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[The action of interferon and reaferon on the functional activity of human thrombocytes].

The functional activity of thrombocytes (aggregation, endo- and exocytosis) and erythrocytes (aggregation) in healthy persons given a course of interferon or reaferon treatment has been studied. The results obtained in this study indicate that these preparations produce a modulating effect on the functions of thrombocytes and erythrocytes of donors having shown abnormal functional activity of these blood cells prior to the course of treatment.

Adenosine Diphosphate↗

Effects of anesthesia on functional activation of cerebral blood flow and metabolism.

Functional brain mapping based on changes in local cerebral blood flow (lCBF) or glucose utilization (lCMR(glc)) induced by functional activation is generally carried out in animals under anesthesia, usually alpha-chloralose because of its lesser effects on cardiovascular, respiratory, and reflex functions. Results of studies on the role of nitric oxide (NO) in the mechanism of functional activation of lCBF have differed in unanesthetized and anesthetized animals. NO synthase inhibition markedly attenuates or eliminates the lCBF responses in anesthetized animals but not in unanesthetized animals. The present study examines in conscious rats and rats anesthetized with alpha-chloralose the effects of vibrissal stimulation on lCMR(glc) and lCBF in the whisker-to-barrel cortex pathway and on the effects of NO synthase inhibition with N(G)-nitro-L-arginine methyl ester (L-NAME) on the magnitude of the responses. Anesthesia markedly reduced the lCBF and lCMR(glc) responses in the ventral posteromedial thalamic nucleus and barrel cortex but not in the spinal and principal trigeminal nuclei. L-NAME did not alter the lCBF responses in any of the structures of the pathway in the unanesthetized rats and also not in the trigeminal nuclei of the anesthetized rats. In the thalamus and sensory cortex of the anesthetized rats, where the lCBF responses to stimulation had already been drastically diminished by the anesthesia, L-NAME treatment resulted in loss of statistically significant activation of lCBF by vibrissal stimulation. These results indicate that NO does not mediate functional activation of lCBF under physiological conditions.

Anesthesia, General↗

Estrogen receptor activation function 1 works by binding p160 coactivator proteins.

Estrogen receptor-alpha contains two transactivation functions, a weak constitutive activation function (AF-1) and a hormone-dependent activation function (AF-2). AF-2 works by recruiting a large coactivator complex, composed of one or more p160s, CREB-binding protein (CBP)/p300, and P/CAF (p300 and CBP-associated factor), via direct contacts with the p160s. We report here that independent AF-1 activity also requires p160 contacts. Unlike AF-2, which binds signature NR boxes in the center of the p160 molecule, AF-1 binds to sequences near the p160 C terminus. We propose that the ability of AF-1 and AF-2 to interact with separate surfaces of the same coactivator is important for the ability of these transactivation functions to synergize.

Acetyltransferases↗

[Effect of increased functional activity on the contractile function of skeletal muscle].

The adaptation of rats to the exercise program the intensity of which corresponded to metabolic power output of 190% VO2max, did not produce any significant changes in Mg2+ and Ca2+ activated ATPase activity in the different types of skeletal muscle fibers. The increase in the cross-sectional area of glycolytic muscle fibers was due to the hypertrophy of all cellular structures, especially the srcoplasmic reticulum. The sytochrome aa3 concentration increased by 23%. The submaximal exercise program (130% VO2max) elicited a significant elevation of Mg2+ activated actomyosin ATPase activity in the oxydative-glycolytic muscles and a decrease of the latter enzyme activity in glycolytic muscles. The endurance exercise (70% VO2max) caused a small decrease in Mg2+ activated actomyosin ATPase activity in the oxydative-glycolytic muscles and an increase in the oxydative ones. The character of the adaptive response of the actomyosin ATPase in different types of skeletal muscle fibers depends on the intensity and duration of the running program.

Actomyosin↗

[Method of evaluating the functional activity of viral antigens].

A method for evaluation of the functional activity of viral antigens in their interaction with antibodies, has been developed. The proposed index of the functional activity is the quantitative characteristic of the neutralization process as a whole. The results obtained with this method correspond to those of the seroepidemiologic test: the diagnostic agents prepared from tick-borne encephalitis virus strains and clones, known as functionally active, showed greater activity in comparison with the reference strain. The proposed method can be used for the determination of the functional activity of viral antigens in different serologic tests.

Antibodies, Viral↗

Heme-Cu complexes as oxygen-activating functional models for the active site of cytochrome c oxidase.

Tri(2-pyridylmethyl)amineCu complex-linked iron meso-tetraphenylporphyine derivatives were prepared to model the active site of cytochrome c oxidase. Exposure to oxygen converted the reduced forms of the complexes to the corresponding stable mu-peroxo species in spite of the presence of three coordination sites, two on the heme and one on the Cu. The oxy forms were characterized spectroscopically. Kinetic analyses of the oxygenation reactions of the reduced forms suggests that preferential O2 binding occurs at the Cu site over the heme. This mechanism is also supported by examination of the redox potentials of the two metal ions. Since the peroxy complexes of the models exhibit a structure similar to that of the previously reported fully-oxidized form, the relevance of the model chemistry to the enzyme reaction is discussed.

Binding Sites↗

Local cerebral energy metabolism: its relationship to local functional activity and blood flow.

The results of studies with the (14C)deoxyglucose technique unequivocally establish that local energy metabolism in cerebral tissues is, as in other tissues, closely coupled to local functional activity. Stimulation of local functional activity increases the local rate of glucose utilization; reduced functional activity depresses it. Local cerebral blood flow is normally distributed among the cerebral structures in almost exact proportion to their rates of glucose utilization and changes together with local glucose consumption in response to altered local functional activity. These results demonstrate that the level of functional activity in the structural and functional components of the central nervous syetem regulates the local rate of energy metabolism, and local blood flow is adjusted to the local metabolic demand.

Animals↗

Effects of CAMPATH-1 antibodies on the functional activity of monocytes and polymorphonuclear neutrophils.

The rat antihuman lymphocyte monoclonal antibodies CAMPATH-1M and CAMPATH-1G (IgM kappa and IgG2b kappa, respectively) recognize cell surface antigens (CDW52) present on normal T and B lymphocytes as well as on monocytes, with weak expression on neutrophils. In previous studies, when peripheral blood mononuclear cells were treated with CAMPATH-1M and human complement, more than 99% of lymphocytes were killed. The present study indicates that both CAMPATH-1M and -1G bind to peripheral blood neutrophils and monocytes and do not affect the activity of the former cells but decrease the functional activity of monocytes. Decreased functional activity includes suppressed superoxide production by monocytes in response to phorbol myristate acetate (PMA), reduced activation of the cells as indicated by decreased ability to reduce 3-(4.5-dimethylthiazol-2-yl)-2.5 diphenyl-tetrazolium bromide (MTT), reduced tumoricidal activity, and reduced capability to kill Candida albicans. The ability of CAMPATH-1 to suppress the functional activity of monocytes in vitro suggests that in vivo administration of CAMPATH-1G may also affect the function of monocytes.

Alemtuzumab↗

Evidence for roles of the activating function in electric stimulation.

The hypothesis that the activating function drives transmembrane voltage changes (delta Vm) has been tested in hearts. Optical delta Vm were measured during activating functions produced with nonuniform and uniform transparent electrodes. When a nonuniform electrode was used to produce [equation: see text], the signs of delta Vm and [equation: see text] matched. The extracellular voltage gradients, often assumed important, did not predict delta Vm. When a uniform electrode was used to eliminate [equation: see text], the signs of delta Vm matched the signs of [equation: see text] estimated from variations in heart width. Demonstration of the activating function as a determinant of stimulation may improve research and therapy that use electric stimulation.

Animals↗

Relationships among local functional activity, energy metabolism, and blood flow in the central nervous system.

The results of studies with the [14C]deoxyglucose technique establish that local energy metabolism in cerebral tissues is, as in other tissues, closely coupled to local functional activity. Stimulation of local functional activity increases the local rate of glucose utilization; reduced functional activity depresses it. Local cerebral blood flow is normally distributed among the cerebral structures in almost exact proportion to their rates of glucose utilization and changes together with local glucose consumption in response to altered local functional activity. These results demonstrate that the level of functional activity in the structural and functional components of the central nervous system regulates the local rate of energy metabolism, and local blood flow is adjusted to the local metabolic demand.

Animals↗

Local cerebral energy metabolism: its relationships to local functional activity and blood flow.

The results of studies with the [14C] deoxyglucose technique unequivocally establish that local functional activity in cerebral tissues is, as in other tissues, closely coupled to the local rate of energy metabolism. Stimulation of local functional activity increases the local rate of glucose utilization; reduced functional activity depresses it. Local cerebral blood flow is normally distributed among the cerebral structures in almost exact proportion to their rates of glucose utilization and it changes together with local glucose consumption in response to altered local functional activity. These results demonstrate that the level of functional activity in the structural and functional components of the central nervous system regulates the local rate of energy metabolism, and local blood flow is adjusted to the local metabolic demand.

Animals↗

Effect of long-term exposure to ozone on functional activity of human phagocytes.

Functional activity (biocidal properties) of whole blood phagocytes from humans exposed to ozone was studied by measuring spontaneous and zymosan-induced luminol-dependent chemiluminescence. Generation of reactive oxygen species and biocidal properties of phagocytes depended on the time of ozone exposure and development of bronchopulmonary diseases. The data suggest that generation of reactive oxygen species must be assayed for elaboration of individual patient management programs.

Adult↗

Measurement of functional activities in older adults in the community.

Two measures of social function designed for community studies of normal aging and mild senile dementia were evaluated in 195 older adults who underwent neurological, cognitive, and affective assessment. An examining and a reviewing neurologist and a neurologically trained nurse independently rated each on a Scale of Functional Capacity. Interrater reliability was high (examining vs. reviewing neurologist, r = .97; examining neurologist vs. nurse, tau b = .802; p less than .001 for both comparisons). Estimates correlated well with an established measure of social function and with results of cognitive tests. Alternate informants evaluated participants on the Functional Activities Questionnaire and the Instrumental Activities of Daily Living Scale. The Functional Activities Questionnaire was superior to the Instrumental Activities of Daily scores. Used alone as a diagnostic tool, the Functional Activities Questionnaire was more sensitive than distinguishing between normal and demented individuals.

Activities of Daily Living↗

[Hemoglobin functional activity in smokers].

Production, heterogeneity and functional activity of hemoglobin were studied in 60 practically healthy young smokers depending on the length of smoking. Those smoking under 5 years showed an increase of oxygen capacitance of the blood which is a response reaction to hypoxia; those smoking for 6-10 years showed changes of these values that may be interpreted as an adaptation reaction to chronic hypoxia. The functional activity of hemoglobin was reduced.

2,3-Diphosphoglycerate↗

[Characteristics of monocyte functional activity in acute viral hepatitis].

The functional activity of monocytes in acute viral hepatitis has been studied. As revealed by the NBT test, circulating monocytes are damaged by viruses and/or virus-containing complexes. Proceeding from this fact, the percentage of monocytes containing virus inclusions should be considered as the percentage of monocytes damaged by the virus, and the coefficient of the inclusion of viral particles should be considered as the quantitative characteristic of the viral damage of monocytes. The decrease of the percentage of functionally active monocytes creates suitable conditions for the persistence of the virus in monocytes and for the disease to become chronic.

Acute Disease↗

Native versus recombinant high-mobility group B1 proteins: functional activity in vitro.

To compare the functional activity of native HMGB1 proteins from eukaryotic sources with HMGB1 from prokaryotic sources the cDNAs of human and murine HMGB1 were cloned and the proteins expressed in bacteria. Tissue-derived HMGB1 from calf thymus and HMGB1 secreted from Chinese hamster ovary (CHO) cells were purified. Human whole blood, THP-1 cells, and NIH/3T3 cells were exposed to HMGB1 proteins and the induction of tumor necrosis factor-alpha (TNF-alpha) release in whole blood and monocytic THP-1 cells and a proliferation assay in NIH/3T3 cells were used to study functional activity of HMGB1s in vitro. Native and recombinant HMGB1s induced TNF-alpha release in human blood and in THP-1 cells dose-dependently, but recombinant HMGB1s were more effective. Cell proliferation was induced by native and recombinant HMGB1s. The native HMGB1 proteins from eukaryotic sources exert the same (though less pronounced) biological activity in vitro as recombinant HMGB1 proteins from prokaryotic sources.

Amino Acid Sequence↗