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P Lloyd-Evans

Publications and source records attributed to P Lloyd-Evans.

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Journal Article↗

Expression of neutralizing recombinant human antibodies against Varicella Zoster virus for use as a potential prophylactic.

Chickenpox is a highly infectious disease that can be life-threatening to certain groups such as the newborn of nonimmune mothers and immunocompromised patients. At present, prophylactic treatment of individuals at risk involves the use of a polyclonal antibody preparation derived from the pooled sera of hyperimmune donors. While this product is effective, there are problems associated with maintaining supply, which depends on the availability of donors, and the variation of potency between batches. An effective human monoclonal preparation would be of value by providing a well-characterized and standardized preparation available on demand. In this study recombinant human anti-varicella zoster virus (VZV) monoclonals were generated from the mRNA of unstable anti-VZV secreting heterohybridoma cell lines, and characterized according to their molecular weight, isoelectric point, glycosylation, binding to C1q, and efficacy at neutralizing VZV in vitro. In one antibody (AEVZ 5.3) the VH region was grafted from the IgG1 parent antibody onto an IgG3 backbone to determine the effect of isotype on neutralization in vitro. Antibodies were expressed from NSO cells at concentrations of 3-24 microg/mL and contained the expected heavy and light chain fragments and N-linked glycan structures. Both AEVZ 5.1 and AVEZ 4 antibodies were IgG1 and recognized the viral coat protein glycoprotein E; both showed complement-independent and complement-enhanced neutralization. Changing the isotype of AEVZ 5.1 from IgG1 to IgG3 (AEVZ 5.3) further enhanced VZV neutralization in the presence of complement, but reduced its neutralization capacity in the absence of complement. Complement enhancement was consistent with our findings that the IgG3 form could bind more molecules of C1q. The results demonstrate the successful use of recombinant methods to generate stable, functional monoclonal antibodies. Modifications of the original antibodies were made with the aim of improving functionality. The resulting cell lines could be used for large-scale production of well-characterized antibodies for therapeutic use.

Antibodies, Monoclonal↗

Detection of weak D and D(VI) red cells in D-negative mixtures by flow cytometry: implications for feto-maternal haemorrhage quantification and D typing policies for newborns.

Quantitation of feto-maternal haemorrhage (FMH) by flow cytometry (FC) has been shown to be more accurate than the Kleihauer-Bekte test. Fetal cells will be predominately of R1r or R2r phenotype, with antigen site numbers per cell (SPC) of between 9900 and 16000. If the fetus is of weak D or partial D(VI) phenotype, fewer SPC will be present. Red cells from 20 adult weak D samples were mixed with rr red cells to give 1% mixes. Mixtures were stained and analysed by FC, using two different monoclonal reagents. The SPC of each sample was measured using SOL-ELSA with Scatchard plot analysis. 18 samples could not be distinguished and had <1000 SPC. Two samples that could be distinguished had 1350 and 3000 SPC. Red cells from seven samples of D(VI) were also analysed. None of these samples could be distinguished: SPC were all <1000. Although one of the reagents used reacts with D(VI) cells, quantitation of a D(VI) FMH would not be possible due to low SPC. The ability of fetal red cells with low Rh D SPC to cause immunization is questionable; failure to measure FMH in these cases is unlikely to cause clinical problems, as long as suitably sensitive serological reagents and techniques are used to type all weak D and D variant babies as Rh D positive, and thus ensure that the mother is given the appropriate dose of anti-D.

Adult↗

Use of a phycoerythrin-conjugated anti-glycophorin A monoclonal antibody as a double label to improve the accuracy of FMH quantification by flow cytometry.

The use of flow cytometry for quantifying fetomaternal haemorrhage is increasing, and has been shown to be more accurate than the Kleihauer-Betke test for evaluating larger bleeds of over 4 mL in volume. Red cells are stained with fluorescently labelled monoclonal anti-D. Cells for analysis are normally gated manually on the basis of forward and side scatter. We investigated whether the use of an antiglycophorin A monoclonal antibody conjugate (red cell specific) in a dual labelling technique would improve the gating of RBC and FMH quantification. Mixes of adult rr and cord R1r RBC were prepared to simulate 1, 0.5, 0.25, 0.12 and 0.06% fetal bleeds. Phycoerythrin-conjugated BRIC 256 (mouse monoclonal antiglycophorin A) was used to label all RBC, and FITC-BRAD-3 monoclonal anti-D was used to determine the proportion of D-positive cells. Results from the dual labelling experiments were compared to those from single labelling of the same mixtures with FITC-BRAD-3 alone, using gated and ungated data. The results showed that single labelling with manual gating gave falsely low FMH estimates. We conclude that use of a fluorescently labelled antiglycophorin A antibody improves the accuracy of the FMH measurement by flow cytometry, as manual subjective gating of RBC excludes a higher proportion of fetal than of adult RBC.

Animals↗

Quantitation of Rh D antigen sites on weak D and D variant red cells by flow cytometry.

Information on the number of D sites on weak D (Du) and D variant cells is limited and incomplete. The aim of this study was to use a simple non-isotopic technique utilising a combination of flow cytometry and ELISA to quantitate the number of D sites on an extensive range of these cells. Five human monoclonal IgG anti-D (BRAD-7 (JAC10), BRAD-5, 2B6, BRAD-3, H27) and one affinity-purified polyclonal IgG anti-D were each used at a saturating concentration of 20 micrograms/ml. In general, BRAD-3, BRAD-5 and 2B6 gave the highest number of D sites per cell (SPC), H27 and the polyclonal anti-D were slightly lower, while BRAD-7 gave the lowest SPC with all D-positive cells tested except DFR. Interestingly, BRAD-7 gave the highest SPC with DFR cells. Rh D antigen density for R2R2 cells was approximately double that seen with either R2r or Rzero (presumed R0r) cells. R1R1 cells gave only moderately higher SPC than R1r cells.Higher SPC were obtained with the R1 haplotype if the CW antigen was present. Weak D, Va and VI cells of the R1 haplotype had higher SPC than those of the Rzero or R2 haplotypes. The majority of D variant cells were found to have lower SPC than normal cells, and for polyclonal anti-D, which was the only anti-D to react with all D variants, SPC decreased in the order IIIc > IIIa > HMii > IVa > Va > DFR > DBT > IVb > VII > II > HMi > VI. The number of molecules of IgG anti-D bound to D variant cells varied by up to 10 times with reactive monoclonal antibodies. The highest SPC on weak D and D variant cells were obtained with BRAD-7 (DFR, 9,500), BRAD-3 (Va, 12,500), BRAD-5 (II, 5,500; VII, 5,300; weak D, 1,300), H27 (III, 24,000; VI, 2,900; HMi, 3,000; HMii, 16,800) and polyclonal anti-D (IVa, 9,300; IVb, 4,000; DBT, 4,300).

Antibodies, Monoclonal↗

Use of a directly conjugated monoclonal anti-D (BRAD-3) for quantification of fetomaternal hemorrhage by flow cytometry.

BACKGROUND: Determination of the volume of fetal D-positive cells in the circulation of D-negative women after delivery is carried out to determine whether additional prophylactic anti-D should be given to the mother. Although the Kleihauer-Betke test is still widely used to calculate the fetomaternal hemorrhage, increasing use is being made of flow cytometry. STUDY DESIGN AND METHODS: A conjugated monoclonal anti-D was prepared by labeling purified BRAD-3 (IgG3) with fluorescein isothiocyanate (FITC-BRAD-3). This reagent was used to label D-positive red cells by a one-step procedure: 5 microL of washed cells were incubated with 50 microL of FITC-BRAD-3 (50 micrograms/mL) at 37 degrees C for 30 minutes; then the cells were washed and 500,000 events were analyzed by flow cytometry. RESULTS: The FITC-BRAD-3 reagent effectively labeled D-positive cells. The percentage of D-positive cells in mixtures containing more than 0.04 percent D-positive cells in D-negative cells was accurately determined by using this reagent and flow cytometry. Although the Kleihauer-Betke test was more accurate than this one-step flow cytometric method at quantifying fetomaternal hemorrhage of < 1 mL, the flow cytometric method was more accurate in the 1- to 7-mL fetomaternal hemorrhage range of 1 to 7 mL (whole-blood equivalents). Analysis of 175 clinical samples for fetomaternal hemorrhage gave consistent quantification results with the three methods used: the Kleihauer-Betke test, flow cytometry with FITC-BRAD-3, and flow cytometry with polyclonal anti-D followed by FITC-anti-IgG. CONCLUSION: Labeling of samples with FITC-BRAD-3 was simple and rapid. By flow cytometric analysis, good separation of D-positive from D-negative cells was obtained, and fetomaternal hemorrhage of > 1 mL was quantified accurately.

Antibodies, Monoclonal↗

Eicosanoid generation and effects on the aggregation of thrombocytes from the rainbow trout, Oncorhynchus mykiss.

Fish blood lacks anucleate platelets but contains a nucleated cell type termed the thrombocyte that is thought to be functionally analogous. Thrombocytes were purified from the peripheral blood of the rainbow trout, Oncorhynchus mykiss, by a two step gradient centrifugation method. Following this procedure, the recovered thrombocytes were 78-86% pure as defined by immunoreactivity to a panel of monoclonal antibodies and were of variable morphology from round to spindle-shaped. Incubation of thrombocyte suspensions with either calcium ionophore, A23187, platelet-activating factor or a thromboxane (TX) mimetic, U-46619, generated a range of eicosanoids derived from arachidonic acid including 12-hydroxyeicosatetraenoic acid (12-HETE), TXB2, prostaglandin (PG) E2, leukotriene (LT) B4 and lipoxin (LX) A4. The equivalent products derived from eicosapentaenoic acid were also formed. Co-incubation of thrombocytes with either erythrocytes or granulocytes/monocytes in the presence of calcium ionophore did not result in the formation of any further new lipoxygenase products. Incubation of isolated thrombocytes in plasma-free conditions with U-46619 (0.03-10 microM) resulted in a rapid, dose-dependent aggregatory response. This effect was markedly augmented in the presence of mammalian fibrinogen (400 micrograms ml-1). Thrombin (0.1-1.3 units ml-1), like U-46619, was also a potent proaggregatory compound for trout thrombocytes. LXA4 and LTB4 had limited aggregatory potential and then only at high concentrations (10 microM), while 12-HETE and PAD had no significant effect at all concentrations tested. These results demonstrate that some of the eicosanoids released during the activation of trout thrombocytes are involved in the aggregatory behaviour of this cell type.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Lipoxin biosynthesis by trout macrophages involves the formation of epoxide intermediates.

Rainbow trout macrophages incubated with calcium ionophore A23187 or zymosan synthesize a range of lipoxygenase products, including lipoxins from endogenous arachidonic and eicosapentaenoic acids. The profile of products formed was consistent with the presence of 5- and 12-lipoxygenase activity in intact cells, whereas freeze-thaw disruption of macrophages revealed a further 15-lipoxygenase activity. To examine the mechanism of lipoxin biosynthesis in these cells, macrophages from the hemopoietic head kidney were incubated with potential intermediates and substrates, including 5-hydroxyeicosatetraenoic acid (5-HETE), 5-hydroperoxyeicosatetraenoic acid (5-HPETE), 15-HETE, 15-HPETE, 5,15-dihydroperoxyeicosatetraenoic acid (5,15-diHPETE), 5,15-dihydroxyeicosatetraenoic acid (5,15-diHETE), and LTA4. Only 5-HPETE caused an increase in LXA4 formation, while incubation with 15-HETE resulted in the appearance of LXB4, a product not formed from endogenous substrates. Alcohol trapping experiments were conducted to evaluate the formation of epoxide-containing intermediates during lipoxin biosynthesis. Both 12-O-methoxy and 6-O-methoxy derivatives of LTA4/5 were formed, together with three groups of tetraene-containing trapping products, one of which co-chromatographed with the methanol trapping products generated from a synthetic 5(6)-epoxy tetraene. The time course of the appearance of tetraene and triene trapping products was similar. Preliminary results are also consistent with the presence of epoxide hydrolase activity in trout macrophages that converted the 5(6)-epoxy tetraene to LXA4. The results of this series of experiments suggest that lipoxin biosynthesis in trout macrophages involves the cooperation of 5- and 12-lipoxygenases to yield an epoxy tetraene-containing intermediate, or its equivalent, that is specifically converted to LXA4.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of lipoxins and other eicosanoids on phagocytosis and intracellular calcium mobilisation in rainbow trout (Oncorhynchus mykiss) leukocytes.

Rainbow trout (Oncorhynchus mykiss) macrophages generated lipoxin (LX) A4, LXA5, leukotriene (LT) B4, LTB5 and 12-hydroxyeicosatetraenoic acid (12-HETE) during the phagocytosis of zymosan and Escherichia coli, but not of the yeast Saccharomyces cerevisiae. Prostaglandin (PG) E2 was also detected in supernatants from macrophages incubated with either zymosan or calcium ionophore A23187. LXA4 (10(-8)-10(-6) M) and LTB4 (10(-9)-10(-7) M) provoked rapid and transient dose-dependent increases in intracellular calcium ([Ca]i) concentrations in leukocyte suspensions containing 40-60% macrophages. EC50 values were 14.9 and 1.2 nM, respectively. PGE2 and 12-HETE had no effect on [Ca]i at concentrations up to 30 microM. PGE2 and 12-HETE (10(-5)-10(-10) M) enhanced the in vitro phagocytosis of yeast test particles by trout macrophages, whereas LXA4 and LTB4 had no demonstrable effect on the responses of these cells at concentrations up to 10(-5) M. In conclusion, the processes involved in trout macrophage stimulation are complex but involve generation of both cyclooxygenase and lipoxygenase products. The increase in [Ca]i caused by LXA4 and LTB4 may form part of the chemotactic transduction mechanism that recruits granulocytes and macrophages to sites of inflammation. The effects of eicosanoids on phagocytosis appear to be independent of changes in [Ca]i.

Animals↗

Development of the lymphomyeloid system in the dogfish, Scyliorhinus canicula.

Previous studies on the morphology of the lymphomyeloid tissues in the dogfish, Scyliorhinus canicula, have been confined to adults. This study was restricted to the structure and functioning of the developing immune system in embryonic and post-hatch dogfish. A major feature of the developing immune system in S. canicula, is the succession of haemopoietic/lymphoid tissues. The liver is the first tissue to contain immunoglobulin positive cells at 2 months, followed by the interstitial kidney at 3 months. The thymus, spleen, and Leydig organ appears at 4 months while the epigonal and gut-associated lymphomyeloid tissues are the last tissues to differentiate. The haemopoietic/lymphoid nature of the kidney and thymus disappear at post-hatch and the other lymphomyeloid tissues persist through adult life. By the time of egg case splitting (ca. 6 months), when embryos receive massive exposure to water-borne antigens, the structural development of most of the lymphomyeloid tissues is well advanced.

Animals↗