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Biomedical subjects

D F Young

Publications and source records attributed to D F Young.

At least 19 recordsLinked to original sources

Chromogenic redox assay for beta-lactamases yielding water-insoluble products. I. Kinetic behavior and redox chemistry.

We describe a chromogenic detection system for beta-lactamase which yields water-insoluble colored products. The assay is based on kinetic measurement of the appearance of color due to the beta-lactamase-initiated redox reaction. The substrates are C3' thiolate-substituted cephalosporins, which, after enzyme-catalyzed hydrolysis of the beta-lactam ring, undergo elimination of the thiolate ion. This thiolate, in a postenzymatic step, reduces the tetrazolium salts, which are water-soluble colorless compounds, to a colored water-insoluble precipitate of formazan. Our model in this study was a beta-lactamase Enterobacter cloacae P-99-catalyzed reaction of thiolacetate cephalosporin with several tetrazolium salts. We found that the reaction rate is dependent on the concentration of the electron carrier 5-methyl phenazinium methyl sulfate, the pKa of the C3' thiolate substituent of the cephalosporin substrate, and the reduction potential of the tetrazolium salts. A kinetic study of this system yielded a rate law for the reaction. We present a mechanism of the reaction and determination of the kinetic parameters for the process. The sensitivity of this kinetic assay is very high; we detect 3 x 10(-10) M beta-lactamase P-99, which is approximately 30 mIU. The assay times are very short, lasting from 2 to 5 min. The new assay system is particularly suitable for a rapid detection of beta-lactamases in bacterial colonies and in enzyme immunoassays where beta-lactamase may be used as the label.

Cephalosporins

Chromogenic redox assay for beta-lactamases yielding water-insoluble products. II. Heterogeneous sandwich assay for hCG.

A very sensitive and rapid heterogeneous sandwich enzyme immunoassay for human chorionic gonadotropin (hCG) is described. The assay is based on the application of the novel chromogenic redox substrate system for beta-lactamase which is used as label. The chromogen system consists of a thioacetylcephalosporin beta-lactamase substrate, which upon turnover by the enzyme label releases the thiolate with the concomitant reduction of the tetrazolium salt to a colored formazan. The concentration of the formazan is directly related to the amount of the hormone in the sample and is read spectrophotometrically. The enzyme-antibody conjugates, produced through use of heterobifunctional maleimide crosslinker, maintain 90% of the enzyme activity after 30 days at 25 degrees C. Concentrations of the hormone as low as 5 mIU/ml, equivalent to 25 fmol/ml, are detectable in 3 h.

Antibodies

Computer simulation of arterial flow with applications to arterial and aortic stenoses.

A computer model for simulating pressure and flow propagation in the human arterial system is developed. The model is based on the one-dimensional flow equations and includes nonlinearities arising from geometry and material properties. Fifty-five arterial segments, representing the various major arteries, are combined to form the model of the arterial system. Particular attention is paid to the development of peripheral pressure and flow pulses under normal flow conditions and under conditions of arterial and aortic stenoses. Results show that the presence of severe arterial stenoses significantly affects the nature of the distal pressure and flow pulses. Aortic stenoses also have a profound effect on central and peripheral pressure pulse formation. Comparison with the published experimental data suggests that the model is capable of simulating arterial flow under normal flow conditions as well as conditions of stenotic obstructions in a satisfactory manner.

Aortic Valve Stenosis

Numerical study of arterial flow during sustained external acceleration.

A computer model of the human arterial tree based upon the one-dimensional flow equations is used to study the effects of sustained acceleration (+Gz) on eye-level arterial pressure and flow. Steady-state physiological compensatory mechanisms are modelled using human centrifuge data found in the literature. Cases investigated include the supine and standing human (+1 Gz), the application of resistive and occlusive anti-G suits, and the occurrence of a stenosis proximal to the carotid bifurcation. Results indicate that the simulated eye-level pressures and flows satisfactorily correspond with those found in the literature.

Acceleration

Identification of an epitope on the P and V proteins of simian virus 5 that distinguishes between two isolates with different biological characteristics.

Two canine isolates of simian virus 5 (SV5), termed CPI+ and CPI-, were examined for their ability to react with a bank of monoclonal antibodies (MAbs) that had been previously raised against a human isolate of SV5. CPI- virus was originally isolated from the brain of a gnotobiotic dog infected with CPI+ virus and establishes persistent infections more readily than CPI+ in vitro. Of more than 50 MAbs tested, only one (P-k) reacted with CPI+ but not CPI-, enabling distinction between the two canine isolates. It had been shown previously that MAb P-k reacts with an epitope common to both the P and V proteins. In order to characterize further the epitope binding site of this MAb the P/V genes of CPI+ and CPI- were sequenced. There were four nucleotide differences between CPI+ and CPI-, three of which resulted in predicted amino acid substitutions. Synthetic peptides corresponding to regions encompassing these changes were made and radioimmune competition assays were used to identify the epitope binding site of MAb P-k. Sequence comparison of the P/V gene of CPI+ with the published sequence of a monkey isolate of SV5 (W3) revealed 14 nucleotide differences with five amino acid substitutions. The only amino acid substitution observed between CPI+, CPI- and W3 which altered the predicted secondary structures of the P and V proteins was a leucine to proline change that induced a predicted beta-turn and resulted in the loss of binding of MAb P-k.

Amino Acid Sequence

Solid matrix-antibody-antigen complexes induce antigen-specific CD8+ cells that clear a persistent paramyxovirus infection.

We have previously shown that the adoptive transfer of splenocytes, isolated from mice immunized by infection with the paramyxovirus simian virus 5 (SV5), enhance the speed of clearance of SV5 from the lungs of immunodeficient mice; clearance is mediated primarily through CD8+ effector cells and not by serum neutralizing antibody (D.F. Young, R.E. Randall, J.A. Hoyle, and B.E. Souberbielle, J. Virol. 64:5403-5411, 1990). In this article we demonstrate that immunization of mice with solid matrix-antibody-antigen (SMAA) complexes also induces CD8+ effector cells that are responsible for clearing persistent SV5 infections in immunodeficient mice. The demonstration that immunization with SMAA complexes (an exogenous antigen) can induce class I-restricted cytotoxic T lymphocytes (CTLs) suggests that that these cells may be responsible for virus clearance in vivo. This premise is supported indirectly by the observation that immunization with SMAA complexes was less efficient in inducing class I-restricted CTLs (as measured in vitro) than was infectious virus and that splenocytes isolated from mice immunized with SMAA complexes were also less efficient in clearing virus from lungs of immunodeficient mice than were splenocytes isolated from mice immunized by infection with virus. This was not because the SMAA complexes were generally less immunogenic than infectious virus, since mice immunized with SMAA complexes (which contained the HN protein of SV5) produced higher levels of neutralizing antibody than mice immunized with infectious virus. In the majority of experiments, fixed and killed suspensions of Staphylococcus aureus Cowan strain A were used as the solid matrix in the construction of SMAA complexes. However, in this article we present evidence that alum-antibody-antigen complexes are as immunogenic as S. aureus A-antibody-antigen complexes. These results suggest that the immunological reactivity of the solid matrix itself does not influence the intensity of the immune response to the antigens of interest in the SMAA complexes. The significance of these results for vaccine design are discussed.

Animals

Numerical study of pressure and flow propagation in arteries.

A computer model for simulating pressure and flow propagation in the human arterial system is developed. The model is based on the one-dimensional flow equations and includes non-linearities arising from geometry and material properties. Fifty five arterial segments, representing the various major arteries, are combined to form the model of the arterial system. Particular attention is paid to the development of peripheral pressure and flow pulses under normal flow conditions and under conditions of arterial disease. Cases investigated include arteriosclerosis and hypertension as well as the presence of single or multiple vascular occlusions. Results demonstrate that the model is capable of simulating arterial flow in a satisfactory manner.

Arteries

Clearance of a persistent paramyxovirus infection is mediated by cellular immune responses but not by serum-neutralizing antibody.

Infection of the lungs of immunodeficient mice with the paramyxovirus simian virus 5 (SV5) was prolonged compared with the time course of infection in immunocompetent mice. Although there was a significant increase in both viral RNA and proteins, little infectious virus was produced. Adoptive transfer of immune lymphocytes (isolated from the spleens of mice previously infected with SV5) but not of nonimmune lymphocytes increased the speed of clearance of virus from the lungs of immunodeficient mice. In contrast, passive transfer of a pool of neutralizing monoclonal antibodies specific for the HN and F glycoproteins of SV5 did not have a significant effect on the speed of clearance of virus. Furthermore, no significant increase in the rate of virus clearance was observed upon adoptive transfer of purified immune B lymphocytes to SV5-infected immunodeficient mice despite production by the mice of high titers of neutralizing antibodies. Evidence is presented that CD8+ effector cells are primarily responsible for the clearance observed. The general significance of these results with respect to immune clearance of persistent virus infections is discussed.

Animals

Use of ultrasonic Doppler waveforms to estimate changes in uterine artery blood flow and vessel compliance.

Previous data from our laboratory have demonstrated that uterine blood flow (UBF) and uterine arterial smooth muscle tone vary regularly during the estrous cycle of the cow. Uterine blood flow is highest and uterine arterial tone is lowest at estrus, whereas UBF is lowest and uterine arterial tone is highest during the luteal phase of the cycle. Blood flow through arteries is highly pulsatile; changes in arterial wall properties affect shape of the velocity waveform. This study was conducted to evaluate changes in uterine arterial velocity waveforms throughout the estrous cycle of the cow and to relate these changes to fluctuations in UBF and concentrations of estrogen and(or) progesterone in systemic blood. Pulsatile velocity waveforms were obtained daily from pulsed-wave ultrasonic probes placed surgically on the middle uterine artery of five beef cows exhibiting estrous cycles of normal duration (d 0 = day of estrus). Velocity waveforms varied regularly during the estrous cycle of each cow in association with changes in UBF and steroid concentrations. Further, two distinct velocity waveform shapes were observed during the estrous cycle. The first waveform shape, which was observed during periods of high UBF (d -4 to +4 of the estrous cycle), was characteristic of a highly compliant vessel and was associated with a high estrogen:progesterone ratio. The second waveform shape, which was observed from d 7 to 14 of the estrous cycle, was characteristic of a less compliant vessel and was associated with a depressed estrogen:progesterone ratio. These data suggest that compliance of the uterine artery changes during the estrous cycle in association with the changing estrogen:progesterone ratio in blood.

Animals

Computer simulation of blood flow in the human arm.

This paper considers a finite element method to characterize blood flow in the human arm arteries. A set of different pressure waveforms, which represent normal and diseased heart pulses, is used for the proximal boundary conditions, and a modified Windkessel model is used for the distal arterial boundary conditions. A comparison of the distal pressure and flow waveforms, for each different proximal pressure, is made to determine whether such waveforms are significantly altered from normal waveforms. The results show that the distal pressure and/or flow waveforms in certain cases are sufficiently different to be possibly used as a diagnostic indicator of an abnormal heart condition. Also considered is the effect of stenosis, change of compliance, and dilatation of the distal beds on the pressure and flow waveforms. A stenosis which has an area reduction of greater than approximately 75% is found to significantly alter both the distal pressure and flow waveforms. Changes in arterial compliance, however, do not strongly influence the waveforms. Dilatation of distal vascular beds is simulated by reducing the lumped resistance of these beds, and this reduction increases mean flow and decreases mean distal pressure, but has little effect on the basic shape of either the pressure or flow waveform.

Aortic Valve Stenosis

Immunization against multiple viruses by using solid-matrix-antibody-antigen complexes.

We have previously shown that mice immunized with solid-matrix-antibody-antigen (SMAA) complexes in the absence of adjuvants show vigorous humoral and cell-mediated immune responses to the immunizing antigen. Here we report that various proteins involved in inducing protective immune responses to different viruses can easily and simply be incorporated into SMAA complexes and that such complexes act as powerful multivalent immunogens. Construction of such SMAA complexes may be one of the most practical and effective ways of producing multivalent subunit vaccines for use in humans and animals.

Animals

Microcomputer-based analyzer for the assessment of Doppler ultrasound blood velocity waveforms.

A device has been developed which can quickly and conveniently analyze blood velocity waveforms and evaluate waveform indices. The device can be modified to determine various waveform indices by changing the software. The waveform analyzer digitizes and stores the data, performs a pattern recognition algorithm to recognize individual pulses, and calculates the waveform index. Details of the design and operation of the analyzer are given in this communication.

Blood Flow Velocity

Prediction of arterial compliance from pressure and flow waveforms.

The goal of this project was to ascertain the feasibility of determining the compliance of an arterial segment from pressure and flow waveform measurements, and to develop a microcomputer based system for collecting and analyzing the data. Vessel area compliance, CA, is defined as dA/dp, where A is the lumenal area and p is the transmural pressure. Direct in vivo measurements of CA require some technique for measuring the instantaneous vessel area; unfortunately, such a technique is not currently available. Thus, indirect techniques have been developed where some measurable quantity can be related to CA through a model formulation. Use of pulse wave velocity to estimate CA is one example of an indirect technique. Other techniques involve the use of a mathematical model which relates pressure, flow and compliance. In the present study, a dynamic technique is used in which the arterial segment of interest is occluded at its distal end and a measurement of the instantaneous flow and pressure is made at its proximal end. Compliance is calculated through the relationship CA = Q/dp/dtL, where Q is the volumetric flow rate, dp/dt is the time rate of change of the pressure, and L is the length of the arterial segment between the proximal end where Q and p are measured, and the occluded distal end. With this approach, the compliance of a particular arterial segment is determined rather than the lumped compliance of an entire limb. To ascertain the feasibility of this technique, an in vitro model system was constructed and tested using thin-walled latex tubing to simulate an arterial segment.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Humoral and cytotoxic T cell immune responses to internal and external structural proteins of simian virus 5 induced by immunization with solid matrix-antibody-antigen complexes.

Monoclonal antibodies (MAbs) were complexed to solid matrices and used to purify virus proteins from simian virus 5 (SV5)-infected tissue culture cells, ideally in such a way as to bind equimolar amounts of antigen to antibody. The resulting solid matrix-antibody-antigen (SMAA) complexes were then used as immunogens and successfully induced specific humoral and cytotoxic T cell responses. By attaching more than one MAb to the solid matrix and using such complexes to purify the respective proteins multivalent immunization was achieved. Analysis of the cytotoxic T cell response of immunized animals indicated that both surface and internal SV5 structural proteins can act as target antigens. Immunization with SMAA complexes, in the absence of adjuvant, induced higher levels of antibody than the antigen alone precipitated on alum. However, immunization with SMAA complexes resulted in relatively less antibody being produced to the antigenic determinant through which the protein is coupled, via antibody, to the SMAA complex compared with the amount of antibody produced against other antigenic determinants on that protein. The particulate solid matrix used to form the SMAA complexes in most of the experiments was a 'fixed' and killed suspension of the Cowan A strain of Staphylococcus aureus, although preliminary results indicated that Protein A-Sepharose could also be used as a solid matrix. Prior immunization with S. aureus alone did not reduce the level of the immune response to the appropriate antigen on subsequent immunization with S. aureus-antibody-antigen complexes. In fact on immunization of mice with these complexes the level of antibody produced to the S. aureus matrix itself was less when S. aureus-antibody-antigen complexes were used as immunogens than when S. aureus or S. aureus-antibody complexes were used. Furthermore, rabbits immunized with S. aureus-mouse MAb-antigen complexes showed a vigorous immune response to the antigen.

Animals

Immunization with solid matrix-antibody-antigen complexes containing surface or internal virus structural proteins protects mice from infection with the paramyxovirus, simian virus 5.

A mouse model system has been developed to examine the ability of purified virus proteins to protect mice from infection with the paramyxovirus simian virus 5. The system is based on the infection of mouse lungs by intranasal administration of infectious virus. The relative amounts of virus proteins and nucleic acid present within infected lungs were estimated either by Western blot analysis of disrupted lung tissues or by in situ hybridization studies using cryostat sections of infected lungs. During a normal time course of infection in non-immunized mice increasing amounts of virus protein and nucleic acid were detected in the lungs until 3 days post-infection (p.i.). Thereafter the amount of virus present within the lungs remained relatively constant until 7 days p.i. when there was a rapid decrease. Cytotoxic T cells, but not neutralizing antibody, could be detected at the time when the amount of virus within the lungs was decreasing. Prior immunization of mice with solid matrix-antibody-antigen (SMAA) complexes containing either surface or internal virus structural proteins reduced the amount of virus replication within infected lungs, the greatest degree of protection being observed when nucleoprotein or matrix protein was used to immunize the mice. There was no correlation between the degree of protection observed and the level of neutralizing antibody present in immunized animals; no neutralizing antibody was detected in mice immunized with internal virus proteins even at the time of sacrifice 5 days p.i. We have previously shown that immunization of mice with SMAA complexes containing either surface or internal virus structural proteins can induce cytotoxic T cells and thus conclude that the most likely explanation for the protection observed in immunized mice is through the induction of cytotoxic T cells.

Animals

Comparison between parainfluenza virus type 2 and simian virus 5: monoclonal antibodies reveal major antigenic differences.

Marked differences in the apparent Mrs of the HN, NP and F proteins of simian virus 5 (SV5) and parainfluenza virus type 2 (PF-2) were revealed by SDS-PAGE. To examine the antigenic relationships between SV5, PF-2 and other paramyxoviruses, monoclonal antibodies (MAbs) specific to PF-2 were isolated. These antibodies had specificities for the HN, NP and P proteins and together with 54 MAbs to SV5 were tested for their ability to react with SV5, PF-2, PF-3, mumps and measles virus proteins. Most of these MAbs (55 out of 60) reacted with homologous virus only. However, five reacted with both SV5 and PF-2. These antibodies had reactivities to the NP, M and P proteins. Furthermore, one of the antibodies with reactivity to the P protein also reacted with mumps virus. Although none of the 21 MAbs with specificities for the HN protein of either SV5 or PF-2 cross-reacted with heterologous virus, some antigenic similarities between the HN protein of SV5 and PF-2 could be detected. This was demonstrated by raising a series of polyclonal antisera to purified preparations of SV5 or PF-2 HN proteins in BALB/c mice, and testing for their ability to neutralize both SV5 and PF-2 and also to immunoprecipitate the HN proteins of these viruses. Surprisingly, while low levels of cross-neutralizing antibody could be detected in some sera (e.g. neutralization of SV5 1:1600 and of PF-2 1:80), other sera with similar neutralization titres against homologous virus failed to neutralize heterologous virus. Furthermore, only a minority of the anti-HN antisera showed any immune-precipitating activity against the heterologous HN protein.

Animals

Isolation and characterization of monoclonal antibodies to simian virus 5 and their use in revealing antigenic differences between human, canine and simian isolates.

Hybridomas secreting monoclonal antibodies to simian virus 5 (SV5) were obtained following immunization of mice with purified preparations of a human isolate (LN) of SV5. Immune precipitation studies showed that these monoclonal antibodies had specificities for the haemagglutinin-neuraminidase (HN), fusion (F), nucleo-, matrix and phospho- (P) proteins of SV5. By use of a radioimmune competition assay the monoclonal antibodies to the HN protein were assigned to four groups, members of which recognized different antigenic sites on the protein. All the anti-HN antibodies and the anti-F antibody neutralized virus infectivity. The 54 monoclonal antibodies obtained were used to determine whether there were antigenic differences between five human, two canine and one simian isolate of SV5. Although most of the monoclonal antibodies reacted with all isolates, a few did reveal antigenic differences in the HN, F and P proteins. Furthermore, analysis by SDS-PAGE showed that while the electrophoretic mobilities of most of the virus polypeptides of these isolates were similar some differences could be detected. In particular the P protein showed the most marked mobility differences between the human, canine and simian isolates. Slight differences in the mobility of the F1 glycoprotein could also be visualized.

Animals

Organization of terminal reiterations in the virion DNA of herpesvirus saimiri.

The population of herpesvirus saimiri (HVS) genomes extracted from extracellular virions are double-stranded, linear DNA molecules of about 160 kilobase pairs (kbp) each composed of a central segment of 110 to 112 kbp and 36% (G + C) (i.e. 'light' or L-DNA) linked to direct reiterations of a 1.44 kbp repeat unit of 71% (G + C) (i.e. 'heavy' or H-DNA) at each terminus. In this paper, we show that the population of HVS DNA molecules contains approximately equal concentrations of genomes with all possible integral numbers of complete repeat units (i.e. from greater than 30 to 1) at either 'left' or 'right' ends but that all molecular ends are derived by a unique cleavage at a site close to the single ApaI restriction endonuclease site of the H-DNA repeat unit. Junctions of proximal H-DNA repeat units with L-DNA occur at, or very close to, the sequence present at the molecular ends. The transition from L- to H-DNA occurs abruptly at this site at the 'right' end of the L-DNA component but some rearranged restriction enzyme cleavage sites typical of H-DNA are found within the first 0.8 kbp of the L-DNA sequences at the 'left' H-L DNA junction. HVS appears to provide an extreme example of the general process whereby herpesvirus DNAs are matured from concatemeric intermediates by a site-specific cleavage/recombination process involving random choice between equivalent sites for the initiation of the process and with choices between alternative termination sites being limited by a headful packaging mechanism.

Base Composition