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[Analysis of motifs of functional MDG2 sites in assuring its possible molecular functions].

We analyzed the location and possible interaction of motifs of functional sites in a DNA sequence of MDG2 (Dm412) revealed by means of computer context analysis. It was shown that motifs of functional sites in the appropriate location can ensure the basic molecular functions of MDG2: expression of its ORF, transcription, induction of transposition, modification of adjacent genes and polygenes, etc. MDG2 ILTR does not contain the NTCAGTYN motif required for initiation of transcription by RNA polymerase II in the absence of the TATA box and located close to the transcription start site in most gypsy-like retrotransposons of Drosophila. Therefore, MDG2 ILTR appears to contain the classic promoter region for RNA polymerase II, contrary to other retrotransposons of the gypsy group. Enhancers of mobile genetic elements are assumed to determine modification of adjacent genes and polygenes. Excisions and transpositions of mobile elements seem to be induced by external stress factors or physiological factors through a heat-shock system.

Enhancer Elements, Genetic↗

[Theory and clinical application of functional MRI: 3D-functional brain mapping].

Functional magnetic resonance imaging (fMRI) was performed using a clinical 1.5 T MR scanner. Normal volunteers and patients with several neurological disorders were studied with somatosensory stimulation using sponge at right hand and visual stimulation using checkerboard pattern. Both fMR images by gradient echo echo planar imaging and three dimensional gradient echo images were studied. Reconstructed 3 dimensional functional brain mapping was superimposed on 3D anatomical images. Apparent signal increase was observed at contra lateral sensorimotor cortex and secondary sensory cortex with sponge stimulation. In the case of left homonymous hemianopia due to cerebral infarction, increasing signal was only observed surrounding left calcarine fissure by using stimulation of all visual field. In conclusion, fMRI and 3-D functional brain mapping has extremely high potentiality to examine pathophysiology of various neurological disorders.

Brain↗

Characterization of functional chemokine receptors (CCR1 and CCR2) on EoL-3 cells: a model system to examine the role of chemokines in cell function.

A growing family of proteins, known as the chemokines, play an important role in the recruitment and activation of inflammatory cells. The purpose of these studies was to characterize the chemokine receptors present on human sodium butyrate differentiated EoL-3 cells (dEoL-3 cells). Using a combination of 3' rapid amplification of cDNA ends and nested polymerase chain reaction, we detected mRNA for CC chemokine receptor (CCR)1, CCR2, CCR3 and low level of CCR5. Radioligand binding studies demonstrated high-affinity saturable binding for both 125I-macrophage inflammatory protein (MIP)-1alpha and 125I-regulated upon activation normal T cell expressed and secreted (RANTES) with Kd values of 1.4 and 7 nM, respectively. Competition binding with chemokines demonstrated exactly the same rank order of potency for displacement of both ligands: MIP-1alpha approximately monocyte chemoattractant protein (MCP)-3 approximately RANTES > MIP-1beta >> MCP-1 >>> IL-8. RANTES, MCP-3 and MIP-1alpha all produced concentration-dependent transient increases in intracellular calcium concentrations in dEoL-3 cells. Desensitization studies indicated that RANTES, MIP-1alpha and MCP-3 interacted at the same receptor, which is identical in characterization to the cloned CCR1. 125I-MCP-1 also demonstrated high-affinity satuable binding to dEoL-3 cells with a Kd value of 0.4 nM. Competition studies showed that MCP-3 was slightly more potent than MCP-1 and MCP-2. MIP-1alpha, MIP-1beta and RANTES were unable to displace 125I-MCP-1. Addition of either MCP-1 or MCP-3 produced a concentration-dependent elevation of intracellular calcium with a maximun response 2-fold higher than that seen with RANTES or MIP-1alpha. Desensitization studies indicated that MCP-1 and MCP-3 function through CCR2 on these cells. Thus binding and functional studies indicate that dEoL-3 cells express functional CCR1 and CCR2 and that these cells may serve as an important system with which to study the regulation and role of these receptors.

Chemokine CCL2↗

[Evaluation of sweating function, changes in heart function and postural blood pressure in patients with multiple sclerosis].

The aim of the study was electrophysiologic assessment of sudomotor function and some aspects of cardiovascular system function in patients with multiple sclerosis and an attempt of referring assessed variables to duration of the disease and EDSS score. The study included 24 patients with clinically definite, relapsing-remitting multiple sclerosis and 22 healthy, age-matched controls. Autonomic functions were evaluated by means of clinical examination, heart rate variability tests, measures of blood pressure in supine and standing position and skin sympathetic response examination. Clinical symptoms in patients with multiple sclerosis were scarce. Electrophysiologic tests showed no abnormalities in heart rate variability and blood pressure response to standing in studied group. The majority of patients presented with subclinical dysfunction of sudomotor system, indicated by an abnormal sympathetic skin response, which did not correlate with duration of the disease or EDSS score. Sympathetic skin response examination proved to be a sensitive indicator of autonomic disturbances in patients with multiple sclerosis.

Adult↗

Functional imaging: heterogeneity in task strategy and functional anatomy and the case for individual analysis.

To learn more about the functional anatomy of language, the authors used [99mTc]HMPAO single photon emission computed tomography (SPECT) functional imaging to study nonword rhyming, lexical-semantics and syntax. The authors did not find any task-related differences in cerebral blood flow using region-by-region analysis of variance. This led them to examine individual subject's task-related patterns of cerebral blood flow. This analysis revealed regions of interest with little or no change but also regions with changes as great as 30%. There was marked subject-to-subject variability in the pattern of blood flow, which precluded statistically significant results using analysis of variance. An alternative analytic strategy based on numbers of subjects exceeding a minimum threshold task-related change in cerebral blood flow was tested and shows promise in identifying commonalities and differences in individual task-related blood flow patterns. The authors conclude that the complex and difficult to interpret pattern of blood flow changes observed in this study reflect in considerable part the combined effects of variability in task strategy, owing in part to insufficiently constrained task performance, and variability in functional anatomy. The authors also tested the differences in results achieved with simple normalization and analysis of covariance approaches and found them to be insignificant.

Adult↗

Gliding function following flexor-tendon injury. A biomechanical study of rat tendon function.

Gliding function of flexor tendons one hour to eight weeks after a standard injury was studied in rat digits by determining terminal force of flexion, tendon excursion, and work of flexion using a tensile testing machine. A rapid decrease in gliding occurred within hours of injury, indicating that the postoperative hematoma and edema restrict gliding long before collagenous adhesions are synthesized. The improvement in gliding function with time implies that fibrous adhesions can be remodeled. Surgical methods and therapeutic agents, therefore, should be directed toward limiting early tissue injury and seeking ways to enhance the late remodeling of fibrous peritendinous adhesions along functional lines.

Animals↗

Characterization of functional, radiologic and lung function recovery post-treatment of hot tub lung. A case report and review of the literature.

Hot tub lung is described as an acute pulmonary illness that is characterized by fever, dyspnea and interstitial nodular infiltrates. Although not entirely clear, the etiology may be a hypersensitivity pneumonitis, an infection secondary to Mycobacterium avium intracellulare (MAC), or possibly both. Herein we describe the most well-characterized physiologic, radiographic, and functional recovery from hot tub lung reported in the literature to date. Pulmonary function testing and CT scans of the chest were obtained after each therapeutic intervention, and the patient had the most dramatic improvement with simply avoiding the hot tub. Prednisone therapy offered minimal further improvement while anti-MAC therapy provided no further improvement. These results are suggestive of a hypersensitivity pneumonitis rather than an infectious etiology.

Alveolitis, Extrinsic Allergic↗

Development of an acute burn model in adult mice for studies of cardiac function and cardiomyocyte cellular function.

The increasing availability of mice with gene supplementation (transgenic), site-specific inactivation mutations (gene "knock-outs"), or site-specific genetic modification mutations (gene "knock-ins") has spurred interest in the development of murine trauma models. In this study, C57 BL/6 mice (28 g) were given a cutaneous burn over 40% total body surface area by applying brass probes (1 x 2 x 0.003 cm) heated to 100 degrees C in boiling water to the animals side and back for 5 s. Shams received anesthesia alone and not burn. Mice were killed 24 h post-burn to determine presence of partial-thickness or full-thickness burn injury, cardiac contractile function (Langendorff perfusion, n = 7 or 8 mice/group) or to examine cardiac myocyte cytokine secretion in isolated cardiomyocytes (collagenase perfusion, n = 4 or 5 mice/group). All mice were killed 24 h post-burn for subsequent cardiac or cardiomyocyte studies. Our studies confirm that this murine model of burn trauma produced mixed partial- or full-thickness burn injury, whereas there was no necrosis or inflammation in sham burn mice. Baseline hematocrits were similar in all mice (44+/-1) but decreased after burn trauma (37+/-1), likely because of the volume of fluid resuscitation and hemodilution. Burn trauma impaired cardiac contraction and relaxation as indicated by the lower left ventricular pressure (LVP) measured in burn (56+/-4) compared to that measured in shams (84+/-1 mmHg, P < 0.001), a lower rate of LVP rise (+dP/dt max, 1393+/-10 vs. 2000+/-41 mmHg/s, P < 0.002), and reduced LVP fall (-dP/dt max, 1023 - 40 vs. 1550+/-50, P < 0.001). These differences occurred despite similar coronary perfusion pressures and heart rates in both sham and burn mice. Ventricular function curves were shifted downward in the burn mice in the direction of contractile failure; in addition, hearts from burn mice had reduced LVP and +dP/dt responses to increases in coronary flow rate, increases in perfusate Ca2+, and to isoproterenol challenge (P < 0.05). Burn trauma promoted cardiac myocyte secretion of tumor necrosis factor (TNFalpha) (175+/-6 pg/mL) compared to that measured in shams (72+/-9 pg/mL, P < 0.05); burn trauma also increased cardiac myocyte secretion of interleukin 1beta (IL-1beta) (sham: 2+/-0.5; burn: 22+/-1 pg/mL, P < 0.05) and IL-6 (sham: 70+/-6; burn: 148+/-16 pg/mL, P < 0.05). Anti-TNFalpha strategies prevented burn-mediated cardiac contractile deficits. Burn trauma altered Ca2+ homeostasis in murine cardiomyocytes (Fura-2 AM loading). [Ca2+]i in myocytes from burns (185+/-4 nM) was higher than values measured in myocytes from shams (86+/-nM, P < 0.05). These data confirm that the murine burn model provides a reasonable approach to study the molecular and cell biology of inflammation in organ dysfunction after burn trauma.

Animals↗

Is functional capacity related to left atrial contractile function in nonobstructive hypertrophic cardiomyopathy?

The mechanisms underlying reduced exercise capacity in patients with nonobstructive hypertrophic cardiomyopathy (NHCM) could include perturbations of ventricular relaxation, diastolic compliance, or compensatory atrial systolic function. We hypothesized that a loss of atrial contractility in NHCM patients leads to reduced functional capacity. To test this hypothesis, we compared resting noninvasive left atrial ejection phase indices in 49 consecutive patients with NHCM (ages 36+/-10 years; 41% female) and normal left ventricular ejection fraction (mean, 68%+/-8%) with objective metabolic exercise parameters. Left atrial active emptying fraction, ejection force, and kinetic energy failed to predict exercise capacity. Only left atrial total and active emptying volumes correlated weakly with minute volume/CO2 production slope (r=0.31 and r=0.33; p<0.05 for both). Furthermore, when subjects were stratified by New York Heart Association symptomatology, exercise parameters--but not atrial contractility--differed between groups. These data, obtained at rest, fail to suggest that NHCM-related heart failure symptoms are due to an atrial myopathy.

Adult↗

Combined anterior pituitary function test using CRH, GRH, LH-RH, TRH and vasopressin in patients with non-functioning pituitary tumors.

We examined 8 normal subjects and 16 patients with non-functioning pituitary tumors with a combined anterior pituitary test to evaluate the clinical usefulness of the test. Diagnoses included 9 of chromophobe adenoma, 3 of craniopharyngioma, 2 of Rathke's cleft cyst, and 1 each of intrasellar cyst and tuberculum sella meningioma. All subjects received hypothalamic releasing hormones: 1 micrograms/kg corticotropin releasing hormone (CRH), 1 micrograms/kg growth hormone releasing hormone (GRH), 500 micrograms thyrotropin-releasing hormone (TRH), 100 micrograms luteinizing hormone releasing hormone (LH-RH), and a relatively small dose (5 mU/kg) of lysine vasopressin (LVP). In the normal subjects, the addition of LVP potentiated the secretion of adenocorticotropic hormone (ACTH) induced by CRH, but had no significant effect on the secretion of other anterior pituitary hormones. In the combined test with 5 releasing hormones, the plasma ACTH and cortisol responses were not impaired in the majority of the patients before pituitary surgery. Serum thyroid-stimulating hormone (TSH), prolactin (PRL) and follicle-stimulating hormone (FSH) responses were not impaired in 82%, 70% and 67% of the patients, respectively, while the serum LH and GH responses were impaired in 67% and 73% of the patients, respectively. Following pituitary surgery, responses of these hormones to combined testing were similarly impaired in more than 75% of the patients. These results indicate that plasma ACTH, cortisol and serum TSH responses are fairly good before pituitary surgery but are impaired significantly after surgery. No subjects experienced any serious adverse effects related to the testing. These results suggest that combined testing with hypothalamic hormones is a convenient and useful method for evaluating pituitary function.

Adult↗

Correlation of changes in blood chemistry with pathological changes in the animal's body: II Electrolytes, kidney function tests, serum enzymes, and liver function tests.

The numerous physiological and nutritional factors which influence the concentration of serum calcium are considered. The causes of hypercalcaemia and hypocalcaemia are briefly discussed, with particular reference to the clinical symptoms and pathology. The effect of the acid-base status on the serum-ionized calcium level is stressed. The causes of changes in the serum concentrations of phosphorus and magnesium are briefly reviewed, along with the abnormalities of lactate, pyruvate, and hydrogen ion concentrations. The kidney function tests, blood urea nitrogen, serum creatinine, and the renal clearance tests are discussed, with emphasis placed on correlating their results with the findings from repeated urinalyses. The important physiologic influences and pathological processes which result in changes in the concentrations of these parameters are delineated. The causes of increases in the serum enzymes, alkaline phosphatase, alanine transaminase, asparate transaminase, lactic dehydrogenase, sorbitol dehydrogenase, glutamic dehydrogenase, gamma glutamyl transpeptidase, creatinine phosphokinase, amylase and lipase are discussed. The changes in serum bilirubin concentration and its components are fully described, with emphasis placed on the correlation of the findings with urinalysis data and the complexities resulting from the numerous pathologic conditions causing jaundice. These conditions are listed for each of the domestic animals. The other liver function tests, bromosulphthalein dye retention or excretion, serum uric acid and blood ammonia concentration are briefly considered. All the tests described are very useful, and frequently essential, in aiding the veterinary practitioner to arrive at a diagnosis and prognosis, but they never replace clinical acumen.

Animals↗

[The comparison of left and right heart function with lung function in patients with rheumatic valvar heart disease].

According to the characteristics of changes of heart and lung function at different stages 25 patients with rheumatic valvar heart disease could be classified into three stages: 1. The stage of normal lung ventilation and volumes; 2. Stage of obstructive ventilatory function; 3. The stage of mixed ventilatory defects associated with right heart failure. As pulmonary artery pressure increased right ventricle work became elevated and left ventricle work decreased. There was an inverse correlation of vital capacity with per minute work of right ventricle.

Adult↗

Effects of monoclonal antibodies to the alpha and beta chains of the human lymphocyte function-associated (H-LFA-1) antigen on T lymphocyte functions.

The ability of two antibodies, one specific for the alpha chain, p180, and the other for the beta chain, p95, of the human lymphocyte function-associated (LFA-1) antigens, to inhibit T cell function was measured. Both antibodies inhibited T cell-mediated lysis of virus-infected target cells and of K562 cells. Only the anti-beta chain antibody inhibited natural killer cell lysis of K562. The antibodies inhibited cytotoxic T lymphocyte cell (CTL) lysis of HLA-mismatched target cells in the presence of concanavalin A at 6.25-12.5 micrograms/ml, but at higher doses of Con A no inhibition was seen. When the lytic process was divided into calcium-independent (adherence) and -dependent (lysis) steps the antibodies were found to block at the initial step of conjugate formation. The effects of these antibodies on T cell proliferative responses showed that responses to antigens, alloantigens, mitogens and anti-CD3 (UCHT1) antibody were greatly inhibited. All of these responses are adherent cell dependent and proliferation of adherent cell-depleted mononuclear cells to Sepharose-coupled UCHT1 was not inhibited by anti-LFA-1 antibodies. Proliferation to paired anti-CD2 (T11) antibodies was also only weakly inhibited. Release of interferon-gamma by CTL on contact with target cells was also inhibited by anti-LFA antibody. These results are evidence that the LFA antigen is necessary for a nonspecific interaction with antigen-presenting cells that is essential for activation of T cells through the CD3-T cell receptor complex.

Antibodies, Monoclonal↗

Temporary innervation of a primary coverage muscle: a new technique to optimize function in a subsequent functional microvascular muscle transplant.

The author describes the simple technique of innervating the coverage muscle in the staged reconstruction of an upper-extremity crush-avulsion injury with a functional microvascular muscle transplant (FMMT). The thoracodorsal nerve was repaired to the mixed motor-sensory radial nerve above the elbow. Contraction of the latissimus muscle at 8 months after nerve repair signaled the adequacy of the 10-cm thoracodorsal nerve graft as a target motor nerve for the eventual FMMT. Excursion of the latissimus muscle created a septo-alveolar plane similar to the plane between two healthy muscles into which the FMMT could be placed. The author also discusses the potential advantages of early thoracodorsal nerve repair for successful nerve regeneration. This simple technique helped overcome the potential limitations to functional muscle transplantation in the severely traumatized upper extremity, and deserves applied study.

Adult↗

Functional localization of a "Time Keeper" function separate from attentional resources and task strategy.

The functional neuroanatomy of time estimation has not been well-documented. This research investigated the fMRI measured brain response to an explicit, prospective time interval production (TIP) task. The study tested for the presence of brain activity reflecting a primary time keeper function, distinct from the brain systems involved either in conscious strategies to monitor time or attentional resource and other cognitive processes to accomplish the task. In the TIP task participants were given a time interval and asked to indicate when it elapsed. Two control tasks (counting forwards, backwards) were administered, in addition to a dual task format of the TIP task. Whole brain images were collected at 1.5 Tesla. Analyses (n = 6) yielded a statistical parametric map (SPM ¿z¿) reflecting time keeping and not strategy (counting, number manipulation) or attention resource utilization. Additional SPM ¿z¿s involving activation associated with the accuracy and magnitude the of time estimation response are presented. Results revealed lateral cerebellar and inferior temporal lobe activation were associated with primary time keeping. Behavioral data provided evidence that the procedures for the explicit time judgements did not occur automatically and utilized controlled processes. Activation sites associated with accuracy, magnitude, and the dual task provided indications of the other structures involved in time estimation that implemented task components related to controlled processing. The data are consistent with prior proposals that the cerebellum is a repository of codes for time processing, but also implicate temporal lobe structures for this type of time estimation task.

Adult↗

Absence of complement receptor type 3 and lymphocyte function antigen 1 causing deficient phagocyte and lymphocyte functions.

We describe a patient with delayed umbilical cord detachment, recurrent bacterial infections, and inability to form pus, despite persistent leucocytosis. Immunofluorescence studies with specific monoclonal antibodies showed a severe deficiency in the expression of alpha-chains of the receptor for the C3bi fragment of C3, complement receptor type 3, and the lymphocyte function antigen 1 molecule, found on neutrophil, monocyte and lymphocyte membranes. These membrane antigen defects were responsible for abnormalities in adhesive cell functions. Polymorphonuclear leucocytes demonstrated a markedly reduced chemiluminescence response as well as an impaired nitroblue tetrazolium test and superoxide generation to a particulate stimulus (zymosan), while the responses to a soluble stimulus (phorbol myristate acetate) were normal. In addition, random migration und chemotactic response to zymosan-activated serum were impaired. The lymphocytes demonstrated abolished natural killer cell cytotoxicity as well as abnormal humoral immunity and a lack of antibody response to pertussis and tetanus antigens.

Antigens, Differentiation↗

Response of right ventricular systolic function to exercise stress: effects of pulmonary vascular resistance on right ventricular systolic function.

To elucidate factors influencing responses of right ventricular systolic function to exercise stress, we evaluated the right ventricular ejection fraction and peak ejection rate with two different loading conditions, atrial septal defect and mitral stenosis, at rest and during exercise by means of gated equilibrium blood pool radionuclide ventriculography. In both atrial septal defect and mitral stenosis, strong correlations between changes in the right ventricular ejection fraction with exercise and pulmonary vascular resistance at rest (r = -0.97, p < 0.001; r = -0.86, p < 0.005: respectively) were found. Significant correlations between changes in the right ventricular peak ejection rate with exercise and pulmonary vascular resistance at rest (r = -0.85, p < 0.05; r = -0.75, p < 0.01: respectively) were found in atrial septal defect and mitral stenosis. Both the right ventricular ejection fraction and peak ejection rate were lower during exercise than at rest when pulmonary vascular resistance at rest was more than 200 dynes.sec.cm-5.m2 in both atrial septal defect and mitral stenosis. In conclusion, right ventricular systolic function responding to exercise stress was influenced by the pulmonary vascular resistance in both atrial septal defect and mitral stenosis.

Adult↗