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Biomedical subjects

A Ferrante

Publications and source records attributed to A Ferrante.

At least 91 records · Page 5Linked to original sources

Autoimmune enteropathy with anti-goblet cell antibodies.

A 9-year-old boy with a 5-year history of severe protracted diarrhea requiring home parenteral nutrition and a 1 year history of abnormal liver function tests was admitted for duodenal, rectal, and liver biopsy. Duodenal biopsy results showed mild villus blunting, a mild lymphocytic infiltrate, and absent goblet cells. Paneth cells and endocrine cells could not be identified. Review of several previous biopsies showed an almost total absence of goblet cells by light microscopy. Anti-goblet cell antibodies of the immunoglobulin (Ig)G class were shown by immunofluorescence with a titer of 1:512. Histological examination of rectal mucosa also showed a total lack of goblet cells, orderly surface epithelial cells, and infiltration of the colonic crypts by lymphocytes. Immunoperoxidase staining of rectal mucosa showed increased numbers of lymphocytes with an excess of CD3+, CD45RO+ T cells, and increased numbers of B cells labeling with B1 and L26. Increased numbers of CD25+ (activated) lymphocytes were also observed. HLA/DR expression was striking and observed in both the crypt and surface enterocytes, as well as in the lamina propria. Immunological assessment of the patient showed an inverted CD4/CD8 ratio and IgA/IgG4 deficiency. The liver biopsy and radiological investigation were in keeping with chronic sclerosing cholangitis. Although a slight and transient improvement in histological appearances was observed with prednisolone there was no significant improvement of diarrhea. Trials of azothiaprine and oral cyclosporin did not result in clinical or histological improvement.

Autoantibodies↗

Inhibition of gap junctional communication by polyunsaturated fatty acids in WB cells: evidence that connexin 43 is not hyperphosphorylated.

Polyunsaturated fatty acids have attracted much interest due to their wide spectrum of biological activities which include the modulation of gap junctional communication (GJC). Since gap junctions play critical roles in maintaining the functional integrity of organs and tissues, and loss of intercellular communication is associated with a number of pathological conditions, we investigated the effects of the n-6 and n-3 series of polyunsaturated fatty acids and their derivatives on GJC in WB cells as determined by the ability of Lucifer Yellow-loaded cells to transfer the dye to neighbouring recipient cells. Studies were also conducted to investigate the possible mechanisms of action of the fatty acids. Treatment of cells with 10 microM arachidonic acid (20:4 n-6) resulted in a rapid and transient loss of communication competence. The response to 20 microM 20:4 (n-6) was prolonged (> 210 min) but was readily reversible by washing the cells with fatty acid-free bovine serum albumin. Cells which had regained their communication competence responded to further additions of 20:4 (n-6). The fatty acids, 18:3 (n-6), 20:5 (n-3), 22:6 (n-3) and the 15-hydroxy- and the 15-hydroperoxy-derivatives of 20:4 (n-6) were also powerful inhibitors of GJC, while 23:4 (n-6) was a relatively weak inhibitor. The saturated 20 carbon fatty acid, 20:0, and the methyl ester of 20:4 (n-6) were without effect. This illustrates the importance of unsaturation and the carboxyl group as structural requirements for activity. 20:4 (n-6)-induced inhibition of dye transfer was not attenuated by pretreating the cells with either phorbol-12-myristate-13-acetate (PMA) or indomethacin, suggesting that regulation of gap junctional permeability by 20:4 (n-6) in WB cells was neither dependent on PMA-responsive isozymes of protein kinase C nor required the metabolism of the fatty acids by cyclo-oxygenase. However, the effect of 20:4 (n-6) was antagonized by preincubating WB cells with either nordihydroguaiaretic acid or (+/-)-isoproterenol and isobutylmethyl-xanthine. Western blot analysis of connexin 43 (Cx43), the major gap junctional protein expressed in these cells, revealed no detectable changes to the electrophoretic mobility of Cx43 even after 60 min of incubation in the presence of 20:4 (n-6). As expected, other inhibitors of gap junctional permeability including epidermal growth factor, phorbol ester or lysophosphatidic acid induced a retardation in the mobility of Cx43, indicating an enhancement in the phosphorylation of Cx43 protein.(ABSTRACT TRUNCATED AT 400 WORDS)

1-Methyl-3-isobutylxanthine↗

A synthetic tumor necrosis factor-alpha agonist peptide enhances human polymorphonuclear leukocyte-mediated killing of Plasmodium falciparum in vitro and suppresses Plasmodium chabaudi infection in mice.

A peptide corresponding to residues 70-80 of the TNF-alpha polypeptide was synthesized and shown to enhance human PMN-mediated killing of Plasmodium falciparum in vitro and reduced the Plasmodium chabaudi parasitemia in mice. Studies of the mechanism of action showed that the peptide, TNF(70-80), stimulated and primed PMN for an increased respiratory burst and release of granule constituents in response to a second agonist. The PMN-stimulatory activity of the peptide was inhibited by mAbs against the p55 and p75 TNF receptors and a TNF-neutralizing mAb. Analysis of PMN receptor expression showed that CR3 (CD18/CD11b) and Fc gamma RIII were upregulated by TNF(70-80), which was consistent with the peptide's ability to enhance parasite killing by PMN. The peptide, unlike TNF, did not increase the expression of adhesion molecules on endothelial cells and failed to promote binding of P. falciparum-infected erythrocytes to endothelial cells. TNF(70-80) also inhibited the TNF-induced increase in adhesion of P. falciparum-infected erythrocytes to endothelial cells. The results demonstrate that the host-protective effects of TNF can be retained while toxic effects are eliminated using a selected, characterized subunit of the cytokine.

Animals↗

Activation of the neutrophil bactericidal activity for nontypable Haemophilus influenzae by tumor necrosis factor and lymphotoxin.

Previous studies have suggested that, in vivo, activated T lymphocytes and neutrophils are important in immunity to nontypable Haemophilus influenzae. We now extend this work by showing that neutrophils pretreated with products of activated T lymphocytes or activated macrophages show significantly enhanced killing of nontypable H. influenzae. Lymphotoxin, a product of activated T lymphocytes, significantly enhanced the neutrophil-mediated killing of nontypable H. influenzae, and tumor necrosis factor, produced by activated T lymphocytes as well as macrophages stimulated by activated T lymphocytes, also significantly increased the bactericidal activity of neutrophils. These cytokine-induced effects were seen with short pretreatment times of neutrophils and were maximal by 30 min. The killing of H. influenzae by neutrophils required the presence of heat-labile opsonins. In the absence of these opsonins, both tumor necrosis factor and lymphotoxin were unable to promote the killing of the bacteria by neutrophils. Furthermore, the results showed that tumor necrosis factor-primed neutrophils displayed significantly increased expression of CR3 and CR4 that was associated with increased phagocytosis of complement-opsonized nontypable H. influenzae. These cytokines may play an important role in immunity toward nontypable H. influenzae by stimulating neutrophil bactericidal activity.

CD11 Antigens↗

Effect of exogenous fatty acids with greater than 22 carbon atoms (very long chain fatty acids) on superoxide production by human neutrophils.

The effects of exogenous long chain fatty acids (LCFA) and very long chain fatty acids (VLCFA) on superoxide production by human neutrophils were compared. Superoxide production was greater and more rapid in response to arachidonic (20:4 (n-6)), eicosapentanoic (20:5 (n-3)), and docosahexanoic (22:6 (n-3)) acids than for triacontatetranoic (30:4 (n-6)), dotriacontatetranoic (32:4 (n-6)), and tetratriacontahexanoic (34:6 (n-3)) acids, although all of these fatty acids gave responses larger than FMLP. A similar decline in activity with increasing carbon chain length was observed for the monoenoic VLCFA (22:1 (n-9) to 34:1 (n-9)). 32:4 (n-6) did not affect responses to a maximally stimulatory concentration of 20:4 (n-6). However, the simultaneous addition of 20:4 (n-6) and 30:4 (n-6) gave additive responses if suboptimal dosages of 20:4 (n-6) were used. This suggests that the LCFA and VLCFA may use the same signal transduction systems. In addition, 30:4 (n-6) was only 10% as effective as was 20:4 (n-6) at gaining access to the organic solvent extractable cellular fraction. This figure correlated with the relative biologic potency of 20:4 (n-6) and 30:4 (n-6), suggesting that the extent of association with the cell may regulate the biologic activity of the fatty acids. The saturates, arachidic (20:0) and cerotic (26:0) acids, were either inactive or poor activators in all assay systems examined. The failure of 20:0 to induce superoxide production and the lower responses to 30:4 (n-6) and 34:6 (n-3) were not because of extracellular Ca2+, because the biologic potency of these fatty acids was not greatly enhanced by removing Ca2+ from the extracellular medium. In contrast, 20:4 (n-6)- and 22:6 (n-3)-induced superoxide production was markedly increased under Ca(2+)-free conditions.

Calcium↗

Differences in the metabolism of eicosatetraenoic (20:4(n - 6)), tetracosatetraenoic (24:4(n - 6)) and triacontatetraenoic (30:4(n - 6)) acids in human neutrophils.

The metabolism of [1-14C]eicosatetraenoic (arachidonic, 20:4(n - 6)), [1-14C]tetracosatetraenoic (24:4(n - 6)) and [1-14C]triacontatetraenoic (30:4(n - 6)) acids was studied in intact human neutrophils. [1-14C]20:4(n - 6) and [1-14C]24:4(n - 6) were efficiently taken up by the neutrophils, esterified into neutral lipids and phospholipids, and elongated by up to four carbon units. In contrast, [1-14C]30:4(n - 6) was poorly incorporated into the cells and remained predominantly in the original unesterified form. The [1-14C]tetraenoic fatty acids were mainly esterified into triacylglycerol, suggesting that this lipid class is important in the intracellular trafficking of polyunsaturated fatty acids. The leukocytes demonstrated a low capacity to beta-oxidize and desaturate the fatty acid substrates. In the presence of calcium ionophore A23187 the neutrophils converted [1-14C]20:4(n - 6) to a variety of radiolabelled oxygenated fatty acid derivatives including prostaglandins, thromboxanes, mono- and dihydroxylated fatty acids and leukotrienes. The major eicosanoid products were 5-monohydroxy-20:4(n - 6) and leukotriene B4. In contrast, [1-14C]24:4(n - 6) was metabolized to radiolabelled monohydroxylated fatty acids (predominantly the 9-hydroxy positional isomer) but not to other lipoxygenase or cyclooxygenase products by the calcium ionophore-stimulated cells. Negligible oxygenated fatty acid compounds were formed from [1-14C]30:4(n - 6), indicating that it is a poor substrate for the neutrophil cyclooxygenase and lipoxygenase enzymes.

Arachidonic Acid↗

Interaction of Staphylococcus aureus with human neutrophils and the down-regulation of TNF receptors.

We have shown previously that pre-exposure of neutrophils to TNF significantly enhanced their killing of opsonized Staphylococcus aureus. We now demonstrate that the ability of TNF to enhance the bactericidal activity is dependent on preincubation time; enhancement was still evident when TNF and bacteria were added simultaneously to neutrophils but if TNF addition was delayed by 5 min, no enhancement was seen. Evidence is presented that suggests that this could be related to a down-regulation of TNF receptors by the bacteria, but in addition, the release of TNF receptor fragments may contribute to the inhibition observed. Scatchard analyses demonstrated a decrease from approximately 3000 TNF receptor (receptor binding) sites per cell to 450 following treatment with S. aureus, but essentially no change in receptor affinity. Using mAb directed against the type A (75 kDa) receptor (utr-1) and the type B (55 kDa) receptor (htr-9), it was found that the expression of both receptors was decreased following treatment with the bacteria. The time course of loss of these receptors showed that the surface expression of both molecules was markedly decreased by 5 min which correlated with the loss in ability of TNF to enhance the bactericidal activity. In contrast to changes seen in the binding of TNF, similarly treated neutrophils showed essentially no change in the binding of radiolabeled tripeptide FMLP and, if anything, an increase in the expression of the CD11b Ag (CR3 receptor). When another phagocytic stimulus was used, opsonized fungi (Torulopsis glabrata), a similar depression of TNF binding was also found, but opsonized sheep erythrocytes had no effect on the TNF binding, suggesting that the effects on the TNF receptor cannot be explained simply on the basis of particle phagocytosis.

Down-Regulation↗

Bacterial resistance to uncouplers.

Uncoupler resistance presents a potential challenge to the conventional chemiosmotic coupling mechanism. In E. coli, an adaptive response to uncouplers was found in cell growing under conditions requiring oxidative phosphorylation. It is suggested that uncoupler-resistant mutants described in the earlier literature might represent a constitutive state of expression of this "low energy shock" adaptive response. In the environment, bacteria are confronted by nonclassical uncoupling factors such as organic solvents, heat, and extremes of pH. It is suggested that the low energy shock response will aid the cell in coping with the effects of natural uncoupling factors. The genetic analysis of uncoupler resistance has only recently began, and is yielding interesting and largely unexpected results. In Bacillus subtilis, a mutation in fatty acid desaturase causes an increased content of saturated fatty acids in the membrane and increased uncoupler resistance. The protonophoric efficiency of uncouplers remains unchanged in the mutants, inviting nonorthodox interpretations of the mechanism of resistance. In E. coli, two loci conferring resistance to CCCP and TSA were cloned and were found to encode multidrug resistance pumps. Resistance to one of the uncouplers, TTFB, remained unchanged in strains mutated for the MDRs, suggesting a resistance mechanism different from uncoupler extrusion.

Bacillus subtilis↗

High glucose and hyperosmolality stimulate hepatocyte growth factor secretion from cultured human mesangial cells.

Hepatocyte growth factor is a recently cloned potent mitogen to hepatocytes, but its extrahepatic roles are not completely defined. It causes proliferation of endothelial and epithelial cells implicating potential action in the glomerulus. We aimed to determine whether cultured human mesangial cells secrete hepatocyte growth factor and the effect of high glucose conditions. Mesangial cells were isolated from the normal cortex of a child's kidney. After differential glomerular sieving and trypsin digestion of glomeruli, mesangial cells were cultured in 20% fetal calf serum/RPMI. Glucose concentration in the medium was adjusted to 5 mmol/l, 11 mmol/l, 25 mmol/l or 5 mmol/l/20 mmol/l mannitol to correct for osmolality. After 0, 24, 48, 72 h incubation, hepatocyte growth factor was measured in the supernatant by enzyme immuno assay using recombinant hepatocyte growth factor and monoclonal antibodies to human hepatocyte growth factor. Hepatocyte growth factor was secreted by cultured mesangial cells. High glucose and hyperosmolar conditions caused a 100-200% increase in hepatocyte growth factor secretion at 48-72 h (p = 0.001). Hepatocyte growth factor secretion at 48 h in 5 mmol/l glucose was 16.46 +/- 1.09 ng/ml (mean +/- SEM), 11 mmol/l glucose: 32.98 +/- 4.54, 25 mmol/l glucose: 33.32 +/- 7.89, 5 mmol/l glucose/20 mmol/l mannitol: 34.05 +/- 3.64; at 72 h in 5 mmol/l glucose: 23.92 +/- 2.85 ng/ml, 11 mmol/l glucose: 28.26 +/- 2.03, 25 mmol/l glucose: 62.04 +/- 12.2, 5 mmol/l glucose/20 mmol/l mannitol: 45.76 +/- 6.25. Trypan blue exclusion demonstrated membrane integrity.(ABSTRACT TRUNCATED AT 250 WORDS)

Cells, Cultured↗

Extraction of intraerythrocytic malarial parasites by phagocytic cells.

Phagocytosis is an intricate process adopted by some unicellular organisms as a feeding behaviour. It has developed in the tissues of multicellular organisms, both vertebrates and invertebrates, as a defence system to confine and eliminate foreign matter and, in this manner, protect the host against infection. During evolutionary development, phagocytic cells have evolved to show greater specificity. Lakshmi Kumaratilake, Antonio Ferrante, Jaliya Kumaratilake and Anthony Allison here describe a unique mechanism used by phogocytic leukocytes to engulf intra-erythrocytic malarial parasites.

Journal Article↗

In vitro activation of rat brain protein kinase C by polyenoic very-long-chain fatty acids.

A variety of fatty acids including the cis-polyunsaturated very-long-chain fatty acids (VLCFA) (> 22 carbon atoms) common in retina, spermatozoa, and brain were examined for their ability to activate protein kinase C (PKC) purified from rat brain. Arachidonic [20:4(n-6)], eicosapentaenoic [20:5(n-3)], and docosahexaenoic [22:6(n-3)] acids as well as the VLCFA dotriacontatetraenoic [32:4(n-6)] and tetratriacontahexaenoic [34:6(n-3)] were equally capable of activating PKC in vitro with maximal activity being between 25 and 50 microM. The phorbol ester 12-O-tetradecanoylphorbol 13-acetate further enhanced the in vitro activation of PKC when added to the protein kinase assay system with the fatty acids. The fully saturated arachidic acid (20:0) was inactive in both assay systems. The potential significance of the in vitro activation of PKC by the VLCFA is discussed.

Animals↗

Cytokines in the host response to mycotic agents.

In summary, different approaches have been taken to understand cytokine responses to different fungal infections. Singer-Vermes and co-investigators indirectly examined cytokine responses to paracoccidioidomycosis by studying the types of cellular and humoral immune responses that were induced in resistant and susceptible mouse strains. Their results implicated Th1 cell responses in the resistant mouse strain and Th2 cell responses in the mouse strain susceptible to paracoccidioidomycosis. By measuring cytokine production and through cytokine depletion experiments, Wu-Hsieh showed that besides IFN gamma, TNF alpha was important in host defences against the intracellular pathogen, H. capsulatum. Both cytokines play important roles in the regulation of other cytokines. In histoplasmosis, the dynamics of the complex interactions amongst cytokines govern the efficiency of host clearance of the fungus from tissues. Ferrante and collaborators, examining TNF alpha and TNF alpha receptors on neutrophils presented data showing that TNF alpha plays an important role in the activation of neutrophils for anti-Candida activity. Through the detection of cytokine mRNAs with RT-PCR, Moser and co-workers found that cytokine mRNAs of macrophage origin were produced preferentially in the lungs of mice infected with Histoplasma or Blastomyces. A great challenge still lies ahead of us. It is well understood that the interactions of cytokines are extremely complex at the levels of the induction and expression of the immune responses as well as on effects on natural cellular defences. Work accomplished thus far has laid the ground work for future studies in the effort to dissect host cytokine responses and to understand the roles of cytokines in protection against fungal infections.

Animals↗

Neutrophil migration inhibitory properties of polyunsaturated fatty acids. The role of fatty acid structure, metabolism, and possible second messenger systems.

The n-3 polyunsaturated fatty acids (PUFA) appear to have antiinflammatory properties that can be partly explained by their biological activity on leukocytes. Since leukocyte emigration is an essential component of the inflammatory response, we have examined the effects of the n-3 PUFA (eicosapentaenoic and docosahexaenoic acids) on neutrophil random and chemotactic movement. Preexposure of neutrophils for 15-30 min to 1-10 micrograms/ml PUFA reduced the random and chemotactic migration to both FMLP- and fungi-activated complement. The inhibitory effect diminished with increasing saturation and carbon chain length, and methylation abolished this activity. Arachidonic and docosahexaenoic acids were the most active fatty acids. The PUFA concentration required to inhibit migration was dependent on cell number, suggesting that the fatty acid effects on leukocyte migration in vivo may be governed by the stage of the inflammatory response. It was concluded that the PUFA rather than their metabolites were responsible for the inhibition since: (a) antioxidants did not prevent the PUFA-induced migration inhibition and the hydroxylated intermediates were less active, and (b) inhibitors of the cyclooxygenase and lipoxygenase pathways were without effect. Inhibitors of protein kinases and calmodulin-dependent enzyme system did not prevent the PUFA-induced migration inhibition, which was also independent of phospholipase D-catalyzed hydrolysis of phospholipids. It is also shown that PUFA decrease the FMLP-induced Ca2+ mobilization.

Calcium↗

[Complications in thyroid surgery].

Since the first years of the century, the improvement in surgical techniques has drastically reduced the main postoperative complication, profuse bleeding. More experience in thyroidectomy has highlighted other specific problems of the procedure, which has received substantial benefits by the adoption of targeted surgical techniques. The Authors describe the most important topics reported for each complication, on the basis of the latest literature and their own experience, with particular reference to the oncologic surgery of the thyroid.

Hemorrhage↗

[Agenesis of the left pericardium: report of a case].

We report a case of left pericardial agenesia in a 44 year old woman. Clinical picture was not specific on clinical field: atypical chest pain, asthenia, syncope, cystolic murmur 1/6 Levine on the second left interspace were found. ECG showed clockwise deviation of axis in the precordial leads and incomplete right bundle branch block. Chest X-ray showed marked levocardia and dilatation of pulmonary trunk. Levocardia increased with the patient on the left side. Echocardiography (possible only with patient recumbent on his right side) was normal. Magnetic resonance imaging showed absence of the left pericardium. We analyse the diagnostic problems and the prognostic doubts of this rare congenital anomaly.

Adult↗

Killing of Staphylococcus aureus by tumor necrosis factor-alpha-activated neutrophils. The role of serum opsonins, integrin receptors, respiratory burst, and degranulation.

We have examined the effects of TNF priming on the killing of Staphylococcus aureus by human neutrophils. In the absence of serum opsonins, neutrophils failed to kill S. aureus, and TNF priming did not induce the cells to become bactericidal. Normal human serum, containing complement activity, promoted the killing of the bacteria by neutrophils. Pretreatment of neutrophils for 30 min with TNF significantly enhanced their bactericidal activity. The effects of TNF on neutrophil bactericidal activity was dependent on serum concentration and the degree of enhancement induced increased up to a concentration of 1%. The kinetics of bacterial killing showed that TNF-only enhanced the initial rate of killing, over the first 30 min. Little killing of bacteria occurred in the presence of complement-inactivated serum, and TNF did not stimulate this killing. These results suggest that TNF enhances the neutrophil complement-dependent killing of S. aureus. TNF increased the expression of CR3 (CD11b/CD18) and CR4 (P150, 95; CD11c/CD18) adhesion receptors but not LFA-1 (CD11a/CD18); and mAb against the alpha-chain of either CR3 or CR4 but not LFA-1 prevented the enhancing effects of TNF on the neutrophil bactericidal activity.

Animals↗

Polyunsaturated fatty acids increase neutrophil adherence and integrin receptor expression.

Fish oils are abundant in polyunsaturated fatty acids of the n-3 series (in particular eicosapentaenoic, 20:5 and docosahexaenoic acid, 22:6). Such fatty acids are generally considered to be beneficial in the prevention of cardiac disease and to have anti-inflammatory properties. Neutrophil adherence is an essential early event in an acute inflammatory response, and we have demonstrated that both 20:5 and 22:6 stimulate adherence in vitro. Arachidonic acid (20:4, n-6) was also stimulatory. Significant simulation of adherence was seen from 5 to 80 microM (nontoxic concentrations) 22:6, 20:5, or 20:4. At the lower fatty acid concentrations tested (< or = 40 microM) 20:5 was less active than 22:6 or 20:4 at stimulating adherence. Above 40 microM there was no difference in the ability of the three fatty acids to stimulate adherence. At the lower fatty acid concentrations tested (< or = 10 microM) 22:6 was less active than 20:4, whereas above 10 microM they were equally active. Immunofluorescent flow cytometric analysis of neutrophil integrin (adherence) receptors showed that the complement C3bi receptor (CD11b) was up-regulated by these fatty acids. There was no change in CD11a or CD11c. Saturated fatty acids of the same chain length were without effect on adherence or receptor expression. The findings suggest that these polyunsaturated fatty acids may, under certain conditions, be proinflammatory with respect to their acute effects on the interaction of neutrophils with microbes, endothelium, and other tissues.

1,2-Dipalmitoylphosphatidylcholine↗