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Combination of computational prescreening and experimental library construction can accelerate enzyme optimization by directed evolution.

Chiral compounds can be produced efficiently by using biocatalysts. However, wild-type enzymes often do not meet the requirements of a production process, making optimization by rational design or directed evolution necessary. Here, we studied the lipase-catalyzed hydrolysis of the model substrate 1-(2-naphthyl)ethyl acetate both theoretically and experimentally. We found that a computational equivalent of alanine scanning mutagenesis based on QM/MM methodology can be applied to identify amino acid positions important for the activity of the enzyme. The theoretical results are consistent with concomitant experimental work using complete saturation mutagenesis and high-throughput screening of the target biocatalyst, a lipase from Bacillus subtilis. Both QM/MM-based calculations and molecular biology experiments identify histidine 76 as a residue that strongly affects the catalytic activity. The experiments demonstrate its important influence on enantioselectivity.

Amino Acid Substitution↗

Reverse-Hebb plasticity leads to optimization and association in a simulated visual cortex.

The effects of a variable-phase synaptic modification rule on the experience-dependent development of a simulated visual cortex were investigated. Of interest were the process of optimization of the internal representation with respect to orientation, through which the weakly tuned neurons of visually inexperienced animals attain their tightly tuned adult characteristics, and the process of association by which identical stimuli presented to either eye come to evoke identical cortical representations. In its general form, the synaptic modification rule was Hebbian. However, it was not assumed that positive correlation of presynaptic and postsynaptic activity would lead to an increase in synaptic weight. The relative phase of presynaptic vs. postsynapatic activity that would effect an increase in synaptic weight was a parameter of the modification rule. When this parameter was zero, synaptic modification conformed to the standard Hebbian type. With a value of 180 deg, or the reverse-Hebb condition, negative correlation between presynaptic and postsynaptic activity led to increased synaptic weight. It was found that a synaptic modification rule of the reverse-Hebb type not only optimized the cortical representation, and associated the representations from the two eyes, but was quite stable with respect to retaining the optimized state for long periods of learning.

Animals↗

Prey processing in central place foragers.

The importance of prey processing as an integral part of foraging behaviour has long been acknowledged, but little theoretical consideration has been given to the optimization of the processing behaviour itself. Processing renders food down to ingestible, palatable portions, and also removes non-essential mass thus reducing transport costs. Here, several models of processing are developed for a central place forager. When the forager has to make a simple choice between processing the prey and not, a critical distance from the central place can be calculated, beyond which it is optimal to process prey. If the forager also decides on how much of the prey to remove, the optimal amount to be removed can also be calculated. Imposing a ceiling on overall metabolic expenditure is shown to reduce the distances at which processing becomes the optimal strategy. The models are tested using parameters derived for a provisioning merlin, Falco columbarius, and alternative explanations as to why observed behaviours should differ from the optimal behaviour predicted are discussed.

Animals↗

Optimisation of the coagulation-flocculation process of raw water by optimal design method.

In the present paper, a systematic study of the influence of raw water quality and operating conditions on the effectiveness of the coagulation-flocculation process using aluminium sulphate (AS) is presented. The influence of raw water composition is studied at two levels, fractional factorial designs and a Doehlert uniform shell design to determine the influence of the operating conditions. The analysis of the experimental responses (residual turbidity and minimally AS dose are denoted as (Tu(m)) and (AS(m)), respectively) shows that the parameters which have the greatest influence change depending on the response. It is not always possible, for a given water composition, to obtain simultaneously low residual turbidity and minimally AS dose. However, under the conditions of this study, the search for a criterion of optimisation must bear the minimisation of residual turbidity, because it remains the principal criterion of effectiveness of the process, even, if in a few cases, it results in an increase in the cost of treatment.

Alum Compounds↗

Optimization of walking in children.

Previous work demonstrated that adults naturally adopt a walking frequency to optimize physiological cost, symmetry, and stability. Furthermore, the optimal frequency is predictable using the force-driven harmonic oscillator (FDHO) model. However, no studies have established the developmental processes of optimization in children. Thus, the purposes of this study were to examine the predictability of the preferred stride frequency (PSF) and optimization features of 3- to 12-yr-old children using the FDHO model. Forty-five children and nine adults were measured for anthropometric data to calculate the predicted frequency. They later walked at three frequencies (PSF, PSF +25%, and PSF -25%) at a constant speed on a treadmill. The results indicated that the FDHO model was accurate in predicting the preferred frequency of children (prediction error < 0.07 s). We identified three stages of learning in the development of optimization: an early manifestation of sensitivity to resonant frequency, the subsequent development of ability to modulate walking frequency, and the final establishment of an adult optimization form at age seven. Our findings suggest that walking development may be determined by the dynamic cooperation of physiological, neural, and musculoskeletal systems with respect to the environmental context.

Adult↗

Production of L-asparaginase, an anticancer agent, from Aspergillus niger using agricultural waste in solid state fermentation.

This article reports the production of high levels of L-asparaginase from a new isolate of Aspergillus niger in solid state fermentation (SSF) using agro-wastes from three leguminous crops (bran of Cajanus cajan, Phaseolus mungo, and Glycine max). When used as the sole source for growth in SSF, bran of G. max showed maximum enzyme production followed by that of P. mungo and C. cajan. A 96-h fermentation time under aerobic condition with moisture content of 70%, 30 min of cooking time and 1205-1405 micro range of particle size in SSF appeared optimal for enzyme production. Enzyme yield was maximum (40.9 +/- 3.35 U/g of dry substrate) at pH 6.5 and temperature 30 +/- 2 degrees C. The optimum temperature and pH for enzyme activity were 40 degrees C and 6.5, respectively. The study suggests that choosing an appropriate substrate when coupled with process level optimization improves enzyme production markedly. Developing an asparaginase production process based on bran of G. max as a substrate in SSF is economically attractive as it is a cheap and readily available raw material in agriculture-based countries.

Agriculture↗

An automated process for building reliable and optimal in vitro/in vivo correlation models based on Monte Carlo simulations.

Many mathematical models have been proposed for establishing an in vitro/in vivo correlation (IVIVC). The traditional IVIVC model building process consists of 5 steps: deconvolution, model fitting, convolution, prediction error evaluation, and cross-validation. This is a time-consuming process and typically a few models at most are tested for any given data set. The objectives of this work were to (1) propose a statistical tool to screen models for further development of an IVIVC, (2) evaluate the performance of each model under different circumstances, and (3) investigate the effectiveness of common statistical model selection criteria for choosing IVIVC models. A computer program was developed to explore which model(s) would be most likely to work well with a random variation from the original formulation. The process used Monte Carlo simulation techniques to build IVIVC models. Data-based model selection criteria (Akaike Information Criteria [AIC], R2) and the probability of passing the Food and Drug Administration "prediction error" requirement was calculated. To illustrate this approach, several real data sets representing a broad range of release profiles are used to illustrate the process and to demonstrate the advantages of this automated process over the traditional approach. The Hixson-Crowell and Weibull models were often preferred over the linear. When evaluating whether a Level A IVIVC model was possible, the model selection criteria AIC generally selected the best model. We believe that the approach we proposed may be a rapid tool to determine which IVIVC model (if any) is the most applicable.

Automation↗

Fixation and epitope retrieval in diagnostic immunohistochemistry: a concise review with practical considerations.

Diagnostic immunohistochemistry (DIHC) is an extremely valuable technological development that has revolutionized the practice of surgical pathology over the past 25 years. Like any laboratory procedure, however, the precise concatenation of methodological details that are used by any given investigator has a major effect on final results. In this overview, the authors consider several of these variables and illustrate how they may be optimized in an effective and efficient approach to quality assurance in the DIHC laboratory. The great majority of this discussion concerns processing factors as they affect paraffin section-based immunohistology because that is still, by far, the most common adjunctive morphologic procedure (AMP) used in hospital pathology. However, information is also presented on elements of tissue processing that affect other analyses as well. The material presented here is a direct reflection of the conjoint experiences of the authors. Although we discuss our preferences regarding many technical aspects of this discipline, we certainly do not mean to imply that ours are the only methods that should be utilized. Nevertheless, it is hoped that they may serve to crystallize basic concepts surrounding fixation, processing, and optimal performance of AMPs.

Biotin↗

Inducing letter-by-letter dyslexia in normal readers.

Letter-by-letter (LBL) dyslexia is an acquired reading disorder characterized by very slow reading and a large linear word length effect. This suggests the use of a sequential LBL strategy, in sharp contrast with the parallel letter processing used by normal subjects. Recently, we have proposed that the reading difficulty of LBL dyslexics is due to a deficit in discriminating visually similar letters based on parallel letter processing [Arguin, M., Fiset, S., & Bub, D. Sequential and parallel letter processing in letter-by-letter dyslexia. Cognitive Neuropsychology, 19, 535-555, 2002]. The visual mechanisms underlying this deficit and the LBL strategy, however, are still unknown. In this article, we propose that LBL dyslexic patients have lost the ability to use, for parallel letter processing, the optimal spatial frequency band for letter and word recognition. We claim that, instead, they rely on lower spatial frequencies for parallel processing, that these lower spatial frequencies produce confusions between visually similar letters, and that the LBL compensatory strategy allows them to extract higher spatial frequencies. The LBL strategy would thus increase the spatial resolution of the visual system, effectively resolving the issue pertaining to between-letter similarity. In Experiments 1 and 2, we succeeded in replicating the main features characterizing LBL dyslexia by having normal individuals read low-contrast, high-pass-filtered words. Experiment 3, conducted in LBL dyslexic L.H., shows that, indeed, the letter confusability effect is based on low spatial frequencies, whereas this effect was not supported by high spatial frequencies.

Adult↗

Optimization of coagulation-flocculation process for pulp and paper mill effluent by response surface methodological analysis.

Coagulation-flocculation is a proven technique for the treatment of high suspended solids wastewater. In this study, the central composite face-centered design (CCFD) and response surface methodology (RSM) have been applied to optimize two most important operating variables: coagulant dosage and pH, in the coagulation-flocculation process of pulp and paper mill wastewater treatment. The treated wastewater with high total suspended solids (TSS) removal, low SVI (sludge volume index) and high water recovery are the main objectives to be achieved through the coagulation-flocculation process. The effect of interactions between coagulant dosage and pH on the TSS removal and SVI are significant, whereas there is no interaction between coagulant dosage and water recovery. Quadratic models have been developed for the response variables, i.e. TSS removal, SVI and water recovery based on the high coefficient of determination (R(2)) value of >0.99 obtained from the analysis of variances (ANOVA). The optimum conditions for coagulant dosage and pH are 1045mgL(-1) and 6.75, respectively, where 99% of TSS removal, SVI of 37mLg(-1) and 82% of water recovery can be obtained.

Flocculation↗

Bilateral cochlear implantation: current concepts.

PURPOSE OF REVIEW: Recent experience has shown an advantage of bilateral cochlear implantation over unilateral implantation. These documented benefits include improved speech perception in noisy environments and improved sound localization. Recently, investigators have studied the long-term benefit, evaluation of neural integration, programming, vestibular effects, and complications of bilateral cochlear implantation. This article summarizes the current research endeavors to improve our understanding and utilization of bilateral cochlear implantation. RECENT FINDINGS: Numerous positive benefits of bilateral cochlear implantation have been confirmed. Patients receive significant head shadow benefit from bilateral implantation, and obtain nominal benefits from summation and squelch effects. Sound localization benefits have been confirmed. Speech perception in noise with bilateral implantation is significantly better than unilateral implantation and continues to improve 24 months after implantation. Areas for further improvement have also been identified. Despite technological improvements in speech processing strategies, measured intraaural time differences in bilateral cochlear implant recipients remain considerably greater than those with normal hearing. Programming challenges persist to optimize sound processing with bilateral implants. Vestibular effects of bilateral cochlear implantation appear safe but need further study. Important considerations including the duration of implant function, long-term complication rate, and improvements in implant technology will continue to strongly influence the role of bilateral cochlear implantation. SUMMARY: Bilateral cochlear implantation provides advantages over unilateral implantation including improved speech perception in noise and improved sound localization. Further research is needed to define the optimal indications and to maximize the benefit of bilateral implantation.

Cochlear Implantation↗

Characteristics of decision-making process during prescribing in general practice.

BACKGROUND/AIM: The process of precribing decision-making by general practitioners requires numerous consultations in order to obtain maximal effects, minimal risks, and cost-effectiveness with the full appreciation of a patient's right to choose. The aim of our study was to describe the process of decision-making by general practitioners who decide on the treatment for an individual patient, and to relate the scope and nature of this process to the quality of the outcome of the decision. METHODS: The study involved 53 general practitioners who worked in the Health Center, Kragujevac at the time of investigation (September-December 2002.). General practitioners made prescribing decisions, thinking aloud, for five patients with urinary tract infections (n = 2), or stomach complaints (n = 3). The resulting 265 transcripts were analyzed to determine the scope and nature of the decision-making processes. Differences in prescribing were related to the case or the practitioners' working experience, and to their educational background. RESULTS: Our results showed that the more years of practice the practitioners had the less treatments they prescribed, and the less additional aspects before prescribing they considered. The doctors with less experience, in most of the cases, considered the core aspects, while those with more experience more often considered the contextual and habitual aspects. Educational background of the general practitioners, and the type of a considered disease, had an influence on the decision-making process. The most optimal method for decision-making (marked as type F) was mostly used by the practitioners with the least experience, while the those with more experience mainly made their decisions in the ways considered the least acceptable. The optimal method for decision-making process does not necessarily provide the optimal therapy, so the least acceptable decision-making might not result in an inappropriate treatment. CONCLUSIONS: The observed prescribing decisions were mostly in disagreement with the Good Clinical Practice. Our study pointed out the need for the obligatory continuation of medical education of general practitioners in decision-making process during prescribing.

Adult↗

Innovative and economic potential of mammalian cell culture.

Innovations for economic optimization of manufacturing processes of mammalian cell culture processes address new expression systems, optimized cell culture media and feeding systems, economy of scale, efficient harvest systems for viable cell separation, redesign of downstream processing and reduction of the overall number of quality control assays. A very efficient expression system in Chinese hamster ovary cells is the NEOSPLA expression system yielding 60-100 micrograms monoclonal antibodies per cell and day. Efficient supplements in nutrient feeding are insulin and amino acids which contribute to a high extent to the productivity of the mammalian cell culture process. Large scale manufacturing processes lower cost of goods by reduction of turn around cost for cleaning and steaming in place, media preparation, number of batches for annual campaign, in-process and quality control. In downstream processing the number of process steps and the step yield are responsible for the economics. Process control systems in a computer assisted manufacturing plant increase success rate, reduces man power and minimizes shifts. In the innovative process also alternative technologies such as transgenic animals should be considered to improve the economy of the manufacturing processes.

Animals↗

Historical site assessments--they're not just for decommissioning anymore.

At the conclusion of its mission, every nuclear facility eventually undergoes decommissioning. An early and essential part of decommissioning is the conduct of an extensive site characterization process. A Historical Site Assessment (HSA), a critical aspect of the site characterization process, sufficiently informs the facility owner and stakeholders of the radiological contaminants on the facility site. This allows for a safe and optimal decommissioning process. Although many nuclear facilities in the United States are permanently closed, many are entering a long-term storage condition typically known as safe storage (SAFSTOR). In these cases, only minimal characterization may be conducted initially. Full characterization may not occur for several decades. Additional delays in decommissioning will occur in operating facilities that successfully extend their operating licenses. In both of these cases, the conduct of a robust HSA can provide a valuable and cost-beneficial decommissioning step. This paper suggests that a substantial portion of the early site characterization process should be conducted prior to the conclusion of a facility's mission.

Documentation↗

Neural control of rotational kinematics within realistic vestibuloocular coordinate systems.

Previous theoretical investigations of the three-dimensional (3-D) angular vestibuloocular reflex (VOR) have separately modeled realistic coordinate transformations in the direct velocity path or the nontrivial problems of converting angular velocity into a 3-D orientation command. We investigated the physiological and behavioral implications of combining both approaches. An ideal VOR was simulated using both a plant model with head-fixed eye muscle actions (standard plant) and one with muscular position dependencies that facilitate Listing's law (linear plant). In contrast to saccade generation, stabilization of the eye in space required a 3-D multiplicative (tensor) interaction between the various components of velocity and position in both models: in the indirect path of the standard plant version, but also in the direct path of the linear plant version. We then incorporated realistic nonorthogonal coordinate transformations (with the use of matrices) into both models. Each now malfunctioned, predicting ocular drift/retinal destabilization during and/or after the head movement, depending on the plant version. The problem was traced to the standard multiplication tensor, which was only defined for right-handed, orthonormal coordinates. We derived two solutions to this problem: 1) separating the brain stem coordinate transformation into two (sensory and motor) transformations that reordered and "undid" the nonorthogonalities of canals and muscle transformations, thus ensuring orthogonal brain stem coordinates, or 2) computing the correct tensor components for velocity-orientation multiplication in arbitrary coordinates. Both solutions provided an ideal VOR. A similar problem occurred with partial canal or muscle damage. Altering a single brain stem transformation was insufficient because the resulting coordinate changes rendered the multiplication tensor inappropriate. This was solved by either recomputing the multiplication tensor, or recomputing the appropriate internal sensory or motor matrix to normalize and reorthogonalize the brain stem. In either case, the multiplication tensor had to be correctly matched to its coordinate system. This illustrates that neural coordinate transformations affect not only serial/parallel projections in the brain, but also lateral projections associated with computations within networks/nuclei. Consequently, a simple progression from sensory to motor coordinates may not be optimal. We hypothesize that the VOR uses a dual coordinate transformation (i.e., both sensory and motor) to optimize intermediate brain stem coordinates, and then sets the appropriate internal tensor for these coordinates. We further hypothesize that each of these processes should optimally be capable of specific, experimentally identifiable adjustments for motor learning and recovery from damage.

Brain Stem↗

[Production of biological silage from fish scraps].

Fish waste from the fish processing industry were used as a raw material to produce biological silage. The technology used had been previously developed and tested to optimize the process. The degree of grinding, molasses concentration, process temperature, Lactobacillus plantarum inoculation, and utilization of tropical fruit wastes as a source of proteolytic enzymes were tested. Results indicated that after process and storage for 90 days at room temperature, a stable product is obtained by using no less than 15% of molasses and 10% of fruit waste, process temperature should be around 40 degrees C, the fish have to be ground to a very small particle size, and microbial inoculation is necessary.

Fermentation↗

Application of aerosol solvent extraction system (ASES) process for preparation of liposomes in a dry and reconstitutable form.

The aerosol solvent extraction system (ASES) process was applied to prepare liposomes in a dry and reconstitutable form. Dry ASES microparticles containing miconazole (MCZ) as a model drug were prepared by an optimized ASES process with various compositions of spraying solution containing phosphatidylcholine, cholesterol, and Poloxamer 407. The influence of such compositions and the pH of hydration medium on the physico-chemical properties of the produced microparticles were investigated before and after hydration. At optimized conditions, partially crystalline, spherical, and nonporous microparticles associated in aggregates varying from a few microns to 40 microm were produced with the residual content of methylene chloride and methanol lower than 30 and 86 ppm, respectively. The percentage of drug recovered in the produced microparticles was increased with an increase of the drug concentration in the spraying solution. The entrapment efficiency of hydrated MCZ microparticles was improved by increasing the pH of the hydration medium.

Aerosols↗

Ab initio crystallographic structure determination of insulin from protein to electron density without crystal handling.

Insulin crystals suitable for cryogenic data collection and structure determination by single-wavelength anomalous scattering (SAS) were obtained by a self-optimization screening process in a single capillary tube without manipulation of the crystals at any time. Using the counter-diffusion crystallization technique, screening for optimal conditions for crystal growth, incorporation of a strong anomalous scattering halide and cryogenic solution took place simultaneously in a single capillary tube. The crystals in the capillaries can be placed directly in the cryostream for data collection using a conventional home-laboratory X-ray source. High-redundancy data were used to obtain a Patterson solution from the anomalous signal of iodine. As a result, the anomalous scattering-atom position was determined and the phase calculated, giving rise to an initial electron-density map at 2.4 A resolution. This entire procedure from crystal growth to the determination of an initial structure was performed within four weeks.

Animals↗