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Biomedical subjects

S C Knight

Publications and source records attributed to S C Knight.

At least 55 records · Page 3Linked to original sources

Human blood dendritic cells: binding to vascular endothelium and expression of adhesion molecules.

To investigate the binding properties of dendritic cells (DC) to vascular endothelium, a comparative analysis was undertaken of DC, monocytes and lymphocytes isolated from the blood of 25 healthy subjects using monolayers of human umbilical vein endothelial cells as the adherence substrate. More blood DC (mean 24% adherence) were adherent to endothelial monolayers than monocytes (mean 18%; P < 0.001) and lymphocytes (mean 12%; P < 0.001). When the monolayers were pretreated with tumour necrosis factor-alpha (TNF-alpha) all leucocyte populations exhibited an increased attachment, but there was still greater binding of DC (mean 37% adherence) in comparison with monocytes (mean 23%; P < 0.001) and lymphocytes (mean 18%; P < 0.001). Flow cytometric analysis revealed that in relation to monocytes and lymphocytes the DC had a higher surface expression of the adhesion molecules CD11a (P < 0.05), CD11c (P < 0.005) and CD54 (P < 0.005) but a lower prevalence of cells bearing CD49d (mean 38%; P < 0.05) and the homing receptor CD62L (mean 14%; P < 0.001). CD1a was present on 22% of DC and virtually absent from the surface of monocytes and lymphocytes. The intensity of expression of the beta1-integrins, CD49c, CD49d and CD49e was greater on DC than lymphocytes and monocytes (P < 0.05). Antibody blocking studies demonstrated that DC binding to untreated and TNF-alpha-treated endothelium was dependent upon the expression of CD11a, CD18 and CD49d, and the simultaneous application of anti-CD18 and anti-CD49d antibodies produced an approximate 70% inhibition of adhesion (P < 0.001). Thus, the expression of both beta1- and beta2-integrins contributes to the adhesive interaction between DC and endothelium.

Cell Adhesion↗

Adhesion molecules are upregulated on dendritic cells isolated from human blood.

This study investigated whether the high expression of adhesion molecules on enriched preparations of circulating dendritic cells (DCs) was an intrinsic property of the cells or whether it was a consequence of the procedure used to isolate them from blood. Expression of the beta 1, beta 2 integrins (CD11/CD18 family) and other adhesion molecules on DCs in whole blood was compared with that on isolated DCs. Dendritic cells were identified by flow cytometry as leucocytes that were positive for human leucocyte antigen (HLA)-DR, but negative for CD3, CD14, CD16, CD19 and CD56. In contrast to a minority of DCs in whole blood, the majority of isolated DCs expressed the beta 2 integrins and there were a greater number of cells bearing CD44, CD54 and some of the beta 1 integrins (notably CD49b, CD49d, CD49e and CD29). An increase in the proportion of DCs bearing adhesion molecules was generally apparent at the isolation stage when mononuclear cells, which had been incubated overnight, were centrifuged on a metrizamide gradient to enrich for cells of low density. Inclusion of an inhibitor of protein glycosylation and exocytosis (brefeldin A) at all stages of separation partially prevented an increase in the percentage of DCs bearing CD18, C29 and C54 whereas the inclusion of cycloheximide (an inhibitor of polypeptide synthesis) interfered with increases in the percentage of cells bearing CD29 and CD54. Neither of these antagonists had an effect on the intensity of adhesion molecule expression. We suggest that some of the adhesion-dependent functions of isolated DCs are caused, in part, by an upregulation of surface adhesion molecules induced by the enrichment procedure.

Brefeldin A↗

Bone marrow-derived dendritic cells, infection with human immunodeficiency virus, and immunopathology.

Dendritic cells (DC) exposed to HIV-1 show nonproductive infection that may become productive as they mature. The distribution of DC within genital mucosa and their susceptibility to infection particularly with clade E viruses could be reflected in the ease of heterosexual transmission. Carriage of virus and viral antigen by DC into lymph nodes may allow clustering and activation of T cells and production of protective immune responses. However, secondary infection of activated T cells from infected DC could cause dissemination of virus and loss of infected DC and T cells. In asymptomatic infection, fewer dendritic cells with reduced capacity to stimulate CD4 T cell proliferation are found before evidence of T cell abnormalities, and these early changes in antigen-presenting cells may result in a decline in the production of CD4 memory T cells. However, DC fuel ongoing production of antibody to HIV-1. Signaling by DC to T cells may thus underlie two major features of early HIV infection--loss in CD4+ memory T cells and persistence of antibody production. In AIDS, infected dendritic and epithelial cells within the thymus may affect maturation and contribute to loss of the "naive" T cell population. Further loss of memory T cells may occur through syncytium formation with infected DC. Finally, in AIDS patients, there is a failure in the development and the function of DC from CD34+ stem cells. In conclusion, the infection of dendritic cells, loss in their numbers, and changed signaling to T cells may shape the pattern of immunity during infection with HIV-1. Conversely, treatments that reverse the defect in antigen presentation by DC may improve cell-mediated immunity.

Animals↗

Rationale and perspectives on the development of fungicides.

Fungicides continue to be essential for the effective control of plant diseases. New classes of fungicides with novel modes of action are being developed in the 1990s. These include the strobilurins, phenylpyrroles, anilinopyrimidines, phenoxyquinolines, and compounds that trigger defense mechanisms in the plant. For the foreseeable future, new toxophores will be identified through a process of random screening, with natural products representing a rich source of fungicide leads. Progress is being made in the development of high-throughput screens comprised of target enzyme sites or cell-based assays; these techniques will improve the probability of discovery. Following the identification of suitable leads, biorational design is used to optimize specific properties. In vivo glasshouse screens and field trials are expected to remain the dominant methods for characterizing new compounds. Low toxicity to humans and wildlife, low environmental impact, low residues in food, and compatibility with integrated pest management (IPM) programs are increasingly important considerations in the selection of fungicides for development.

Journal Article↗

Mechanism for dendritic cell dysfunction in retroviral infection of mice.

Dendritic cells (DC) from mice infected with the murine retrovirus Rauscher leukaemia virus (RLV) are poor stimulators of allogeneic and syngeneic T cells and express lower, but still significant, levels of MHC class II. In this paper we further investigated the mechanism of the dysfunction of DC. DC from infected animals did not cause anergy of T cells during coculture for 3 or 6 days. They did not release a substantial amount of soluble factors which could suppress T cell responses. The low T cell responses on stimulation using RLV-infected DC could be overcome by the addition of control DC. Pretreatment of these control DC with monoclonal antibody against MHC class II molecules completely blocked their ability to restore stimulation of T cells in the presence of infected DC. However, antibody against MHC class I or mismatched MHC class II molecules did not prevent restoration of function. The reduced labeling of surface MHC class II molecules previously reported was shown to reflect a loss in total class II molecules within the cells; MHC class I levels were unaltered by exposure to the virus. In DC from RLV-infected mice biosynthesis of MHC class II was decreased by around 50% at the transcriptional level in comparison with beta-actin. Thus, the down-regulation of surface class II molecules observed in DC following RLV infection is a consequence of a specific block in its biosynthesis and the failure of DC to stimulate T cells may be a direct consequence of the reduced class II levels. Since reduced stimulation by DC is also seen in HIV-1 infection in humans we speculate that a similar mechanism might operate in retroviral infection in man.

Animals↗

Comparison between the phenotype and function of maturing dendritic cells from spleen and lymph nodes.

We compared the capacity of mature dendritic cells (DC) from lymph nodes and maturing DC from spleens in their capacity to stimulate responses to the small hapten picryl sulphonic acid (PIC) and to the same hapten conjugated to ovalbumin (PIC-OVA) and requiring processing. Surface expression of major histocompatibility complex (MHC) class II molecules, which are upregulated during maturation of splenic DC, were studied as an independent marker of maturation. Freshly isolated lymph node DC had a veiled appearance and high levels of class II expression. DC separated from suspensions of spleen cells expressed the DC-specific marker NLDC-145, but were small, had low levels of MHC class II molecules and expressed stem cell antigen. Those DC from spleen cells cultured for 24 and 48 hr showed the development of typical veiled DC morphology and high class II expression. Lymph node DC stimulated high levels of primary T-cell proliferation to PIC, but failed to stimulate primary responses to PIC-OVA. Splenic DC isolated immediately failed to stimulate primary responses to either antigen. More mature spleen DC stimulated responses both to PIC and PIC-OVA. Surprisingly, development of the capacity to stimulate responses to PIC preceded that of stimulating PIC-OVA responses. The capacity of the DC to process and present PIC-OVA was maintained during the culture period. The results indicate that both the form of the antigen and the source and maturity of the DC are critical in determining the responses stimulated in T lymphocytes.

Animals↗

Antigen-presenting cells but not lymphocytes in the joint may indicate the cause of reactive arthritis.

T cells and antigen-presenting cells (APC) accumulate in the joint in reactive arthritis and there are reports that the T cells are a population selected for responsiveness to the causative agent. In this work, the latter view is questioned by detailed studies of the antigen specificities of the lymphocytes within the joint (SFMC) and peripheral blood (PBMC) of patients with reactive arthritis triggered by infection with Chlamydia trachomatis. Using a hanging-drop microculture system. SFMC displayed enhanced responses not only to antigens from the triggering organism, but also to other antigens, including PPD and tetanus toxoid, to which the patients were likely to have had prior exposure. No evidence was obtained for a dominant cross-reactive T-cell response to epitopes common to these antigen preparations, confirming the polyclonal nature of the infiltrate. In contrast to the broad specificity of the T-cell infiltrate, two experimental approaches indicated that APC within the joint carried chlamydial antigen. The failure of antigen-bearing APC to interact with T cells at this site may underlie the inability to clear microbial antigen from the joint.

Antigen Presentation↗

CD4 expression on dendritic cells and their infection by human immunodeficiency virus.

Infection of dendritic cells (DC) by human immunodeficiency virus (HIV) has been disputed. Employing a fluorescence-activated cell sorter, DC, identified by the absence of membrane markers for T, B, natural killer (NK) and monocytic cells and by high levels of MHC class II DR antigen, were shown to express low levels of CD4. Immunomagnetic beads were used to separate blood low density cells, which are enriched for DC, into CD4-positive and -negative populations. Examination of these cells by electron microscopy showed an increase in the percentage of cells with DC morphology in the CD4-positive fraction and a reduction in the CD4-negative fraction. Electron microscopy of semi-purified DC preparations infected in vitro for 5 days with HIV-1 revealed morphologically distinct veiled DC with mature virions on the cell surface and virus budding through the cell membrane. Further evidence for the growth of HIV in DC was provided by experiments in which DC were extensively depleted of contaminating lymphocytes and monocytes prior to infection. Estimation of provirus load by a nested PCR indicated that after 5 days an infection level of one provirus copy per five cells could be achieved. After 7 days the provirus copy number could exceed the cellular genome copy number, suggesting that some cells had more than one provirus. Infectious virus could not be demonstrated in these cultures after 24 h but was detected after 5 or 7 days. Infection of DC in the presence of antibodies against CD4 was inhibited and suggests infection occurs via a CD4-dependent pathway. These results confirm that DC are susceptible to HIV infection in vitro. The immunological consequences of DC infection in vivo may be significant in the pathogenesis of AIDS.

Base Sequence↗