Search PubMed⌕ Search

Biomedical subjects

J Silver

Publications and source records attributed to J Silver.

At least 253 records · Page 14Linked to original sources

An in vitro model of wound healing in the CNS: analysis of cell reaction and interaction at different ages.

We have developed an in vitro model in which cells responding to trauma in the immature and mature CNS can be isolated, placed into serum-free culture, and characterized. By implanting nitrocellulose filters into the brains of neonatal and adult rats under different conditions, we are able to harvest populations of cells responding to trauma in the neonate (critical period implant), in the adult (scar implant), and in implants that have remained in vivo past the critical period (postcritical period implant). Upon placement in culture, we have found that astrocytes represent the majority of cells occupying both the critical period and postcritical period implants, whereas fibroblasts and macrophages represent the majority of cells in the glial-fibroblastic scar. The morphologies of the astrocytes on the surface of the different implants, after 3 days in culture, differs markedly--the critical period astrocytes exhibiting a more ordered distribution compared to the haphazard arrangement of astrocyte processes on the surface of the postcritical and scar implants. After migration from the implant, critical period astrocytes assume an epithelioid morphology and cluster together setting up definite boundaries between themselves and the endothelial cells. In contrast, postcritical period astrocytes exhibit a more elongated morphology under the same culture conditions and appear to be randomly dispersed among the endothelial cells. The scar astrocytes exhibit a wide range of morphologies and, although they tend to cluster, do not exhibit the ordered association seen with the critical period astrocytes. We propose that the plasticity of the neonatal astrocytes and the rapid and ordered cellular response seen in vitro reflect the ability of the immature CNS in vivo to respond to injury without the formation of a glial-fibroblastic scar.

Aging↗

A syncytia assay for human immunodeficiency virus type I (HIV-I) envelope protein and its use in studying HIV-I mutations.

We describe a syncytia assay that utilizes a noninfectious plasmid (pEVd1443) derived from human immunodeficiency virus type I (HIV-I). This plasmid carries a large deletion of gag-pol sequences but expresses HIV-I envelope proteins and induces syncytia following transfection into HeLa-CD4 cells. This plasmid was used to study the effects of mutations in the gp 120 and gp41 portions of the envelope gene of HIV-I.

Antigens, Differentiation, T-Lymphocyte↗

Oncogenous osteomalacia: a case study.

A case of oncogenous osteomalacia due to a fibrosarcoma of the maxilla is reported, with a 19 year course before treatment. Metabolic studies of calcium and phosphorus were performed 3 and 19 years after the first symptomology. There was a negative balance for both phosphorus and calcium with low serum levels of 1,25-dihydroxyvitamin D which were corrected by resection of the tumor. Portions of the tumor were cultured and the supernatant did not affect phosphorus transport by a proximal tubule kidney cell line. Other portions were injected into athymic nude mice where they resulted in hypophosphatemia and phosphaturia, thus confirming the endocrine nature of the oncogenous osteomalacia factor.

Adult↗

The DR3(w18),DQw4 haplotype differs from DR3(w17),DQw2 haplotypes at multiple class II loci.

The polymorphism of HLA class II molecules in man is particularly evident when comparisons between population groups are made. This study describes a DR3 haplotype commonly present in the American black population. Unlike the Northern European population, in which almost all DR3 individuals are DQw2, approximately 50% of DR3-positive American blacks express a DQw4 allelic product. This study characterizes the DR subregion of that haplotype. cDNA sequence analysis has revealed a DR beta gene which differs at several positions from previously described DR3 beta 1 genes. It is postulated that a gene-conversion-like event with a DRw52 beta gene as donor has generated some of these differences. The haplotype carries a DRw52a allele as defined by oligonucleotide hybridization studies. DNA restriction fragment analysis using a family and several unrelated individuals has allowed us to identify DR alpha and beta fragments associated with the DR3(w18),DQw4 haplotype. The most striking observation is that the DR3(w18),DQw4 haplotype differs from DR3(w17),DQw2 haplotypes at multiple class II loci. Several genetic mechanisms including reciprocal recombination, gene conversion, and point mutation were involved in generating the differences between these haplotypes. Once established, the DR3(w18),DQw4 haplotype appears to be relatively stable in the population.

Amino Acid Sequence↗

Renal transplantation is not contraindicated in asymptomatic carriers of hepatitis B surface antigen.

Recent reports showing that the presence of positive tests for hepatitis B surface antigen (HBsAg) is associated with prohibitively high morbidity and mortality suggest that such patients should not be considered for kidney transplantation. The clinical outcome and serology including hepatitis B DNA assays of 11 patients who were HBsAg-positive at the time of transplantation, as well as the hepatic complications in all 200 kidney transplantations during the same period, were analyzed. In the 11 HBsAg-positive patients, no clinical or laboratory evidence suggesting deterioration in liver function over a mean follow-up period of 8.0 +/- 1.7 years was found. Of six patients with fatal or severe chronic liver disease, only one was HBsAg-positive at the time of transplantation and showed no deterioration over 9 years. Two immunosuppressed patients developed anti-HBs antibodies after acute hepatitis B infection. A review of the literature leads to the conclusion that previous reports of poor patient prognosis may represent patients who first showed HBsAg positivity after transplantation or who had preexisting HBsAg-related liver disease. The present findings suggest that asymptomatic patients with positive tests for HBsAg should not be excluded from kidney transplantation programs.

Adult↗

Calcium regulates parathyroid hormone messenger ribonucleic acid (mRNA), but not calcitonin mRNA in vivo in the rat. Dominant role of 1,25-dihydroxyvitamin D.

In vivo 1,25-dihydroxyvitamin D3 (1,25(OH)2D3) decreased PTH and calcitonin gene transcription. A low calcium is the major signal for PTH secretion, and a high calcium for calcitonin secretion. We report here that calcium has no effect on calcitonin messenger RNA (mRNA) levels in vivo in the rat, but that a low calcium markedly stimulates PTH mRNA levels. Serum calcium was decreased by ip phosphorus and increased by calcium gluconate (ip or iv infusion) and demonstrated that a low serum calcium markedly increased PTH mRNA levels whereas a high serum calcium had no effect. There was no change in mRNAs for calcitonin or actin in the same thyroparathyroid extracts. After phosphorus ip serum calcium decreased from 10.4 to 8.5 mg/dl and PTH mRNA increased up to 3-fold at 1, 3, and 6 h. Gel blots showed that a low calcium increased PTH mRNA levels with no change in its size (833 base pairs). Calcitonin ip decreased both serum calcium and phosphorus with an up to 5-fold increase in PTH mRNA at 1 h, thus demonstrating that the effect of phosphorus on PTH mRNA was due to the low serum calcium and not the high serum phosphorus. When phosphorus and 1,25(OH)2D3 (100 pmol/100 g) were injected together, despite the low serum calcium, there was a decrease in PTH mRNA levels. These results show a linear relationship between calcium and PTH gene expression, but not calcitonin or actin, with a dominant role for 1,25(OH)2D3.

Animals↗

Detection of marker associations with a dominant disease gene in genetically complex and heterogeneous diseases.

Linkage disequilibrium of a marker allele with disease may characterize a chromosomal region containing the disease gene. In several diseases, only a limited number of pedigrees are linked to a particular region, because of linkage heterogeneity. Disequilibrium in this situation is more easily detected when the association is positive (an infrequent marker allele associated with disease mutation), and sampling is conditional on presence or absence of illness in individuals or gametes. Defining H as the marker frequency in illness-transmitting gametes, and Q the marker frequency in normal chromosomes, we compute the power of a given sample (of ill persons/gametes) to detect association in a disease that is genetically heterogeneous, with a dominantly transmitted form linked to a marker. The estimation of Q and the effects of linkage heterogeneity (when unrelated individuals are examined) are also analyzed. Two linked pedigrees give acceptable power to detect association when the allele is frequent enough in illness gametes (H greater than or equal to .6) and infrequent enough in normals (Q less than or equal to .01). If H greater than or equal to .2, 14 pedigrees are needed to give the same power. From the analysis of different values of Q and H, it appears that even in the presence of considerable genetic heterogeneity and complex inheritance (where some normals carry the disease mutation), association may be detected with clinically feasible sample sizes.

Alleles↗

Characterization of murine bone marrow and spleen-derived stromal cells: analysis of leukocyte marker and growth factor mRNA transcript levels.

Stromal cells are believed to regulate lympho-hematopoiesis through direct cell-cell interactions and the release of growth factors. Many questions remain, however, about their lineage derivation and functional heterogeneity. We previously prepared a panel of stromal cell lines from murine spleen and bone marrow and characterized them based on their ability to support lymphocyte growth in long-term cultures. These cells are now compared with respect to their expression of various immunoglobulin superfamily and cytokine genes by Northern blot analysis. These results indicate that although stromal cells appear to be mesodermal in origin, they are not closely related developmentally to the hematopoietic progenitor cells they support. The potential production of at least six cytokines was demonstrated. All clones constitutively expressed mRNA for macrophage colony stimulating factor, interleukin-6, transforming growth factor beta and neuroleukin. The most potent lymphocyte supporting clones also made interleukin 7 constitutively. Previous findings had suggested that these clones responded to exogenous stimuli and this has now been demonstrated in terms of induced expression of IL-6 and G/M-CSF mRNA. Interleukin 6 mRNA levels were markedly upregulated by exposure of cells to LPS, TNF, IL-1, IL-6, IL-7, and EGF. G/M-CSF mRNA levels were "superinduced" by the combination of LPS and cycloheximide, a protein synthesis inhibitor. These responses are similar to ones documented by investigators working with endothelial cells and fibroblasts. Together, these data suggest that stromal cells are a multifunctional component of the lymphopoietic microenvironment and may be active participants in a complex, cytokine-mediated regulatory network.

Animals↗

Genetic susceptibility to rheumatoid arthritis and human leukocyte antigen class II polymorphism. The role of shared conformational determinants.

Genetic susceptibility for rheumatoid arthritis has been associated with both human leukocyte antigen (HLA)-DR4 and HLA-DR1, depending on the ethnic origin of the population under study. Furthermore, various subtypes of DR4 exist, only some of which appear to be associated with rheumatoid arthritis. DNA sequence analysis of the DR-beta chain genes encoding the DR4 subtypes as well as DR1 has led to the observation that similar third hypervariable region sequences are found on rheumatoid arthritis-associated DR-beta chain alleles. The data indicate that third hypervariable region sequence polymorphisms strongly influence T cell recognition as well as risk for rheumatoid arthritis. This has led to the hypothesis that genetic susceptibility for rheumatoid arthritis is due to a group of similar third hypervariable region sequences that may share conformational determinants important in antigen presentation and/or immune regulation.

Alleles↗

Analysis of the molecular specificities of anti-class II monoclonal antibodies by using L cell transfectants expressing HLA class II molecules.

Expressible HLA class II alpha- and beta-chain cDNA were used for DNA-mediated gene transfer to produce L cell transfectants expressing single types of human class II molecules. Cloned transfectants expressing nine different class II molecules were isolated: DR alpha: DR1 beta I, DR alpha: DR4 beta I, DR alpha: DR5 beta I, DR alpha: DR5 beta III (DRw52), DR alpha: DR7 beta I, DR alpha: DR4/7 beta IV (DRw53), DQ7 alpha: DQw2 beta, DQ7 alpha: DQw3 beta, and DPw4 alpha: DPw4 beta. These class II-expressing transfectants were used to analyze by flow cytometry the molecular specificities of 20 anti-class II mAb. These analyes indicate that some mAb are more broadly reactive than was previously thought based on immunochemical studies. In contrast, the narrow molecular specificities of other anti-class II mAb were confirmed by this approach. Transfectants expressing human class II molecules should be valuable reagents for studies of B cell and T cell defined epitopes on these molecules.

Animals↗

Recombination sites in the HLA class II region are haplotype dependent.

We have analyzed DNA sequence polymorphisms of DQ alpha and DQ beta chains from three haplotypes from the DRw52 family: DR5 DQw1 (FPA, GM3106), DRw6 DQw1 (CB6B, 10w9060), and DRw6 DQw3 (AMALA, 10w9064). The results indicate that the DR5 DQw1 and DRw6 DQw1 haplotypes have arisen by recombination between the DR beta 1 and DQ alpha loci. This contrasts with our previous analysis of DR4 DQ"Wa", DR3 DQ"Wa", and DR7 DQw3 haplotypes, all of which appear to have arisen by virtue of recombination between DQ alpha and DQ beta. Thus, there appear to be at least two different sites where recombination has occurred within the DR and DQ subregions. These differing patterns of recombination were interpreted in the context of the three major family groups of class II haplotypes, the DRw53, DRw52, and DR1/2 haplotype families. The data indicate that haplotypes from these family groups tend to undergo recombination at different locations. We propose that these differences in site of recombination are a reflection of differences in the molecular organization of the haplotypes belonging to each family group.

Amino Acid Sequence↗

Development of intersecting CNS fiber tracts: the corpus callosum and its perforating fiber pathway.

What are the mechanisms acting during development at points of intersection of central nervous system fiber tracts which influence the direction taken by a population of growing axons? In order to address this question, the ontogeny of the intersecting rostral corpus callosum and its perforating fiber pathway (PF), and the microenvironment through which these fiber systems grow, were examined in a series of mouse embryos and early postnates. Our results show that the perforating fibers are identifiable in silver-stained sections between embryonic days (E) 15 and 16, at least 1 day prior to the initial appearance of the callosal projection. Soon after the PF can be identified, a dense accumulation of subventricular cells surrounds the PF at a point just ventral to the location where the callosum and PF will intersect (i.e., at the corticoseptal boundary). Callosal axons, which are present at the point of intersection beginning on E17, do not joint the perforating fibers, nor do they appear to penetrate the underlying population of subventricular cells. Instead, the callosal fibers turn across the PF and enter the contralateral cerebral hemisphere. Thus, the intersection of the callosal and perforating fiber systems during development may be related both to the sequential development of each pathway and to the altered nonneuronal environment at the point of intersection.

Animals↗

Death of the subcallosal glial sling is correlated with formation of the cavum septi pellucidi.

In this study we have examined the developmental fate of a population of cells that is located beneath the rostral corpus callosum during the perinatal period. These cells form a distinct slinglike structure along the geographically defined corticoseptal boundary (CSB) and may play a role in guiding callosal axons across the midline. The sling is a transient structure present in fetal and neonatal animals but not in adults. Here we show that the CSB cells die and that this debris is removed by macrophages. The sequence of cell degeneration in the CSB is highly stereotyped and follows a spatiotemporal pattern that is correlated with fusion of the cerebral hemispheres and subsequent growth across the midline of the callosal axons. The subcallosal location of the resorbing CSB is found in the exact place in which a fluid-filled cavity (the cavum septi pellucidi) is transiently found during the perinatal period. The tight temporal and spatial correlation between callosal axon decussation, degeneration of the CSB, and cavum septi formation suggests that these three phenomena may be causally related.

Aging↗

Polymorphism of the HLA-DR1 haplotype in American blacks. Identification of a DR1 beta-chain determinant recognized in the mixed lymphocyte reaction.

Mixed lymphocyte typing provides an exquisitely sensitive means of detecting the polymorphism of HLA class II molecules. By using this technique, the differences between divergent human populations become apparent. This study describes a DR1 haplotype commonly present in the American black population. Unlike the Northern European population in which almost all DR1 individuals are DQw1 and type as Dw1 by using mixed lymphocyte typing, approximately 50% of DR1, DQw1 positive American blacks express an undefined Dw specificity. The DR beta polypeptide encoded by a DR1,Dw-cell differs from a previously described DR1,Dw1 beta sequence by two amino acid replacements at positions 85 and 86 in the first domain. One silent nucleotide substitution has also been identified. DQ alpha and beta first domain cDNA sequences from this haplotype are identical with previously described DQ sequences from a DR1,Dw1 cell. This relatively minor change in amino acid sequence of the DR molecule appears to produce the undefined HLA-D specificity in this haplotype. The variant DR1 sequence is shared with a DR beta-chain from the DR2,DwMN2 haplotype suggesting that a gene conversion-like mechanism has generated this difference.

Amino Acid Sequence↗

Nucleotide sequence of a DRw10 beta chain cDNA clone. Identity of the third D region with that of the DRw53 allele of the beta 2 locus and as the probable site encoding a polymorphic MHC class II epitope.

The nucleotide and inferred amino acid sequence of a DRw10 beta chain was obtained from cDNA clones isolated from a DR1, DRw10 heterozygous cell line. The sequence of this beta chain gene was distinctive, differing from those of all other defined DR types. The DRw10 beta chain gene was shown by transfection experiments to encode a polymorphic epitope recognized by mAb 109d6 that is also encoded by the DRw53 beta 2 chain gene. Comparison of the nucleotide sequence of both genes revealed that their third D regions (amino acids 67 to 73) were identical. This suggested first that the 109d6 epitope could be encoded by residues of this region, and second, that a putative gene conversion event transferred this sequence along with the information encoding the 109d6 epitope from a donor gene such as DRw53 beta 2. The sequence of the DRw10 beta chain gene was observed to be identical to that of clone pII beta 4 derived from the non-DR3 haplotype in the Raji cell line, which was also demonstrated to express the determinant recognized by antibody 109d6, suggesting that the typing of this cell line is HLA-DR3/DRw10. No evidence was found for the existence of a DR beta 2 chain gene product encoded by the DRw10 haplotype. The DRw10 haplotype was of particular interest because it was present along with a DR1 haplotype in the propositus who had rheumatoid arthritis, and was shared by the DR4-positive son of the propositus, who also had rheumatoid arthritis. This raised the possibility that the DRw10 haplotype, and most probably one or more specific conformations encoded by the DR beta chain, are involved in the definition of the disease susceptibility phenotype.

Alleles↗

Abnormal pigmentation and unusual morphogenesis of the optic stalk may be correlated with retinal axon misguidance in embryonic Siamese cats.

Studies of albino rodents have shown that an absence of pigment in the developing optic stalk may alter the position of the first retinal fibers that grow toward the brain, thereby disrupting the gross topographic relationship of fibers in the nerve (Silver and Sapiro: J. Comp. Neurol. 202:521-538, '81). The abnormalities associated with albinism are more extensive in the Siamese cat than-in previously studied species. Therefore, any abnormalities in differentiation of the stalk and axon guidance may be more readily detected. To investigate the guidance and/or misguidance of optic axons, light and electron microscope analyses were made of serial sections through the optic stalk in normally pigmented and Siamese fetal cats. On E20, before axons enter the optic stalk, the only clear morphological distinction between Siamese and normal cats is the distribution of pigment in the stalk. Pigment is found in the dorsal stalk cells of the normal cat for 200 microns from the optic disc. Although the retinal pigment epithelium of the Siamese optic stalk. By E23 axons invade the ventral optic stalk in both strains. Concurrent with the early stages of axonal exit from the retina, there is complete separation of the stalk's dorsal and ventral tiers. As the cleavage occurs, basal lamina invaginates into the zone of separation following along the plane of the old lumen. The ventral stalk fills with axons while the dorsal tier is shed gradually. In contrast, in the Siamese cat, dorsal stalk cells are not sloughed off properly and instead are incorporated ectopically into the nerve. Basal lamina invagination is irregular. Axons do not fill the Siamese stalk symmetrically but enter the region of ectopic cells, which in turn disrupts gross fiber position. Usually, in the mutant, axons originating from the retina temporal to the optic fissure are those that invade the dorsal tier of ectopic cells. The altered position of optic axons in the mutant stalk may provide an explanation for the chiasmatic misrouting of optic axons in this species.

Albinism↗