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Biomedical subjects

J Silver

Publications and source records attributed to J Silver.

At least 109 records · Page 6Linked to original sources

Specific clonal T cell accumulation in intestinal lesions of Crohn's disease.

The initial cellular events that take place at the outset of autoimmune diseases and that may be the most important in terms of understanding their pathogenesis are poorly understood, especially in humans. This is mainly due to the difficulties in the identification of primary lesions and the accessibility to such material. In this respect, it is noteworthy that the appearance of small reddish erosions, known as aphthoid lesions, is known to be an early event in Crohn's disease. In the present study, accumulation of lesion-specific clonal TCR bands in the intestinal lesions of Crohn's disease patients was demonstrated by means of a highly sensitive method based on single strand conformational polymorphism. Such clonal accumulation was demonstrated in both aphthoid and discrete ulcer lesions. There were several TCR BV bands that were present in both aphthoid lesions and discrete ulcer lesions, but some were specific to the aphthoid lesions. In addition, the same aphthoid lesion-specific/dominant T cell clones were found to be expanded in separate aphthoid lesions of a single patient, and were absent from intervening, non-inflamed mucosa. Some of these bands may represent T cell clones activated primarily at the onset of disease.

Adolescent↗

Selective expansion of specific T cell receptors in the inflamed colon of Crohn's disease.

To identify disease-specific T cell changes that occur in Crohn's disease (CD), the T cell receptor BV repertoires of lamina propria lymphocytes (LPL) isolated from both the inflamed and "disease-inactive" colons of seven CD patients were compared by the quantitative PCR and DNA sequence analysis. It was observed that the BV repertoires of LPL isolated from the disease-active and disease-inactive parts of the colon from the same individual were very different. Furthermore, nearly all of the differences occurred in CD4+ LPL, with very few differences in the CD8+ population of LPL. Although the pattern of BV segments that was increased in disease-active tissue relative to disease-inactive tissue was different for all seven CD patients, there were several BV segments that increased uniformly in the disease-active tissue of all seven individuals. CDR3 length analysis and DNA sequencing of these BV segments revealed that in six of the seven CD patients there was a striking degree of oligoclonality that was absent from disease-inactive tissue of the same individual. These observations suggest that at least some of the inflammation in CD is the result of responses by CD4+ T cells to specific antigens. The isolation of such inflammation-specific CD4+ T cells may make it possible to identify the antigens that are responsible for the inflammatory process in CD and provide a better understanding of its pathogenesis.

Adolescent↗

The chemical mechanism of beta-haematin formation studied by Mössbauer spectroscopy.

Spontaneous formation of beta-haematin (malaria pigment) from haematin in acetate solution follows pseudo-zero-order and not autocatalytic kinetics. Acetate appears to facilitate the reaction by solubilizing the haematin and acting as a phase-transfer catalyst, a role which, in vivo, could be fulfilled by carboxylic acids or amino acids.

Acetates↗

Successful renal transplantation from two donors with methanol intoxication.

Two patients with acute methanol intoxication are reported, one with acute renal failure. Both were declared brain-dead and kidneys were harvested at 80 and 130 hr after hospital admission. All four kidneys were transplanted and subsequently functioned well. In both donors who had received ethanol treatment, thrombocytopenia was present. The reluctance to use kidneys from such donors and from donors with acute renal failure before harvesting is discussed. Waiting lists for renal transplantation are growing and there is a world-wide shortage of cadaver organs. We were recently surprised to find reluctance to consider two local patients dying from methanol intoxication as suitable organ donors, and we report the outcome of four kidneys transplanted from these donors. We were unable to find any similar cases reported in the English literature.

Adult↗

Normal spatial learning despite regional inhibition of LTP in mice lacking Thy-1.

The process of learning involves stable changes in synaptic efficacy for which long-term potentiation (LTP) provides a widely adopted mammalian model. Synaptic modification induced by learning or LTP may involve the action of cell adhesion molecules. One such candidate is the ubiquitous neuronal glycoprotein Thy-1. In mice in which the gene encoding Thy-1 has been inactivated, we find a regionally selective impairment of LTP in vivo in the hippocampal formation: LTP is normal in area CA1 but strongly inhibited in the dentate gyrus. Spatial learning by Thy-1-deficient mice, as assessed in the watermaze, is unimpaired. Thus LTP in the cortical input to the dentate gyrus seems not to be required for spatial learning.

Animals↗

Regenerative failure: a potential mechanism for neuritic dystrophy in Alzheimer's disease.

Although neuronal pathology and synaptic loss are salient features of Alzheimer's disease (AD), the underlying mechanisms involved are unknown. Using double-immunolabeled preparations, we found that both the density and the total lengths of axons are decreased within the A(beta)-containing area of senile plaques (SP) in comparison with the adjacent neuropil. These observations suggest that axotomy is occurring in the vicinity of the SP which could account for the synaptic loss. Since A(beta) in solution has been shown to be neurotoxic in vitro, we tested whether intact SP cores isolated from AD brain were equally detrimental when presented to retinal ganglion neurons. Surprisingly, SPs did not appear to be toxic or even repulsive to neurons since they adhered well and elaborated axons which wrapped tightly around the SP core. In the presence of cortical astrocytes, however, neurons appeared to avoid SP cores. We found that astrocytes accumulate and deposit chondroitin sulfate proteoglycans (CSPGs) around SP cores in vitro in a pattern similar to that observed around SPs in Alzheimer's disease brain. Neuronal avoidance of astrocyte-conditioned SP cores could be due to the axon outgrowth inhibitory nature of CSPGs. These results suggest that astrocytic reaction to SPs, including increased CSPGs, may facilitate the decreased axon density and synaptic loss in AD brain. Moreover, the similarities between swollen axon endings following axotomy in trauma and the dystrophic neurites of the SP suggest that dystrophic neurites in AD may be exhibiting regenerative failure rather than aberrant sprouting.

Alzheimer Disease↗

Fibroblast growth factor receptor function is required for the orderly projection of ganglion cell axons in the developing mammalian retina.

During the early stages of development various cell adhesion molecules (CAMs) and fibroblast growth factor receptors (FGFR) are expressed throughout the retinal neuroepithelium. The ability of retinal ganglion cells to project their axons to the optic fissure depends, in part, on cell-cell interactions mediated by cell adhesion molecules. In the present study we show that the ability of the firstborn rat retinal ganglion cells to extend axons in vitro can be stimulated by NCAM and L1, but not N-cadherin. Both CAM responses can be fully inhibited by antibodies that block neuronal fibroblast growth factor receptor function and by agents that block defined steps in the FGFR signal transduction cascade. When added to living E13.5 rat retinal whole-mount preparations the same agents induced errors in the orderly establishment of young axon patterns in the retinal periphery and caused axons in the retinal center to defasciculate. These results suggest that the activation of the fibroblast growth factor receptor signal cascade not only promotes survival and proliferation of various cell types but can also mediate intraretinal axon guidance.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Calcium, phosphate, vitamin D, and the parathyroid.

The main factors which regulate parathyroid hormone (PTH) production are calcium, phosphate, vitamin D, and estrogens. Hypocalcemia leads to increased PTH secretion in seconds and minutes, gene expression in hours, and parathyroid (PT) cell number in weeks and months. Hypercalcemia leads to a decrease in PTH secretion by its action on the PT cell calcium receptor and no decrease in PTH mRNA levels. There is now convincing evidence that phosphate regulates the PT, independent of its effect on serum calcium and 1,25-dihydroxyvitamin D3 [1,25(OH)2D3]. In vivo in rats hypophosphatemia markedly decreases PTH mRNA and serum intact PTH levels, independent of its effect on serum calcium and 1,25(OH)2D3. Clinical studies also indicate that phosphate regulates the PT independent of its effect on calcium and 1,25(OH)2D3; 1,25(OH)2D3 itself has a marked effect on the PT, where it decreases PTH gene transcription by a direct action on the PT. The application of basic science findings of how calcium, phosphate, and 1,25(OH)2D3 regulate the PT has led to an efficient and safe prescription for the management of the secondary hyperparathyroidism of chronic renal failure, which is the maintenance of a normal serum calcium and phosphate and the careful use of 1,25(OH)2D3.

Animals↗

The causes of failure of lumbar transpedicular spinal instrumentation and fusion: a prospective study.

A prospective study was made of 101 patients who underwent transpedicular spinal instrumentation and fusion of the lumbar spine. All were reviewed by an independent observer. The objectives were to determine the causes of clinical failure and to recommend preventive measures. Forty-two primary and 59 revision operations were performed. The average age was 46 years and follow up 4 years. The variable screw placement and Cotrel-Dubousset systems were used. Posterior lumbar interbody fusion was carried out in 24 patients. The outcome was satisfactory after primary operations in 67% and after revisions in 46%. Nerve root injuries due to screw placement occurred in 4% (2% permanent and 2% transient). Instrumentation-induced foraminal stenosis developed in 2%. Proper surgical technique can avoid these complications. Predictive factors for failure are: abnormal psychology, symptomatic epidural fibrosis, inadequate decompression of lateral stenosis, surgical complications and the use of allografts.

Adolescent↗

The iron environment in heme and heme-antimalarial complexes of pharmacological interest.

Mössbauer spectroscopy has been utilized to probe the electronic environment of iron in a number of Ferriprotoporphyrin IX complexes of relevance to malaria. The markedly different iron environments found for the complexes of hemin with quinine, chloroquine, and the Chinese herbal antimalarial artesunate suggest that these compounds act by protecting the heme from polymerization to insoluble hemozoin, and by facilitating the transport of the protected heme to the food vacuole membrane where it is able to exercise its cytotoxic redox catalytic activity. Mössbauer parameters determined here for purified malaria pigment and synthetic beta-hematin confirm the chemical identical-ness of these species. The Mössbauer spectra of the complexes are discussed in light of the proposed structures of the complexes.

Animals↗

A potent inhibitor of neurite outgrowth that predominates in the extracellular matrix of reactive astrocytes.

In a model of astrogliosis in vitro, cultured cortical astrocytes were triggered into a functionally reactive state by an immobilized fragment of the beta-amyloid peptide. Induced astrocytes produced an extracellular matrix that inhibited the outgrowth of embryonic CNS axons. Within the extracellular matrix deposited by reactive astrocytes, we found an overall increase in the deposition of chondroitin sulphate that accounted for the inhibition. Specifically, we have detected an increased biosynthesis of a small chondroitin/heparan sulphate proteoglycan that is a potent inhibitor of axon outgrowth. We further suggest that this proteoglycan, or related molecules yet to be discovered, may play a role in gliosis-mediated regenerative failure of CNS axons.

Amyloid beta-Peptides↗

Resistance to endotoxin shock and reduced dissemination of gram-negative bacteria in CD14-deficient mice.

Endotoxin shock is the result of activation of the immune system by endotoxin/LPS, a component of Gram-negative bacteria. CD14, a GPI-anchored glycoprotein expressed strongly by monocyte/macrophages, is one of several receptors for endotoxin/LPS. The role of CD14 in bacterial-induced and LPS-induced shock was tested in CD14-deficient mice produced by gene targeting in embryonic stem cells. CD14-deficient mice were found to be highly resistant to shock induced by either live Gram-negative bacteria or LPS; however, at very high concentrations of LPS or bacteria, responses through non-CD14 receptors could be detected. Surprisingly, CD14-deficient mice also showed dramatically reduced levels of bacteremia, suggesting an unexpected role for CD14 in the dissemination of Gram-negative bacteria.

Animals↗