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Biomedical subjects

H M Friedman

Publications and source records attributed to H M Friedman.

At least 73 records · Page 4Linked to original sources

Complement component C3b binds directly to purified glycoprotein C of herpes simplex virus types 1 and 2.

Cells infected with herpes simplex virus type 1 (HSV-1), but not HSV-2, express on their surfaces a receptor for the complement component C3b. Receptor activity is markedly enhanced by treatment of the infected cells with neuraminidase. Employing a direct binding assay, consisting of purified HSV glycoproteins immobilized on nitrocellulose and iodinated C3b as a probe, we found that C3b binds directly to gC-1, as well as to gC-2, but not to gB or gD from either serotype. C3b binding was enhanced by treatment of gC-1 or gC-2 with neuraminidase. Endo F or endo H treatment of gC-1 had no effect on C3b binding. However, treatment of gC-2 with these endoglycosidases had a marked negative effect on C3b binding. These results suggest that N-linked oligosaccharides are involved in binding of C3b to gC-2, but not gC-1. Alternatively, removal of N-linked oligosaccharides from gC-2 might adversely affect polypeptide conformation. Glycoprotein C-2 also differs from gC-1 in its effects on the complement cascade. Whereas gC-1 accelerated the decay of the alternative pathway C3 convertase and impaired the efficiency of lysis by the components C5 through C9, gC-2 stabilized the active C3 convertase and had little effect on the late-acting components. The dissimilarity of gC-1 and gC-2 with regard to their effects on the complement cascade may have implications regarding the role of these glycoproteins in confronting the host immune response.

Animals↗

Flow cytometry evaluation of cell-mediated cytotoxicity.

A novel flow cytometry method for the evaluation of cell-mediated cytotoxicity is described. This method uses flow cytometry analysis to distinguish target cells from effector cells by differences in volume and light scatter characteristics. Non-viable target cells, following their interaction with effector cells, are determined via propidium iodide (PI) dye exclusion and then expressed as a percentage of the total target cell population. This assay is suitable both for analysis of systems which allow recycling of cytotoxic effector cells (total cell cytotoxicity assays, TCCA), and of systems in which recycling does not occur (single cell cytotoxicity assays, SCCA). Natural killer (NK) cell-mediated cytotoxicity evaluated by flow cytometry is significantly correlated with the standard 51Cr release assay. Flow cytometry can also be used to evaluate the competitive inhibition that certain cell types exert on the cell-mediated killing of NK-sensitive targets. A prerequisite for this assay is that competitor cells and target cells are distinguishable through their volume and light scatter characteristics. Advantages and pitfalls of the flow cytometry method are discussed, in comparison with the 51Cr-release assay.

Adult↗

Glycoprotein C of herpes simplex virus 1 is an inhibitor of the complement cascade.

Mammalian cells in culture express membrane receptors for C3b when infected with HSV-1. C3b binding is mediated by glycoprotein C (gC), a virus-specified membrane glycoprotein. In view of the inhibitory functions of other C3b-binding proteins, we studied the capacity of gC to modulate complement activation. Glycoprotein C was purified from HSV-1-infected cells by immunoaffinity chromatography. Glycoprotein C, but not a control viral glycoprotein, demonstrated dose-dependent acceleration of decay of C3bBb sites. In addition, gC produced a dose-dependent, time-independent depression of the overall hemolytic efficiency of C3bBb sites. Inhibition of C5b6-initiated reactive lysis of cells bearing C3b, but not cells bearing antibody alone, by gC suggests that the second effect represents interference with the C3b-C5/5b interaction. This hypothesis is supported by the failure of gC to inhibit reactive lysis when added after C5b67 insertion into target cells. Glycoprotein C does not accelerate C14b2a decay, nor does it impair classical pathway hemolytic efficiency when excess C5 is present. By limiting available C5/5b, some gC inhibition of C3b-C5/5b interactions can be unmasked in the classical pathway system. Glycoprotein C is devoid of factor I co-factor activity. HSV-1 gC is a modulator of complement activation, especially via the alternative pathway, and may represent a novel viral mechanism for evading host defense processes.

Animals↗

Combination chemotherapy and radiation therapy. The medical management of epidural spinal cord compression from testicular cancer.

Radiation and surgery are the mainstays of treatment for epidural spinal cord compression. There are reports in the literature, however, in which the use of chemotherapy alone or in combination with radiation and surgery has resulted in improved patient response. We present two patients with spinal cord compression from testicular cancer who developed progressive paraplegias that were successfully reversed with combination chemotherapy, steroids, and radiotherapy. In one case, the patient was unable to receive more than 600 rad (6 Gy) of radiation and his improvement was clearly related to the chemotherapy he received. In treating tumors causing spinal cord compression that are thought to be chemosensitive, one should consider adding chemotherapy to radiation or using chemotherapy alone if the options of surgery or radiation are not available.

Adrenal Cortex Hormones↗

Susceptibility of endothelial cells derived from different blood vessels to common viruses.

We examined whether endothelial cells derived from different blood vessels vary in their susceptibility to viral infection. Five common viral pathogens of humans (herpes simplex 1, measles, mumps, echo 9, and coxsackie B4 viruses) were evaluated for growth in endothelial cells derived from bovine fetal pulmonary artery, thoracic aorta, and vena cava. All five viruses replicated in each type of endothelial cell. There were apparent differences in the quantities of measles and mumps viruses produced in pulmonary artery endothelium compared with thoracic aorta and vena cava when endothelial cells were obtained from different animals. However, when pulmonary artery endothelial cells were compared with vena cava cells from the same animal, growth of each virus was similar in the two cell types. Four of the viruses replicated in the various endothelial cells without producing appreciable changes in cell morphology. These results indicate that endothelial cells from different blood vessels are equally susceptible to the human viruses evaluated, and that viral replication can occur without major alterations in cell morphology. Endothelial cells could serve as permissive cells permitting viruses to leave the circulation and initiate infection in adjacent tissues, including subendothelial smooth muscle cells.

Animals↗

Suppression of matrix protein synthesis by herpes simplex virus type 1 in human endothelial cells.

The synthesis of matrix proteins was investigated in cultures of human umbilical vein endothelial cells (EC) infected with herpes simplex virus type 1 (HSV-1). EC cultures were either mock-infected or infected for 1 hour at a multiplicity of infection (MOI) of 5 or 20 infectious particles per cell. Synthesis was followed by determining [14C]-proline or [35S]-methionine incorporation into non-dialyzable proteins. Using SDS-PAGE we observed that synthesis of fibronectin (FN), type IV procollagen and thrombospondin (TSP) was inhibited in infected cultures as early as 2 hours becoming almost complete by 15 hours post-infection. The degree of inhibition of matrix protein synthesis was dependent on the dose of the virus inoculum (MOI 20 greater than MOI 5) and varied with the particular matrix protein, i.e. shut-off of type IV collagen occurred first followed by that of FN and then TSP. Pulse-chase experiments suggest that the absence of labeled matrix protein in the medium of infected cultures is not due to accumulation of protein within the infected cells since there was an equal and parallel reduction in the cell layer. Suppression of matrix proteins in infected cultures was confirmed by measuring the level of FN and TSP in uninfected and infected cultures in an enzyme-linked immunosorbent assay (ELISA). The three proteins were identified by ELISA, electroimmunoblot, immunoprecipitation and ion-exchange chromatography. The data suggest that HSV-1 infection of human EC suppresses matrix protein synthesis; the degree and time of complete shut-off varies with the protein and the virus dose.

Antigens, Viral↗

Binding of complement component C3b to glycoprotein gC of herpes simplex virus type 1: mapping of gC-binding sites and demonstration of conserved C3b binding in low-passage clinical isolates.

The sites on glycoprotein gC of herpes simplex virus type 1 (HSV-1) which bind complement component C3b were evaluated by using anti-gC monoclonal antibodies and mutants which have alterations at defined regions of the glycoprotein. Monoclonal antibodies were incubated with HSV-1-infected cells in a competitive assay to block C3b binding. Each of 12 different monoclonals, which recognize the four major antigenic sites of gC, completely inhibited C3b binding. With this approach, no one antigenic group on gC could be assigned as the C3b-binding region. Next, 21 gC mutants were evaluated for C3b binding, including 1 which failed to synthesize gC, 4 which synthesized truncated forms of the glycoprotein such that gC did not insert into the cell's membrane, and 16 which expressed gC on the cell's surface but which had mutations in various antigenic groups. Eleven strains did not bind C3b. This included the 1 strain which did not synthesize gC, the 4 strains which secreted gC without inserting the glycoprotein into the cell membrane, and 6 of 16 strains which expressed gC on the cell surface. In these six strains, the mutations were at three different antigenic sites. One hypothesis to explain these findings is that C3b binding is modified by changes in the conformation of gC which develop either after antibodies bind to gC or as a result of mutations in the gC gene. Attachment of C3b to gC was also evaluated in 31 low-passage clinical isolates of HSV-1. Binding was detected with each HSV-1 isolate, but not with nine HSV-2 isolates. Therefore, although mutants that lack C3b binding are readily selected in vitro, the C3b-binding function of gC is maintained in vivo. These results indicate that the sites on gC that bind C3b are different from those that bind monoclonal antibodies, that antibodies directed against all sites on gC block C3b binding, and that C3b binding is a conserved function of gC in vivo.

Antibodies, Monoclonal↗

Outbreak of cryptosporidiosis in a day-care center.

An outbreak of diarrhea due to infection with Cryptosporidium occurred in a day-care center. During a period of 2 months, 23 of 53 (43%) children attending the day-care center and 15 of 104 (14%) household contacts had diarrhea. Cryptosporidium oocysts were identified in 13 of 20 (65%) symptomatic children tested compared with three of 27 (11%) asymptomatic children (chi 2 = 12.56, P less than .001). Enteropathogenic bacteria, enteroviruses, rotavirus, and other protozoan parasites were ruled out as the cause of the diarrhea. A history of diarrhea in household contacts was associated with excretion of Cryptosporidium oocysts by the children. Human-to-human transmission of the infection was suggested by the epidemiology.

Child Day Care Centers↗

The role of pretransplant immunity in protection from cytomegalovirus disease following renal transplantation.

To determine the extent to which pretransplant immunity resulting from natural infection protects against cytomegalovirus (CMV) disease, we analyzed CMV serology on 153 kidney donor and recipient pairs and followed transplant patients to determine incidence and severity of CMV disease. The overall incidence of CMV disease was 22%. Significant differences occurred in CMV disease incidence and severity, depending on the immune status of the kidney donor and recipient. Among recipients of kidneys from seropositive donors, immunity offered significant protection from CMV disease, reducing its incidence from 61% in nonimmune to 24% in immune patients (P less than 0.01). Pretransplant immune patients also had fever CMV-related complications. Among recipients of kidneys from seronegative donors, pretransplant immunity conferred a significant risk of CMV disease; immune patients had a 20% incidence of CMV disease compared with 2% in nonimmune patients (P less than 0.02). Disease was generally mild in all patients receiving kidneys from CMV infection had a 3-fold higher incidence of CMV disease than patients with reactivation infection (P less than 0.01). The incidence of CMV disease was similar in immune patients, whether they received a kidney from a seropositive or a seronegative donor. However, an important observation was that disease was significantly more severe in immune patients receiving a kidney from a seropositive donor (P less than 0.05). This indicates that if kidneys from seropositive donors are selected for use only in seropositive recipients, this places the immune patient at a higher risk for severe CMV disease. We conclude that pretransplant immunity offers a significant advantage to patients receiving kidneys from seropositive donors.

Adolescent↗

Deficient concanavalin-A-induced suppressor-cell activity in patients with bronchial asthma, allergic rhinitis and atopic dermatitis.

Concanavalin-A (Con-A)-induced suppressor activity against the proliferative response of autologous lymphocytes to phytohaemagglutinin (PHA) was examined in the peripheral-blood lymphocytes from fourteen patients with bronchial asthma, ten patients with allergic rhinitis and eleven patients with atopic dermatitis and compared with eleven simultaneously studied healthy normals. Eight of fourteen patients (57%) with bronchial asthma, eight of ten patients (80%) with allergic rhinitis and five of eleven patients (45%) with atopic dermatitis demonstrated deficient Con-A-induced suppressor function. Abnormal suppressor-cell functions could play an important role in the pathogenesis of atopic states.

Asthma↗

Binding of complement component C3b to glycoprotein C is modulated by sialic acid on herpes simplex virus type 1-infected cells.

Neuraminidase treatment of cells infected with herpes simplex virus type 1 (HSV-1) markedly enhanced the binding of complement component C3b to HSV 1 glycoprotein C (gC). When HSV-1 was grown in BHK RicR14 cells in which glycoproteins had reduced amounts of N-linked complex oligosaccharides, including sialic acid, the binding of C3b to gC was markedly enhanced. We used neuraminidase treatment to demonstrate that cloning the gC gene from the HSV-1 F strain into an HSV-1 mutant which fails to express gC converted the mutant virus from C3b receptor negative to receptor positive. These results further support a role for gC as a C3b receptor and indicate that sialic acid modifies receptor activity.

Complement C3b↗

Viral infection of vascular endothelial cells alters production of colony-stimulating activity.

Viral infections in humans are frequently associated with granulocytopenia and/or granulocytosis. Such changes in myelopoiesis could result from infection of the granulocyte-macrophage colony-forming cell (CFC-GM) or changes in the production of colony-stimulating activity (CSA). Endothelial cells are a known source of CSA and may be transiently or persistently infected during a number of viral infections, including infection with herpes simplex virus type I (HSV-I) and measles virus. Therefore, we examined the effect of endothelial cell infection with these two viruses on the production of CSA. Uninfected passaged endothelial cells produce CSA when stimulated by the continual presence of a factor present in medium conditioned by peripheral blood monocytes (MCM). Within 4 h of infection with HSV-I, endothelial cells no longer produced CSA in response to MCM. In contrast, measles virus infection induced CSA production by passaged endothelial cells even in the absence of MCM. Measles virus-induced CSA production was maximal at 24 h and required the presence of live virus within the endothelial cells. The effects of HSV-I and measles virus on CSA production were not dependent on alterations in the production of alpha- or gamma-interferon by the infected endothelial cells. Infection with HSV-I did not stimulate endothelial cells to release any detectable interferon. In contrast, the supernatants of the measles-infected cells contained only beta-interferon, a known inhibitor of CFC-GM development. These studies suggest that CSA production by endothelial cells is directly altered by infection with HSV-I and measles virus. An alteration in CSA production might contribute to changes in myelopoiesis that frequently accompany viral infection in humans.

Cells, Cultured↗

Herpes simplex virus type 1 infection of endothelial, epithelial, and fibroblast cells induces a receptor for C3b.

We recently demonstrated that herpes simplex virus type 1 (HSV 1) induces a receptor on human umbilical vein endothelial cells for complement component C3b (C3bR). We assigned this receptor function to HSV 1 viral glycoprotein C (gC) based on several observations: tunicamycin, which prevents glycosylation and expression of N-linked glycoproteins on the surface of infected cells, markedly reduced expression of the C3bR; monoclonal antibodies to HSV 1 gC blocked detection of the C3bR, whereas monoclonal antibodies to other HSV 1 glycoproteins (gB, gD, gE) had no effect; and the MP mutant of HSV 1, which fails to express gC, did not induce C3bR. We now report that HSV 1 induces C3bR on a wide variety of cell types including bovine thoracic aorta and pulmonary artery endothelial cells, human embryonic lung and embryonic foreskin fibroblasts, and human embryonic kidney cells. To date, all cells studied that are permissive to HSV 1 express C3bR, although the pattern of rosetting of C3b-coated erythrocytes varies among the cell strains examined. We also demonstrate that C3bR expression is not a general response of human umbilical vein endothelial cells to injury, because three other viruses (adenovirus 7, measles, and mumps) do not induce C3bR after infection of these cells. Previously we had shown that among herpes simplex viruses, a variety of HSV 1 strains induce C3bR, whereas HSV 2 strains do not. We now demonstrate that other herpes family viruses (CMV and VZV) do not express C3bR. Therefore, C3bR expression appears to be unique for HSV 1 and occurs on a wide variety of cells permissive to this virus.

Adenovirus Infections, Human↗

Herpes simplex virus type 1 infection of endothelium reduces collagen and fibronectin synthesis.

Protein synthesis was assessed in virus-infected and -uninfected cultures of bovine aorta endothelial cells by following the incorporation of [14C]proline into nondialyzable protein and by use of an ELISA assay. Monolayers were infected at confluency by incubating with herpes simplex virus type I at a multiplicity of infection (ratio of virus to cells) of 1.0, 1 hour prior to the introduction of the [14C]proline. Samples were taken from infected and uninfected cultures at various time points postinfection from both medium and cell layer fractions and analyzed for total 14C-labeled protein, 14C-labeled collagen, and 14C-labeled fibronectin. Medium proteins were analyzed by polyacrylamide gel electrophoresis, gel filtration, and electroimmunoblotting. No change was detected in total [14C] incorporation into nondialyzable protein in infected compared with uninfected endothelial cells; however, there was a significant decrease in the synthesis of collagen and fibronectin in infected cultures. The hydroxy[14C]proline content of fractionated medium proteins showed no significant differences between infected and uninfected cultures; therefore, the decrease in collagen synthesis cannot be explained by increased collagen degradation. These data suggest that infection of bovine endothelial cells causes a reduction in the synthesis of collagen and fibronectin.

Animals↗

Towne-vaccine-induced prevention of cytomegalovirus disease after renal transplants.

91 renal transplant candidates were randomised to receive Towne strain cytomegalovirus (CMV) vaccine or placebo at least 8 weeks before transplantation. The vaccine was well tolerated and there was no vaccine virus excretion. Serological and cellular immune responses developed in most vaccines but were lower in the transplant patients than in healthy volunteers and some of the seronegative patients failed to mount responses. CMV infection occurred in most of the seronegative vaccine-treated or placebo-treated patients who received kidneys from seropositive donors, but the illnesses were less severe in the vaccines than those in similarly exposed placebo-treated patients. Vaccine-treated patients who received kidneys from seronegative donors did not excrete virus, and therefore the vaccine virus was not reactivated from a putative latent state despite immunosuppression at the time of transplantation.

Antibodies, Viral↗