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Biomedical subjects

A Modesti

Publications and source records attributed to A Modesti.

At least 91 records · Page 5Linked to original sources

Defective response to T cell mitogens in mice injected with human immunodeficiency virus type 1-infected U937 cells.

Swiss mice were injected intraperitoneally with uninfected or human immunodeficiency virus type 1 (HIV-1) infected human U937 cells. At 6 days, no residual human cells were detected in mouse tissues as determined by PCR analysis of DNAs from injected mice using primers and probes for the human HLA-DQ alpha gene. At 6 to 12 months, approximately 60% of the HIV-1-infected mice had antibodies to HIV-1 gp 120 and gp41 proteins. Fifteen percent of the animals showed evidence of HIV-1 infection as determined by PCR analyses of DNA from peripheral blood leukocytes and by in situ hybridization for detection of HIV-1 mRNA in peritoneal cells. In this set of experiments, spleen cells from mice sacrificed at different times after injection were cultured for 48 h in the presence or absence of mitogens [i.e.: concanavalin (Con A) or anti-CD3 antibody] and then tested for lymphocyte proliferation. At 10 to 12 months, splenocytes from approximately 80% of Swiss mice injected with HIV-1-infected U937 cells exhibited a marked defect in their proliferative response to Con A or anti-CD3 antibody as compared with spleen cells from both uninjected or U937 cell-injected mice. Similar results were obtained at 12 months in C3H/HeJ mice. Non-responding spleen cells from HIV-1-injected Swiss mice did not proliferate in response to anti-CD3 antibody even in the presence of co-stimulatory molecules such as phorbol myristate acetate or anti-CD28 antibody. Splenocytes from these mice also exhibited an impaired capacity to produce interferon-gamma and interleukin-4 after mitogen stimulation. No T cell defects were observed in control-injected mice. Immunofluorescence analyses revealed a significant decrease in the percentage of both CD4+ and CD8+ spleen cells in HIV-1-injected mice. These data indicate that immunocompetent mice can be used to investigate some HIV-1-related immune dysfunctions in vivo.

Amino Acid Sequence↗

[Anatomical and functional characteristics of the myocardial interstitial space].

The extracellular matrix plays an important role in biological processes, for example cellular adhesion, proliferation, migration and differentiation. Many of the cell-cell and cell-matrix interactions are mediated by extracellular matrix components and by their respective membrane receptors. Important pathophysiological processes occur through these interactions of which ontogenesis tissue differentiation and reconstruction, many inflammatory and immunological events and metastatic processes and invasion. The myocardium is made of muscular, vascular and connective components that exist in a state of equilibrium based on their relative proportions, integral structures, and on their physical and chemical characteristics. The Authors have described molecular events that lead to the organization of the cardiac tissue in physiological conditions and to its reorganization in pathological situation. Furthermore they have evaluated the role of fibronectin, a glycoprotein of the extracellular matrix in the initial phase of cardiac ischemia.

Extracellular Space↗

[Role of interstitial myocardium in ischemia-reperfusion injury: experimental data and clinical implications].

Myocardial interstitium plays an important role in the regulation of cardiac function compared with myocytes and it is actively involved in ischemia-reperfusion damage and in the acute and chronic remodelling during ischemic heart diseases. Myocardial post-ischemic oedema seems to interfere in this process. Myocardial oedema is able to induce structural alterations, to reduce myocardial function and to activate the renin-angiotensin-aldosterone system. Angiotensin II and aldosterone seem to be the cause of myocardial fibrosis that is detected during ischemic heart disease. Post-ischemic vascular permeability alterations have a similar role. In clinical conditions, ACE-inhibitors have important effects on cardioreparation and are able to improve cardiac function and reduce early and late mortality. The effects of myocardial oedema reduction (i.e. hypertonic reperfusion) on ischemia-reperfusion damage and myocardial fibrosis are still to clarify. A reduction in myocardial fibrosis may improve cardioreparation and prevent congestive heart failure, following ischemic heart disease.

Acute Disease↗

Expression of human acylphosphatase in Escherichia coli affects intracellular calcium levels.

In vitro experiments demonstrated the ability of acylphosphatase to hydrolyze the phosphorylated intermediate that is formed during the activity of Na+, K(+)- and Ca(2+)-ATPases of mammalian cells membranes. In order to investigate the effect of this enzyme on intracellular cation levels, a synthetic gene for human muscle acylphosphatase has been expressed in E. coli strains BL21 and JM101. Intracellular total steady-state calcium concentration, as measured by isotopic exchange, was significantly higher in transformed cells as compared to controls and the rising was dependent on the level of acylphosphatase expression. Accordingly also free intracellular calcium concentration, as measured by Fura-2 fluorescence, increased in transformed cells. On the other hand, phosphate levels were not affected by the expression of acylphosphatase, while sodium and rubidium levels increase in transformed cells. Intracellular pH resulted to be slightly affected by the expression of acylphosphatase, cytoplasm of transformed JM101 bacteria being more alkaline (pH 7.45) as compared to control cells (pH 7.40). On the basis of these results, it can be suggested that acylphosphatase acts in vivo by regulating the cation transport in E. coli.

Acid Anhydride Hydrolases↗

Chemical synthesis and expression of a gene coding for human muscle acylphosphatase.

A DNA sequence coding for human muscle acylphosphatase has been constructed using 16 chemically synthesized oligonucleotides. The 300-bases long DNA sequence has been cloned in the pT7.7 Escherichia coli expression vector and in the pYEpsec1 Saccharomyces cerevisiae expression vector. In both cases a high level of expression of acylphosphatase has been observed. The recombinant proteins have been purified to homogeneity and assayed in comparison with the natural protein, using benzoylphosphate as a substrate and phosphate as a competitive inhibitor. The recombinant enzymes expressed in the two microorganisms maintain the kinetic properties of the natural protein. In addition, NMR analysis shows that the gross fold of the two recombinant enzymes is correct.

Acid Anhydride Hydrolases↗

Protective and curative potential of vaccination with interleukin-2-gene-transfected cells from a spontaneous mouse mammary adenocarcinoma.

The potential of interleukin 2-gene-transfected tumor cells to prevent tumor growth and cure established tumors was evaluated using cells from a spontaneous, invasive, and metastasizing mouse mammary adenocarcinoma. Tumor cells engineered to secrete interleukin 2 initially trigger a local inflammatory reaction that leads to inhibition of established parental adenocarcinomas, as well as an antigenically unrelated fibrosarcoma. The ensuing systemic immunity selectively inhibits subsequent parental cell challenges and cures established parental adenocarcinomas and their lung metastases, although less effectively as the neoplastic mass increases. Multiple injections of interleukin 2-gene-transfected tumor cells may thus be considered a new form of vaccination in the management of minimal residual disease and incipient metastases.

Adenocarcinoma↗

Inhibition of tumor growth and enhancement of metastasis after transfection of the gamma-interferon gene.

Cells from the spontaneous metastatic TS/A mammary adenocarcinoma of a BALB/c mouse were transfected with the murine gamma-interferon (IFN-gamma) gene. Six clones (IFN-gamma clones) releasing between 2 and 6,000 international units (IU) of IFN-gamma/ml culture medium, were compared to TS/A parental cells (TS/A-pc) and to cells transfected with neomycin resistance gene only (NEO cells). Autocrine IFN-gamma up-regulated membrane expression of H-2 class-I and Ly-6 glycoproteins, but did not alter cellular proliferation in vitro. All IFN-gamma clones gave rise to progressive tumors with a growth rate significantly slower than that of tumors induced by TS/A-pc and NEO cells, and inversely correlated with the amount of IFN-gamma secreted. TS/A-pc and NEO tumors displayed a marginal reactive infiltrate, whereas those formed by IFN-gamma clones were massively infiltrated mostly by macrophages. In T- and NK-deficient mice the growth of tumors formed by IFN-gamma clones was not enhanced. In vitro tests showed that IFN-gamma clone cells were markedly more lysed by macrophages than TS/A-pc and NEO cells, while they remained poorly sensitive to NK and LAK cells. These data as a whole suggest that the development of solid tumors by IFN-gamma clones is primarily hampered by macrophages and not by T-lymphocytes or NK cells. When spontaneous metastatic ability was compared, 2 IFN-gamma clones releasing 2-4 IFN-gamma IU/ml were significantly more metastatic, while most IFN-gamma clones appeared to be as metastatic as NEO cells. By contrast, following intravenous challenge, all IFN-gamma clones produced 5-10 times more experimental metastases than NEO cells. The higher metastatic ability of IFN-gamma clones was attributed to increased resistance to NK cells since, in NK-depleted BALB/c mice, metastatic spread of IFN-gamma clones was not enhanced, whereas a 50-fold increase in the number of metastases was found upon injection of NEO cells.

Adenocarcinoma↗

Ultrastructural evidence of the mechanisms responsible for interleukin-4-activated rejection of a spontaneous murine adenocarcinoma.

The ultrastructural pattern of the anti-tumor response elicited by interleukin-4 (IL-4) was investigated by using a spontaneous mammary adenocarcinoma (TS/A) unable to elicit protective immunity in syngeneic BALB/c mice as suggested by a variety of preimmunization-challenge experiments. A subcutaneous lethal challenge of TS/A tumor cells was inhibited in a significant number of BALB/c mice receiving recombinant murine IL-4 injected daily for 10 days around the tumor-draining lymph node. Tumor rejection was mainly the result of direct membrane and cytoplasmic damage to tumor cells by eosinophils, neutrophils and macrophages that deeply penetrated the proliferating tumor mass. Lymphocytes and fibroblasts participated in the reaction by interacting with tumor cells, granulocytes and each other. The most frequent cell interactions in the peri- and intra-tumoral areas and in the tumor-draining lymph nodes are illustrated. The efficiency with which the IL-4-activated reaction leads to tumor inhibition and induction of a T-lymphocyte-dependent tumor-specific immune memory appears to depend on interactions between distinct leukocytes.

Adenocarcinoma↗

Selective transformation of host lymphocytes in vivo by retrovirus-producing macrophages.

Macrophage-mediated retroviral transformation of host cells was studied in vivo utilizing the cloned murine macrophage-line GG2EE, generated by in vitro infection of bone marrow cells from C3H/HeJ mice (H-2k) with the acute transforming retrovirus J2 bearing the v-myc and v-raf oncogenes. Because GG2EE macrophages produce the J2 retrovirus, the development of secondary, J2 virus-induced tumors after the injection of the cell line into several strains of mice was evaluated. GG2EE cells proliferated and gave rise to histiocytic tumors in syngeneic mice and in allogeneic athymic Swiss mice. The inoculum of GG2EE cells in allogeneic DBA/2 mice (H-2d) and, to a lesser extent, in BALB/c (H-2d) and BALB/k (H-2k) mice gave rise to a small, solid mass at the injection site. Although the initial tumor was slowly rejected, secondary lymphomas belonging to the B or T cell lineage developed, leading to mouse death. Extensive phenotypic, functional, and chromosomal analyses proved that lymphomas were derived from host T and B cell transformation. Southern and Northern blot studies showed that J2 virus was integrated and expressed in lymphoma cells, demonstrating that the virus was transmitted to the host lymphocytes and suggesting that it was causal in lymphoma development. The existence of close and protracted interactions between GG2EE macrophages and allogeneic host lymphocytes and the presence of viral particles in the area of macrophage-lymphocyte contact were demonstrated by histologic and ultrastructural analysis. Rejection of J2 virus-infected lymphocytes in allogeneic mice suggested that host lymphocyte transformation was dependent upon the macrophage cell type. These results demonstrate that macrophage-derived J2 retrovirus transforms host lymphocytes in vivo in allogeneic mice and that a condition of host alloreactivity is critical for such event.

Animals↗

Effect of a new de-N-acetyl-lysoglycosphingolipid on chemically-induced inflammatory bowel disease: possible mechanism of action.

A new, orally active de-N-acetylated lysoglycosphingolipid (WILD20) was evaluated as antiinflammatory agent using a model of chemically-induced inflammatory bowel disease (IBD) in the rat to mimic human ulcerative colitis and Chron's disease. IBD was induced by hapten trinitrobenzenesulphonic acid (TNB). WILD20, orally administered as preventive or curative, was demonstrated to be efficacious at daily dosages of 0.1-1 mg/kg for 4-5 days. Damage scores, body weight, spleen weight, colonic tissular levels of LTB4, myeloperoxidase (MPO) and malondialdehyde (MDA) are influenced and brought into parameters of normality. Histological observation demonstrated quicker healing, better repair, reduced inflammation, and poor eosinophil degranulation. The mechanisms underlying WILD20 antiinflammatory effects were investigated: whereas WILD20 fails to show a direct effect on PKC, it reduces PKC translocation to the membrane; cellular PLA2 was consequently greatly reduced through this mechanism and thought to be responsible for WILD20 efficacy towards chemically-induced IBD.

Animals↗

Cytokine-induced tumor immunogenicity: from exogenous cytokines to gene therapy.

The local presence of cytokines can drastically alter tumor host immune relations and activate a nonspecific reaction that in some cases leads to induction of specific responses to otherwise nonimmunogenic tumors. The employment of cytokines in the creation of new antitumor vaccines is thus a tempting prospect. Analogous effects have been obtained with cytokines inoculated locally and cytokines released from tumor cells engineered to produce them. An account is given of some mechanisms whereby this cytokine-induced reaction results in increased tumor immunogenicity. However, the real value of this potential form of vaccine in inducing the regression of incipient or established tumors remains to be established.

Animals↗

Platelet-derived growth factor effects on purified testicular peritubular myoid cells: binding, cytosolic Ca2+ increase, mitogenic activity, and extracellular matrix production enhancement.

The response of purified rat testicular peritubular myoid cells (PMC) to platelet-derived growth factor (PDGF) was studied. Freshly isolated PMC were devoid of measurable amounts of PDGF-binding sites. However, after 1 day in culture in serum-free conditions, specific high affinity receptors were detected. The estimated binding sites per cell revealed that PMC express more receptors for PDGF-BB, followed by PDGF-AB and PDGF-AA. PDGF treatment of cultured PMC increased the cytosolic Ca2+ concentration, showing a rank order of potencies with PDGF-BB > PDGF-AB > PDGF-AA. PMC proliferation, as measured by direct cell counting, was also stimulated by all three PDGF isoforms, with the same order of potencies observed for the increase in intracellular Ca2+. This effect was inhibited by antibodies to PDGF. Moreover, PDGF treatment increased the release of type IV collagen and fibronectin, and induced the release of type V collagen and laminin. These results demonstrate that testicular PMC are induced to express functionally active PDGF receptors in response to cell culturing. These data suggest that PMC may be a target for PDGF and that PDGF-mediated effects in vivo are dependent on factors regulating the expression of the receptors. The role that PDGF may play in normal and pathological testicular processes is discussed.

Animals↗

Isolation and characterization of a metastatic Eb-like tumor variant highly responsive to interleukin (IL)-2 and to combination cytokine therapy with IL-2/IL-1 beta and IL-1 beta/interferon-alpha/beta.

In this study, we describe the origin and characterization of a new metastatic tumor cell line (p11-R-Eb) obtained after i.p. passages of the nonmetastatic Eb lymphoma cells into DBA/2 mice. The p11-R-Eb cells exhibited the same morphology and in vitro growth properties and chromosome markers as the original Eb cells. FACS analysis of the p11-R-Eb cells also revealed a close similarity to the Eb cells. Moreover, the p11-R-Eb cells were specifically killed by anti-Eb cytotoxic lymphocytes. In spite of all these characteristics of the Eb line, p11-R-Eb cells metastasized to the liver when injected i.v. or s.c. in DBA/2 mice. Peritumoral interleukin (IL)-2 treatment resulted in a potent antitumor response in DBA/2 mice transplanted s.c. with p11-R-Eb cells. In contrast, the same IL-2 regimen did not significantly increase the survival time of mice transplanted with the highly metastatic ESb cell line. Combined IL-1/IL-2 treatments of established p11-R-Eb tumors resulted in a synergistic antitumor effect and in tumor regression in 70% of the injected mice. Similarly, combined peritumoral treatment with IL-1 and interferon-alpha/beta, which were poorly effective or ineffective as single cytokine therapy, resulted in a marked antitumor effect, and 30% of the mice were cured. Spleen cells from IL-1/IL-2-treated p11-R-Eb-cell-injected mice showed a marked antitumor activity when assayed in a Winn assay with homologous tumor cells. This antitumor activity was eliminated by preincubation of spleen cells with antibodies to CD4 and complement and markedly inhibited by anti-asialo GM1 antibodies. P11-R-Eb cells represent, therefore, a new tumor model which may be useful for investigating the relevant mechanisms which need to be activated to achieve a potent antitumor response to cytokine therapy in the DBA/2 mouse host.

Animals↗

Effect of intraoperative manipulation and preservation on fascia temporalis used in tympanoplasty.

Fascia temporalis (FT) is generally used as grafting material for primary or revision surgery for chronic ear disease. In the latter case, homologous FT, stored in various solutions after the intraoperative preparation, that aims to dehydrate, is often used. In this study, an ultrastructural analysis of FT has been carried out in order to determine whether its structure is affected by the different steps that take place before its application as a homograft. As well as light, transmission and scanning electron microscopy, immunoperoxidase technique for testing monoclonal antibodies against different collagen types was performed. The surface appearance of FT proved to be increasingly affected by the intraoperative manoeuvres. Moreover, 10% formalin proved to give a better preservation of the surface appearance of FT than did 70% alcohol which, also after a short period of preservation (15 days), caused severe surface alterations. No particular changes in the ultrastructural appearance of FT were noticed that could have been attributed to the length of preservation. Type IV collagen was detected in the 30-day samples of both alcohol- and formalin-preserved specimens. From these results, one can speculate that, despite the major ultrastructural changes induced in FT by the intraoperative preparation and by its preservation, this tissue is still able to maintain a proper connective network. This finding could explain the reliability of homologous FT for the repair of tympanic membrane perforations.

Ethanol↗

Role of neutrophils and CD4+ T lymphocytes in the primary and memory response to nonimmunogenic murine mammary adenocarcinoma made immunogenic by IL-2 gene.

TS/A is a spontaneous adenocarcinoma, apparently not immunogenic in BALB/cnAnCr mice. TS/A cells are unable to stimulate a syngeneic antitumor response either in vitro or in vivo. To evaluate the immunogenic potential of IL-2-releasing neoplastic cells, we used an expression vector to introduce the cDNA coding for murine IL-2 into TS/A cells. Six clones releasing between 30 and 6800 U of IL-2/10(5) cells/ml/48 h have been isolated. Both low (30 U, B1.30) and high (6000 U, B4.6000) IL-2-releasing clone are capable of stimulating a proliferative and cytotoxic response in syngeneic cultures. While the B1.30 clone grows in 60% of syngeneic mice with a delayed pattern, the five clones that release higher levels of IL-2 are promptly rejected. Rejection is associated with neutrophil infiltration, the intensity of which is directly proportional to the amount of IL-2 released. NK cells and CD4+ lymphocytes are uninfluential, whereas CD8+ lymphocytes play only a minor role. This neutrophil-dominated rejection leaves a long-lasting, tumor-specific, T lymphocyte-mediated immune memory. For its induction, CD4+ lymphocytes are required. Their specific activation appears to depend on both the amount of IL-2 released and the granulocyte-mediated reaction that may lead to a more efficient presentation of tumor-associated Ag. These data support the notion that, after transduction of IL-2 gene, cancer cells may elicit an immune antitumor response, and stress the potential use of IL-2 as a component of new tumor vaccines.

Adenocarcinoma↗

Overexpression of a synthetic phosphotyrosine protein phosphatase gene inhibits normal and transformed cell growth.

We studied the level of the cytosolic phosphotyrosine protein phosphatase (PTPase) (originally termed low-M(r) acid phosphatase) in normal NIH/3T3 and in v-erbB-transformed fibroblasts. The level of the enzyme, assayed by ELISA, was inversely related to cell proliferation, normally growing cells had less enzyme than their contact-inhibited counterparts and v-erbB transformants had less enzyme than normal NIH/3T3. In order to overexpress the enzyme and study its effects in normal and transformed cells, we transfected a synthetic gene coding for the PTPase in control NIH/3T3 and v-erbB transformants. The overexpressed enzyme was recognized by antibodies raised against the native enzyme and, in cells overexpressing the PTPase, we observed a marked dephosphorylation of tyrosyl residues of cellular proteins. Cell proliferation, in both normal and v-erbB transformants overexpressing the PTPase, was measured. We observed that PTPase overexpression was accompanied by significantly reduced thymidine incorporation in both cell types, either serum-starved or serum-stimulated. The ability of transformed v-erbB cells to grow in soft agar was also markedly decreased by overexpression of the enzyme. Taken together, our results indicate that overexpression of PTPase might interfere with mitogenic signalling pathways in both normal and transformed cells, and propose a role for PTPase in the control of cell proliferation.

3T3 Cells↗