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Biomedical subjects

F Grassi

Publications and source records attributed to F Grassi.

At least 91 records · Page 5Linked to original sources

Human immunodeficiency virus type 1 gp120 C5 region mimics the HLA class I alpha 1 peptide-binding domain.

Molecular mimicry of major histocompatibility (MHC) antigens by viral glycoproteins has been suggested as one of the possible mechanisms of induction of an autoimmune response by human immunodeficiency viruses. A monoclonal antibody (M38) was previously shown to bind to both human immunodeficiency virus type 1 (HIV-1) gp120 and beta-2 microglobulin-free HLA class I heavy chains encoded by an HLA C allele. Using HLA C recombinant proteins and synthetic peptides, the M38 class I binding site was mapped to a stretch of 44 amino acids of the alpha 1 domain. The amino acid residues recognized are clustered in two non-contiguous regions at positions 66-69 (KYKR) and 79-82 (RKLR) shared by almost all HLA C alleles. On HIV-1 gp120, M38 binds to two non-contiguous sequences (KYK and KAKR) at positions 490-492 and 505-508 located at the edges of a large hydrophobic region that is apparently involved in binding the transmembrane glycoprotein gp41. The C-terminal gp120 M38-reactive region (KAKR) lies within the immunodominant sequence APTKAKRRVVQREKR, against which the majority of HIV-infected individuals produce antibodies. The results indicate that a functionally important region of HIV-1 gp120 shares similar amino acid sequence motifs with the antigen recognition site of most HLA class I C alleles. The molecular mimicry may be the basis for autoimmune responses in HIV infection.

Amino Acid Sequence↗

Activation of the nicotinic acetylcholine receptor mobilizes calcium from caffeine-insensitive stores in C2C12 mouse myotubes.

In cultured mouse C2C12 myotubes, digital Ca2+ imaging fluorescence microscopy using the acetoxymethyl ester of Fura-2, Fura-2-AM, showed that, in the absence of extracellular Ca2+, acetylcholine (ACh) and nicotine, but not muscarine, raised the intracellular concentration of Ca2+ ([Ca2+]i) by about tenfold. ACh-induced Ca2+ mobilization was prevented by thapsigargin, a drug known to deplete inositol 1,4,5-trisphosphate (InsP3)-sensitive stores, and was concomitant with InsP3 accumulation. Caffeine, which releases Ca2+ from the ryanodine-sensitive stores of the sarcoplasmic reticulum, did not interfere with the ACh-induced [Ca2+]i increase. Ca2+ mobilization was also inhibited when myotubes were depolarized by high K+, or when extracellular Na+ was omitted. Nicotinic ACh receptor (nAChR) stimulation lowered intracellular pH with a time course slower than the [Ca2+]i increase. Possible mechanisms linking the current flowing through the nAChR pore to [Ca2+]i increase are discussed.

Acetylcholine↗

Cholinergic responses in cloned human TE671/RD tumour cells.

The cholinergic responses of the human tumour cell line TE671/RD were examined using digital Ca2+ imaging fluorescence microscopy and patch-clamp measurements. In response to stimulation of the muscarinic acetylcholine (ACh) receptor (mAChR), the intracellular concentration of Ca2+ ([Ca2+]i) rose about two-fold, in parallel with inositol 1,4,5-trisphosphate accumulation, measured by chromatographic techniques. By contrast, there was no increment of [Ca2+]i upon stimulation of the nicotinic ACh receptor (nAChR), nor after caffeine application. Electrophysiological experiments showed that TE671/RD cells lack functional voltage-activated Ca2+ channels. The stimulation of the nAChR induced transient whole-cell currents (IACh). Little or no current was detected in isotonic extracellular Ca2+, with Cs+ in the patch pipette. Cell pretreatment with muscarine reduced IACh by about 20%, without consistent modifications of current kinetics. Muscarine applied to the extra-patch membrane under the cell-attached configuration had no obvious effect on ACh-evoked unitary events. In conclusion, in human TE671/RD cells, muscarinic stimulation increases [Ca2+]i, while nicotinic stimulation does not. In addition, the nAChR exhibits peculiar ion permeability properties and is not functionally regulated by the breakdown of phosphoinositides.

Acetylcholine↗

Evidence of multiple memory systems in the human brain. A [18F]FDG PET metabolic study.

Patients with global amnesia of different aetiologies (n = 11), and patients with probable Alzheimer's disease of recent onset and mild to moderate severity (n = 18) underwent extensive neuropsychological examination, which included the evaluation of multiple components of memory, and a measurement of regional cerebral glucose metabolism with [18F]fluoro-deoxyglucose ([18F]FDG) and PET. In the neuropsychological tests, both global amnesia and Alzheimer's disease patients had impaired episodic long-term memory, while deficits of short-term, semantic and implicit memory were present only in Alzheimer's disease. When local metabolic rates for glucose were compared with values from age- and education-matched normal controls, a common pattern of bilateral hypometabolism was present in the hippocampus, cingulate and frontal basal cortex of both global amnesia and Alzheimer's disease patients. On the other hand, significant hypometabolism was found in the thalamus in only global amnesia, and in the frontal, parietal and temporal associative cortex in only Alzheimer's disease. The results of a multivariate regression analysis of test scores with metabolic data indicated that different clusters of cerebral areas were associated with each of the main components of memory function. These data are in agreement with 'neural network' models of the neural basis of cognition, according to which complex functions are subserved by multiple interconnected cortical and subcortical structures.

Aged↗

High concentration of peripheral blood mononuclear cells harboring infectious virus correlates with rapid progression of human immunodeficiency virus type 1-related diseases.

In a cohort of 103 asymptomatic seropositive subjects (Centers for Disease Control and Prevention [CDC] stage II/III) followed for 2 years, the concentration of peripheral blood mononuclear cells harboring infectious human immunodeficiency virus (HIV) type 1 (viral burden) was correlated with the rate of decrease of CD4 cell count (RD-CD4; R = .857). Rapidly progressing patients (RD-CD4 > or = 60%; n = 18) had a high viral burden (mean +/- SE, 572 +/- 202 cells/mL) and an 89% progression to CDC IV-A-C, while stable patients (RD-CD4 < 30%; n = 55) had a low viral burden (mean +/- SE, 28 +/- 4 cells/mL) and remained asymptomatic. Slowly progressing patients (RD-CD4 > or = 30 and < 60%; n = 30) showed an intermediate viral burden (mean +/- SE, 131 +/- 9 cells/mL) and a 10% CDC IV-A-C progression. Quantitative determination of infectious virus in blood cells adds important information on the prognosis of HIV-1 infection.

Adult↗

Light-reflection rheography and acute deep vein thrombosis.

The authors examined 47 subjects affected by acute phlebothrombosis of the lower limbs by means of light-reflection-rheography (LRR). The diagnosis was based on the results of clinical, Doppler, and duplex scanner evaluations. The results were compared with those obtained in 30 healthy subjects (control group). The LRR examinations were performed by two methods: the one consisting of a passive execution of postural movements of the limb, the other using the technique of plethysmographic venous occlusion. The pathological LRR curves were characteristic for each type of disease and for the site of thrombosis and were different from the normal ones. The results obtained show the usefulness of the method and it potential in studying the collateral circulation and the effects of different therapies.

Acute Disease↗

Clinical use of prostaglandin F2 alpha to induce early abortion in bitches: serum progesterone, treatment outcome and interval to subsequent oestrus.

Records of elective abortion in 27 bitches presented to the Veterinary Surgery and Reproduction Clinic of the University of Pisa were reviewed. Treatment consisted of twice-daily subcutaneous injections of 150-270 micrograms natural prostaglandin F2 alpha kg-1 for 4 consecutive days starting between cytological dioestrous days 5 and 19. None of the treated bitches whelped. Luteolysis appeared to be complete (serum progesterone < 3.2 nmol l-1) at the end of treatment in 22 of 25 bitches in which progesterone was assayed in serum obtained daily during therapy. Serum progesterone rose after treatment to a concentration consistent with pregnancy in four of 17 bitches in which progesterone was measured once between dioestrous days 23 and 51. The mean intercycle interval (pro-oestrus-pro-oestrus) of the cycle in which abortion was induced was 134 +/- 45 days for 15 dogs for which the interval could be determined, and was significantly shorter than the average preceding interoestrous intervals (210 +/- 40.0 days) for the same dogs (P < 0.001).

Abortifacient Agents↗

Tumor necrosis factor alters synaptic transmission in rat hippocampal slices.

The effects of human recombinant tumor necrosis factor (TNF-alpha) on the synaptic transmission were studied in rat hippocampal slices by using extracellular field potential recordings. Population spikes and/or excitatory postsynaptic potentials were extracellularly recorded in hippocampus CA1 region from stratum pyramidale and stratum radiatum, respectively, and synaptic transmission was examined in the Schaffer collateral/commissural-CA1 pathway. Basal neurotransmission slightly and promptly increased in slices acutely exposed to TNF-alpha (1-100 nM). Examination of the long-term potentiation (LTP) revealed that a brief treatment with the cytokine did not influence LTP, while a long-lasting application of TNF-alpha (50 min or more) inhibited LTP in a dose-dependent way in the range of 1-100 nM. A role for TNF-alpha as a peptide of immunological significance belonging to the family of brain neuromodulators is discussed.

Animals↗

Cl(-)-mediated interaction between GABA and glycine currents in cultured rat hippocampal neurons.

A cross-interaction between GABA- and glycine-evoked currents was found when the two transmitters were applied in sequence to cultured embryonic rat hippocampal neurons. Whole-cell GABA-current was inhibited by a previous glycine-current flowing in the same direction (inward or outward), and potentiated by a current with opposite polarity. The same effect was caused by GABA on glycine-current. Repeated applications of GABA (glycine) elicited currents of decreasing or increasing amplitude, according to a similar pattern. Transmitter interaction was independent of external Ca2+ and of all the metabolic pathways tested, but it was blocked by specific receptor antagonists, bicuculline and strychnine. The extent of both inhibition and potentiation correlated with the amount of charge flowing through the membrane during the conditioning transmitter application, indicating that cross-modulation depends on shifts of Cl- reversal potential. This finding has both functional and methodological implications, as it suggests a new mechanism of transmitter interaction in the brain, and also that patch-clamp pipettes cannot adequately perfuse cell interior.

Animals↗

Interferon inhibits synaptic potentiation in rat hippocampus.

The effects of rat interferon (IFN) on the electrically-induced potentiation of the synaptic transmission were studied in rat hippocampal slices by using extracellular field potential recordings. The treatment with rat IFN (120 U/ml) reduced the size of short-term potentiation (STP) and suppressed long-term potentiation (LTP). These IFN-induced effects were dose-dependent in the range of 50-500 U/ml. In addition, IFN slightly attenuated the potentiation when applied during the maintenance of LTP. Basal synaptic transmission was affected by IFN at concentrations greater than or equal to 250 U/ml. Following an acute exposure to IFN (500-200 U/ml), cultured embryonic neurones from rat hippocampus often exhibited an attenuation of N-methyl-D-aspartate-induced currents and a variation (increase or decrease) of voltage-activated Ca2+ current amplitude. A possible role of IFN as neuromodulator in mammalian brain during immune responses is discussed.

Animals↗

Acetylcholine induces voltage-independent increase of cytosolic calcium in mouse myotubes.

Electrophysiological, biochemical, and Ca2+ imaging studies of cultured mouse myotubes were used to investigate whether the neurotransmitter acetylcholine causes an increase in intracellular Ca2+ concentration ([Ca2+]i) through activation of a second messenger system. Bath applications of acetylcholine to myotubes (i) elicited a significant membrane current even in a Na(+)-free Ca2+ medium, when the current was carried mainly by calcium ions; (ii) caused a rapid and transient cytosolic accumulation of inositol 1,4,5-trisphosphate; (iii) evoked a conspicuous alpha-bungarotoxin-sensitive long-lasting [Ca2+]i enhancement even in the presence of Cd2+; and (iv) transiently increased [Ca2+]i when cells were equilibrated in a Ca(2+)-free atropine-containing medium. We propose that, in addition to opening ion channels, the nicotinic action of acetylcholine on the muscle cell membrane increases [Ca2+]i through activation of the inositol 1,4,5-trisphosphate second messenger system and mobilization of Ca2+ from intracellular stores.

Acetylcholine↗

Human immunodeficiency virus type 1 gp120 mimics a hidden monomorphic epitope borne by class I major histocompatibility complex heavy chains.

Murine monoclonal antibodies (mAbs) M38 and L31 define two epitopes of a surface protein of activated lymphocytes and monocytes. It has been shown that M38 also defines a crossreactive epitope of human immunodeficiency virus type 1 (HIV-1) gp120 (Beretta et al., 1987. Eur. J. Immunol. 17: 1793). The mAb inhibits syncytia formation driven by HIV-1-infected cells. The surface protein was demonstrated to be a class I MHC alpha chain, by sequence analysis of the corresponding cDNA and by immunological means. The epitopes defined by mAbs M38 and L31 are monomorphic and hidden (i.e., inaccessible to antibodies) on native HLA molecules expressed by resting cells, but can be evidenced on denatured proteins by Western blot analysis. The two epitopes become accessible after activation processes have been implemented, likely reflecting a conformational alteration of alpha chains (such as that described by Schnabl et al. 1990. J. Exp. Med. 171:1431). Consistent with molecular data are the results of functional analysis, which indicate that the molecule recognized by M38 and L31 is a gate for pleiotropic negative signals, since the two mAbs were shown to inhibit monocyte antigen presentation and lymphocyte mitogenic proliferation, respectively.

Amino Acid Sequence↗

Tunicamycin increases desensitization of acetylcholine receptors in cultured mouse muscle cells.

Whole-cell currents activated by acetylcholine (AcCho) were recorded in C2 mouse myotubes before and after prolonged treatment with tunicamycin, an inhibitor of glycosylation. In control cells the AcCho-induced currents decayed slowly even in the continuous presence of AcCho. After 24 hr of treatment with tunicamycin AcCho still elicited currents, but their size was significantly reduced and their decay was greatly accelerated. The binding of 125I-labeled alpha-bungarotoxin, a specific and irreversible antagonist of muscle AcCho receptors, was greatly reduced after tunicamycin treatment, and an equivalent reduction was observed after a long-lasting application of the AcCho agonist carbachol. We suggest that, after inhibition of glycosylation by tunicamycin, AcCho receptors are expressed correctly on the plasma membrane but these receptors desensitize more rapidly and are less efficient in binding alpha-bungarotoxin.

Animals↗

Axonal neuropathy in a patient with monoclonal IgM kappa reactive with Schmidt-Lantermann incisures.

We report a patient with a progressive, predominantly sensory neuropathy and a IgM kappa M-protein that binds to Schmidt-Lantermann incisures. A sural nerve biopsy showed primary axonal damage and IgM deposits at Schmidt-Lantermann incisures were seen by direct immunoperoxidase. Serum from the patient injected into rat sciatic nerve reacts with the incisures as with those in the patient's nerve. The IgM kappa M-protein reacts with chondroitin sulfate C and binds to a broad nerve protein band with a mobility of between 170 and 118 kDa. Peripheral neuropathy may be related to the M-protein, which had immunocytochemical reactivity not previously described for patients with polyneuropathy and IgM monoclonal gammopathy.

Axons↗

Chemical residues of ganglioside molecules involved in interactions with lymphocyte surface targets leading to CD4 masking and inhibition of mitogenic proliferation.

Human lymphocyte CD4 becomes undetectable in the presence of exogenous gangliosides (CD4 masking), as originally described by Offner et al. (J. Immunol. 1987. 139: 3295). CD4 masking is apparently due to in situ rearrangement of the glycoprotein; since no direct binding of ganglioside to CD4 could be demonstrated, it was suggested that the effect could be mediated by interactions with other, as yet unidentified, surface structures. To gain insight into the structural requirements of the interaction(s) that leads to CD4 masking, we assayed the effects of a battery of gangliosides and of ganglioside derivatives on (a) CD4 masking; (b) cholera toxin binding (as a well known ganglioside-protein interaction) and (c) inhibition of lymphocyte mitogenic proliferation (as a second ganglioside interaction with a lymphocyte surface target). Our results indicate that the three interactions are distinctly different, since ganglioside chemical groups which are essential for one of the interactions are irrelevant for the others, and lead to the conclusion that gangliosides can interact with lymphocyte surface targets in a number of ways, causing a number of independent biological effects.

CD4 Antigens↗

Acetylcholine-activated currents in quail myotubes expressing viral oncogenes.

Acetylcholine-activated currents were recorded in cultured myotubes arising from embryonic quail myoblasts transformed by the v-src and v-ras oncogenes. In src-myotubes, the whole cell inward current decayed more slowly than in non-transformed controls. In ras-myotubes, the current had a faster decay and smaller amplitude than in the controls. The single-channel conductance and mean open times recorded from cell-attached patches were similar in transformed and control cells. However, in ras-myotubes the frequency of channel openings strongly decreased with time. It is concluded that oncogenic tyrosine-specific protein kinase (v-src product) and G-like p21 protein (v-ras product) can induce differential changes in the function of nicotinic ACh receptor, perhaps related to specific biochemical events elicited in the establishment of the transformed state.

Acetylcholine↗

Idiotypic replica of an anti-human tumor-associated antigen monoclonal antibody. Analysis of monoclonal Ab1 and Ab3 fine specificity.

CaMBr1 is a tissue-specific and tumor-associated saccharidic epitope, defined by mAb MBr1 (Ab1), expressed on glycoconjugates of the human mammary carcinoma cell line MCF-7 and of normal and neoplastic mammary epithelial cells. An anti-anti-idiotypic monoclonal Ab3, 2G-3, identifying a human breast tumor associated antigen, was raised by using as immunogen a mouse anti-idiotypic monoclonal Ab2, A3B10, which behaves as the internal image of CaMBr1. mAb 2G-3, as well as MBr1, defines a saccharidic epitope on glycoconjugates extracted from MCF-7 cells and shows MBr1-like reactivity on normal and neoplastic-tissues. Experimental evidence, however, suggests that the fine immunoreactivity of the two antibodies is not identical, because MBr1 has a preferential reactivity with glycolipids and 2G-3 with glycoproteins. We suggest that a possible biologic explanation for our findings could reside in the nature of the immunogens used to raise the two mAb (glycolipid vs protein "internal image").

Animals↗