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D C West

Publications and source records attributed to D C West.

At least 37 records · Page 2Linked to original sources

Increased incidence of non-transitional cell carcinoma of the bladder in women of the Texas Gulf Coast region.

The objective of our study was to verify a suspected increased incidence of non-transitional cell carcinoma (TCC) of the bladder in female patients treated at our institution. The study included 169 patients, 83% of whom resided in the Texas Gulf Coast region. Tumors were considered TCC or non-TCC on the basis of their predominant histologic pattern. The incidence of non-TCC among men (8.1%) was comparable with data from American tumor registries and European studies. In contrast, our female patients exhibited a marked increased incidence of non-TCC (42.3%), which is approximately five times higher than that in other series. All male and female patients with non-TCC had invasive disease. History of urinary tract infections was strongly associated with non-TCC. Our results suggest that our sample of the female population in the Texas Gulf Coast region has a significantly high incidence of non-TCC. This unusual trend merits further investigation.

Adenocarcinoma↗

Detection of circulating tumor cells in patients with Ewing's sarcoma and peripheral primitive neuroectodermal tumor.

PURPOSE: To determine the feasibility of detecting Ewing's sarcoma (ES) or peripheral primitive neuroectodermal tumor (PNET) through a reverse-transcriptase polymerase chain reaction (RT-PCR) of the t(11;22)(q24;q12) fusion transcript in blood and bone marrow samples from patients with these neoplasms. PATIENTS AND METHODS: Peripheral-blood (PB) and/or bone marrow aspirate (BM) samples were obtained from 28 patients with ES or PNET at initial presentation or at relapse. Patients were divided into two groups: newly diagnosed patients with nonmetastatic disease and those with metastatic/relapsed disease. RNA was extracted from fractionated BM and PB samples, and RT-PCR was performed for the EWS/HumFLI1 fusion mRNA was transcribed across the t(11;22) breakpoint. RESULTS: Among the 16 patients with nonmetastatic disease, three of 16 were RT-PCR positive for EWS/HumFLI1 RNA in BM and three of 10 were positive in PB. The total number of nonmetastatic patients who were positive in either PB or BM was four of 16 (25%). Among patients with metastatic/relapsed disease, two of six were positive in BM and five of 10 were positive in PB. The total fraction of patients with metastatic/relapsed disease that was positive in either BM or PB was six of 12 (50%). CONCLUSION: In this study, we show that it is possible to amplify the EWS/HumFLI1 RNA by RT-PCR from the BM and PB of a subset of patients with both nonmetastatic and metastatic ES or PNET, which implies that occult tumor cells are present at these sites. The true biologic and clinical meaning of this information is unknown. However, it does suggest a possible application of RT-PCR for the monitoring of residual disease in patients who are undergoing therapy for ES or PNET. This approach may permit early identification of patients who may benefit from alternative therapy or who may be spared possible overtreatment.

Chromosomes, Human, Pair 11↗

Serum hyaluronan levels follow disease activity in vasculitis.

Hyaluronan (HA) is a high molecular weight polysaccharide present in the extracellular matrix of most tissues. It is a major component of loose connective tissues such as skin, synovial fluid and the vitreous body, and during embryonic development, tissue repair, tumor growth and at inflammatory sites. Increased serum concentrations have been reported in association with tissue damage, certain inflammatory diseases, notably rheumatoid arthritis and scleroderma, liver malfunction and in some malignancies. Currently there are no serological markers available that monitor the extent of tissue damage in vasculitis. We therefore, conducted this study to investigate the significance of serum HA in patient with systemic vasculitis (SV). Ten patients with SV and acute renal failure had elevated HA levels compared to normal age and gender matched controls (n = 31) (mean +/- SD: 673.8 +/- 495.14 micrograms/l and 90.26 +/- 37.18 micrograms/l, respectively; p < 0.001]. Eight of these patients were studied longitudinally for ten days, after pulse steroids, during which serum HA levels fell paralleling clinical improvement, despite the persistence of positive perinuclear-anti-neutrophil cytoplasmic antibody (p-ANCA) serology in three patients. In two patients, the clinical course was complicated by sepsis which was accompanied by an acute rise in serum HA. One patient suffered a relapse of vasculitis, with lung hemorrhage and a sudden rise in HA (> 2,000 micrograms/l), but c-ANCA serology remained normal. Serum HA was also measured in a further ten patients in clinical remission from SV and found to be within the normal range (82.44 +/- 39.06 micrograms/l). One patient, with equivocal clinical relapse after transplantation, exhibited high p-ANCA (404 IU) but serum HA remained normal (ten readings over six months 0-163 micrograms/l). Little change was seen in symptoms, or HA and ANCA serology, following plasma exchange. These preliminary data indicate that serum HA is raised in active vasculitis and may be a useful adjunctive marker of disease activity and extent of tissue damage.

Acute Kidney Injury↗

Single axon IPSPs elicited in pyramidal cells by three classes of interneurones in slices of rat neocortex.

1. Using dual intracellular recordings in slices of adult rat neocortex, twenty-four IPSPs activated by single presynaptic interneurones were studied in simultaneously recorded pyramidal cells. Fast spiking interneurones inhibited one in four or five of their close pyramidal neighbours. No reciprocal connections were observed. After recordings neurones were filled with biocytin. 2. Interneurones that elicited IPSPs were classified as classical fast spiking (n = 10), as non-classical fast spiking (n = 3, including one burst-firing interneurone), as unclassified, or slow interneurones (n = 8), or as regular spiking interneurones (n = 3), i.e. interneurones whose electrophysiological characteristics were indistinguishable from those of pyramidal cells. 3. All of the seven classical fast spiking cells anatomically fully recovered had aspiny, beaded dendrites. Their partially myelinated axons ramified extensively, varying widely in shape and extent, but randomly selected labelled axon terminals typically innervated somata and large calibre dendrites on electron microscopic examination. One 'autapse' was demonstrated. One presumptive regular spiking interneurone axon made four somatic and five dendritic connections with unlabelled targets. 4. Full anatomical reconstructions of labelled classical fast spiking interneurones and their postsynaptic pyramids (n = 5) demonstrated one to five boutons per connection. The two recorded IPSPs that were fully reconstructed morphologically (3 and 5 terminals) were, however, amongst the smallest recorded (< 0.4 mV). Some connections may therefore involve larger numbers of contacts. 5. Single axon IPSPs were between 0.2 and 3.5 mV in average amplitude at -55 to -60 mV. Extrapolated reversal potentials were between -70 and -82 mV. IPSP time course correlated with the type of presynaptic interneurone, but not with IPSP latency, amplitude, reversal potential, or sensitivity to current injected at the soma. 6. Classical fast spiking interneurones elicited the fastest IPSPs (width at half-amplitude 14.72 +/- 3.83 ms, n = 10) and unclassified, or slow interneurones the slowest (56.29 +/- 23.44 ms, n = 8). Regular spiking interneurone IPSPs had intermediate half-widths (27.3 +/- 3.68 ms, n = 3). 7. Increasingly brief presynaptic interspike intervals increased the peak amplitude of, but not the area under, the summed IPSP. Only at interspike intervals between 10 and 20 ms did IPSP integrals exhibit paired pulse facilitation. Paired pulse depression was apparent at < 10 and 20-60 ms. During longer spike trains, summing IPSPs decayed to a plateau potential that was relatively independent of firing rate (100-250 Hz). Thereafter, the voltage response could increase again. 8. Summed IPSPs elicited by two to fifteen presynaptic spike trains decayed as, or more rapidly than, single-spike IPSPs. Summed IPSPs elicited by > 20 spikes (> 150 Hz), however, resulted in an additional, more slowly decaying component (latency > 50 ms, duration > 200 ms). The possible involvement of GABAB receptors in this component is discussed. 9. It is suggested that three broad classes of interneurones may activate GABAA receptors on relatively proximal portions of neocortical pyramidal neurones. The different time courses of the IPSPs elicited by the three classes may reflect different types of postsynaptic receptor rather than dendritic location. An additional class, burst firing, spiny interneurones appear to activate GABAA receptors on more distal sites.

Animals↗

Comparison of changes in endothelial adhesion molecule expression following UVB irradiation of skin and a human dermal microvascular cell line (HMEC-1).

We have assessed the pattern of dermal endothelial adhesion molecule expression following broadband UVB irradiation in vivo and in vitro. Skin biopsies were taken from 4 human volunteers at baseline and at 4, 8 and 24 h post-irradiation with 2.5 minimal erythema doses of UVB. Sections were stained immunohistochemically for E-selectin, intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1). CD31 and neutrophil elastase. The effect of direct UVB irradiation on E-selectin, ICAM-1 and VCAM-1 was examined in a human dermal microvascular endothelial cell line, HMEC-1. Cultured HMEC-1 were irradiated with 2.5-40 mJ/cm2 of UVB, and assessed for adhesion molecule expression by immunofluorescence microscopy and fluorescence-activated cell sorter analysis. In vivo, E-selectin was minimally expressed on EC at baseline and was induced by 4 h following irradiation, P < 0.01. ICAM-1 was moderately expressed at baseline and appeared mildly induced at 24 h, although this did not reach statistical significance. VCAM-1 was weakly expressed in unirradiated skin while CD31 was moderately expressed, but neither was induced by UVB irradiation. A significant neutrophilic infiltrate appeared by 8 h and was maximal at 24 h, P < 0.05. Neutrophil infiltration correlated with E-selectin expression, r = 0.96. In HMEC-1, ICAM-1 was upregulated at 24 h post-irradiation, with an increase in mean channel fluorescence from 100% at baseline to 145 (SD12)% at 24 h, P < 0.05. No change was seen in expression of E-selectin, VCAM-1 or CD31. These studies support the involvement of endothelial adhesion molecules E-selectin and ICAM-1 in UVB-induced inflammation. Whereas ICAM-1 is upregulated by direct irradiation of endothelial cells, E-selectin stimulation appears to be an indirect effect.

Adult↗

Monitoring of endothelial leucocyte adhesion molecule-1 in anti-neutrophil-cytoplasmic-antibody-positive vasculitis.

Soluble endothelial leucocyte adhesion molecule-1 (ELAM-1) has been shown to act as a neutrophil chemoattractant and may also represent a specific marker of endothelial cell damage or activation. Nine patients with anti-neutrophil cytoplasmic antibody (ANCA)-positive vasculitis (p-ANCA: n = 4, c-ANCA: n = 5) were prospectively monitored for disease activity by serial serum ELAM-1, C-reactive proteins (CRPs), von Willebrand factor (vWF) and ANCA levels. Six patients presented acutely with biopsy-proven renal vasculitis. One patient on dialysis, one in remission with stable renal function and one renal transplant patient developed clinical and serological relapse. Seven patients had abnormally high ELAM-1 (>60 ng/ml) levels at presentation. These fell within normal limits a week following pulse methyl prednisolone therapy. This preceded a fall in CRP, vWF and subsequent clinical remission. p-ANCA serology remained positive in 3 cases. One patient relapsed with rising ELAM-1 levels. Two patients developed erroneously positive ANCA serology but serum ELAM-1 remained normal. Six patients with chronic renal impairment of non-vasculitic origin who presented acutely with septicaemia had normal serum ELAM-1 levels (mean +/- SD: 31 +/- 10 ng/ml) at presentation and during the subsequent clinical course. These preliminary findings are encouraging, especially when ELAM-1 is combined with ANCA monitoring in vasculitis. However, further data from larger controlled studies are needed to validate the utility of ELAM-1 in the monitoring of patients with vasculitis.

Adult↗

Properties of single axon excitatory postsynaptic potentials elicited in spiny interneurons by action potentials in pyramidal neurons in slices of rat neocortex.

In slices of adult rat somatomotor cortex, paired intracellular recordings determined the properties of a novel class of excitatory connection, that of presynaptic pyramidal axon collaterals onto burst firing, spiny inhibitory interneurons. Single axon excitatory postsynaptic potentials were brief in time course and displayed conventional voltage relations, increasing in amplitude with membrane hyperpolarization with no change in time course. Excitatory postsynaptic potential amplitude distributions were not skewed. Paired pulse facilitation was profound at interspike intervals < 50 ms, but not altered by raising extracellular [Ca2+] from 2.5 to 5 mM, despite an apparent increase in release probability. Raising presynaptic firing frequency did however produce an increase in excitatory postsynaptic potentials elicited by first spikes that was associated with a decline in excitatory postsynaptic potentials elicited by second and third spikes in brief trains of presynaptic spikes. That this pattern of synaptic activity may result from low probabilities of transmitter release is discussed. It is proposed that while raising Ca2+ and increasing presynaptic firing both increase release probability, repetitive presynaptic firing raises probability more effectively than does raising extracellular [Ca2+]. However, concomitant exhaustion of readily releasable transmitter at higher firing rates may partially obscure this effect. It is concluded that the major differences in the firing rate- and firing pattern-dependent properties of pyramid-pyramid and pyramid-interneuron connections are due to the typically lower release probability at synapses onto interneurons. The accompanying paper describes the morphology of these connections.

Action Potentials↗

Expression of the human mucosal lymphocyte antigen, HML-1, by T cells activated with mitogen or specific antigen in vitro.

Expression of the human mucosal lymphocyte antigen, HML-1 (CD103), recently identified as a novel alpha E beta 7 integrin, was studied on peripheral blood lymphocytes activated with mitogen or specific antigen. HML-1 was up-regulated on PHA activated T-lymphoblasts cultured in 100IU/ml interleukin-2 (IL-2), reaching a peak of > 50% positive cells at day 7, and expression was maintained at this level throughout the 28-day culture period. Following a transient decrease in the percentage of L-selectin cells, expression of this molecule was maintained on most PHA T-lymphoblasts. Cells activated by purified protein derivative of M. tuberculosis (PPD) or in mixed lymphocyte culture also up-regulated and maintained HML-1 expression for 14 days. In contrast, in all cases the percentage of CD25+ cells rose initially but subsequently declined over the same time periods. When freshly isolated cells from tonsil, spleen, mesenteric lymph node and lung were analysed, only lung contained significant numbers (39 +/- 6%) of HML-1+ cells. In both freshly isolated and activated cell populations the great majority of HML-1+ cells co-expressed CD8 although some HML-1+ CD8- cells were also present. Production of TGF-beta 1 peaked early during T-lymphoblast and MLR cultures and was not related to induction of HML-1 expression. Immunoprecipitation studies showed that the HML-1 molecule expressed on 10-day PHA T-lymphoblasts was indistinguishable from that found on intestinal intraepithelial lymphocytes and that no alpha 4 beta 7 integrin was expressed by these cells. Although HML-1 expression is essentially restricted to mucosal leucocytes in vivo, these experiments show that it is readily induced and maintained along with co-expression of L-selectin following CD8+ T-lymphocyte activation in vitro.

Antibodies, Monoclonal↗

Human cytomegalovirus induces IL-6 and TNF alpha from macrophages and microglial cells: possible role in neurotoxicity.

Human cytomegalovirus (HCMV) can frequently infect the central nervous system (CNS) in the setting of immunosuppression such as transplantation and infection with the human immunodeficiency virus (HIV). Our laboratory previously reported that HCMV infection of human brain aggregates preferentially infected a microglial/macrophage (M/M) and caused a neuropathology that differed between strains and could occur in the absence of antigen expression. We extended these studies by infecting a human brain cell aggregate model with four low passage clinical isolates of HCMV. Two patterns of cytopathology emerged after infection; a lacy eosinophilic appearance or a glial nodular formation concomitant with a decreased aggregate size. None of the infections were positive for HCMV antigen; however, all were positive for HCMV DNA. We also infected primary macrophages and microglial cells with the same HCMV isolates. Microglial cells were more susceptible to HCMV infection resulting in a lytic infection. Production of potentially neurotoxic cytokines, IL-1, IL-6 and TNF alpha, from HCMV-infected macrophages and microglial cells were evaluated to explain brain aggregate cytopathology. Supernatants from HCMV-infected macrophages and microglial cells produced similar levels of TNF alpha (< 30 pg ml-1) but showed strain and cell source variation in the production of IL-6; microglial cultures produced > 4 fold higher levels. None of the supernatants contained IL-1. Treatment of brain aggregates with either IL-6 or TNF alpha resulted in morphologic alterations and/or a decrease in size consistent with HCMV infection or supernatant treatment.

Brain↗

Angiogenesis in a delayed revascularization model is accelerated by angiogenic oligosaccharides of hyaluronan.

BACKGROUND: A delayed revascularisation model has been used to assess the angiogenic activity of hyaluronan fragments on impaired wound healing. EXPERIMENTAL DESIGN: Revascularisation of single, full thickness skin autografts in rats was delayed by subjecting isolated grafts to a sublethal cryoinjury (freeze injury) before implantation. Hyaluronan fragments were delivered to the grafts using slow release pellets (ethylene vinyl acetate copolymer). Rates of release were measured in vitro by ELISA. The angiogenic response to the application of 100 micrograms of low (1 to 4 kDa) molecular weight hyaluronan and 100 micrograms of medium (33 kDa) molecular weight hyaluronan was tested in separate groups of 15 rats and was compared with unstimulated cryoinjured controls (n = 40). The effect of low (1 to 4 kDa) molecular weight hyaluronan on uninjured grafts was also investigated. Return of graft blood flow was measured on anesthetised animals over a 10-day period using laser Doppler flowmetry and 133Xe clearance. Quantitative histologic assessment of the graft vasculature was performed on Days 3, 7, and 10 after implantation. RESULTS: The 1- to 4-kDa hyaluronan fragments increased blood flow (p < 0.001), as measured by both flow measuring techniques, and increased graft vessel growth, as assessed histologically at each of the three time points (p < 0.05). By contrast, the 33-kDa fragments had no such effect on graft blood flow or vessel growth. Low molecular weight hyaluronan had no effect on either graft blood flow or on vessel growth in uninjured skin grafts. CONCLUSIONS: The hypothesis that there may be physiologic regulation of angiogenesis by hyaluronan and its metabolites is supported by the results of these studies. The data provide further evidence of the utility of the cryoinjured graft model for the study of in vivo angiogenesis.

Animals↗

Correlation of loss of heterozygosity at chromosome 9q with histological subtype in medulloblastomas.

Patients with the nevoid basal cell carcinoma syndrome (NBCCS) are at increased risk for medulloblastomas as well as for basal cell carcinomas. The gene for NBCCS has been mapped to chromosome 9q22.3-q31 by linkage analysis, and loss of heterozygosity (LOH) in this region has been demonstrated in approximately one-half of sporadic basal cell carcinomas. In the present study, LOH for chromosome 9q22.3-q31 microsatellite markers was investigated in medulloblastomas occurring among children with NBCCS and in sporadic medulloblastomas. Histologically, all 3 NBCCS medulloblastomas were noted to have a desmoplastic phenotype, and LOH was detected in both of the 2 cases for which microsatellite markers were heterozygous in normal tissues. LOH was also detected in a subset of sporadic medulloblastomas, each of which were found to display the desmoplastic phenotype. In all, 3 of the 6 sporadic desmoplastic tumors showed LOH, whereas LOH was not seen in any of the 11 sporadic, non-desmoplastic medulloblastomas studied. Additionally, desmoplastic tumors lacking detectable LOH each showed histological features of so-called cerebellar neuroblastoma, a subgroup of desmoplastic medulloblastoma with extensive neuroblastomatous differentiation. The data are consistent with a role for inactivation of a tumor suppressor gene at chromosome 9q in the development of medulloblastomas in patients with NBCCS and of sporadic medulloblastomas characterized by a desmoplastic phenotype similar to that found in patients with NBCCS. Restriction of chromosome 9q loss to non-neuroblastomatous desmoplastic tumors suggests that this variant of medulloblastoma maybe pathogenetically distinct from tumors having other histological phenotypes.

Adolescent↗

Relationships between morphology and physiology of pyramid-pyramid single axon connections in rat neocortex in vitro.

1. Double intracellular recordings were made from 1163 pairs of pyramidal neurones in layer V-VI of the rat somatomotor cortex in vitro using sharp electrodes filled with biocytin. Monosynaptically connected pairs of cells were identified when an action potential in one could elicit a constant latency excitatory postsynaptic potential (EPSP) in the other and the cells were filled with biocytin. Labelled cells were subsequently identified histologically with avidin-horseradish peroxidase. 2. Thirty-four pairs of cells were found to be monosynaptically connected. Fifteen of these pairs were sufficiently stable for electrophysiological recordings and three of these were recovered sufficiently to permit full morphological reconstruction. 3. The EPSP recorded between the first pair of pyramids varied in amplitude between 0 and 3 mV (mean 1.33 +/- 1.06 mV) and fluctuated considerably (coefficient of variation, 0.796). This was largely due to a high incidence of apparent failures of transmission. On reconstruction two boutons from the presynaptic pyramid axon were in close apposition to the proximal portions of basal dendrites of the postsynaptic cell. 4. In the second pair of pyramids the EPSP had a mean amplitude of 1.06 mV, and displayed a 10-90% rise time of 2.8 ms and a width at half-amplitude of 23 ms. This EPSP did not alter significantly with changes in membrane potential at the soma. The presynaptic axon closely apposed the distal apical dendrite of the postsynaptic cell in eight places. 5. In the third pair of pyramids, the EPSPs, recorded at a relatively depolarized membrane potential, were long lasting and could elicit slow dendritic spikes with long and variable latencies. These slow spikes suggested that the postsynaptic recording site was dendritic and on reconstruction a possible location was identified on the apical dendrite. A total of five presynaptic boutons closely apposed three separate, proximal branches of the postsynaptic apical dendrite. 6. These results provide the first illustration of a morphological basis for variations in functional properties of pyramid-pyramid connections in the neocortex.

Animals↗

Feature-linked synchronization of thalamic relay cell firing induced by feedback from the visual cortex.

The function of the massive feedback projection from visual cortex to its thalamic relay nucleus has so far eluded any clear overview. This feedback exerts a range of effects, including an increase in the inhibition elicited by moving contours, but the functional logic of the direct connections to the thalamic cells that relay the retinal input to the cortex remains largely unknown. In contrast to its thalamic nucleus, the visual cortex is characterized by cells that are strongly sensitive to the orientation of moving contours. Here we report that when driven by moving oriented visual stimuli the cortical feedback induces correlated firing in relay cells. This cortically induced correlation of relay cell activity produces coherent firing in those groups of relay cells with receptive field alignments appropriate to signalling the particular orientation of the moving contour to the cortex. Synchronization of relay cell firing means that they will elicit temporally overlapping excitatory postsynaptic potentials in their cortical target cells, thus increasing the chance that the cortical cells will fire. Effectively this increases the gain of the input for feature-linked events detected by the cortex. We propose that this feedback loop serves to lock or focus the appropriate circuitry onto the stimulus feature.

Action Potentials↗

Application of angiogenic oligosaccharides of hyaluronan increases blood vessel numbers in rat skin.

Angiogenic oligosaccharides of hyaluronan were applied to the backs of young, adult male rats and the number of blood vessels, within a depth of 136 microns beneath the base of the epidermis, were evaluated. Application of hyaluronan oligosaccharides significantly increased the mean number of blood vessels/mm skin length in six of 11 treated rats when compared with controls. Application of radiolabeled hyaluronan oligosaccharides to skin of one rat demonstrated a penetration to a depth of approximately 800 microns, suggesting that the blood vessels beneath the epidermis would be exposed to the hyaluronan. Hyaluronan has previously been shown to stimulate endothelial cell proliferation; we demonstrate here that these hyaluronan oligosaccharides also specifically stimulate endothelial cell migration. This action of hyaluronan oligosaccharides may prove useful in retarding blood vessel paucity and degeneration observed during the ageing process and following radiotherapy.

Animals↗

Endothelial cell activation by tumour necrosis factor-alpha (TNF-alpha) and the development of pre-eclampsia.

Pre-eclampsia may develop as a result of an endothelial activation. Tumour necrosis factor-alpha (TNF-alpha) activates endothelial cells which release soluble E-selectin, a putative circulating marker specific for endothelial damage. A retrospective longitudinal study of maternal blood samples, collected at different gestational ages in pregnancy, was undertaken to determine whether the development of pre-eclampsia is associated with TNF-alpha-mediated endothelial activation. This study included 19 women who developed pre-eclampsia and 22 women whose pregnancy outcome was normal. Ten women had blood samples taken before pre-eclampsia was clinically detected and, in all these, TNF-alpha was below the immunoassay limit of detection (< 80 pg/ml). Five had further samples taken after pre-eclampsia was clinically diagnosed and, initially, TNF-alpha was still below the lower limit of detection in all five pregnancies, but rose later in three (80, 156 and 250 pg/ml). In nine other patients with diagnosed pre-eclampsia, TNF-alpha was detected in only two (80 and 650 pg/ml). TNF-alpha was identified in only one of the 22 normal pregnancies (80 pg/ml), this being at term. There was no statistical difference in soluble E-selectin levels between normal and pre-eclamptic pregnancies, neither before nor after pre-eclampsia was diagnosed. Hence, blood TNF-alpha levels measured by immunoassay can be elevated in approximately 36% of cases of established pre-eclampsia, but this rise occurs only after the syndrome is detected clinically. Blood concentrations of TNF-alpha and soluble E-selectin are not related to severity of the disorder. These findings suggest that circulating TNF-alpha does not contribute to the initiation of endothelial cell activation that may be associated with the development of pre-eclampsia, but may rise as a consequence of the pathological processes of this disorder.

Cell Adhesion Molecules↗

Fluctuations in pyramid-pyramid excitatory postsynaptic potentials modified by presynaptic firing pattern and postsynaptic membrane potential using paired intracellular recordings in rat neocortex.

Single axon excitatory connections between pairs of neocortical pyramidal neurons were studied using paired intracellular recordings in layers II/III and IV of coronal slices of adult rat somatosensory/motor cortex. Excitatory postsynaptic potentials evoked with different presynaptic firing patterns and at different postsynaptic membrane potentials were compared. Two methods of statistical analysis were used in attempts to determine whether changes in mean excitatory postsynaptic potential amplitude were due to presynaptic or postsynaptic modifications. Analysis of the decrease in mean excitatory postsynaptic potential amplitude associated with increases in presynaptic firing rate were consistent with a change in probability of transmitter release. Paired pulse depression appeared to exhibit both presynaptic and postsynaptic components when the interspike interval was < 10 ms, but could be explained simply by a decrease in probability of release with interspike intervals between 10 and 80 ms. Previous studies had demonstrated that these excitatory postsynaptic potentials are partially mediated by N-methyl-D-aspartate receptors. In contrast to the apparently presynaptic effects of firing pattern, postsynaptic membrane depolarization appeared to produce an increase in quantal amplitude. In addition to this increase at low frequencies, a form of frequency-dependent, self-potentiation involving the recruitment of an additional, longer-latency postsynaptic component occurred at higher presynaptic firing rates. The possibility is discussed that two different mechanisms are involved in the replacement of vesicles at release sites. Over a few tens of milliseconds (paired-pulse depression) availability of releasable transmitter may be determined by the rate of replacement of discharged vesicles from a readily releasable pool of vesicles. Over longer periods of firing at 0.33-2 Hz, the readily releasable pool may become exhausted and require replenishment. Postsynaptic depolarization increases the duration of these excitatory postsynaptic potentials, facilitating summation and enables two components of excitatory postsynaptic potential enhancement at N-methyl-D-aspartate receptor-mediated synapses; one that is present at all firing rates and relates simply to voltage dependent events and one that occurs at higher firing rates and involves a gradual, time dependent event. These data also indicate that the optimal pyramidal firing pattern if another pyramid is to be activated is a tonic, or brief burst pattern at relatively low repetition rates. Long bursts of many presynaptic spikes recruit little that is not activated by pairs of spikes. This situation is in stark contrast to the results obtained in the following paper in which excitatory inputs from pyramids to non-pyramids are described.

Animals↗