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R M Pemberton

Publications and source records attributed to R M Pemberton.

At least 19 recordsLinked to original sources

Development of a screen-printed carbon electrochemical immunosensor for picomolar concentrations of estradiol in human serum extracts.

Investigations into the development of a prototype electrochemical immunosensor for estradiol (E(2)) are described. After optimising reagent loadings in a 96-well enzyme-linked immunosorbent assay (ELISA), antibodies (rabbit anti-mouse IgG and monoclonal mouse anti-E(2)) were immobilised by passive adsorption onto the surface of screen-printed carbon electrodes (SPCEs). A competitive immunoassay was then performed using an alkaline-phosphatase (ALP)-labelled E(2) conjugate. Calibration plots for E(2) buffer standards, performed colorimetrically on the SPCEs using a para-nitrophenyl phosphate substrate solution, were in good agreement with ELISA calibration plots. Electrochemical measurements were then performed using differential pulse voltammetry (DPV) following the production of 1-naphthol from 1-naphthyl phosphate. The calibration plot of DPV peak current versus E(2) concentration showed a measurable range of 25-500 pg/ml with a detection limit of 50 pg/ml. A coefficient of variation of between 13.0 and 15.6% was obtained for repeat measurements. The immunosensor was applied to the determination of E(2) in spiked serum, following an extraction step with diethyl ether. A mean recovery for the method of 102.5% was obtained with a CV of 19.1%. The options available for further development of the sensor regarding precision, limit of detection and direct sample analysis are discussed.

Antibodies, Monoclonal↗

An electrochemical immunosensor for milk progesterone using a continuous flow system.

An electrochemical biosensor for cow's milk progesterone has been developed and used in a competitive immunoassay under thin-layer, continuous-flow conditions. Single-use biosensors were fabricated by depositing anti-progesterone monoclonal antibody (mAb) onto screen-printed carbon electrodes (SPCEs). Three operational steps could be identified: (1) Competitive binding of sample/conjugate (alkaline-phosphatase-labelled progesterone, AP-prog) mixture, (2) establishment of a steady-state amperometric baseline current and (3), measurement of an amperometric signal in the presence of enzyme substrate (1-naphthyl phosphate, 1-NP). In the thin-layer cell, the enzyme product, 1-naphthol, showed electrochemical behaviour consistent with bulk conditions and gave a linear amperometric response under continuous-flow conditions (E(app)=+0.3 V vs. Ag/AgCl) over the range 0.1-1.0 microg/ml. After pre-incubating biosensors with progesterone standards, signal generation within the cell (substrate concentration=5 mM) was recorded amperometrically as rate (nA/s) or maximum current (i(max), nA). Response values for milk standards were approximately 50% of those prepared in buffer. In both cases, calibration plots over the range 0-50 ng/ml progesterone were obtained. By conducting sample binding under flowing conditions, only 7% of the previous response was obtained, even at a substrate concentration of 50 mM, resulting in low signal:noise ratio. Using a stop-flow arrangement (i.e. quiescent sample binding, followed by continuous flow), low-noise amperograms were obtained at [1-NP]=5 mM. Calibration plots were obtained over the range 0-25 ng/ml, with a coefficient of variation of 12.5% for five replicate real milk samples.

Animals↗

An assay for the enzyme N-acetyl-beta-D-glucosaminidase (NAGase) based on electrochemical detection using screen-printed carbon electrodes (SPCEs).

An electrochemical assay for the enzyme N-acetyl-beta-D-glucosaminidase (NAGase) is described, using bare screen-printed carbon electrodes (SPCEs). The enzyme substrate, 1-naphthyl-N-acetyl-beta-D-glucosaminide, was added to the NAGase-containing sample under hydrodynamic conditions and was hydrolysed to 1-naphthol, which was monitored amperometrically at an Eapp of +650 mV versus SCE. A pH study revealed the apparent Vmax for the assay to occur at pH 4.5. corresponding to an apparent substrate Km of 0.28 mM. In order to be compatible with the analysis of biological fluids, a final operating pH of 5.4 was selected, and, using a data recording time of 100 s post-substrate addition, the assay gave a linear response (r2 = 0.988) over the range 3.1 to 108 mU ml(-1) NAGase (RSD = 15.4%). This assay has the potential to monitor NAGase levels in a number of application areas.

Acetylglucosaminidase↗

A comparison of 1-naphthyl phosphate and 4 aminophenyl phosphate as enzyme substrates for use with a screen-printed amperometric immunosensor for progesterone in cows' milk.

4-Aminophenyl phosphate (4-APP) and 1-naphthyl phosphate (1-NP) were compared as enzyme substrates for an amperometric milk progesterone biosensor utilising progesterone-conjugated alkaline phosphatase in a competitive immunoassay format. Cyclic voltammetry of the corresponding hydrolysis products, 4-aminophenol and 1-naphthol, at the surface of screen-printed carbon base transducers, uncoated or coated with anti-progesterone monoclonal antibody (mAb) showed well-defined anodic responses for both species, with the more sensitive being 4-aminophenol. Scan rate studies produced evidence that surface mAb could impede the diffusion of 4-aminophenol, but not 1-naphthol, toward the electrode surface. This was supported by computer simulation for the electrochemical rate constant (khet) using 4-aminophenol, which gave values at uncoated and mAb-coated electrodes of 6.5 x 10(-4) and 3.0 x 10(-4) cm s-1, respectively. The applied potential for oxidation of 4-aminophenol was 230 mV lower than for 1-naphthol. Nevertheless, by operating below +400 mV versus a saturated calomel reference electrode, it was possible to obtain a chronoamperometric signal for 1-naphthol in the absence of electrochemical interference from milk. Using mAb-coated SPCEs, calibration curves were obtained for progesterone in oestrus whole cow's milk spiked with standard concentrations over the range 0-50 ng/ml, using either 4-APP or 1NP as enzyme substrate. Precision values for triplicate sensors were 5.3-18.3% for 4-APP and 4.1-12.4% for 1-NP. An assay of real whole milk samples from different cows at various stages of the oestrus cycle produced correlations against a commercial EIA of r = 0.840 and 0.946 for 4-APP and 1-NP, respectively, 1-NP possesses the advantages over 4-APP of being inexpensive, easy to obtain and soluble (1-naphthol cf. 4-aminophenol) at high pH. From these observations, it is concluded that 1-NP is the preferred substrate for use with our proposed milk progesterone biosensor.

Alkaline Phosphatase↗

Studies towards a disposable screen-printed amperometric biosensor for progesterone.

A screen-printed carbon electrode (SPCE) has been investigated as the base transducer for a disposable amperometric progesterone biosensor. The biorecognition element was a monoclonal sheep anti-progesterone antibody (mAb). This was immobilized onto the transducer by interaction with a layer of rabbit IgG which had been previously coated onto the SPCE; optimum conditions for these loadings were deduced experimentally. The device was employed in a competitive assay using alkaline phosphatase-labelled progester-one. Three possible substrates for the enzyme were considered, namely, phenyl phosphate, phenolphthalein phosphate and 4-aminophenol phosphate. Cyclic voltammetry and amperometry were carried out on the corresponding aromatic phenols and phenol itself was found to give the best electrochemical characteristics; consequently, phenyl phosphate was employed as the substrate. Chronoamperometry was used to measure the phenol produced by the reaction of bound enzyme-labelled progesterone and substrate. The chronoamperometric response was dependent on unlabelled progesterone over at least three orders of magnitude with a detection limit of about 1 x 10(-9) mol/dm3. This suggests that the device may have applications for the analysis of biological fluids.

Aminophenols↗

T-helper type-1-dominated lymph node responses induced in C57BL/6 mice by optimally irradiated cercariae of Schistosoma mansoni are down-regulated after challenge infection.

Following a single percutaneous vaccination with optimally irradiated cercariae of Schistosoma mansoni, C57BL/6 mice mount a T-helper type-1 (Th1) lymphocyte-dominant immune response and are highly resistant to challenge infection. In this study, we show that, besides interferon-gamma (IFN-gamma), lymph node (LN) cells draining the site of vaccination produce significant amounts of interleukin (IL)-4 and IL-10 in culture with parasite antigen. After a challenge infection at the original site of vaccination, these LN cells did not generate an anamnestic Th1 response. Paradosically, IFN-gamma production and cell proliferation were profoundly down-regulated, whereas IL-4 production was enhanced and occurred earlier than in challenge control cultures. When challenge was applied to a site remote from vaccination, IFN-gamma down-regulation was less evident, but the IL-4 response was consistently enhanced. Neutralization of IL-10 in vitro restored IFN-gamma production by LN cells, whilst IL-4 levels were reduced. These data indicate that down-regulation of IFN-gamma is controlled by IL-10 and/or IL-4. Mice showing down-regulated Th1 responses in the LN after S. mansoni challenge infection did not have a reduced ability to eliminate challenge parasites, indicating that the post-vaccination Th1 response had already armed the lungs with effector T cells before administration of challenge parasites. The observed phenomena of down-regulated Th1 and enhanced Th2 responses may be of relevance to other systems involving multiple infections or vaccination/boosting. Repeated applications to percutaneous sites having common lymphatic drainage would be expected to favour Th2 responses. Alternatively, in order to induce Th1-dominant responses and avoid unwanted IL-4/IL-10 induction, the use of remote sites is indicated.

Animals↗

Cell-mediated immunity to schistosomes. Evaluation of mechanisms operating against lung-stage parasites which might be exploited in a vaccine.

This report describes parallel studies examining T cell and cytokine responses to Schistosoma mansoni in mice and man. The prevalence of IFNg production amongst murine (C57BL/6) T cell lines and clones, plus good DTH reactivity by IFNg-secreting clones, highlights the predominance of the Th1 response in the pulmonary immunity characteristics of the murine irradiated vaccine model. In human studies, effects of anti-cytokine antibodies on the proliferation of PBMC from human patients to various soluble schistosome antigen preparations have been examined. Data suggest that both Th1 (against early antigens) and Th2 (against late antigens) responses are present. A role for IL-10 is highlighted in chronic intestinal, but not acute or chronic hepatosplenic patients, as a downregulator of responses which are associated with morbidity and are against late stage antigens.

Acute Disease↗

Lymphocyte subset responses to trauma and sepsis.

One hundred five trauma patients admitted to three trauma centers with injury Severity Scores of 20 or greater had lymphocyte phenotypic subsets characterized throughout their hospital course. Total lymphocytes, pan-T (CD2), helper T (CD4), suppressor T (CD8), pan B (CD20), and DR expressing lymphocytes were quantitated by monoclonal antibodies and flow cytometric analysis. Results were analyzed between three patient groups: uninfected, uneventful recovery (n = 64); major infection (n = 26); and dead (n = 15; 7 with sepsis). A significant lymphopenia, maximal at 3 days, occurred in the first postinjury week compared with controls (p < 0.05), which recovered over the study period. A hierarchical distribution was found between the three outcome groups with the lowest numbers of several lymphocyte phenotypes in those who died. T helper and suppressor cells were similarly affected, but lowest in patients destined to develop infection or die. The helper-suppressor ratio, however, was similar in all three outcome groups. Therefore, modulation early after injury aimed at restoring these subsets may reduce the risk of subsequent infection.

Adolescent↗

Phenotypic and functional properties of Th lines and clones recognizing larval antigens of Schistosoma mansoni.

Five T cell clones and two lines were derived from the lymph nodes (LN) of C57BL/6 mice immunized with radiation-attenuated lung-stage larvae of Schistosoma mansoni. All seven clones/lines were CD4+, CD8- and expressed high levels of CD44 and CD45RB surface markers. After prolonged maintenance in-vitro, with soluble antigen from 18 h schistosomula (SSP), five retained the ability to proliferate readily and release IFNg in response to concanavalin A (Con-A) and to SSP and/or soluble adult worm antigen (SWAP). These Th clones/lines induced significant footpad DTH reactions when injected with SWAP, but were unable to confer protective immunity after transfer to naïve recipient mice. This result could be explained by the antigen specificity of the clones/lines, since they were not able to release IFNg when cultured in-vitro with living lung-stage larvae. A second possibility is that the high level of CD45RB expression, which is not seen on the surface of pulmonary CD4+ memory/effector cells isolated directly from protectively-vaccinated mice, alters the ability of the clones/lines to release IFNg and to induce a DTH response in the lungs when they encounter antigen released from migrating schistosomula.

Animals↗

T cell-derived cytokines associated with pulmonary immune mechanisms in mice vaccinated with irradiated cercariae of Schistosoma mansoni.

In C57Bl/6 strain mice vaccinated with attenuated cercariae of Schistosoma mansoni, the major site of immune elimination of normal challenge parasites is the lungs. The immune effector mechanism involves formation of focal inflammatory responses; the abundance of CD4+ T cells and the activation of alveolar macrophages suggests a role for inflammatory cytokines. We report the profile of cytokines produced by cultures of leukocytes recovered by bronchoalveolar lavage (BAL) from the lungs of vaccinated and challenged mice. From 14 days after vaccination, BAL cultures contained infiltrating lymphocytes that produced abundant quantities of IFN-gamma and IL-3 on stimulation with larval Ag. Production declined from day 21 although the infiltrate of lymphocytes persisted. Challenge of vaccinated mice resulted in a second influx of IFN-gamma and IL-3-producing cells, earlier than after vaccination or in the appropriate controls. Ablation studies revealed that CD4+ T cells were essential for the production of IFN-gamma. The timing of cytokine production after vaccination, and challenge was coincident with the phases of macrophage activation previously reported. At no time could lymphocytes in BAL cultures be stimulated to proliferate with either larval Ag or mitogen, in contrast to splenocytes from the same mice. Furthermore, T cell growth factor activity was not detected in BAL cultures stimulated with Ag. We suggest that the lymphocytes recruited to the lungs are memory/effector cells. When Ag released from challenge schistosomula is presented to these cells, they respond by secreting cytokines that mediate the formation of cellular aggregates around the parasites, blocking their onward migration.

Animals↗

The generation of interferon-gamma-producing T lymphocytes in skin-draining lymph nodes, and their recruitment to the lungs, is associated with protective immunity to Schistosoma mansoni.

We have examined immunological responses in the skin-draining lymph nodes (SLN) and lungs of mice during the 3 weeks after percutaneous exposure to attenuated larvae of Schistosoma mansoni. Cercariae irradiated with 20 krads (V20) were highly protective and sustained an increased number of CD4+ T cells in the SLN. On secondary exposure to schistosome antigen in vitro, these cells were capable of proliferating and secreting high levels of interferon-gamma (IFN-gamma) and interleukin-3 (IL-3). However, in mice exposed to non-protective 80 krad-irradiated (V80) cercariae, secretion of these cytokines occurred early and only transiently. Significantly elevated numbers of CD4+ T lymphocytes were recoverable on Day 21 from the lungs of V20, but not V80 mice. These cells secreted high levels of IFN-gamma and IL-3 in vitro, but not IL-2 and IL-4. Mice immunized intravenously with attenuated lung-stage schistosomula were not protected, despite having an elevated pulmonary lymphocyte population. Moreover these cells failed to secrete IFN-gamma and IL-3. However, significant protection was achieved where exposure of mice to a combination of V80 cercariae and lung-stage schistosomula resulted in the recruitment of IFN-gamma secreting cells to the lungs. We conclude that the success of the irradiated vaccine depends not only on the generation of a population of antigen-specific T-helper cells in the SLN, but also recruitment of these cells to the lungs before challenge.

Animals↗

Patterns of cytokine production and proliferation by T lymphocytes differ in mice vaccinated or infected with Schistosoma mansoni.

C57BL/6 mice vaccinated with irradiated cercariae of Schistosoma mansoni are highly resistant to challenge infection. To examine the role of T-helper (Th) activity in these vaccinated (V20) mice, cells from skin- and lung-draining lymph nodes (LN) and the spleen were cultured in vitro with soluble schistosomular antigen. Peak proliferation and release of T-cell growth factor (TCGF) by axillary LN cells on Day 5, and by mediastinal LN cells on Day 18, reflected the kinetics of parasite migration. High levels of interferon-gamma (IFN-gamma) were detected and production was prolonged, particularly in the mediastinal LN. The majority of the above activity was ablated with anti-CD4 antibody. IFN-gamma production by spleen cells increased, whilst proliferation and TCGF release remained low. Although levels of proliferation were similar, more IFN-gamma was released by LN cells from V20 mice than by those from mice infected with normal parasites (NI). This difference in IFN-gamma production was magnified by the greater number of cells in LN of V20 than NI mice. On Day 22 post-exposure, 24-fold more IFN-gamma was produced per pair of axillary LN in the former group. LN cells from V20 mice produced interleukin (IL)-2 and IL-4, whereas those from NI mice released IL-2 but negligible IL-4. Greater quantities of IL-3 were secreted by cells from V20 than from NI mice. These results support the conclusion that IFN-gamma-producing memory Th cells, generated in the LN of V20 mice, play an important role in protective immunity against S. mansoni.

Animals↗

Influenza peptide-induced self-lysis and down-regulation of cloned cytotoxic T cells.

Virus-specific cytotoxic T-cell (Tc) clones can lyse target cells in vitro in the presence of their specific peptide epitopes. The lytic potency of murine influenza nucleoprotein (NP)-specific Tc clones was investigated after observing that target cell killing was reduced in the presence of high (greater than 0.2 microM) concentrations of specific NP peptide antigen. Following incubation of Tc for 16 hr in the presence of a range of peptide concentrations, two effects were observed; (i) a peptide dose-dependent mortality of Tc, which has been attributed to self-lysis by clonal Tc in the presence of specific peptide; (ii) and a reduced ability to specifically lyse NP-expressing target cells whilst retaining lectin-dependent lytic activity in the surviving Tc. This functional down-regulation was reversible after 24 hr incubation in the absence of peptide. Toxic effects were excluded, since inhibition of specific target lysis by Tc was mediated only be pretreatment with specifically recognized peptide.

Animals↗

Identification of residues necessary for clonally specific recognition of a cytotoxic T cell determinant.

The residues in an influenza nucleoprotein (NP) cytotoxic T cell determinant necessary for cytotoxic T cell (CTL) recognition, were identified by assaying the ability of hybrid peptides to sensitize a target cell to lysis. The hybrid peptides were formed by substituting amino acids from one determinant (influenza NP 147-158) for the corresponding residues of a second peptide (HLA CW3 171-182) capable of binding to a common class I protein (H-2Kd). Six amino acids resulted in partial recognition; however, the presence of a seventh improved the potency of the peptide. Five of the six amino acids were shown to be required for recognition. The spacing of the six amino acids was consistent with the peptide adopting a helical conformation when bound. The importance of each amino acid in CTL recognition and binding to the restriction element was investigated further by assaying the ability of peptides containing point substitutions either to sensitize target cells or to compete with the natural NP sequence for recognition by CTL. The T cell response was much more sensitive to substitution than the ability of the peptide to bind the restriction element. Collectively the separate strategies identified an approximate conformation and orientation of the peptide when part of the complex and permitted a potential location in the MHC binding site to be identified. The model provides a rationalization for analogues which have previously been shown to exhibit greater affinity for the class I molecule and suggests that the binding site in major histocompatibility complex (MHC) class I molecules might have greater steric constraints that the corresponding area of class II proteins.

Amino Acid Sequence↗

Competition between unrelated peptides recognized by H-2-Kd restricted T cells.

P815 (H-2d) target cells incubated with synthetic peptides corresponding to region 170-182 of HLA or to region 141-161 of influenza nucleoprotein (NP) are lysed by DBA/2 derived cytolytic T cells (CTL) specific for HLA or by BALB/c derived CTL-specific for NP, respectively. Both peptide Ag are recognized in the context of Kd. We show herein that these unrelated, nonhomologous peptides clearly compete reciprocally for recognition by the appropriate Kd restricted CTL. In contrast, different NP peptides that are recognized by other CTL restricted by HLA-B37, H-2-Db or KK, either failed to compete or were much less efficient as competitors than NP peptides recognized in the context of Kd. The efficiency of a peptide as a competitor correlated with its potency as an Ag. The most efficient competitor was a variant peptide of NP 147-158 with R156 deleted, which had been previously shown to be 1,000 times more efficient as an Ag than its natural homolog. Our results suggest that peptides recognized by CTL in the context of the same MHC class I restriction element may bind to the same or interdependent site(s) on the restriction molecule.

Amino Acid Sequence↗

Enhanced recognition of a modified peptide antigen by cytotoxic T cells specific for influenza nucleoprotein.

A previously identified Kd restricted epitope of influenza A virus nucleoprotein (147-161) was modified, resulting in recognition by Kd restricted cytotoxic T cells at significantly lower concentrations than the natural peptide sequence. This was achieved by first refining the epitope to the minimum determinant 147-158. Deletion of arginine 156 resulted in a peptide that was shown to be greatly superior in both dose response titrations and in its rate of association with cells to form targets. Analog peptides were tested to determine the important amino acid changes. These data suggest that T cell epitopes can be modified to result in improved immunological recognition.

Amino Acid Sequence↗

Helper T cell recognition of respiratory syncytial virus in mice.

In this study we aimed to define the protein and viral subtype specificities of helper Th cells to respiratory syncytial virus (RSV). BALB/c mice were primed by infection with RSV, or with vaccinia viruses (VV) containing genes encoding several individual RSV proteins. Priming for Th cell memory was assayed by stimulating spleen cells in vitro with different RSV isolates and measuring RSV-specific interleukin 2 (IL-2) release by T cells into supernatants using an IL-2-dependent CTLL cell line. Splenocytes from mice primed intranasally with RSV exhibited RSV-specific Th cell memory, whereas those from unprimed mice did not. Th cell recognition was in part specific to the strain of RSV used in priming and in part cross-reactive between RSV strains. Intraperitoneal priming with RSV fusion protein-expressing VV or nucleoprotein-expressing VV induced a stronger RSV-specific Th cell response than the attachment glycoprotein-expressing VV which produced only slight Th recognition. No Th cell recognition of two non-structural proteins (1A and 1B) could be demonstrated.

Animals↗

Demonstration of an immunosuppressive action of detergent-disrupted influenza virus on the antibody response to inactivated whole virus vaccine.

In a series of experiments performed in hamsters and mice, administration of mixtures of detergent-disrupted (SV) influenza A X49 (H3N2) virus and inactivated X49 whole virus (WV) vaccine induced lower serum antibody titres than equivalent or lower doses of WV vaccine alone. This reduction in antibody titre was also observed using influenza A (H1N1) and influenza B (B/Hong Kong/8/73) SV and WV vaccine preparations. The results suggested that SV preparations can suppress the serum antibody response to WV vaccine. A suppressive effect of SV influenza virus on WV vaccine was also observed in an in vitro antibody-forming system, using primed mouse spleen cells. In this system, SV induced markedly lower IgG and IgM antibody responses than WV vaccine, and mixtures of SV with WV reproducibly resulted in lowered antibody responses compared to those elicited by WV alone. Possible reasons for these findings are discussed in the light of the known low immunogenicity observed for split and subunit influenza virus vaccine preparations in animals and in unprimed human populations.

Animals↗