Search PubMedSearch

Biomedical subjects

A Palumbo

Publications and source records attributed to A Palumbo.

At least 19 recordsLinked to original sources

Iron- and peroxide-dependent conjugation of dopamine with cysteine: oxidative routes to the novel brain metabolite 5-S-cysteinyldopamine.

The mechanism of formation of 5-S-cysteinyldopamine (5-S-CDA), a putative index of oxidative stress in dopaminergic regions of the brain, was investigated by comparing the ability of a number of neurochemically relevant oxidising systems to promote the conjugation of dopamine with cysteine in vitro. Autoxidation of the catecholamine proceeds at relatively slow rate in the physiological pH range, and is little affected by 1 mM Fe(2+)-EDTA complex. In the presence of cysteine, however, the Fe(2+)-induced autoxidation is hastened, affording little amounts of 5-S-CDA. Formation of the adduct is completely suppressed by ascorbic acid. Hydrogen peroxide, in the presence of Fe(2+)-EDTA (Fenton-type oxidation) or peroxidase, promotes a relatively efficient conversion of dopamine to 5-S-CDA and the minor isomer 2-S-CDA. Noteworthy, 15-hydroperoxyeicosatetraenoic acid (arachidonic acid hydroperoxide, HPETE), in the presence of Fe(2+)-EDTA complex, can also mediate 5-S-CDA formation, whilst superoxide radicals are little effective. Overall, these results suggest that ferrous ions, hydrogen peroxide and lipoperoxides may play an important role in 5-S-CDA generation.

Brain

Peroxidase activity in the ink gland of Sepia officinalis and partial nucleotide sequence of a candidate cDNA encoding the enzyme.

A peroxidase was partially purified from the ink gland of the cuttlefish Sepia officinalis. This enzyme acts on guaiacol and I- as substrates and is inhibited by cyanide and azide. By using the PCR technique we have isolated and sequenced a cDNA clone encoding a protein homologous to other animal peroxidases. These results are discussed in relation to the possible involvement of peroxidase in the biosynthesis of melanin.

Amino Acid Sequence

Retinoic acid inhibits the growth of human myeloma cells in vitro.

Retinoic acid has been shown to induce growth inhibition in a variety of cell types including human myeloma cell lines. Bone marrow plasma cells from 31 multiple myeloma (MM) patients were cultured to investigate the activity of 13-cis-retinoic acid (cRA), all-trans-retinoic acid (tRA), interferon-alpha (IFN-alpha), interferon-gamma (IFN-gamma), and dexamethasone (DEX), alone or in combination, on in vitro proliferation and immunoglobulin (Ig) secretion. Both cRA and tRA inhibited proliferation: the labelling index (LI) of treated cultures/controls, was 0.47 +/- 0.05 (mean +/- standard error mean, M +/- SEM) P < 0.0001, and 0.67 +/- 0.04 (M +/- SEM), P < 0.0001, respectively. The inhibitory effect of cRA was significantly superior to tRA (P = 0.0129) and IFN-alpha, similar to IFN-gamma and DEX. The combinations of cRA + IFN alpha, tRA + IFN-gamma, tRA + DEX did not show any synergistic effect on myeloma proliferation. In contrast, the combination cRA + DEX (0.29 +/- 0.04, M +/- SEM) markedly increased the effect of both cRA and DEX used as single agents. Ig synthesis was not significantly affected by CRA, tRA, IFN-gamma and the combination tRA + IFN-gamma. As expected, only IFN-alpha (P = 0.002) and DEX (P < 0.001) inhibited Ig production. The combinations cRA + IFN-alpha, cRA + DEX and tRA + DEX decreased Ig secretion to the same extent as IFN-alpha and DEX alone respectively. In conclusion, our data indicate that tRA and especially cRA strongly inhibited plasma cell proliferation but had no effect on Ig synthesis. The combination of cRA + DEX showed the highest degree of inhibitory activity of all cytokines, alone or in combination.

Antibodies, Neoplasm

The ovarian renin-angiotensin system. A paracrine-intracrine regulator of ovarian function.

We present a review that considers the regulation of ovarian function by the ovarian renin-angiotensin system. Evidence is presented that shows the ovarian renin-angiotensin system can regulate normal ovarian function by paracrine and intracrine mechanisms. In addition, the complexity that is inherent in the renin-angiotensin system conferred by multiple biological angiotensin peptides and multiple receptors is discussed. Evidence that a dysfunctional OVRAS induces ovarian pathology such as polycystic ovarian disease is also presented.

Animals

In situ localization of apoptosis in the rat ovary during follicular atresia.

Apoptosis is a type of physiologic cell death that occurs in many tissues and be regulated by peptide growth factors. Recent studies indicate that apoptosis occurs in the ovary during follicular atresia in several animal species, including the rat, pig, chicken, baboon, and rabbit. The purpose of this study was to demonstrate, through in situ identification of apoptotic cells in intact ovarian sections, the sites in which apoptosis occurs in the rat ovary in different functional states. We evaluated the presence of apoptosis in three models: immature rats, eCG-treated rats and adult cycling rats. Paraffin ovarian sections were pretreated with proteinase K and then end-labeled with biotinylated deoxyuridine triphosphate (dUTP) by incubation with the enzyme terminal deoxynucleotidyl transferase (TDT). They were then stained through use of avidin-conjugated peroxidase with 3,3'-diaminobenzidine as the substrate. Healthy antral and preantral follicles had no staining. The nuclei of granulosa cells of preantral and antral atretic follicles were positively stained in all the animal groups. Scattered theca cells were also stained. Stromal cells were consistently negative. Positive controls were sections pretreated with DNase I; these displayed intense staining of all nuclei. Negative controls, in which either terminal TDT or its biotinylated substrate was omitted, were appropriately negative. This study represents a systematic analysis of apoptosis in the rat ovary at different functional stages and supports the hypothesis that apoptosis is involved in the process of follicular atresia.

Animals

5,6-Dihydroxyindole-2-carboxylic acid is incorporated in mammalian melanin.

The role of 5,6-dihydroxyindole-2-carboxylic acid (DHICA) in the biosynthesis of melanins has been studied by using the incorporation of specifically radiolabelled melanogenic precursors into melanins formed by melanocytes growing in vitro and in vivo. Extracts of mouse melanocytes and intact viable melanocytes were found to incorporate into melanin from 25% to more than 60% of [1-14C]tyrosine. Melanins from melanoma tumours grown in mice were radiolabelled with 3,4-dihydroxy[1-14C]phenylalanine, purified and chemoselectively decarboxylated. Determination of the 14CO2 evolved showed that at least 20% of the precursor incorporated in vivo retains the label in the form of non-aminoacidic aromatic-type carboxyl groups. These results provide the first unambiguous demonstration that DHICA is incorporated in physiologically relevant amounts in mammalian melanins.

Animals

Early disappearance of murine plasmocytoma stem cells in long-term bone marrow culture.

Long-term bone marrow culture (LTBMC) was evaluated as a purging procedure in the murine plasmocytoma MOPC-315s system. MOPC-315s cells injected in Balb-c mice rapidly proliferate both in marrow and spleen, where macroscopic tumor colonies develop. A linear relationship between the number of injected cells and spleen colonies was observed, consistent with the presence of 1 clonogenic myeloma stem cell out of 1800 cells. In vitro, MOPC-315s cells are easily identifiable as rosette-forming cells (RFC+) with trinitrophenil acid (TNP) coated sheep red blood cells. When bone marrow (BM) cells containing 20-40% RFC+ were seeded in LTBMC, RFC+ rapidly decreased and were no longer detectable by day 14 of culture. Clonal Ig gene rearrangement was evident at time 0, but it was no more detectable later on. In addition, cells taken at days 14 and 21 of culture were no more tumorigenic when injected in vivo. The results suggest the efficacy of the LTBMC for the in vitro elimination of myeloma cells, including the neoplastic stem cells.

Animals

Multiple independent immunoglobulin class-switch recombinations occurring within the same clone in myeloma.

Multiple myeloma (MM) is characterized by the expansion of terminally differentiated plasma cells. It is still uncertain whether the clonogenic fraction is confined to the plasma cell or pre-plasma cell compartment. We examined the immunoglobulin (Ig) rearrangement of myeloma heavily infiltrated bone marrow cells with a probe from the heavy chain J region (JH) and the BamHI, EcoRI and HindIII restriction enzymes which are appropriate for the detection of clonal VDJ recombination. In 23/39 MMs, clonal Ig gene rearrangement was detected with BamHI, EcoRI and HindIII enzymes. Unexpectedly, in 14/39 patients both BamHI and EcoRI failed to detect Ig rearrangement, whereas HindIII consistently demonstrated VDJ recombination. The 5' sites of BamHI, EcoRI and HindIII restriction fragments are precisely defined by the VDJ rearrangement. Since the 3' ends of BamHI and EcoRI restriction fragments are downstream from the switch mu region and change in size during switch recombination, the absence of rearranged bands is determined by several autonomous recombinations affecting the switch region. By contrast, the 3' ends of HindIII restriction fragments are upstream, their size does not vary during isotype switch allowing the constant detection of clonality. Accordingly, in 35% of patients the clonogenic fraction seems to originate from a pre-switch B cell. This B cell will differentiate to a mature plasma cell developing multiple independent switch recombinations, as the variable mechanism of switch recombination suggests.

Adult

Multiple myeloma: intensified maintenance therapy with recombinant interferon-alpha-2b plus glucocorticoids.

Interferon-alpha-2b has been demonstrated to prolong remission duration and survival in responding multiple myeloma patients. The aim of this study was to evaluate intensification of this maintenance therapy through the addition of glucocorticoids. Eighteen myeloma patients at diagnosis received six-12 courses of conventional chemotherapy and then interferon + glucocorticoids. This treatment included 3 megaunits of interferon three times a week, plus 4 days of pulsed high-dose dexamethasone (40 mg/d for 4 d every 28 d for 6 months/year) in patients < 70 yr old, or oral prednisone (50 mg three times a wk) in patients > 70 yr old. Conventional chemotherapy induced an objective response in 13/18 patients and a further reduction of the M component (> 50%) was achieved during interferon + glucocorticoids treatment in 7/13. 4/18 patients relapsed with a median follow-up of 22 months (range 13-40). These findings indicate that interferon + glucocorticoids, after inductional chemotherapy, further reduces tumor burden and may prolong remission.

Adult

Comparative action of dopachrome tautomerase and metal ions on the rearrangement of dopachrome.

A vis-a-vis comparison between the effects of dopachrome tautomerase (DCT) and metal ions, e.g., cupric ions, on the kinetics and mode of rearrangement of dopachrome has been carried out under appropriate analytical conditions. The enzyme-promoted reaction is highly stereospecific for L-dopachrome, is unaffected by metal chelators and has an optimal pH around 6.8. By contrast, the kinetics of dopachrome rearrangement catalysed by cupric ions are not dependent on the stereochemistry of the substrate, are affected by EDTA and are not influenced by the pH of the medium in the range between 5-7.5. Both cupric ions and DCT catalyse the rearrangement of dopachrome to give 5,6-dihydroxyindole-2-carboxylic acid (DICA) rather than 5,6-dihydroxyindole (DI). However, at comparable activity, the ratio of formation DICA/DI is significantly higher in the enzyme-catalysed than in the metal-catalysed reaction. These results provide an improved background to look into the mode of action of DCT and metal ions, enabling a clear cut differentiation between the effects of the two factors when both are present in biological extracts.

Animals

Mechanism of inhibition of melanogenesis by hydroquinone.

Hydroquinone (HQ) is one of the most effective inhibitors of melanogenesis in vitro and in vivo, and is widely used for the treatment of melanosis and other hyperpigmentary disorders. In an attempt to get some insight into the molecular mechanism of the depigmenting action, which is still very poorly understood, we have investigated the effect of HQ on the tyrosinase catalysed conversion of tyrosine to melanin. Incubation of 0.5 mM tyrosine with 0.07 U/ml tyrosinase in phosphate buffer at pH 6.8 in the presence of 0.5 mM HQ led to no detectable melanin formation, due to the preferential oxidation of HQ with respect to tyrosine (HPLC evidence). Kinetic investigations showed that HQ is a poorer substrate of tyrosinase than tyrosine; yet, it may be effectively oxidised in the presence of tyrosine owing to the generation of catalytic amounts of dopa acting as cofactor of tyrosinase. Product analysis of HQ oxidation with tyrosinase in the presence of dopa showed the predominant formation in the early stages of hydroxybenzoquinone (HBQ), arising from enzymic hydroxylation and subsequent oxidation of HQ, along with lower amounts of benzoquinone (BQ). These results suggest that the depigmenting activity of HQ may partly be related to the ability of the compound to act as an alternate substrate of tyrosinase, thereby competing for tyrosine oxidation in active melanocytes.

Benzoquinones

Selective uptake of 2-thiouracil into melanin-producing systems depends on chemical binding to enzymically generated dopaquinone.

2-Thiouracil (TU), an antithyroid drug, is receiving growing interest as a specific tumor marker for malignant melanoma, owing to its capability of being selectively accumulated into active melanin-producing tissues. However, up until now, the molecular mechanism of TU uptake by growing melanin has remained largely unknown. In an attempt to fill this gap, we have investigated the effect of TU on the tyrosinase catalyzed oxidation of tyrosine. At a concentration of 0.5 mM, TU was found to totally inhibit melanin formation by tyrosinase catalyzed oxidation of 0.25 mM tyrosine in phosphate buffer at pH 6.8. Polarographical monitoring of oxygen consumption under conditions of complete suppression of melanogenesis revealed a significant tyrosinase activity, with TU acting as a modest non-competitive inhibitor of the enzyme (Ki = 0.6 mM). HPLC and TLC analysis of the tyrosine-tyrosinase reaction in the presence of excess TU showed that the substrate is progressively consumed and a major hitherto unknown product (lambda max = 284 nm), positive to ninhydrin and ferric chloride, is concomitantly formed. This was isolated by repeated gel filtration chromatography of the reaction mixture on Sephadex G-10 and was formulated as the TU-dopa adduct 3,4-dihydroxy-6-(4'-hydroxypyrimidinyl-2'-thio)phenylalanine by spectral analysis. These results suggest that selective TU incorporation in pigmented melanomas and other melanin-producing systems is due to the covalent binding to dopaquinone, produced by tyrosinase catalyzed oxidation of tyrosine.

Animals

Activation of mammalian tyrosinase by ferrous ions.

Kinetic experiments are reported showing that mammalian tyrosinase from B16 mouse melanoma is significantly activated by catalytic amounts of ferrous ions. Monitoring of tyrosine oxidation by both dopachrome formation and oxygen consumption showed that ferrous ions at micromolar concentrations induce a marked enzymatic activity with 0.01 U/ml of highly purified tyrosinase, whereas no detectable reaction occurs in the absence of metal over a sufficiently prolonged period of time. The extent of the activating effect, which is specific for the reduced form of iron, is proportional to the concentration of the added metal with a typical saturation profile, no further effect being observed beyond a threshold value. Changing the buffer system from phosphate to hepes or tris results in a marked decrease of the Fe2(+)-induced activation. Scavengers of active oxygen species, such as superoxide dismutase, catalase, formate and mannitol have no detectable effect on the tyrosinase activity. These results are accounted for in terms of an activation mechanism involving reduction of the cupric ions at the active site of the resting enzyme.

Animals

[Splenic echography in blunt abdominal trauma].

Eighty emergency US exams of the spleen for blunt abdominal trauma were performed in 1988-1989 to evaluate US accuracy and reliability. A real-time scanner with convex probes (3.5 and 5 MHz) was employed. The results were confirmed at surgery and/or clinics and instrumental examinations. Nineteen patients were positive at US (1 false-positive); US patterns were: 16 focal lesions of the spleen--6 of them isolated, 7 associated with endoabdominal effusion, and 3 with increased splenic size and endoabdominal effusion--and 3 with isolated hemoperitoneum. Splenectomy was performed on 16/80 patients (20%): 13 of them were positive at US, while in 3 patients splenic lesions were not demonstrated. Five patients were followed with clinical and instrumental examinations to complete remission. Our results [85.7% sensitivity (18/21) and 71.4% specificity (15/21)] confirm US reliability in the evaluation of splenic lesions in blunt abdominal traumas.

Abdominal Injuries