Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “modulators”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,009 records · Page 56Linked to original sources

Mechanisms of human CD5 modulation and capping induced by murine monoclonal antibody T101.

We have previously demonstrated that the murine monoclonal antibody T101 induces antigenic modulation when infused into patients with chronic lymphocytic leukemia and cutaneous T-cell lymphoma. In this paper, we extend our studies of T101-induced modulation and compare it to T101-induced capping. We found that, in contrast to antigenic modulation, capping occurred only in the presence of secondary anti-mouse IgG antisera and was altered by drugs that affect the cellular cytoskeleton or energy metabolism. F(ab')2 fragments of T101 induced antigenic modulation with kinetics similar to those of intact T101, but Fab-induced modulation proceeded more slowly and required the continual presence of Fab throughout the incubation. Experiments with radioiodinated T101 demonstrated that initial internalization of the antibody is followed by rapid efflux of intact, immunoreactive T101 from the cells. These data indicate important differences between capping and modulation and suggest that these two phenomena proceed by different mechanisms. More importantly, the data have implications for the potential therapeutic use of monoclonal antibody immunoconjugates.

Antibodies, Monoclonal↗

Inhibition, by vinca alkaloids and colchicine, of antigenic modulation induced by anti-CD19 monoclonal antibodies.

Several clinical trials have been reported in which monoclonal antibodies (McAb) were used for therapy of lymphoid malignancies. Such trials have shown that infusion of McAb recognizing lymphoid antigens, is well-tolerated, and leads to the coating of tumor cells and tumor regression in some patients. However, the tumoricidal capacity of a McAb is hampered by the presence of circulating free antigen, antigenic modulation, development of human anti-mouse antibodies, emergence of antigen-negative variants of tumor cells and the inadequacy of host-effector cell mechanisms. We have studied the antigenic modulation induced by immunoglobulin (Ig) heavy chain switch variants of anti-CD19 McAb. Modulation of CD19 molecules was not related to the IgG subclass of the McAb. Immunofluorescence studies on the Burkitt tumor cell line Daudi showed that CD19 molecules are internalized after incubation by anti-CD19 McAb. Next, the effect of cytoskeleton inhibitors on antigenic modulation was studied. We found that antigenic modulation on Daudi cells and on an Epstein-Barr virus-transformed B-cell line was completely inhibited by vinca alkaloids (VA) or by colchicine. Interestingly, antigenic modulation of tumor cells from a VA-resistant patient, was not inhibited by VA or colchicine. These findings provide information for the rational design of more effective clinical trials with McAb.

Antibodies, Monoclonal↗

Discharge pattern of neurons in the nucleus tractus solitarii (NTS): its cardiac rhythm is modulated by firing rate of the neurons.

In the nucleus tractus solitarii (NTS) neurons discharge in relation to cardiac rhythm. This cardiac rhythm exhibits various patterns designated as CRDPs (cardiac rhythmic discharge patterns). The CRDPs are estimated by post-event-time histograms (PETH) triggered by the R-waves of the ECG. Modulations of CRDPs appear as changes in the number and height of peaks in the PETHs. The amount of basic activity, which is not related to the cardiac cycle, alters CRDP. PETHs constructed during various phases of respiration reveal modulations of CRDPs within the respiratory cycle. As our previous work indicated, the NTS neurons exhibit typical reticular rhythms. In this paper we also found that the basic activity of NTS neurons was often changed by other influences for which no comparable patterns could be observed in other simultaneously acquired signals. When we constructed PETHs according to the activity level of the NTS neurons, i.e., firing level per cardiac cycle, modulations of CRDPs which were even stronger than respiratory or reticular rhythmical modulations became clear. The modulations of CRDPs caused by different origins were found to be present in the same neuron interlaced in time. The possible role played by these modulations of CRDPs in the coordination of different functional systems in the organism is discussed.

Animals↗

A protein modulator of erythrocyte membrane (Ca2+ + Mg2+)-ATPase inhibitor protein.

A protein modulator of erythrocyte membrane (Ca2+ + Mg2+)-ATPase inhibitor protein was purified to apparent homogeneity from pig membrane-free hemolysate by a combination of carboxymethyl-Sephadex chromatography, gel filtration, chromatofocusing (pH 7-4) and subsequent removal of trace inhibitor protein by salt treatment. Gel filtration gave a molecular weight of 57500 for the purified protein modulator, while SDS-polyacrylamide gel electrophoresis of dithiothreitol-treated modulator revealed one single band with a molecular weight of 29000. Isoelectric focusing of the dithiothreitol-treated protein revealed one band (isoelectric pH 4.85), while untreated modulator gave an extra band (isoelectric pH 4.96). It contains no methionine and has an acidic amino acid content 73% higher than that of its basic residues. Freshly prepared or dithiothreitol-treated modulator suppressed both pig and human erythrocyte (Ca2+ + Mg2+)-ATPase inhibitor protein activity, but did not affect ATPase and calmodulin activities. Modulator-coupled Affi-Gel 15 could be employed for purification of the protein inhibitor.

Amino Acids↗

Construction and performance of a variable-frequency phase-modulation fluorometer.

We describe the construction and performance of a variable-frequency phase-modulation fluorometer. This instrument, which provides modulation frequencies from 1 to 200 MHz, was constructed using commercially available components. To facilitate the introduction of these instruments into other laboratories we describe in detail the chosen components and the principles of operation. The present light source is a continuous-wave helium-cadmium laser, which provides convenient excitation wavelengths of 325 and 442 nm. Modulation of the incident light is provided by one of several electro-optic modulators. The extent of modulation ranges from 1.0 to 0.2 as the frequency increases from 1 to 200 MHz. Phase angles and demodulation factors are measured using the cross-correlation method. The closely spaced frequencies are provided by two direct frequency synthesizers. The phase and modulation measurements are accurate to 0.2 degrees and 0.002, respectively, from 1 to 200 MHz. This accuracy allows considerable resolution of complex decay laws. The usefulness of frequency-domain fluorometry for the resolution of multiexponential decays is illustrated by the analysis of several difficult mixtures. As examples, we resolved a two-component mixture of anthracene (4.1 ns) and 9,10-diphenylanthracene (6.3 ns), and confirmed that the intensity decay of NADH in aqueous buffer is at least a double exponential (0.2 and 0.86 ns). We also resolved an especially difficult mixture of anthracene (4.1 ns) and 9-methylanthracene (4.5 ns), and a three-component mixture with decay times of 1.3, 4.1 and 7.7 ns. Frequency-domain fluorometers appear to be particularly useful for determination of complex decays of fluorescence anisotropy. This capability is illustrated by the determination of rotational correlation times as short as 47 ps for p-bis[2-(5-phenyloxazolyl)]benzene (POPOP) in hexane at 40 degrees C, and by the resolution of the two correlation times of anisotropic rotators such as perylene and 9-aminoacridine. Resolution of two anisotropy decay times for 9-aminoacridine is a difficult test because these correlation times differ by less than 2-fold. The resolution of multiexponential decays of intensity and anisotropy possible with this instrument is at least equivalent to that obtained using state-of-the-art time-resolved instruments based on mode-locked laser sources. The ease and rapidity of frequency-domain measurements, the relative simplicity of the equipment, the accuracy of the measurements and the lack of significant systematic errors indicate that frequency-domain fluorometry will be widely useful in chemical and biochemical research.

Aminoacridines↗

Stimulatory modulator of guanosine 3':5'-monophosphate-dependent protein kinase from mammalian tissues.

The crude protein kinase modulator preparations obtained from several rat tissues (aorta, brain heart, liver, lung, skeletal muscle, small intestine and testis) were separated into their stimulatory and inhibitory modulator components by Sephadex G-100 gel filtration. The isolated stimulatory modulator augmented the activity of guanosine 3':5'-monophosphate-dependent protein kinase. The isolated inhibitory modulator, on the other hand, depressed the activity of cyclic AMP-dependent protein kinase; it was without effect on the activity of cyclic GMP-dependent protein kinease. The present findings indicate that in the mammal, apparently in contrast to the arthropoda, separate proteins are responsibile for the stimulatory and the inhibitory activities of protein kinase modulator and that the two classes of cyclic nucleotide-dependent protein kinase are regulated in an opposing manner by these two types of modulators.

Animals↗

The field-matching problem as it applies to the peacock three dimensional conformal system for intensity modulation.

PURPOSE: Intensity modulated beam systems have been developed as a means of creating a high-dose region that closely conforms to the prescribed target volume while also providing specific sparing of organs at risk within complex treatment geometries. The slice-by-slice treatment paradigm used by one such system for delivering intensity modulated fields introduces regions of dose nonuniformity where each pair of treatment slices abut. A study was designed to evaluate whether or not the magnitude of the nonuniformity that results from this segmental delivery paradigm is significant relative to the overall dose nonuniformity present in the intensity modulation technique itself. An assessment was also made as to the increase in nonuniformity that would result if errors were made in indexing during treatment delivery. METHODS AND MATERIALS: Treatment plans were generated to simulate correctly indexed and incorrectly indexed treatments of 4, 10, and 18 cm diameter targets. Indexing errors of from 0.1 to 2.0 mm were studied. Treatment plans were also generated for targets of the same diameter but of lengths that did not require indexing of the treatment couch. RESULTS: The nonuniformity that results from the intensity modulation delivery paradigm is 11-16% for targets where indexing is not required. Correct indexing of the couch adds an additional 1-2% in nonuniformity. However, a couch indexing error of as little as 1 mm can increase the total nonuniformity to as much as 25%. All increases in nonuniformity from indexing are essentially independent of target diameter. CONCLUSIONS: The dose nonuniformity introduced by the segmental strip delivery paradigm is small relative to the nonuniformity present in the intensity modulation paradigm itself. A positioning accuracy of better than 0.5 mm appears to be required when implementing segmental intensity modulated treatment plans.

Algorithms↗

Conformal radiation treatment of prostate cancer using inversely-planned intensity-modulated photon beams produced with dynamic multileaf collimation.

PURPOSE: To implement radiotherapy with intensity-modulated beams, based on the inverse method of treatment design and using a multileaf collimation system operating in the dynamic mode. METHODS AND MATERIALS: An algorithm, based on the inverse technique, has been integrated into the radiotherapy treatment-planning computer system in our Center. This method of computer-assisted treatment design was used to derive intensity-modulated beams to optimize the boost portion of the treatment plan for a patient with a T1c cancer of the prostate. A dose of 72 Gy (in 40 fractions) was given with a six-field plan, and an additional 9 Gy (in five fractions) with six intensity-modulated beams. The intensity-modulated fields were delivered using dynamic multileaf collimation, that is, individual leaves were in motion during radiation delivery, with the treatment machine operating in the clinical mode. Exhaustive quality assurance measurement and monitoring were carried out to ensure safe and accurate implementation. RESULTS: Dose distribution and dose-volume histogram of the "inverse method" boost plan and of the composite (72 Gy primary + 9 Gy boost) plan were judged clinically acceptable. Compared to a manually designed boost plan, the inverse treatment design gave improved conformality and increased dose homogeneity in the planning target volume. Film and ion chamber dosimetry, performed prior to the first treatment, indicated that each of the six intensity-modulated fields was accurately produced. Thermoluminescent dosimeter (TLD) measurements performed on the patient confirmed that the intended dose was delivered in the treatment. In addition, computer-aided treatment-monitoring programs assured that the multileaf collimator (MLC) position file was executed to the specified precision. In terms of the overall radiation treatment process, there will likely be labor savings in the planning and the treatment phases. CONCLUSIONS: We have placed into clinical use an integrated system of conformal radiation treatment that incorporated the inverse method of treatment design and the use of dynamic multileaf collimation to deliver intensity-modulated beams. The system can provide better treatment design, which can be implemented reliably and safely. We are hopeful that improved treatment efficacy will result.

Humans↗

The effect of carrier and modulation frequency on lateralization based on interaural phase and interaural group delay.

The sensitivity of Observers to interaural delay in either the envelope or the carrier of an amplitude-modulated sinusoid was measured in a two-interval forced-choice task as a function of the frequency of the modulation and the frequency of the carrier. The two types of delay were set in opposition with the carrier leading in one ear but the modulation leading in the other. Lateralization appeared to be based on carrier (phase) delay when carrier frequency was below 1500 Hz, whatever the modulation frequency. For carrier frequency greater than 1500 Hz, lateralization performance was dependent both on carrier and on modulation frequency and was based on modulation (group) delay.

Acoustic Stimulation↗

Differential effects of age on click-rate and amplitude modulation-frequency coding in primary auditory cortex of the cat.

Recordings were made from 185 neurons in the primary auditory cortex of cats in the age range of 15 to 297 days. A comparison was made between the tuning for click repetition-rate and for amplitude modulation-frequency of a noise burst on the basis of temporal Modulation Transfer Functions (tMTF). 90 of the 185 units had a clear band-pass type tMTF for both repetition rate and modulation frequency, there was, however, no correlation between the respective Best Modulation Frequencies (BMF). Amplitude modulated noise (AMnoise) was the more effective stimulus in young kittens while click-train stimulation was more effective in adult cats. For all neurons with significant synchronization, BMFs for both click-train and AMnoise increased with age from about 4 Hz in kittens younger than 30 days to about 10 Hz in adult cats. In the approximately 50% of the neurons that were tuned both to click rate and modulation frequency, however, the BMF to AMnoise was consistently and significantly higher than that for clicks. In this group the mean BMF for kittens younger than 30 days were 7.94 Hz for AMnoise and 3.29 Hz for clicks and in the adults 10.91 Hz for AMnoise and 7.71 Hz for clicks.

Acoustic Stimulation↗

Envelope-following response and modulation transfer function in the dolphin's auditory system.

Potentials following the envelopes of sinusoidally amplitude-modulated tones (envelope response, EFR) were recorded from the head surface in bottle-nosed dolphins. EFR appeared at modulation rates from 300 to 3400 Hz. EFR amplitude was higher at rates from 500 to 1400 Hz with peaks at 600 and 1000 Hz and troughs at 700-850, 1200, and 2000 Hz; at rates above 1700 Hz it fell steeply. EFR dependence on modulation depth was linear except at the highest response amplitudes, which made it possible to obtain the modulation transfer function (MTF). EFR appears to be generated by several sources. One source had a latency of about 4 ms and followed modulation rates up to 1700 Hz, while another had a latency of 2 ms and followed modulation rates up to 3.4 kHz. The latencies of both sources coincided with those of waves of the auditory brainstem response (ABR). Comparison of MTF with the ABR spectrum had shown that several MTF peaks and troughs reflected the ABR spectrum. The latencies of the two sources were consistent with origins in the midbrain and auditory nerve, respectively.

Acoustic Stimulation↗

Responses to exponential frequency modulations in the rat inferior colliculus.

We examined responses to pure tones and exponentially frequency-modulated (FM) stimuli in the inferior colliculus of ketamine anesthetized rats. All units responded to both pure-tone and FM stimulation: units responding selectively to FM stimuli were not found. The comparison between responses to many different FM sweeps revealed that activity was elicited when the instantaneous frequency of a FM sweep entered the unit's pure-tone tuning curve. Units were tuned to the rate of frequency modulation. Most modulation rate transfer functions had bandpass characteristics. Best modulation rates covered a range from 4.8 to 1904 octaves/s with more than 90% between 10 and 400 octaves/s. In contrast to previous studies, modulation direction was not coded in unit responses and only few units demonstrated a weak change in response strength when sweep direction was altered. This is at least partly attributable to the FM stimulus design which, in the present study, was adapted to the logarithmic frequency representation in the rat auditory system and carefully matched to the units' pure-tone responses area. In spite of the close relationship between pure tone and FM response behavior, modulation rate tuning cannot be completely explained on the basis of the units' pure-tone responses.

Acoustic Stimulation↗

Co-operative, competitive and non-competitive interactions between modulators of P-glycoprotein.

We measured the effects of individual modulators and of pairs of modulators of the multidrug resistance pump, P-glycoprotein, on the accumulation of labelled daunomycin into multidrug-resistant P388 leukemia cells at 37 degrees C and developed a kinetic analysis which enables such data to be modelled in terms of co-operative, competitive or non-competitive interaction between pairs of modulators. The modulators verapamil, cyclosporin and trifluoperazine interacted with P-glycoprotein as single molecules, while vinblastine, mefloquine, dipyridamole, tamoxifen and quinidine displayed Hill numbers close to 2, suggesting that pairs of modulator molecules need to act together in order to bring about effective reversal of P-glycoprotein. When the modulators were presented to P-glycoprotein in pairs, we found examples of both competitive and non-competitive behaviour. We interpret these results on a model in which two modulatory sites exit on the MDR pump. To one of these, mefloquine, vinblastine and tamoxifen bind preferentially; to the other, verapamil, dipyridamole, trifluoperazine and quinidine bind (but mefloquine and tamoxifen only weakly if at all). Cyclosporin A can interact with both sites.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Allosteric modulation of the human P-glycoprotein involves conformational changes mimicking catalytic transition intermediates.

The drug transport function of human P-glycoprotein (Pgp, ABCB1) can be inhibited by a number of pharmacological agents collectively referred to as modulators or reversing agents. In this study, we demonstrate that certain thioxanthene-based Pgp modulators with an allosteric mode of action induce a distinct conformational change in the cytosolic domain of Pgp, which alters susceptibility to proteolytic digestion. Both cis and trans-isomers of the Pgp modulator flupentixol confer considerable protection of an 80 kDa Pgp fragment against trypsin digestion, that is recognized by a polyclonal antibody specific for the NH(2)-terminal half to Pgp. The protection by flupentixol is abolished in the Pgp F983A mutant that is impaired in modulation by flupentixols, indicating involvement of the allosteric site in generating the conformational change. A similar protection to an 80 kDa fragment is conferred by ATP, its nonhydrolyzable analog ATPgammaS, and by trapping of ADP-vanadate at the catalytic domain, but not by transport substrate vinblastine or by the competitive modulator cyclosporin A, suggesting different outcomes from modulator interaction at the allosteric site and at the substrate site. In summary, we demonstrate that allosteric interaction of flupentixols with Pgp generates conformational changes that mimic catalytic transition intermediates induced by nucleotide binding and hydrolysis, which may play a crucial role in allosteric inhibition of Pgp-mediated drug transport.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Management of adverse surgical events: a structured education module for residents.

BACKGROUND: This pilot project involved the development of a structured, experiential, educational module using a bench model technical skills simulation and standardized patients. It integrated teaching and assessment of clinical, technical, and interpersonal skills, as well as professionalism within the context of an adverse surgical event. METHODS: General surgery residents (postgraduate year [PGY] 2, 3) were asked to participate in the pre-, intra-, and postoperative management of a patient with a retroperitoneal sarcoma. Residents' performances during the module were assessed by standardized patients and faculty, and residents were provided feedback during debriefing sessions. RESULTS: Resident performance during the module was appropriate for the level of training. Residents found this module to be a realistic, challenging, and beneficial learning experience. CONCLUSIONS: Novel educational modules such as this one may serve as a useful addition to resident education in surgery residency programs, particularly in addressing patient safety and the core competencies. Reliability of the model may be enhanced by modifications of the module.

Clinical Competence↗

Is poor frequency modulation detection linked to literacy problems? A comparison of specific reading disability and mild to moderate sensorineural hearing loss.

Specific reading disability (SRD) is now widely recognised as often being caused by phonological processing problems, affecting analysis of spoken as well as written language. According to one theoretical account, these phonological problems are due to low-level problems in auditory perception of dynamic acoustic cues. Evidence for this has come from studies showing poor discrimination of frequency-modulated from unmodulated tones. We measured frequency modulation detection limens (FMDLs) in 16 children with specific reading disability (SRD group), 16 children with mild to moderate hearing loss (SNH group) and 16 age-matched controls (CA group) aged 8-14. To obtain information about possible mechanisms used in frequency modulation detection, FMDLs were measured at modulation rates of 2 and 20 Hz, both in the absence and the presence of amplitude modulation, intended to force listeners to rely, if possible, upon phase-locking cues. Although both the SNH and SRD groups showed a trend for elevated FMDLs at both 2 and 20 Hz, these differences reached statistical significance for the SNH group alone. However, the SNH group had no evidence of literacy impairments. This study thus shows that impairments in perceiving dynamically modulated auditory stimuli do not necessarily lead to difficulty in learning to read.

Adolescent↗

Two membrane juxtaposed signaling modules in ANF-RGC are interlocked.

Atrial natriuretic factor (ANF) receptor guanylate cyclase ANF-RGC is a single transmembrane spanning modular protein. Juxtaposed to each side of the transmembrane module is a Cys423-Cys432 disulfide ANF signaling module motif and the ATP-regulated transduction module (ARM) motif. The signaling module motif is conserved in nearly all membrane guanylate cyclases and is believed to be critical in the signaling activities of all membrane guanylate cyclases. The present study with the model system of the olfactory membrane guanylate cyclase shows that this concept is not valid. Furthermore, the study shows that in ANF-GC the signaling motif works through the ARM domain. A new signaling model is proposed where in its natural state the disulfide structural motif represses the ARM domain activity, which, in turn, represses the catalytic module activity of ANF-RGC. ANF signaling relieves the disulfide structural motif restraint on the ARM inhibition and stimulates the catalytic module of the cyclase.

Animals↗

Allosteric modulation of ligand-gated ion channels.

Ligand-gated ion channels (LGICs) are cell surface proteins that play an important role in fast synaptic transmission and in the modulation of cellular activity. Due to their intrinsic properties, LGICs respond to neurotransmitters and other effectors (e.g. pH) and transduce the binding of a ligand into an electrical current on a microsecond timescale. Following activation, LGICs open allowing an ion flux across the cell membrane. Depending upon the charge and concentration of ions, the flux can cause a depolarization or hyperpolarization, thus modulating excitability of the cell. While our understanding of LGICs has significantly progressed during the past decade, many properties of these proteins are still poorly understood, in particular their modulation by allosteric effectors. LGICs are often thought as a simple on-off switches. However, a closer look at these receptors reveals a complex behavior and a wide repertoire of subtle modulation by intrinsic and extrinsic factors. From a physiological point of view, this modulation can be seen as an additional level of complexity in the cell signaling process. Here we review the allosteric modulation of LGICs in light of the latest findings and discuss the suitability of this approach to the design of new therapeutic molecules.

Allosteric Regulation↗