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931.
Adaptation of tobacco hornworms to the ingestion of nicotine   总被引:1,自引:0,他引:1  
Radiometric, chromatographic, and spectrophotometric data show excretion and egestion of intact nicotine to be an explantion for the adaptation of the tobacco hornworm, Protoparce sexta (Johan.), to tobacco. There was no evidence for the metabolism of nicotine to less toxic metabolites after topical, injected, or ingested doses. Although nicotine was absorbed into the blood of the hornworm, a toxic dose did not appear to accumulate at the site of action.  相似文献   
932.
Systemic metastasis is the dissemination of cancer cells from the primary tumor to distant organs and is the primary cause of death in cancer patients. How do cancer cells leave the primary tumor mass? The ability of the tumor cells to form different types of actin-rich protrusions including invasive protrusions (invadopodia) and locomotory protrusions (lamellipodia [2D] or pseudopodia [3D]), facilitate the invasion and dissemination of the tumor cells. Rho-family of p21 small GTPases plays a direct role in regulating the actin dynamics in these intracellular compartments. Recent studies have shown that the signaling molecules including RhoC/p190RhoGEF/p190RhoGAP acts as a “molecular compass” in order to direct the spatial and temporal dynamics of the formation of these invasive and locomotory protrusions leading to efficient invasion.  相似文献   
933.
934.
Exercise-induced hypercapnia in the horse   总被引:2,自引:0,他引:2  
The effects of exercise intensity and duration on blood gases in thoroughbred horses were studied to characterize the apparent exercise-induced failure in pulmonary gas exchange that occurs in these animals. In response to 2 min of exercise, arterial CO2 tension (PaCO2) decreased in mild and moderate exercise, returned to normocapnic levels in moderate to heavy exercise, and rose 5-10 Torr above resting values during very heavy exercise when CO2 production (VCO2) exceeded 20 times the resting value, and mixed venous CO2 tension approximated 140 Torr. Exercise-induced hypoxemia occurred at the onset of heavy exercise and was associated with the absence of a hyperventilatory response and an alveolar-arterial PO2 difference that increased four to six times above rest with very heavy exercise. PaCO2 was related to VCO2 but not fb, as changes in breathing frequency (fb) of 8-20 breaths/min at comparable VCO2 did not affect PaCO2. Prolonging very heavy exercise from 2 to 4 min caused a severe metabolic acidosis (arterial pH less than 7.15) and hypoxemia was maintained; however, CO2 was no longer retained, as PaCO2 gradually fell to below resting levels, due to an increased tidal volume at constant fb. We conclude that a truly compensatory hyperventilation to very heavy exercise in the horse is not achieved because of the excessive volumes and flow rates required by their extraordinarily high VCO2 and VO2. On the other hand, the frank CO2 retention during short-term high-intensity exercise occurs even though the horse is not apparently mechanically obligated to tolerate it.  相似文献   
935.
© 2005 Wiley Periodicals, Inc. J Biochem Mol Toxicol 19:276–277, 2005; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/jbt.20077  相似文献   
936.
Carbaryl is a widely used anticholinesterase carbamate insecticide. Although previous studies have demonstrated that carbaryl can be metabolized by cytochrome P450 (CYP), the identification and characterization of CYP isoforms involved in metabolism have not been described either in humans or in experimental animals. The in vitro metabolic activities of human liver microsomes (HLM) and human cytochrome P450 (CYP) isoforms toward carbaryl were investigated in this study. The three major metabolites, i.e. 5-hydroxycarbaryl, 4-hydroxycarbaryl and carbaryl methylol, were identified after incubation of carbaryl with HLM or individual CYP isoforms and analysis by HPLC. Most of the 16 human CYP isoforms studied showed some metabolic activity toward carbaryl. CYP1A1 and 1A2 had the greatest ability to form 5-hydroxycarbaryl, while CYP3A4 and CYP1A1 were the most active in generation of 4-hydroxycarbaryl. The production of carbaryl methylol was primarily the result of metabolism by CYP2B6. Differential activities toward carbaryl were observed among five selected individual HLM samples with the largest difference occurring in the production of carbaryl methylol. Co-incubations of carbaryl and chlorpyrifos in HLM greatly inhibited carbaryl metabolism. The ability of HLM to metabolize carbaryl was also reduced by pre-incubation of HLM with chlorpyrifos. Chlorpyrifos inhibited the generation of carbaryl methylol, catalyzed predominately by CYP2B6, more than other pathways, correlating with an earlier observation that chlorpyrifos is metabolized to its oxon primarily by CYP2B6. Therefore, carbaryl metabolism in humans and its interaction with other chemicals is reflected by the concentration of CYP isoforms in HLM and their activities in the metabolic pathways for carbaryl. (Supported by NCDA Environmental Trust Fund)  相似文献   
937.
938.
Photorhabdus temperata is a bioluminescent bacterium that lives in mutualistic association with entomopathogenic nematodes of the genus Heterorhabditis. The bacterium exists in two morphologically distinguishable phases (primary and secondary). The swimming behavior of P. temperata was investigated. Both the primary and secondary variants were able to swim in liquid or semisolid media under appropriate conditions. Variation in the oxygen levels had little affect on the chemotaxis and motility of the primary form, but greatly influenced the behavior of the secondary form. Under oxic conditions the secondary form was nonmotile, but motility was induced under anoxic conditions. Several phenotypic traits of the primary form were not expressed under anoxic conditions. The constituents of the growth media affected the motility of both variants. P. temperata required additional NaCl or KCl for optimum motility and chemotaxis. Optimal chemotactic behavior required the presence of bacto-peptone and yeast extract in the swim-migration medium. A mutant that was isolated from the secondary form was able to swim under oxic conditions and possessed an altered salt requirement for motility.  相似文献   
939.
In the estuarine amphipod Chaetogammarus marinus, differences in O(2) binding by haemocyanins (Hc) could be related to natural and salinity-related quantitative variation in just one polypeptide subunit (band 2) and not to variations in any of the other seven bands present. Band 2 was always present, irrespective of salinity treatment, and naturally makes up 6%-36% of the total Hc. However, low salinity exposure (S=4 per thousand for 48-49 h, T=15 degrees C) was accompanied by an increase in the prevalence of greater concentrations of band 2 (i.e., range, 20%-36% of total Hc present) and a concomitant increase in Hc-O(2) affinity (half saturation [P(50)] decreased from 1.38 to 1.12 kPa at pH=7.81, T=15 degrees C). A similar salinity-related mechanism (that is, one band altering) has been shown previously for the blue crab Callinectes sapidus, although the functional consequences were different. In contrast with C. marinus, an increase in the proportion of one polypeptide subunit in C. sapidus resulted in a decrease in Hc-O(2) affinity. This study has confirmed that between-individual variation (quantitative rather than qualitative) in just one Hc subunit may have functional consequences, although the significance of such variation is difficult to interpret.  相似文献   
940.
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