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81.
The Novel Use of a Heterozygous Knockout Mouse for Embryofetal Development Assessment of a Glucokinase Activator 下载免费PDF全文
Terri Mitchard Jane Stewart 《Birth defects research. Part B, Developmental and reproductive toxicology》2014,101(2):152-161
Glucokinase activators (GKAs), such as AZD1656, are designed as antihyperglycemic agents for diabetics and can cause dose‐limiting hypoglycemia in normal animals used in embryofetal development studies. Genetically modified heterozygous GK knockout (gkdel/wt) mice are less susceptible to severe GKA‐induced hypoglycemia than wild‐type mice due to their elevated baseline glucose levels. In this study, the gkdel/wt mouse was used as an alternative rodent strain for embryofetal development studies with AZD1656. Heterozygous global knockout gkdel/wt females were dosed with 20, 50, or 130 mg/kg/day of AZD1656 or vehicle for a minimum of 14 consecutive days before mating with wild‐type males and throughout organogenesis. Maternal effects were confined to slightly reduced food consumption, reduced body weight gain, and the pharmacologic effect of decreased plasma glucose. Fetuses were genotyped. Fetal weights at the high dose were slightly reduced but there was no effect on fetal survival. There were two specific major malformations, omphalocele and right‐sided aortic arch, with increased fetal incidence in mid‐ and high‐dose fetuses (e.g., omphalocele fetal incidence of 0.6, 0.7, 4.6, and 2% across the dose groups) plus increased incidences of minor abnormalities and variants indicative of either delayed or disturbed development. Fetal weight and abnormalities were unaffected by fetal genotype. The fetal effects are considered hypoglycemia related. There was no effect on embryofetal survival in the gkdel/wt mouse at AZD1656 exposures, which were 70× higher than those causing 75% fetal death in rabbits. This illustrates the value of genetically modified animals in unraveling target versus chemistry‐related effects. 相似文献
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A new parameter, the relative utilization of tricarboxylic acid (TCA) cycle beta, is introduced to quantitatively account for the involvement of fermentation pathways and TCA cycle in the utilization of oxygen under oxygen-limiting (microaerobic) conditions. With the facultative anaerobe Enterobacter aerogenes, which produces 2,3-butanediol, a method is proposed to calculate beta from measurement of metabolites and exhaust gas. In continuous culture beta was found to be small under oxygen limitation, indicating that the fermentation pathways were preferred over the TCA cycle and oxygen was almost entirely consumed through oxidation of reduced nicotinamide adenine dinucleotide (NADH(2)) released by fermentation under these conditions. The increase of beta at high oxygen supply revealed a saturation of oxygen utilization through fermentation pathways. It could be concluded that, for the optimal performance of a microaerobic culture, oxygen uptake rate must be kept at such a level that as much NADH(2) as possible from fermentation pathways is oxidized by oxygen, and at the same time the utilization of TCA cycle is kept at a minimum. As the dynamics of the microaerobic culture can be fast, a significant effect of reactor hydrodynamics, i.e., mixing, on the overall performance can be expected. This was confirmed experimentally, and the parameter beta proved to be a useful reactor design criterium for the microaerobic cultivation. (c) 1992 John Wiley & Sons, Inc. 相似文献
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Leela J. Chakravarti Victor H. Beltran Madeleine J. H. van Oppen 《Global Change Biology》2017,23(11):4675-4688
Climate warming is occurring at a rate not experienced by life on Earth for 10 s of millions of years, and it is unknown whether the coral‐dinoflagellate (Symbiodinium spp.) symbiosis can evolve fast enough to ensure coral reef persistence. Coral thermal tolerance is partly dependent on the Symbiodinium hosted. Therefore, directed laboratory evolution in Symbiodinium has been proposed as a strategy to enhance coral holobiont thermal tolerance. Using a reciprocal transplant design, we show that the upper temperature tolerance and temperature tolerance range of Symbiodinium C1 increased after ~80 asexual generations (2.5 years) of laboratory thermal selection. Relative to wild‐type cells, selected cells showed superior photophysiological performance and growth rate at 31°C in vitro, and performed no worse at 27°C; they also had lower levels of extracellular reactive oxygen species (exROS). In contrast, wild‐type cells were unable to photosynthesise or grow at 31°C and produced up to 17 times more exROS. In symbiosis, the increased thermal tolerance acquired ex hospite was less apparent. In recruits of two of three species tested, those harbouring selected cells showed no difference in growth between the 27 and 31°C treatments, and a trend of positive growth at both temperatures. Recruits that were inoculated with wild‐type cells, however, showed a significant difference in growth rates between the 27 and 31°C treatments, with a negative growth trend at 31°C. There were no significant differences in the rate and severity of bleaching in coral recruits harbouring wild‐type or selected cells. Our findings highlight the need for additional Symbiodinium genotypes to be tested with this assisted evolution approach. Deciphering the genetic basis of enhanced thermal tolerance in Symbiodinium and the cause behind its limited transference to the coral holobiont in this genotype of Symbiodinium C1 are important next steps for developing methods that aim to increase coral bleaching tolerance. 相似文献
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We studied the activity of calpain in the brain tissue of guinea pigs at different stages of the development of experimental allergic encephalomyelitis (EAE). Eleven days after inoculation of a mixture containing myelin main protein into the experimental animals, we observed a drop in the calpain activity (on average, by 27% with respect to the control), whereas on the 20th and 27th days the activity of the enzyme under study exceeded the norm (by 12%). The calpain/calpastatin ratio also altered at the different stages of development of EAE: the amount of calpastatin increased significantly on the 11th and 27th days, while on the 20th day the level of calpastatin was close to that typical of the control animals. Therefore, we found that the state of calpain/calpastatin system in the guinea pig brain demonstrates some correlation with the dynamics of development of EAE. 相似文献
87.
Ayşegül Özen Kristina Prachanronarong Ashley N. Matthew Djade I. Soumana 《Critical reviews in biochemistry and molecular biology》2019,54(1):11-26
Direct acting antivirals have dramatically increased the efficacy and tolerability of hepatitis C treatment, but drug resistance has emerged with some of these inhibitors, including nonstructural protein 3/4?A protease inhibitors (PIs). Although many co-crystal structures of PIs with the NS3/4A protease have been reported, a systematic review of these crystal structures in the context of the rapidly emerging drug resistance especially for early PIs has not been performed. To provide a framework for designing better inhibitors with higher barriers to resistance, we performed a quantitative structural analysis using co-crystal structures and models of HCV NS3/4A protease in complex with natural substrates and inhibitors. By comparing substrate structural motifs and active site interactions with inhibitor recognition, we observed that the selection of drug resistance mutations correlates with how inhibitors deviate from viral substrates in molecular recognition. Based on this observation, we conclude that guiding the design process with native substrate recognition features is likely to lead to more robust small molecule inhibitors with decreased susceptibility to resistance. 相似文献
88.
Craig R. Halberstadt Bernhard O. Palsson A. Rees Midgley Rane L. Curl 《Biotechnology and Bioprocess Engineering》2002,7(3):163-170
This report describes the use of a transtubular bioreactor to study the relative effects of diffusion versus perfusion of
medium on antibody production by a hybridoma cell line. The study was performed with a high-density cell culture maintained
in a serum-free, low-protein medium for 77 days. It was determined that the reactor possessed a macro-mixing pattern residence
time distribution similar to a continuous stirred tank reactor (CSTR). However, due to the arrangement of the medium lines
in the reactor, the flow patterns for nutrient distribution consist of largely independent medium path lengths ranging from
short to long. When operated with cyclic, reversing, transtubular medium flow, some regions of the reactor (with short residence
times) are more accessible to medium than others (with long residence times). From this standpoint, the reactor can be divided
into three regions: a captive volume, which consists of medium primarily delivered via diffusion; a lapped volume, which provides
nutrients through unilateral convection; and a swept volume, which operates through bilateral convection. The relative sizes
of these three volumes were modified experimentally by changing the period over which the direction of medium flow was reversed
from 15 min (larger captive volume) to 9 h (larger swept volume). The results suggest that antibody concentration increases
as the size of the diffusion-limited (captive) volume is increased to a maximum at around 30 min with a sharp decrease thereafter.
As reflected by changes in measured consumption of glucose and production of lactate, no significant difference in cellular
metabolism occurred as the reactor was moved between these different states. These results indicate that the mode of operation
of the transtubular bioreactor may influence antibody productivity under serum-free, low-protein conditions with minimal effects
on cellular metabolism. 相似文献
89.
John J. Shea 《Evolutionary anthropology》1992,1(4):143-150
Stone tools are the most durable and ubiquitous residue of prehistoric hominid activity. For this reason, archeologists attempt to learn as much as possible about hominid behavior from the analysis of lithic artifacts. Lithic microwear analysis reconstructs aspects of stone-tool use from patterned variation in the traces of microscopic wear on those tools. The analysis of lithic microwear traces has increased our understanding of how stone tools were used in contexts ranging from the early Pleistocene to the ethnographic present. 相似文献
90.