export signal known (from mitogen activated protein kinase kinase [MAPKK]) were studied using this model system.

Active Transport, Cell Nucleus↗

Evaluation of an animal model system for cryptosporidiosis: therapeutic efficacy of paromomycin and hyperimmune bovine colostrum-immunoglobulin.

Several immunodeficient rodent models currently exist in which persistent, largely asymptomatic, Cryptosporidium parvum infections can be established. Piglets, in contrast, develop a self-limiting diarrheal illness. We have consequently developed an animal model system in which scid mice were used to screen drugs for inhibitory activity against C. parvum, after which the drugs' therapeutic potential was evaluated with piglets. Paromomycin and hyperimmune bovine colostrum-immunoglobulin were selected to evaluate this system. C. paravum infections in suckling scid mice tended to be associated with villus surfaces, while in weaned and in older scid mice infections were more commonly localized in abscessed crypts. Rates of oocyst shedding in suckling scid mice were 50 to 200 times higher than in weaned mice and therefore made suckling mice a considerably more sensitive model for drug testing. Paromomycin given in high doses over 9 to 10 days was not toxic to either scid mice (3,000 mg/kg of body weight per day) or piglets (500 mg/kg/day). Paromomycin treatment was very effective against villus surface infections in suckling mice and considerably less effective against infections in inaccessible sites such as abscessed crypts and stomach pits seen in weaned and adult scid mice. The therapeutic efficacy of paromomycin in piglets depended on the severity of the diarrheal illness. Mild to moderate diarrhea and infection were cleared after paromomycin treatment of piglets infected with one C. parvum isolate. However, paromomycin had no impact on severely affected piglets infected with a second isolate, presumably because of a rapid transit time through the gut. In contrast to paromomycin hyperimmune bovine colostrum-immunoglobulin treatment reduced the rate of C. parvum infection moderately in scid mice and only slightly in piglets, again probably because of a rapid transit time through the gut and inactivation in the stomach. It was also clear that the impact of effective drugs against C. parvum can be detected within 5 days after the onset of treatment in either model.

Animals↗

Fenton reagents may not initiate lipid peroxidation in an emulsified linoleic acid model system.

This study includes two parts. First, the Fe2+ autooxidation and chelation processes in the presence of the chelators ethylenediaminetetraacetic acid (EDTA) and diethylenetriamine pentaacetic acid (DTPA) were studied by measuring UV light absorbance alterations. Competition for Fe3+ between chelators and water or phosphate buffer (PB) ions was confirmed. The addition of EDTA or DTPA to Fe3+ in water or PB only slowly turned the water/PB-Fe3+ complexes to EDTA-Fe3+ or DTPA-Fe3+ complexes. In the second part of this study, the initiation mechanisms of Tween 20 emulsified linoleic acid peroxidation under stimulation by chelator-Fe-O2 complexes were studied by measuring changes in UV light absorbance following diene conjugation. Fe3+ in the presence of EDTA or DTPA did not stimulate diene conjugation. Fe2+ (0.10 mM) and EDTA (0.11 mM) stimulated diene conjugation of the linoleic acid emulsion, but only after apparent Fe2+ autooxidation. Fe2+ and DTPA, as well as premixed DTPA-Fe2+ complex, resulted in very fast diene conjugation in a wide range of concentrations. A nonlinear, mainly square root relation between Fe2+ concentration and peroxidation rate was noted. Superoxide dismutase (SOD), catalase, and mannitol did not prevent the lipid peroxidation. H2O2 substantially decreased the DTPA-Fe2+ stimulated, otherwise rapid, diene conjugation but slightly enhanced the slower one stimulated by EDTA-Fe2+. Without ambient oxygen, Fenton reagents did not result in .H abstraction-related diene conjugation. The findings suggest that .OH resulting from Fenton reagents may not be the main cause for the initiation of peroxidation in this model system. Furthermore, a study with different combinations of Fe2+ and Fe3+ did not support the Fe2+/Fe3+ (1:1) optimum ratio hypothesis. We therefore conclude that perferryl ions or chelator-Fe-O2 complexes may be responsible for the first-chain initiation of lipid peroxidation, at least in this model system.

Animals↗

Multi-organ system model of O2 and CO2 transport during isocapnic and poikilocapnic hypoxia.

A multi-organ systems model of O(2) and CO(2) transport is developed to analyze the control of ventilation and blood flow during hypoxia. Among the aspects of the control processes that this model addressed are possible mechanisms responsible for the second phase of the ventilatory hypoxic response to mild hypoxia, i.e., hypoxic ventilatory decline (HVD). Species mass transport processes are described by compartmental mass balances in brain, heart, skeletal muscle, and "other tissues" connected in parallel via the circulation. In pulmonary and systemic capillaries and in the vasculature connecting the systemic tissues, species transport processes are represented by a one-dimensional, convection-dispersion model. The effects of bicarbonate acid-base buffering, hemoglobin, and myoglobin on the transport processes are included. The model incorporates feedback control mechanisms through a cardiorespiratory control system in which peripheral and central chemoreceptors sense O(2) and CO(2) partial pressures. Model simulations of the ventilatory responses to isocapnic and poikilocapnic hypoxia show two phases with distinct dynamics. A fast phase is discernable immediately after switching from normoxic to hypoxic conditions, while a delayed slow phase (HVD) typically becomes manifested after several minutes. Model simulations allow quantitative evaluation of several proposed mechanisms to account for HVD. Under isocapnic hypoxia, simulations indicate that an increase in brain blood flow has no effect on HVD, but that HVD can be entirely described by central ventilatory depression (CVD). Under poikilocapnic hypoxia, the hypocapnia caused by hypoxic hyperventilation has no effect on HVD.

Algorithms↗

Formation of amines and aldehydes from parent amino acids during thermal processing of cocoa and model systems: new insights into pathways of the strecker reaction.

A method based on a derivatization with dansyl chloride and LC-MS-MS determination was developed for the quantitation of 2-methylbutyl-, 3-methylbutyl-, 2-phenylethyl-, 3-(methylthio)propyl-, and 2-methylpropylamine. Its application on unfermented, fermented, and roasted cocoas from Ghana and Sulawesi revealed an increase of all amines, except the 3-(methylthio)propylamine, during cocoa fermentation, suggesting an enzymic formation from the parent amino acids isoleucine, leucine, phenylalanine, and valine. However, a much more pronounced formation of most of the amines was measured after roasting of the cocoa, leading to concentrations in the milligrams per kilogram range. This result suggested a new "thermogenic" formation pathway of "biogenic amines". A comparison of the amounts of the amines and the aldehydes in roasted cocoa revealed similar concentrations, for example, for 2- and 3-methylbutanal and the respective amines, whereas the amounts of 2-phenylethylamine were much higher as compared to the amounts of phenylacetaldehyde. Strecker-type model systems, in which each parent amino acid was reacted with 2-oxopropanal, revealed the formation of both the amine and the aldehyde; however, in contrast to cocoa, the concentrations of the aldehydes were always much higher as compared to the amines. The results showed for the first time the thermally induced generation of "biogenic amines" from amino acids. Possible reasons for the different ratios of amines versus aldehydes formed during the roasting of cocoa or the model systems, respectively, are discussed.

Aldehydes↗

A model system for the design of armed replicating adenoviruses using p53 as a candidate transgene.

Cancer gene therapy endeavors to overcome the low therapeutic index of currently available therapeutic modalities via the efficient and safe delivery of genetic material into tumor cells. However, despite promising preclinical results, replication-deficient viral vectors have demonstrated a limited efficacy in the clinical setting. To increase vector efficiency, replication-competent viruses have been proposed. Clinical trials have shown the safety of locally injected, conditionally replicative adenoviruses (Ads) but have underscored the need for improved potency. To further increase the therapeutic effect of replicating viral vectors, armed therapeutic viruses (ATVs) have recently been used for high-efficiency transgene expression. However, interference with cellular signaling and viral production by constitutive transgene expression may be counterproductive for ATV replication, thereby hindering the therapeutic outcome. Consequently, studies are equivocal with regard to the potential benefits of ATVs. To address this issue, we hypothesized that induction of replication of an Ad expressing p53 may be a useful strategy in the context of ATV because p53 does not interfere with Ad replication and may even increase its cytolytic effect. We show that in our in vitro ATV model system, E1 transcomplementation of a replication-deficient Ad encoding p53 resulted in dramatic augmentation of cell killing and circumvented resistance to apoptosis. Correlation was found between the degrees of cell killing and apoptosis induction, rather than with viral burst. Furthermore, both Ad5 E1B 55kDa and E4 orf6 genes were required to enhance the cell killing. In conclusion, our p53-ATV model system demonstrates the potential utility of therapeutic transgene expression by a replicating Ad after a rational selection of a candidate transgene.

Adenoviridae↗

Recent applications of a computer based modelling system for biomechanical interactions.

We discuss developments in our previously reported system for the modelling of the biomechanical interaction between people and products. The mass properties of the artefact are obtained and used to construct a computer model which includes both an android modelling the user and the product. This system developed as part of of a continuing collaboration, initially focussed on design methodologies in rehabilitation engineering. A description of the techniques used is given in our paper and related to ergonomics and occupational biomechanics after validating the approach in a pilot study we subsequently proposed to include a wider range of consumer products while continuing the work on rehabilitation engineering. Examples from case studies are investigated and used to refine the technique. These progressed from a heavy concrete breaker through to the design of domestic electrical; appliances, in the latter work although the loadings are not excessive in general use there are situations, especially those involving specific users such as elderly people, in which the design of the product may be inappropriate In each case we construct a model from the anthropometric data and refine the model where necessary to take into account special constraints imposed on the user. Recent results together with refinements to our technique are discussed.

Biomechanical Phenomena↗

The genetic basis of quantitative variation: numbers of sensory bristles of Drosophila melanogaster as a model system.

The numbers of sensory hairs of Drosophila melanogaster present an ideal model system to elucidate the genetic basis of morphological quantitative variation. Loci affecting bristle number can be identified and their properties studied by accumulating spontaneous mutations, by P element mutagenesis, by mapping factors causing divergence between selection lines and by the association of phenotype variation with molecular variation at candidate neurogenic loci. The consensus emerging from the application of all approaches is that much of the mutational and segregating variation affecting bristle number is attributable to alleles with large phenotype effects at a small number of candidate loci.

Animals↗

[Model system for studying thrombocyte interaction with the reconstructed vascular wall].

A new model system is suggested which is a partial reconstruction of normal, locally and vastly injured vessel walls on the basis of fibrillar collagen grown cultures of endothelial cells. The kinetic curve of adhesion on collagen of gel-filtered human platelets reaches saturation within 40 min. During adhesion the shape of collagen bound platelets changes. Acetyl-salicylic acid and platelet free serum inhibit adhesion. Endothelial cells are nonadhesive to platelets; they do not affect the platelet adhesion to the intercellular areas covered with fibrillar collagen.

Animals↗

Proportionality of 60-Hz electric field bioeffect severity to average induced transmembrane potential magnitude in a root model system.

The postulate that electric field-induced bioeffects in the root model system are related to the induction of 60-Hz transmembrane potentials (Vim) was quantitatively tested. Root segment growth rate data and the calculated mean 60-Hz Vim which would arise in the cortical cells of a segment under specified exposure conditions were subjected to regression analysis. Statistically significant correlations between segmental growth rate and segmental-average Vim were obtained using data analyzed (1) within species at a constant applied field strength, (2) within species and pooled across field exposures, and (3) pooled across both species and exposures. In C. sativus roots, segmental growth is inhibited when segmental-average Vim attain a value of 3.4-3.6 mV. In C. maxima roots, growth inhibition occurs when Vim attain or exceed 2.3-2.7 mV. Segmental growth cessation is predicted to occur when segmental-average Vim exceed 7-9 mV.

Cell Physiological Phenomena↗

Analysis of cell migration using Drosophila as a model system.

There are a number of reasons to use Drosophila as a model system to study cell migration. First and foremost is the availability of an arsenal of powerful genetic techniques that can be deployed, permitting the study of cell migration in vivo, in the context of the entire organism. This is especially important for the study of a complex behavior that can be dramatically affected by small changes in environmental conditions. Several different types of cell migrations occur during Drosophila development. In this chapter, we focus on cell migrations that have been subjected to the most intense scrutiny. We describe each of the cell types and their trajectories and provide information regarding markers that are useful for the study of each cell type and mutations that affect their migrations. In addition, we provide protocols for staining embryos and manipulating gene function in each of the migratory populations. Finally, we offer some advice concerning the analysis and interpretation of mutant phenotypes.

Animals↗

[BALB/c mice model system of cytomegalovirus-induced myocarditis].

OBJECTIVE: To establish a BALB/c mice model system of cytomegalovirus-induced myocarditis. METHODS: Twenty five specific pathogen-free inbred female BALB/c mice (5 weeks old, 16 - 18 g, seronegative for MCMV) were infected with 1 x 10(4) PFU MCMV by the intraperitoneal (i.p.) route. All experimental mice were sacrificed at 3, 5, 7, 10, 14 days i.p. (n = 5 per time point). Hearts were removed under aseptic conditions, and were transected along the midline. One part of each heart was processed with Bouin's fixative for histological examination. The other part of each heart was immediately frozen in liquid nitrogen and stored at -80 degrees C until MCMV titre was determined by plaque assay. Serum cTnI level was assayed by ELISA. RESULTS: MCMV was detected in the hearts at extremely low levels on 3 days i.p. and could not be detected on 10 days i.p. A mixed cellular infiltrate composed of polymorphonuclear neutrophils and mononuclear lymphocytes was observed on 3 days, which reached a peak at 7 to 10 days after MCMV infection and was maintained for at least 3 - 4 months postinfection. Serum cTnI levels were elevated on 3 days i.p., reaching a peak at 7 to 10 days i.p.. CONCLUSIONS: These data highlight the possible therapeutic uses of antiviral drugs in viral myocarditis as well as further elucidating the pathogenic nature of the disease.

Animals↗

[The effect of 6-methyluracil on oxidative reactions in model systems of varying degrees of complexity].

Effect of 6-methyluracyl (MU) on oxidative processes was studied on model systems of different degrees of complexity (methyloleate model, mitochondria isolated from rat liver, surviving slices of mammalian muscle tissues). On two former models it was shown that MU exerted antioxidant (AO) properties inferior to those of such antioxidants as ionol and K(+)-phenosan. The AO efficiency depended on the intensity of peroxide processes. The AO activity of MU was most fully realized on the model of isolated surviving slices of muscle tissue. The totality of data obtained suggests that participation of the substance in regulation of lipid peroxidation in the organism underlies its therapeutic activity in pathological states.

Animals↗