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Effect of high hydrostatic pressure on the volatile components of a glucose-lysine model system.

An aqueous glucose-lysine model system (initial pH 10.1) was incubated at 60 degrees C and atmospheric pressure (system A) or 600 MPa (system B) to the same absorbance value at 420 nm. Volatile reaction products were isolated by solvent extraction and analyzed by gas chromatography/mass spectrometry. Thirty-two compounds were identified; most contained nitrogen, and pyrazines predominated. Yields of all compounds were suppressed at 600 MPa. Further incubation, at either atmospheric pressure (system C) or 600 MPa (system D), of system A, resulted in lower yields of many compounds at 600 MPa, compared to prolonged incubation at atmospheric pressure. Many of the compounds reported may be formed by, or subsequently react via, aldol condensation. The observed differences among the systems in the profiles and yields of volatile compounds suggest that aldol condensations increase in rate in the systems under pressure.

Furans↗

A comparison of color formation and maillard reaction products of a lactose-lysine and lactose-N(alpha)-acetyllysine model system.

The formation of color and Maillard reaction products in two model systems consisting of lactose and lysine or N(alpha)-acetyllysine has been investigated. During heating, the blockage of the N(alpha) group of lysine determined a faster color and antioxidative ability development compared to the system with free lysine. This is combined to a greater amount of melanoidin formation in the acetylated lysine system, while in the free lysine system a higher amount of pyrraline and hydroxymethyl furfural were detected. The pattern of low molecular weight products suggests that 3-deoxyglucosone and 1-deoxyglucosone degradation pathways are favored for free lysine and N(alpha)-acetyllysine, respectively. Whole data allow us to hypothesize that in a lactose-N(alpha)-acetyllysine model system the formation of colored high molecular weight polymer proceeds faster because less material is dispersed in reaction pathways, mainly the Strecker degradation, which leads to small and intermediate molecular weight products.

Antioxidants↗

Formation of heterocyclic amines in a model system during heating.

The formation of heterocyclic amines (HAs) in a model system during heating at 100, 150, or 200 degrees C for varied lengths of time was studied. The following systems were used: (i) phenylalanine, (ii) creatinine, (iii) phenylalanine and glucose, (iv) phenylalanine and creatinine, (v) glucose and creatinine, and (vi) phenylalanine, glucose, and creatinine. Results showed that HAs could only be found in both systems of glucose and creatinine, and of phenylalanine, glucose, and creatinine. Both 2-amino-9H-pyrido-[2,3-b]indole (AalphaC) and 2-amino-3-methyl-9H-pyrido-[2,3-b]indole (MeAalphaC) were observed in the former system, and the formation rate of AalphaC was higher than MeAalphaC. For the latter system, 2-amino-3-dimethylimidazo[4,5-f]quinoxaline (IQx), 9H-pyrido-[4,3-b]indole (Norharman), 1-methyl-9H-pyrido-[4,3-b]indole (Harman), AalphaC, and MeAalphaC were present. The formation rate of AalphaC was the highest at 200 degrees C, followed by MeAalphaC, Harman, Norharman, and IQx. In addition, the varieties of HAs increased both with increasing heating time and temperature. The amounts of HAs formed were less in the model system of glucose and creatinine than that of phenylalanine, glucose, and creatinine. The same trend was also observed for the formation rate of HAs. At 150 or 200 degrees C, the amounts of IQx, Harman, Norharman, AalphaC, and MeAalphaC increased in the initial period of heating and then reached a plateau. The results of this study provided a basic understanding of the conditions that result in the formation of HAs during cooking of meat and fish products.

Amines↗

Influence of oxidized deep-frying fat and iron on the formation of food mutagens in a model system.

The effects of oxidized fats, iron and tocopherol content on the yield and species of mutagenic heterocyclic amines were studied using a model system. A mixture of glycine (0.9 mmol), creatinine (0.9 mmol) and glucose (0.45 mmol) was heated for 10 and 30 min at 180 degrees C, with the addition of iron and fats. The mutagens formed were identified and quantified using HPLC. (2-Amino-3-methylimidazo[4,5-f]-quinoxaline) (IQx), 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline (MeIQx) and 2-amino-3,4,8-trimethylimidazo[4,5-f]quinoxaline (4,8-DiMeIQx) were formed in the model mixtures. The addition of iron (FeSO4) or oxidized fats to the model system did not affect the species of food mutagens formed, but the iron addition more than doubled the amount of MeIQx. The oxidation status of the fat added to the model system had little effect on the formation of MeIQx. The fat content was shown to affect the mutagen formation significantly, especially after heating for 30 min. No difference in yield of MeIQx was observed in the presence of tocopherol and tocotrienol at naturally occurring concentrations.

Chromatography, High Pressure Liquid↗

A model systems approach to age-related memory disorders.

Memory deficits are common to virtually all forms of cognitive dysfunction and are central to disorders associated with aging. Animal models provide the opportunity to understand normal and pathologic memory in great detail. The model systems approach to the neurobiology of memory involves studying a well characterized learned response in a relatively simple and well controlled preparation. The best characterized mammalian model system is classical conditioning of the rabbit's eyeblink response. Using this preparation, significant progress has been made toward understanding the neurobiological systems and mechanisms involved in elaboration of the conditioned response. Using a well characterized model system such as classical eyeblink conditioning, it should be possible to both characterize the changes in learning and memory that accompany aging and to investigate their neural substrate. Our strategy for using the conditioned eyeblink preparation for studying age-related memory deficits is fourfold and includes investigating conditioning deficits in: (1) humans across the life-span, (2) rabbits across the life-span, (3) Alzheimer's disease patients, and (4) rabbits with aluminum-induced neurofibrillary degeneration. In this paper, we present exemplary data from each of these lines of research. If similar deficits occur in each of these groups, it may be possible to begin to form hypotheses about the neurobiology of age-related memory disorders.

Aging↗

Impact of procoagulant concentration on rate, peak and total thrombin generation in a model system.

Using a cell-based model system of coagulation, we performed a systematic examination of the effect of varying individual procoagulant proteins (over the range of 0-200% of pooled plasma levels) on the characteristics of thrombin generation. The results revealed a number of features unique to the different coagulation factors, as well as common features allowing them to be grouped according to the patterns observed. Variation of those factors contributing to formation of the tenase complex, factor (F)VIII, factor (F)IX and factor (F)XI, primarily affected the rate and peak of thrombin production, but had little to no effect on total thrombin production. The effect of decreased FXI was milder than seen with decreased FVIII or FIX, and more variable between platelet donors. In contrast, varying the concentration of factors that contribute to formation of the prothrombinase complex, prothrombin or factor (F)V (with FV-deficient platelets), significantly affected all three measures of thrombin production: rate, peak and total. Additionally, while no thrombin generation was observed with no factor X, only very small amounts (between 1% and < 10% of normal plasma levels) were required to normalize the measured parameters. Finally, our results with this cell-based system highlight differences in thrombin generation on cell surfaces (platelets) compared with phospholipids, and suggest that platelets contribute more than simply a surface for the generation of thrombin.

Blood Coagulation Factors↗

The rice field eel as a model system for vertebrate sexual development.

Complex developmental mechanisms of vertebrates are unraveled using comparative genomic approaches. Several teleosts, such as zebrafish, medaka and pufferfish, are used as genetic model systems because they are amenable to studies of gene function. The rice field eel, a freshwater fish, is emerging as a specific model system for studies of vertebrate sexual development because of its small genome size and naturally occurring sex reversal. Data presented here support the use of the rice field eel as another important fish model for comparative genome studies, especially in vertebrate sexual development. This model system is complementary rather than redundant.

Animals↗

A cellular model system for expression studies of coagulation proteins.

INTRODUCTION: The development of novel antithrombotic agents directly affecting gene expression requires well established, reliable and useful in vitro model systems for initial validation of drug effects. Since most proteins involved in coagulation are synthesized by the liver, the hepatoblastoma cell line Hep G2 is introduced, here, as a model system to test nucleic acid based coagulation inhibitors. METHODS: Hep G2 cells were characterized with respect to prothrombin, tissue factor and factor VIII expression in dependence of cell culture conditions. Reliable enzyme linked immuno sorbent assays as well as viability tests were introduced that allow drug screening procedures with multiple probes in microplate format. Furthermore, a multiplex PCR-procedure has been presented that offers the possibility to simultaneously detect the effects of a selected compound on two coagulation proteins in comparison to a house keeping gene. RESULTS: Hep G2 cells were not affected in viability by cell culture conditions, while proliferation and the expression patterns of some coagulation factors were affected by the adhesion factor collagen. The prothrombin expression characteristics allowed us to choose a specific time point for the transfection of Hep G2 cells with prothrombin specific antisense oligonucleotides. Antisense oligonucleotides inhibited prothrombin expression independent from culture conditions and the effects were detected on protein-and mRNA-level. DISCUSSION: Nucleic acid based agents require cellular in vitro model systems since they affect the process of gene expression and not the gene product. Hep G2 cells are a useful model to study effects of novel nucleic acid based coagulation inhibitors with an antisense mechanism of action on protein and mRNA level.

Blood Coagulation Factors↗

Epidermal differentiation: trichomes in Arabidopsis as a model system.

Arabidopsis trichomes are an excellent model system to study all aspects of cell differentiation including cell fate determination, cell cycle regulation, cell polarity and cell expansion. Genetic analysis had initially identified mutants affecting trichome development at different developmental stages. During recent years, molecular analysis of the corresponding genes has revealed a first glimpse of the underlying molecular mechanisms. This paper summarizes some of the recent insights regarding the mechanisms of trichome development.

Actins↗

Animal model systems for the study of alcohol teratology.

The incidence of fetal alcohol syndrome has not been declining even though alcohol has been established as a teratogen and significant efforts have been made to educate women not to abuse alcohol during pregnancy. In addition to further educational efforts, strategies to prevent or mitigate the damages of prenatal alcohol exposure are now under development. Animal models will play a significant role in the effort to develop these strategies. Because prenatal alcohol exposure causes damage by multiple mechanisms, depending on dose, pattern, and timing of exposure, and because no species of animal is the same as the human, the choice of which animal model to use is complicated. To choose the best animal model, it is necessary to consider the specific scientific question that is being addressed and which model system is best able to address the question. Animal models that are currently in use include nonhuman primates, rodents (rats, mice, guinea pigs), large animal models (pig and sheep), the chick, and simple animals, including fish, insects, and round worms. Each model system has strengths and weaknesses, depending on the question being addressed. Simple animal models are useful in exploring basic science questions that relate to molecular biology and genetics that cannot be explored in higher-order animals, whereas higher-order animal models are useful in studying complex behaviors and validating basic science findings in an animal that is more like the human. Substantial progress in this field will require the judicious use of multiple scientific approaches that use different animal model systems.

Animals↗

A system model for investigating passive electrical properties of neurons.

Passive membrane properties of neurons, characterized by a linear voltage response to constant current stimulation, were investigated by busing a system model approach. This approach utilizes the derived expression for the input impedance of a network, which simulates the passive properties of neurons, to correlate measured intracellular recordings with the response of network models. In this study, the input impedances of different network configurations and of dentate granule neurons, were derived as a function of the network elements and were validated with computer simulations. The parameters of the system model, which are the values of the network elements, were estimated using an optimization strategy. The system model provides for better estimation of the network elements than the previously described signal model, due to its explicit nature. In contrast, the signal model is an implicit function of the network elements which requires intermediate steps to estimate some of the passive properties.

Animals↗

An evaluation of the Johnson Behavioural System Model of Nursing.

In this paper the authors evaluate the Johnson Behavioural System Model of Nursing by applying the assessment criteria described in an earlier paper. Data for the evaluation were collected by one of the authors (W.R.) at the UCLA Neuropsychiatric Institute and Hospital, and the UCLA School of Nursing, Los Angeles. The major focus of this paper relates to how nurses at the above facilities apply the Johnson Behavioural System Model of Nursing and how that relates to the questions posed in a previous paper which should be asked by clinicians when assessing the relevance of a model to clinical nursing practice: namely, (a) to what extent does the model assist with the identification of the range of human responses to actual or potential health problems? (b) How does the model enable a nursing diagnosis to be made, and what is the basis of that diagnosis? (c) Does the model explain why individuals respond to health problems in the way that they do? (d) Does the model inform clinicians of the nursing interventions required to enable the client to move towards optimum health? (e) Does the model help to provide an understanding of the desired outcome of nursing intervention?

Adolescent↗

An instrument for theory and research development using the behavioral systems model for nursing: the cancer patient. Part II.

The purpose of the Derdiarian Behavioral System Model (DBSM) instrument was to measure and describe, within the Johnson Behavioral System Model (JBSM) perspective, the perceived behavioral changes of the cancer patient. Based on Johnson's (1968, 1980) premise that illness as a noxious stimulus effects imbalance in the behavioral system of the human being, it was extrapolated that changes that occur in a patient's behavioral patterns would be perceived by the patient. Thus, changes would reflect the description of the imbalance in the patient's behavioral system, which needs to be identified and described in a systematic way. The description of change was envisioned in terms of (1) the perceived existence of change; (2) the direction of change--increase or decrease; (3) the quality of change--positive or negative; (4) the importance of change--its significance; and (5) the physical, psychological, or emotional effect(s) of the illness perceived as causally associated with the change.

Adult↗

Identification and analysis of Staphylococcus aureus components expressed by a model system of growth in serum.

A model system mimicking Staphylococcus aureus bacteremia was developed by growth in serum under microaerobic conditions. Eight genes induced by growth in serum were identified, including an antimicrobial peptide biosynthesis locus, amino acid biosynthetic loci, and genes encoding putative surface proteins. Nine independent insertions were found in the major lysine biosynthesis operon, which encodes eight genes, is repressed by lysine in vitro, and is expressed in vivo.

Aerobiosis↗

Current applications of the Corneal Modeling System.

The ability of the Corneal Modeling System to incorporate curvature and thickness data into a single mathematical construct of the cornea is an important achievement. As experience with this and similar instruments is gained, a number of important issues in corneal topography can be addressed. Snellen visual acuity, refraction, and keratometric changes do not fully reveal the effects of refractive surgical procedures. Detailed analysis of corneal topography will prove necessary to understanding the quality of vision resulting from surgery, as it can explain the disparity between uncorrected visual acuity and residual refractive error after radial keratotomy. Computer-assisted topographic measurement devices will undoubtedly play a particularly important role in the design and evaluation of current and future refractive procedures. Similarly, mild topographic changes (eg, subclinical keratoconus) can be detected that are not apparent with refraction, biomicroscopy, or keratometry. The author reviews his personal experience with one instrument.

Astigmatism↗

Object-oriented biomedical system modeling--the rationale.

A short tutorial and a rationale for Object-Oriented Biomedical (Continuous) System Modelling (OOBSM) are given. The paper investigates and defines what is needed in order to make the work with complex bio-medical and pathophysiological models easier, less error prone and conceptually clearer than is possible by using the existing modelling techniques. It also contains a specification of what is required in order to make such models and corresponding knowledge communicable among different research groups and in order to use such models as components in even more complex models. The work shows that hitherto available continuous system modelling languages and tools are less suitable for the construction of complex, interdisciplinary, multilevel, hierarchical models and model components and that those modelling languages do not allow for easy exchange and communication of the model knowledge between different research groups and sites. It concludes that object-oriented and distributed objects methodologies are both feasible and suitable for such modelling.

Artificial Intelligence↗

Model systems for the study of prostatic cancer.

Application of suitable in vivo and in vitro model systems are necessary to further investigations in prostatic adenocarcinoma. Model systems are defined, and discussed in terms of their potential application to the study of the neoplastic process.

Adenocarcinoma↗

A model system to demonstrate the role of cavitational activity in ultrasonic scaling.

A model system consisting of vacuum-deposited aluminum on glass was developed to demonstrate the effectiveness of cavitational activity (occurring within the cooling water supply of a dental ultrasonic scaler) in the removal of particulate material from solid surfaces. The amount of solid material removed from the model system by this cavitational activity was quantified by a spectrophotometric technique. It was shown that cavitational activity occurring within the cooling water is an important contributory factor in the cleaning efficacy of the ultrasonic scaler operated under conditions similar to those employed clinically.

Aluminum↗