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Biomedical subjects

D Souza

Publications and source records attributed to D Souza.

12 recordsLinked to original sources

Serum and cerebrospinal fluid S100B concentrations in patients with neurocysticercosis.

The clinical manifestations of neurocysticercosis (NC) are varied and depend on the number and location of cysts, as well as on the host immune response. Symptoms usually occur in NC when cysticerci enter a degenerative course associated with an inflammatory response. The expression of brain damage markers may be expected to increase during this phase. S100B is a calcium-binding protein produced and released predominantly by astrocytes that has been used as a marker of reactive gliosis and astrocytic death in many pathological conditions. The aim of the present study was to investigate the levels of S100B in patients in different phases of NC evolution. Cerebrospinal fluid and serum S100B concentrations were measured in 25 patients with NC: 14 patients with degenerative cysts (D), 8 patients with viable cysts (V) and 3 patients with inactive cysts. All NC patients, except 1, had five or less cysts. In most of them, symptoms had been present for at least 1 month before sample collection. Samples from 8 normal controls (C) were also assayed. The albumin quotient was used to estimate the blood-brain barrier permeability. There were no significant differences in serum (P = 0.5) or cerebrospinal fluid (P = 0.91) S100B levels among the V, D, and C groups. These findings suggest that parenchymal changes associated with a relatively small number of degenerating cysts probably have a negligible impact on glial tissue.

Adolescent↗

The role of leukocyte function-associated antigen-1 in animal models of inflammation.

Both preclinical and clinical data have identified leukocyte function-associated antigen-1 (LFA-1) as an important component of inflammatory disease states. We evaluated small molecule inhibitors of this glycoprotein in several animal models in which the inflammatory process is dependent on human or non-human primate LFA-1. (R)-5(4-bromobenzyl)-3(3,5-dichlorophenyl)-1,5-dimethylimidazolidine-2,4-dione, BIRT 377, effectively suppressed the production of human immunoglobulin (IgG) following reconstitution of severe combined immunodeficient (SCID) mice with human peripheral blood mononuclear cells. The BIRT 377 analog, BIX 642, inhibited the cellular infiltrate and increase in skin thickness associated with the delayed-type hypersensitivity reaction in previously immunized squirrel monkeys challenged with antigen. BIX 642 also inhibited the trans-vivo delayed-type hypersensitivity response in the footpads of SCID mice injected with human peripheral blood mononuclear cells and donor-sensitive antigen. These results demonstrate the efficacy of small molecule inhibitors of LFA-1 in preclinical models of inflammation dependent on human or non-human primate LFA-1.

Animals↗

Effects of linalool on [(3)H]MK801 and [(3)H] muscimol binding in mouse cortical membranes.

Linalool is a monoterpene compound reported to be a major component of essential oils of several aromatic species. Several linalool-producing species are used in traditional medical systems for sedative purposes, including the interruption and prevention of seizures. Previous studies in mice revealed that linalool modulates glutamatergic (competitive antagonism of L-[(3)H]glutamate binding, delayed intraperitoneal NMDA-induced convulsions and blockade of intracerebroventricular Quin-induced convulsions) and GABAergic transmission (protection against pentylenetetrazol and picrotoxin-induced convulsions). To further clarify the anticonvulsive mechanisms of linalool, we studied the effects of linalool on binding of [(3)H]MK801 (NMDA antagonist) and [(3)H]muscimol (GABA(A) agonist) to mouse cortical membranes. Linalool showed a dose dependent non-competitive inhibition of [(3)H]MK801 binding (IC(50) = 2.97 mM) but no effect on [(3)H]muscimol binding. The data suggest that the anticonvulsant mode of action of linalool includes a direct interaction with the NMDA receptor complex. The data do not, however, support a direct interaction of linalool with GABA(A) receptors, although changes in GABA-mediated neuronal inhibition or effects on GABA release and uptake cannot be ruled out.

Acyclic Monoterpenes↗

Effects of guanine nucleotides on glutamate-induced chemiluminescence in rat hippocampal slices submitted to hypoxia.

Glutamate significantly increased levels of spontaneous chemiluminescence (CL) in rat hippocampal slices incubated under hypoxic conditions. Although it has been previously shown that guanine nucleotides (GN) displace glutamate from several of its receptors, in our study only GMP, as well as the glutamate antagonist MK-801, was able to reverse the increase in CL provoked by glutamate. On the other hand, not only GTP or Gpp(NH)p failed to reverse the action of glutamate, but they increased CL production like glutamate. This effect of GTP/Gpp(NH)p was also reversed by GMP. We concluded that, under neurotoxic conditions, GMP acted as an antagonist and GTP or Gpp(NH)p acted as agonists of glutamate. These results reinforced the evidence of the existence of extracellular site(s) for GN and indicated a possible role for GN in excitotoxicity.

Animals↗

Guanine nucleotides are present in human CSF.

Several studies have shown that experimentally added guanine nucleotides (GN) may extracellularly modulate the glutamatergic system. However, there is no previous report of the extracellular occurrence of GN in the CNS. This study used HPLC to investigate the presence of GN in cerebrospinal fluid (CSF) samples of 26 patients. We demonstrated the extracellular presence of GN in the CNS. In human CSF, GMP was detected in a remarkably high concentration (236.20 microM). This evidence stimulates further investigation of extracellular GN modulation of neurotransmission, physiological mechanisms of action(s), and therapeutic potential(s) in the CNS.

Adenine Nucleotides↗

Differential effects of guanine nucleotides on kainic acid binding and on adenylate cyclase activity in chick optic tectum.

In G protein-coupled receptors, neurotransmitter-induced binding of GTP to G proteins triggers the activation of effector systems while simultaneously decreasing the affinity of the transmitter for its specific binding site within the receptor-G protein complex. In the present study we show that, in the chick optic tectum, guanine nucleotides inhibit the binding of the glutamate analog, kainate, and activate adenylate cyclase by different mechanisms and acting on different sites. GMP-PNP, a non-hydrolyzable analog of GTP, binds tightly to G proteins so that the binding is stable even after exhaustive washing. By use of this property, we have prepared membrane samples in which G protein GTP-binding sites are pre-saturated with GMP-PNP. Experiments carried out with these membranes show that GMP-PNP, GDP-S and GMP inhibit the binding of [3H]kainate by interacting with site(s) unrelated to G proteins, whereas GMP-PNP activates adenylate cyclase activity by binding to G proteins.

Adenylyl Cyclases↗

Cyclic GMP phosphodiesterase from bovine retina. Evidence for interspecies conservation.

A light-activated phosphodiesterase (PDE) from retinal rod outer segments (ROS) has been strongly implicated as a possible mediator in the propagation of the visual response. In view of the probable importance of this enzyme in the visual system, a comparison of the PDE proteins from ROS of different evolutionary species was made. Partial purification of the PDE, as measured by enzymic activity, followed by resolution of the protein components on sodium dodecyl sulphate/polyacrylamide-gel electrophoresis, indicated that the major Coomassie Blue-staining species in the ROS of all species studied is a doublet of 84000-88000 Da. After radioiodination, this doublet was converted in all but the frog proteins into a single band of 85000 Da. Two-dimensional tryptic peptide mapping of the radioiodinated peptides indicated that at least six major peptides of the putative PDE have been conserved in all of the species studies. If this protein is indeed associated with PDE activity, such conserved peptides may play an important role in the catalytic and/or regulatory functions of the enzyme.

3',5'-Cyclic-GMP Phosphodiesterases↗