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Biomedical subjects

J Silver

Publications and source records attributed to J Silver.

At least 181 records · Page 10Linked to original sources

Inhibitory molecules in development and regeneration.

In addition to chemotrophic and contact guidance theories that explain how long projection neurons weave intricate patterns of connectivity within developing or regenerating neuronal networks, there has been recent interest in mechanisms that guide axons by actively constraining, inhibiting or repelling axon growth cones. Developmental boundaries are especially important in regions where large numbers of growing axons must change direction in order to remain on course towards their potential targets. Regenerative boundaries can also have severe pathological consequences since they limit the potential for axon regrowth following injury or diseases. Some of the molecular mechanisms that generate repulsive environments in the embryo are re-expressed in the adult following injury. In the developing retina, a chondroitin sulfate-proteoglycan appears to play an essential role in controlling the sequence of ganglion cell differentiation and initial direction of axons. In several lesion models, re-expression of a chondroitin sulfate-proteoglycan by reactive astrocytes limits regeneration through glial scars; conversely, in experiments where boundary molecules have been manipulated by chondroitinase digestion, axons are stimulated to regrow or re-route to inappropriate pathways.

Alzheimer Disease↗

Detection and quantitation of hepatitis C virus RNA in serum using the polymerase chain reaction and a colorimetric enzymatic detection system.

A sensitive, non-isotopic method for detecting and quantifying hepatitis C virus (HCV) RNA in serum using the reverse transcriptase-polymerase chain reaction (RT-PCR) and a hybridization specific, colorimetric biotin-avidin peroxidase detection system has been developed. The sensitivity of the PCR-colorimetric system was determined using RNA synthesized from cloned HCV cDNA. The assay could detect as few as 10 molecules of HCV RNA, comparable to the sensitivity achieved with double PCR using nested primers. Thus, this colorimetric assay can detect low levels of HCV RNA in serum and appears to be quantitative, suggesting that this technique may be applied to rapid screening of large numbers of samples and to monitor the effect of antiviral therapy.

Animals↗

Murine retroviral vector that induces long-term expression of HIV-1 envelope protein.

A retroviral vector was constructed that induces long-term expression of human immunodeficiency virus type 1 (HIV-1) rev, vpu and env genes. The vector contains the neo gene and a cytomegalovirus (CMV) immediate early promoter followed by HIV-1 sequence. When HeLa cells were infected with viral stocks derived from this vector, about 25% of the resulting G418-resistant clones expressed HIV-1 envelope protein (Env), easily detectable by Western blot analysis, metabolic labelling, and syncytium formation after co-cultivation with HeLa-CD4 cells. In most cases the level of Env expression was higher than in a T cell line (H9) chronically infected with HIV-1. Env-expressing HeLa cell lines also expressed Rev, detected by transfection with a Rev-dependent CAT gene construct, and Vpu, detected by immunoprecipitation with a Vpu-specific antiserum. The 75% of G418-resistant HeLa cell lines that did not express Env were found to contain proviruses that had undergone deletion of env sequences corresponding to a known intron; presumably these cell lines arose as a result of infection with virions derived from spliced RNAs. This vector should be useful for studying non-transient effects of HIV Env, Rev and Vpu in tissue culture, and for the production of Env- and/or Rev-expressing cell lines.

Animals↗

Cortical development and topographic maps: patterns of cell dispersion in developing cerebral cortex.

Cortical neurons are organized into highly patterned ensembles of cells, each with a distinct physiological function. The precursors of these cells arise in the ventricular zone, itself a highly patterned mosaic of cells. To determine whether the ventricular pattern presages the adult, investigators examine the process of cell migration. Recent evidence suggests that both radial (pattern-preserving) and tangential (pattern-blurring) cell movements occur during development.

Animals↗

New aspects in the control of parathyroid hormone secretion.

Ca2+ binds to a parathyroid cell Ca2+ receptor, which is G protein-coupled and activates inositol triphosphate production. Mutations in the Ca(2+)-sensing receptor gene cause familial hypocalciuric hypercalcemia and neonatal severe hyperparathyroidism. Chronic hypocalcemia increases parathyroid hormone messenger RNA levels and parathyroid cell hyperplasia. Parathyroid cells in vitro are heterologous in their response to Ca2+. The concept of a higher Ca2+ set-point in secondary hyperparathyroidism is controversial. Calcitriol is more effective than the less hypercalcemia analogues in decreasing parathyroid hormone messenger RNA and immunoreactive parathyroid hormone levels, and its kinetics are well established. Phosphate and estrogens regulate the parathyroid independently of 1,25 dihydroxyvitamin D3 and Ca2+. The physiology of the effects of endothelin and insulin-like growth factors on the parathyroid need to be established. Important advances are being made in understanding the regulation of parathyroid hormone synthesis and secretion, which are relevant to both normal physiology and the pathogenesis and treatment of diseases such as the secondary hyperparathyroidism of renal failure and osteoporosis.

Animals↗

Measurement of the rate of uptake and subcellular localization of porphyrins in cells using fluorescence digital imaging microscopy.

A fluorescence imaging system incorporating a cooled slow-scan charge-coupled device camera was used to study the rate of uptake and subcellular localization of prophyrins in living cells. Measurements were carried out on human dermal fibroblasts (D532) using two different prophyrins meso-tetra(4-N-methylpyridyl)porphine (TMPP) and meso-tetra(4-N-hexylpyridyl)porphine (THPP). It was observed that TMPP was rapidly taken up by cells and principally located in the nucleus. The THPP, on the other hand, internalized more slowly and exhibited a particulate distribution in the cytoplasm.

Cells, Cultured↗

Marked gamma delta T-cell decrease in peripheral blood of patients with primary biliary cirrhosis (PBC).

PBC is a cholestatic liver disease of unknown etiology with autoimmune features that is often associated with other autoimmune diseases. We analyzed peripheral blood T-cell subsets in patients groups with PBC (n = 11), non-PBC hepatobiliary disease (n = 11) and an age and sex matched control group (n = 11) by two color FACS-analysis. Seven out of eleven PBC patients exhibited markedly lowered and nearly undetectable levels of gamma delta T-cells (< 0.8%). None of the individuals in the non-PBC hepatobiliary disease (HBD) group or the normal control group had gamma delta values below 1%. The other four individuals in the PBC group had gamma delta values within the normal range. Overall, the PBC group had a statistically significant, lowered mean percentage of gamma delta T-cells (1.50%) as compared to the hepatobiliary disease group (3.76%) and the control group (4.22%, p = 0.01). The percentages of CD4+ and CD8+ and alpha beta TCR+ CD4-CD8- double negative cells in PBC patients did not differ from the control group. PBC patients with normal gamma delta cell counts did not differ from the PBC group with low gamma delta values in autoantibody titers, liver tests or treatment of the disease. As a possible cause for the observed decrease of gamma delta T-cells three sera of PBC patients with low gamma delta T-cell counts were screened by single color, indirect immunofluorescence for antibodies to gamma delta T-cell enriched lymphocytes, but no differences to control sera were observed.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Analysis of the peripheral blood T-cell receptor (TCR) repertoire in monozygotic twins discordant for Crohn's disease.

T cell involvement in the inflammatory process of Crohn's Disease (CD) is evident by an increase in activated T cells and their cytokines in actively inflamed CD tissue. It has been suggested that CD may involve a superantigen based on the observation that a significant proportion of CD patients express elevated levels of V beta 8+ T cells in their peripheral blood compared to normal controls. In order to determine whether a superantigen might play a role in the pathogenesis of CD we have compared the TCR repertoires of four pairs of monozygotic twins discordant for CD. By using monozygotic twins, we could rule out the effects of HLA and other genes on the TCR repertoire. The TCR repertoires were analyzed by using a panel of V-segment-specific mAb and by quantitative polymerase chain reaction (qPCR) using V beta-specific oligonucleotide primers. In all cases the TCR repertoires of the affected and unaffected sibs were strikingly similar. We did not observe any TCR segment that was consistently altered in frequency or expression levels in all of the affected sibs compared to their identical twin. Furthermore, we did not see an increase in V beta 8+T cells in the peripheral blood of the CD sibs relative to their normal counterpart. These studies suggest that the presence of CD does not alter the TCR repertoire of peripheral blood in any obvious way and argue against the role of a superantigen in the etiology of pathogenesis of CD.

Antibodies, Monoclonal↗

Evidence for an altered T-cell receptor repertoire in Crohn's disease.

We have compared the frequencies of T cells expressing each of four different T cell receptor (TCR) V beta segments in lamina propria and peripheral blood lymphocytes of 12 Crohn's disease (CD), six ulcerative colitis (UC), and 10 control patients in an attempt to identify disease-specific changes. The frequencies of CD4+ and CD8+ cells reacting with each of four fluoresceinated TCR-specific monoclonal antibodies directed against V beta 5, V beta 6.7a, V beta 8, and V beta 12 were determined by flow cytometry. There was no difference among the groups in the average frequency of any single V beta segment in either the CD4+ or CD8+ subpopulations. However, when the sum of the differences in V beta frequencies (delta score) between peripheral blood lymphocytes (PBL) and lamina propria lymphocytes (LPL) were determined for each individual, significant differences were observed between the CD4+ and CD8+ populations and among the patient groups. In all three patient groups, there were significant individual differences between LPL and PBL in the frequencies of CD8+ and CD4+ cells reacting with the four V beta-specific mAb. In Controls and UC, this difference was, on average, two-fold greater in CD8+ cells than in CD4+. In CD, however, this difference was, on average, the same for CD8+ and CD4+ cells. These observations suggest that (1) the human colonic LPL TCR repertoire is normally different from that of PBL, especially in the CD8+ population and (2) there is an alteration in the LPL TCR repertoire in CD which is not observed in Controls or UC.

Antibodies, Monoclonal↗

Axon-glia interactions regulate ECM patterning in the postnatal rat olfactory bulb.

It has been suggested that an inhibitory ECM containing chondroitin-6-sulfate proteoglycan (C-6S-PG) and tenascin (TN), which appears homogeneously in the core of the OB following afferent fiber arrival, helps position ingrowing olfactory axons in the prospective glomerular layer (GL) (Gonzalez and Silver, 1992; Gonzalez et al., 1993). Later, a similar ECM associated with astrocytes envelopes axonal glomeruli in rings, suggesting that axons may control the precise ECM patterning. The question remains whether formation of the matrix ring pattern around each axonal glomerulus is an intrinsic property of the matrix-producing cells or a response to developing axons. To determine if the organization of glial associated matrix in the OB was dependent on the presence of axons, we studied the effect of unilateral injection of a neurotoxin into the olfactory epithelium of postnatal rats. Using olfactory marker protein (OMP), beta-tubulin (TUJ1) antibodies, and Nissl staining, we found that at 5 and 10 d following neurotoxin administration the number of glomeruli decreased by an average of 77.0% in the injected side. At the same time, we observed that the TN/C-6S-PG rings and periglomerular cells were present only around the remaining small number of glomeruli. Elsewhere, ECM expression and the periglomerular cell configuration were more disorganized in the GL. The pattern of glial fibrillary acidic protein (GFAP) did not change significantly. We found that OMP staining, beta-tubulin immunoreactivity, and periglomerular cells reformed in a glomerular-like pattern as the olfactory axons reformed by 20 d. As the glomeruli-shaped collection of axon terminals reappeared, TN/C-6S-PG immunoreactivity also reoccurred in rings around the new axon bundles. Again, at this later stage, the expression of GFAP was similar in both sides. In our previous study (Gonzalez et al., 1993), we suggested that the initial gross positioning of glomeruli may be controlled by the overall positioning of TN/C-6S-PG. In the present study, we suggest that the formation of TN/C-6S-PG in the precise ring pattern around glomeruli appears to be dependent upon the presence of bundled olfactory axons. Various mechanisms are discussed that may explain the dynamic change in ECM expression that occurs inside the glomerulus after the neurotoxin treatment.

Animals↗

Heterogeneity among astrocytes in reactive gliosis.

Reactive gliosis has been considered to be the major cause of regenerative failure of the mature mammalian central nervous system (CNS). It is classically defined by increased glial fibrillary acidic protein expression. However, the response to injury is not uniform throughout the CNS. This heterogeneity is becoming more apparent as other markers for reactive astrocytes emerge from recent studies. These molecules may be more relevant markers of the functional state of reactive astrocytes and may help us understand the events leading to failure of regeneration in the CNS.

Animals↗

The molecular basis of secondary hyperparathyroidism in chronic renal failure.

Renal osteodystrophy is a debilitating complication of chronic renal failure and secondary hyperparathyroidism (2HPTH) is one of its central features. 2HPTH develops as a result of the low levels of serum calcium and 1,25-dihydroxyvitamin D [1,25(OH)2D3] and the high serum phosphate that occur in chronic renal failure. 1,25(OH)2D3 markedly decreases PTH gene transcription and its lack leads to 2HPTH. A low serum calcium increases PTH mRNA and iPTH levels while a high serum calcium has no effect on PTH gene expression. In experimental uremia there are increased levels of PTH mRNA. In chronic renal failure there is a shift in the calcium set-point to the right. This may be a function of a change in properties of the parathyroid cell calcium receptor, which is a G-protein coupled calcium sensor.

Calcitriol↗

Clonal predominance of T cell receptors within the CD8+ CD45RO+ subset in normal human subjects.

Structural models for the TCR alpha/beta predict that the CDR1, CDR2, and CDR3 loops of both the alpha- and beta-chains contribute to specific interactions with the Ag/MHC complex. The CDR3 loops are constructed by joining events involving the V-(D)-J segments, and thus may vary in both sequence and length. We have developed a polymerase chain reaction assay to assess the length variation of the CDR3 loop in TCR derived from seven V beta segment families (V beta 2, V beta 3, V beta 4, V beta 9, V beta 14, V beta 16, and V beta 17). Peripheral blood T cells from 10 normal adults as well as five cord blood samples were studied. CD4+ and CD8+ T cells were analyzed separately. We observed extreme predominance of particular CDR3 lengths in half of the normal adults. These TCR were shown to be clonal by direct sequence analysis. This clonal dominance was found in the CD8+, CD45RO+ T cell population, and was observed in various V segment families. These patterns of TCR clonality were persistent over many months of observation in some individuals. In one subject, the new appearance of a predominant clone was associated with a booster vaccination for hepatitis B. These studies reveal a surprising degree of oligoclonality in the CD8+ cells of normal subjects which may be due to both environmental and genetic factors; the functional significance of persistent clonal dominance in the CD8 compartment remains to be determined.

Adult↗

Interleukin-10 production by human carcinoma cell lines and its relationship to interleukin-6 expression.

Recent data indicate a major role for IL-10 in suppressing immune and inflammatory reactions. To date, expression of human IL-10 has been attributed primarily to helper T lymphocytes, activated monocytes, and neoplastic B cells, and was often found to be associated with IL-6 expression. In this study we sought to determine whether non-hematopoietic human tumor cell lines produce IL-10 and, if so, what is the relationship between IL-10 and IL-6. Using ELISA, we determined IL-10 and IL-6 levels in culture supernatants of 48 cell lines established from carcinomas of the kidney, colon, breast and pancreas, malignant melanomas and neuroblastomas. IL-6 protein was secreted by 28 of the tumor cell lines; IL-10 was measurable in 15 cell lines. IL-6 secretion was maximal and most frequent in renal-cancer cell lines, while IL-10 production was found to be highest and most common among cell lines derived from colon carcinomas. IL-10 in conditioned medium of one of the colon carcinoma cell lines (CCL222) was bio-active, as demonstrated in the mouse MC/9 mast-cell-line assay and in human mixed-lymphocyte reactions. In both assays, IL-10 bio-activity was neutralized by an anti-IL-10 monoclonal antibody. Expression of IL-6 and IL-10 was confirmed by RNA analysis using message amplification by PCR and sequencing of amplified cDNA. LPS, IL-1 alpha, and TNF-alpha strongly enhanced the release of IL-6 by RCC cells, but only marginally affected IL-10 production in colon-carcinoma cells. IL-10 secretion by colon-carcinoma cells was moderately stimulated by IFN-gamma and IL-4. Dexamethasone suppressed the release of IL-6, but had no inhibitory effect on IL-10 secretion. Our results demonstrate that tumor cell lines established from certain types of human carcinomas are capable of expressing and releasing IL-6 and/or IL-10, suggesting a role of these cytokines in solid-tumor development and anti-tumor immunity.

Animals↗

Establishment and neurite outgrowth properties of neonatal and adult rat olfactory bulb glial cell lines.

Two glial cell types surround olfactory axons and glomeruli in the olfactory bulb (OB) and may influence synapse development and regeneration. OB astrocytes resemble type-1 astrocytes, and OB ensheathing cells resemble non-myelinating Schwann cells. We have produced clonal OB astrocyte and ensheathing cell lines from rat neonatal and adult OB cultures by SV40 large T antigen transduction. These cell lines have been characterized by morphology, growth characteristics, immunophenotype, and ability to promote neurite outgrowth in vitro. Neonatal and adult ensheathing cell lines were found to support higher neurite outgrowth than OB astrocyte lines. Neonatal OB astrocyte lines were of two types, high and low outgrowth support. The low support astrocyte lines express J1 and a chondroitin sulfate-containing proteoglycan as do astrocytes encircling the neonatal glomeruli in vivo. The adult OB astrocyte cell lines supported lower levels of outgrowth than adult ensheathing cell lines. These results are consistent with a positive role for ensheathing cells in OB synapse regeneration, in vivo. Further, based on our results, we hypothesize that ensheathing cells and high-outgrowth astrocytes facilitate axon growth in vivo, while low outgrowth astrocytes inhibit axon growth and may facilitate glomerulus formation.

Aging↗

Recombinant soluble CD14 mediates the activation of endothelial cells by lipopolysaccharide.

Recent studies have suggested that soluble CD14 found in serum is involved in the LPS-induced activation of endothelial cells (EC). To more fully investigate the relevance of sCD14 to LPS-induced activation of EC, we have used recombinant soluble CD14 (rsCD14) and have examined, under serum-free conditions, its role in the LPS-induced EC response in the presence of LPS alone as well as in the presence of LPS-binding protein. Our studies show that EC can be activated by high concentrations of LPS in the presence of rsCD14 alone. However, at low concentrations of LPS (5 and 10 ng/ml), the rsCD14-stimulated activation is strongly enhanced by LPS-binding protein. In addition, we show that LPS binds to rsCD14 directly; in the presence of low concentrations of LPS this binding is enhanced by the presence of LPS-binding protein. These results show that while the membrane form of CD14 can function as a receptor, its soluble form can function as a co-ligand with LPS in the EC-LPS response.

Acute-Phase Proteins↗