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Biomedical subjects

Y Ron

Publications and source records attributed to Y Ron.

At least 37 records · Page 2Linked to original sources

Group B streptococcal tricuspid valve endocarditis: a case report and review of literature.

Group B streptococcal endocarditis involving the tricuspid valve is an uncommon disease. We describe herein a young healthy woman who developed this disease following an elective abortion. She was treated with penicillin and gentamycin with no response. The patient was operated urgently and recovered. Few reports have described the disease in the last 25 years (our case is the thirteenth). Five of them were IV drug abusers, four patients suffered from debilitating diseases and in five women endocarditis developed following an obstetric procedure. In general the mortality from tricuspid valve endocarditis is low, indeed 2/13 (15%) died. The drug of choice is penicillin with gentamycin.

Abortion, Therapeutic↗

CD8(+), radiosensitive T cells of parental origin, oppose cells capable of down-regulating cytotoxicity in murine acute lethal graft-versus-host disease.

Murine graft-versus-host (GVH) disease takes two forms depending upon the parental/F1 strain combination employed. Anemia, lymphopenia, hypogammaglobulinemia, profound anti-F1 cytotoxicity, and the loss of cytotoxic potential against third party alloantigen is seen in acute lethal GVH disease. In contrast to this, in chronic GVH disease there is polyclonal B cell activation, auto-antibody production, no anti-F1 cytotoxicity, and retained cytotoxicity against allotargets. We have previously reported that this marked disparity in disease expression results from a radiosensitive host veto cell which protects the F1 mouse from parental anti-F1 cytotoxicity in mice undergoing CGVH disease. This cell could be induced in vitro or in vivo in CGVH disease. Using an in vitro system, we now demonstrate that a CD4(+), radiation-sensitive, T cell does emerge in acute lethal GVH disease which is capable of down-regulating cytotoxicity. The cell does not appear to be a veto cell in that it attenuates cytotoxicity directed against nonself alloantigen. The function of this cell does not appear to be influenced by minor lymphocyte stimulatory gene products. We further report that, in ALGVH disease, regulation by this cell is not readily apparent due to the emergence of a CD8(+) T cell of parental (B6) origin, which opposes its action.

Acute Disease↗

Assessment of the esophageal wall by endoscopic ultrasonography in patients with nutcracker esophagus.

BACKGROUND: The correlation between the width of muscularis propria and esophageal pressure in patients with the nutcracker esophagus is unknown. We examined by endoscopic ultrasonography the width of the muscularis propria in patients with nutcracker esophagus. METHODS: The width of muscularis propria was measured at the gastroesophageal junction and at the lower, middle, and upper esophagus in 18 patients and 10 control subjects. RESULTS: Mean muscularis propria diameter in patients was 1.8 +/- 1.4, 1.5 +/- 1.2, 1.5 +/- 0.8, and 1.2 +/- 0.4 mm at the gastroesophageal junction, lower, middle, and upper esophagus. In the control group, the mean width was 1.2 +/- 0.3, 1.2 +/- 0.3, 1.1 +/- 0.3, and 0.9 +/- 0.1 mm, respectively. The difference was significant at the gastroesophageal junction and upper esophagus. The muscularis propria was wider than 3 mm in 30% of patients. There was no correlation between the site of the wide muscularis propria and the esophageal segment where high pressure was recorded. Length of disease, frequency of symptoms, and length of each symptomatic period did not correlate with the width of muscularis propria. CONCLUSION: The muscularis propria is thickened in one third of patients with nutcracker esophagus. The extent and magnitude of this thickening do not correspond to the location and the magnitude of the manometric abnormality or clinical presentation.

Adult↗

Methotrexate in chronic active ulcerative colitis: a double-blind, randomized, Israeli multicenter trial.

BACKGROUND & AIMS: Uncontrolled studies have suggested that methotrexate may be effective in patients with active ulcerative colitis. The aim of this study was to evaluate the effectiveness of oral methotrexate in chronic steroid-dependent ulcerative colitis in a randomized, double-blind multicenter trial. METHODS: Patients with active ulcerative colitis who have received steroids and/or immunosuppressives for at least 4 months during the preceding 12 months with a current Mayo Clinic score of > or = 7 were included in the study. Methotrexate (12.5 mg) or placebo was added to their treatment once weekly for 9 months. RESULTS: Sixty-seven patients were included (methotrexate, 30 patients, placebo, 37 patients). The proportion of patients entering first remission (methotrexate, 46.7%; placebo, 48.6%), the time to reach first remission (methotrexate, 4.1 +/- 1.9 months; placebo, 3.4 +/- 1.7 months), as well as the proportions of patients having a relapse after first remission (methotrexate, 64.3%; placebo, 44.4%) were not significantly different between the two groups. The mean Mayo Clinic score, the mean monthly steroid dose, and the proportion of abnormal laboratory results during the study were also similar. CONCLUSIONS: Methotrexate at a weekly oral dose of 12.5 mg was not found to be better than placebo in the induction or maintenance of remission in patients with chronic active ulcerative colitis.

Administration, Oral↗

Inducible human immunodeficiency virus type 1 packaging cell lines.

Packaging cell lines are important tools for transferring genes into eukaryotic cells. Human immunodeficiency virus type 1 (HIV-1)-based packaging cell lines are difficult to obtain, in part owing to the problem that some HIV-1 proteins are cytotoxic in a variety of cells. To overcome this, we have developed an HIV-1-based packaging cell line which has an inducible expression system. The tetracycline-inducible expression system was utilized to control the expression of the Rev regulatory protein, which in turn controls the expression of the late proteins including Gag, Pol, and Env. Western blotting (immunoblotting) demonstrated that the expression of p24gag and gp120env from the packaging cells peaked on days 6 and 7 postinduction. Reverse transcriptase activity could be detected by day 4 after induction and also peaked on days 6 and 7. Defective vector virus could be propagated, yielding titers as high as 7 x 10(3) CFU/ml, while replication-competent virus was not detectable at any time. Thus, the cell line should enable the transfer of specific genes into CD4+ cells and should be a useful tool for studying the biology of HIV-1. We have also established an inducible HIV-1 Env-expressing cell line which could be used to propagate HIV-1 vectors that require only Env in trans. The env-minus vector virus titer produced from the Env-expressing cells reached 2 x 10(4) CFU/ml. The inducible HIV-1 Env-expressing cell line should be a useful tool for the study of HIV-1 Env as well.

Cell Line↗

A murine model for genetic manipulation of the T cell compartment.

The expression of exogenous genes in long-lived primary T cells is potentially beneficial for the treatment of various diseases including cancer, AIDS, genetic defects of the lymphoid compartment, and systemic enzyme deficiencies such as hemophilia. One approach for genetic modification of T cells is to introduce therapeutic genes into hematopoietic stem cells that would give rise to cells of the lymphoid lineage. Efficient gene transfer and expression in stem cells is often problematic, however. A more direct approach is to introduce the genes into mature primary T lymphocytes since the transferred genes can be maintained and expressed for long periods by long-lived peripheral T cells. In this report, we describe the adoptive transfer into SCID mice of both murine and human primary T cells that have been efficiently transduced with exogenous genes. Primary murine T cells transduced with a retroviral vector containing the human adenosine deaminase (ADA) gene persisted for at least 5 months in lymphoid organs of SCID mice, continuously expressing the exogenous gene. Primary human T cells were also used as target cells for transfer of the beta-galactosidase (lacZ) gene. Expression of the lacZ gene could be detected in over 20% of the transduced primary T cells before adoptive transfer into SCID mice. Transduced human T cells were injected into SCID mice intraperitoneally (ip), and the beta-galactosidase activity could be detected in cells collected from peritoneal exudate washes of recipient mice 6 weeks post-injection. These results demonstrate the availability of a murine model in which the long-term effects of expression of exogenous genes in both murine and human T cells can be tested.

Adenosine Deaminase↗

A peripheral blood-derived monolayer supports long-term cultures of human CD4+ and CD8+ T lymphocytes.

An in vitro culture system has been developed for the long-term maintenance of primary, human peripheral blood and umbilical cord blood T lymphocytes, which does not rely on the use of stimulatory cytokines, antigen, or mitogens. In these cultures, a monolayer of adherent cells, some spindle-shaped and some resembling macrophages, developed within a week. All adherent cells were positive for the extracellular matrix proteins laminin and fibronectin, the intermediate filament vimentin, and for the surface markers major histocompatibility complex class II, platelet-endothelial cell adhesion molecule l (CD31), and E-Selectin (ELAM-1; CD62E). They were negative for the leukocyte common antigen (CD45), the macrophage marker MO-2 (CD14), muscle-specific actin, and Factor VIII-related antigen. These monolayers supported the maintenance of nonadherent, resting, mature T cells for up to 3 months, and these cells retained their ability to respond to mitogens and allogeneic cells. Both CD4+ and CD8+ cells were supported. The proportion of CD4+ and CD8+ cells remained unchanged after 3 months in culture. We have also used T cells from 2-month-old cultures as target cells for retroviral vector-mediated gene transfer. Up to 30% of the long-term T cells expressed the transferred lacZ gene after infection with a retroviral vector. The infection efficiency was similar to that obtained for fresh peripheral blood T cells, indicating that the long-term-cultured cells might be suitable for certain gene therapy applications.

Adolescent↗

Mutations of conserved cysteine residues in the CWLC motif of the oncoretrovirus SU protein affect maturation and translocation.

The envelope glycoprotein complex is composed of two polypeptides, an external heavily glycosylated polypeptide (SU) and a membrane-spanning protein (TM). Together they form a heterodimer on the surface of the virion. These proteins are synthesized in the form of a polyprotein precursor which is glycosylated and proteolytically processed during its maturation in the secretory pathway. A highly conserved stretch of four amino acids, CWLC, has been identified in most known oncoretroviral SU proteins, about two-thirds of the distance from the amino terminus. To study the significance of this sequence for the structure and/or function of SU, cysteine to serine mutations were made in reticuloendotheliosis virus strain A. Initial studies showed that substitution of either one or both cysteines resulted in the production of noninfectious virus. Furthermore, immunoprecipitations and pulse-chase analysis demonstrated that the mutants yielded envelope polyprotein precursors which were stable. However, the polyprotein precursors were not proteolytically processed into SU and TM, and immunoprecipitations indicate that the immature polyproteins form aggregates, suggesting that the mutations interfere with proper folding. Although not proteolytically processed, at least one of the mutant glycoproteins appeared to be efficiently transported to the cell surface. These studies indicate that changing either cysteine residue abrogates viral infectivity by affecting folding, inhibiting normal maturation of the envelope glycoproteins.

Amino Acid Sequence↗

Both anti-CD11a (LFA-1) and anti-CD11b (MAC-1) therapy delay the onset and diminish the severity of experimental autoimmune encephalomyelitis.

Experimental autoimmune encephalomyelitis (EAE) is a demyelinating disease of the central nervous system (CNS) induced in rodents by activated CD4+ T cells specific for various myelin proteins such as myelin basic protein and proteolipid protein. The disease is characterized by breach of the blood-brain barrier, perivascular infiltration of leukocytes into the CNS, local inflammation and demyelination in the form of plaques. In this study, we evaluated the effect of administration of antibodies to two members of the beta 2 integrin sub-family of adhesion molecules, CD11a and CD11b, on the onset and progression of EAE. CD11a and CD11b are involved in cell-cell interactions leading to T cell and macrophage extravasation to inflammatory sites and T cell activation. Our results show that anti-CD11a antibodies could completely block the induction of EAE and anti-CD11b antibodies significantly delayed the onset and diminished the severity of clinical signs of EAE even when injections were initiated at the first appearance of clinical signs.

Amino Acid Sequence↗

Genetic rearrangements occurring during a single cycle of murine leukemia virus vector replication: characterization and implications.

Retroviruses evolve at rapid rates, which is presumably advantageous for responding to selective pressures. Understanding the basic mutational processes involved during retroviral replication is important for comprehending the ability of retroviruses to escape immunosurveillance and antiviral drug treatment. Moreover, since retroviral vectors are important vehicles for somatic cell gene therapy, knowledge of the mechanism of retroviral variation is critical for anticipating untoward mutational events occurring during retrovirus-medicated gene transfer. The focus of this report is to examine the spectrum of genomic rearrangements arising during a single cycle of Moloney murine leukemia virus (MoMLV) vector virus replication. An MoMLV vector containing the herpes simplex virus thymidine kinase (tk) gene was constructed. MoMLV vector virus was produced in packaging lines, and target cells were infected. From a total of 224 mutant proviruses analyzed, 114 had gross rearrangements readily detectable by Southern blotting. The remaining proviruses were of parental size. PCR and DNA sequence analysis of 73 of the grossly rearranged mutant proviruses indicated they resulted from deletions, combined with insertions, duplications, and complex mutations that were a result of multiple genomic alterations in the same provirus. Complex hypermutations distinct from those previously described for spleen necrosis virus and human immunodeficiency virus were detected. There was a correlation between the mutation breakpoints and single-stranded regions in the predicted viral RNA secondary structure. The results also confirmed that the tk gene is inactivated at an average rate of about 8.8% per cycle of retroviral replication, which corresponds to a rate of mutation of 3%/kbp.

3T3 Cells↗

Pseudotyped REV/SRV retroviruses reveal restrictions to infection and host range within members of the same receptor interference group.

The reticuloendotheliosis virus (REV) group of retroviruses and type D simian retroviruses (SRV) belong to the same receptor interference group. The cellular receptor for these viruses has not yet been identified. In order to study the distribution of the receptor and to identify a receptor negative cell line, vector viral pseudotypes between REV and SRV were made. Using these viral pseudotypes, susceptibility to infection was examined in some rodent and marsupial cell lines. Infectivity assays with these envelope pseudotypes demonstrated that all cell types tested were resistant to infection. However, treatment of the rodent cells with the N-linked glycosylation inhibitor tunicamycin rendered most of the cells susceptible to infection. These results indicate that all the rodent cells tested express a nonfunctional receptor for viruses of the REV and SRV groups, which can be made functional by tunicamycin treatment. A difference in receptor host range among members of the same receptor interference group was observed which suggests that the REV/SRV receptor for this interference group might be differentially modified in different cell types. The studies also identified at least one cell line not expressing the REV/SRV receptor which should be useful for isolating the gene encoding the receptor.

Animals↗

A murine model for B-lymphocyte somatic cell gene therapy.

Mature primary B lymphocytes represent a potentially important cellular target for somatic cell gene therapy, which could prove advantageous for the treatment of certain metabolic and immunologic disorders. Their capacity to serve as antigen-presenting cells could be utilized for triggering and/or potentiating immune responses to tumors and viruses. Alternatively, B cells expressing an autoantigen could be manipulated to induce antigen-specific unresponsiveness for treatment of autoimmune diseases. Efficient expression of an exogenous gene product in long-lived B lymphocytes could be particularly useful for providing a corrected gene product in the bloodstream. Despite these advantages, efficient gene transfer into mature primary B cells has not been reported. One reason for this is that current protocols for retroviral vector-mediated gene transfer into lymphocytes rely on in vitro expansion and/or drug selection. This precludes the use of mature primary B cells as targets, since they cannot be readily cultured for long periods of time. In this report, we describe an efficient and rapid protocol for the introduction of exogenous genes into primary B cells without the need for drug selection. We have used retroviral vectors containing the human adenosine deaminase gene as a marker gene, since the biological activity of this enzyme is easy to measure and is readily distinguishable from that of the endogenous mouse adenosine deaminase. Upon adoptive transfer into SCID mice, infected B cells continuously expressing one to three copies of the human adenosine deaminase gene could be found in the spleens of recipient animals for at least 3 months.

Adenosine Deaminase↗

In vivo antigen presentation by both brain parenchymal cells and hematopoietically derived cells during the induction of experimental autoimmune encephalomyelitis.

A fundamental issue in the etiology of autoimmune diseases of the central nervous system such as multiple sclerosis and its animal counterpart experimental autoimmune encephalomyelitis (EAE) concerns the identity of cells capable of presenting autoantigen to the T cells that mediate these diseases. The prevailing dogma is that only bone marrow-derived cells function as APC during EAE induction. We have addressed this issue by studying EAE induction in mouse bone marrow chimeras, and have found that although bone marrow-derived APC such as macrophages and brain microglial cells are more efficient at presenting autoantigen, brain parenchymal cells such as astrocytes and endothelial cells are also capable of inducing disease. EAE was induced in these chimeras by the adoptive transfer of encephalitogenic T cell lines designed to be MHC-histocompatible with APC contained either within the hematopoietic system of the chimera or with APC resident to the brain of the chimera. The subsequent development of EAE in these chimeras then indicated which population of cells served as in vivo APC during EAE pathogenesis. Possible effects of alloreactivity between the host chimera and the adoptively transferred T cells were eliminated by using encephalitogenic T cell lines made tolerant to the haplotype(s) of the recipient chimera.

Amino Acid Sequence↗

Efficient gene transfer into primary murine lymphocytes obviating the need for drug selection.

The efficient introduction of exogenous genes into primary lymphocytes is potentially important both for somatic cell gene therapy and for studying lymphocyte biology. We describe the use of retroviral vectors to efficiently introduce exogenous genes into primary, mature murine lymph node T and B cells, and primary, immature murine CD4- CD8- double-negative (DN) thymocytes. Efficient infection of primary cells was achieved by cocultivation of target cells with lethally irradiated helper cells that produce high titers of retroviral vectors containing either the neomycin phosphotransferase II (neo) gene, or both the neo and the human adenosine deaminase (ADA) genes, in the presence of lymphokines and/or mitogens. Two days postinfection, without neomycin selection, one to five copies of the exogenous genes per cell were detected by Southern blot analysis. Expression of the exogenous human ADA protein was detected at levels comparable to the endogenous murine ADA protein in the mature T and B lymphocytes, and was somewhat lower for the immature DN thymocytes.

Adenosine Deaminase↗

Selective inactivation of lymphocytes after psoralen/ultraviolet light (PUVA) treatment without affecting systemic immune responses.

Psoralens, together with ultraviolet light A (PUVA), are used for the treatment of several proliferative diseases. It has been suggested that the effectiveness of this treatment is due to induction of a specific immune response by PUVA-treated lymphocytes that down-regulates untreated cells of the same specificity. The present studies show that the clinically used psoralen analogue 8-methoxypsoralen (8-MOP), as well as 4,8-dimethyl-5'-(pyridiniummethyl)psoralen bromide (4NQ), a derivative that does not cross the cell membrane, when activated by UVA light, render lymphocytes unresponsive to mitogenic, antigenic, or phorbol myristate acetate + ionomycin-induced stimulation. This state of unresponsiveness was not reversed by exogenous recombinant interleukin-2. Treatment of lymphocytes with 4NQ and UVA light had no effect on the viability or the homing pattern of the cells to spleen or liver, whereas 8-MOP induced toxicity in about 50% of cells after 3 days in culture. Using an adoptive transfer mouse model, we found that antigen-specific lymphocytes treated with PUVA (8-MOP or 4NQ) had no effect on the ability of these mice to respond to a subsequent challenge with the same or an irrelevant antigen. This was tested by measuring the T cell proliferative responses of lymph node cells from mice primed with keyhole limpet hemocyanin (KLH) or fowl gamma globulin (FGG) before or after adoptive transfer of large numbers of KLH- or FGG-specific PUVA-treated lymph node cells. No effects of antigen-primed PUVA-treated cells on antigen-primed untreated cells were observed in vitro in mixed lymphocyte cultures responding to the relevant antigen. These results suggest that, in our model system, PUVA induces cell inactivation but does not affect systemic T cell responses.

Animals↗

High rate of genetic rearrangement during replication of a Moloney murine leukemia virus-based vector.

A protocol was designed to measure the forward mutation rate over an entire gene replicated as part of a Moloney murine leukemia virus-based vector. For these studies, the herpes simplex virus thymidine kinase (tk) gene under the control of the spleen necrosis virus U3 promoter was used as target sequence since it allows selection for either the functional or the inactivated gene. Our results indicate that after one round of retroviral replication, the tk gene is inactivated at an average rate of 0.08 per cycle of replication. Southern blotting revealed that the majority of the mutant proviruses resulted from gross rearrangements and that deletions of spleen necrosis virus and tk sequences were the most frequent cause of the gene inactivation. Sequence analysis of the mutant proviruses suggested that homologous as well as nonhomologous recombination was involved in the observed rearrangements. Some mutations consisted of simple deletions, and others consisted of deletions combined with insertions. The frequency at which these mutations occurred during one cycle of retroviral replication provides evidence indicating that Moloney murine leukemia virus-based vectors may undergo genetic rearrangement at high rates. The high rate of rearrangement and its relevance for retrovirus-mediated gene transfer are discussed.

3T3 Cells↗

A spleen necrosis virus-based retroviral vector which expresses two genes from a dicistronic mRNA.

We have investigated a novel strategy for coexpressing two genes from a retroviral vector. The 5' nontranslated leader region of at least some picornavirus RNAs contains a sequence that can act as an internal ribosome entry site allowing initiation of translation at a downstream AUG codon in a 5' cap-independent manner. To investigate whether such a sequence can function in the context of a retroviral vector, we constructed a spleen necrosis virus-based vector carrying two selectable marker genes separated by the leader region of encephalomyocarditis virus. This vector was genetically stable and efficiently expressed both markers from a single dicistronic transcript. Since the expression of two genes by other strategies in retroviral vectors can often be problematic, these results offer a promising new approach for the design of "double gene" retroviral vectors.

Animals↗

Synergy between encephalitogenic T cells and myelin basic protein-specific antibodies in the induction of experimental autoimmune encephalomyelitis.

Experimental autoimmune encephalomyelitis (EAE) is an experimentally induced demyelinating disease mediated by CD4+ T cells specific for various myelin proteins including myelin basic protein (MBP) and myelin proteolipid protein (PLP). Although myelin- and other CNS-specific antibodies are produced in EAE, B cells and antibodies are thought by most not to play a decisive role in the induction of EAE. In this report we show that B cells serve as the major antigen-presenting cells (APC) during the T cell activation stage in lymph nodes, and that MBP-specific antibodies can greatly enhance the induction of EAE. The role of B cells as APC is demonstrated in B cell-depleted mice. EAE cannot be induced by antigen/complete Freund's adjuvant immunization unless these mice are locally reconstituted with B cells prior to immunization. The enhancing effect of antibodies is demonstrated in experiments in which EAE is induced by the adoptive transfer of encephalitogenic T cells. The adoptive transfer of large numbers of encephalitogenic T cells induces EAE in 90% of normal recipient mice, but only 33% of B cell-depleted mice get EAE at the same cell dose. The efficiency of EAE induction in B cell-depleted mice can be enhanced if MBP-specific antibodies are simultaneously administered. A similar enhancement is also seen in normal mice when the number of adoptively transferred T cells is limiting. We propose that MBP-specific antibodies enhance the presentation of myelin-derived antigens by APC in the CNS to the adoptively transferred encephalitogenic T cells.

Animals↗