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Biomedical subjects

L Inverardi

Publications and source records attributed to L Inverardi.

At least 73 records · Page 4Linked to original sources

Regulatory mechanisms in leukocyte adhesion: flexible receptors for sophisticated travelers.

Unstimulated leukocytes spend extended periods circulating in the blood, punctuated by migration through lymphoid areas and peripheral tissues. During transit, strong cell-cell interactions control immune surveillance and specialized effector functions. The structures and mechanisms that allow this flexible adhesion and migration behavior are the subject of this review.

Allosteric Regulation↗

Antigen-receptor complex stimulation triggers protein kinase C-dependent CD11a/CD18-cytoskeleton association in T lymphocytes.

Although it is well accepted that intercellular adhesion involving the CD11a/CD18 (LFA-1) complex is critical in a wide array of T cell-dependent processes, recent demonstrations of an LFA-1 high avidity state, induced by triggering the T cell receptor (TCR) complex, has raised questions about the intracellular signals generated and molecular events leading to effective cell coupling, as well as their orderly sequence. In this study, we assessed the effects of T cell activation on the actin-based cytoskeleton, and LFA-1, as well as their interaction. Crosslinking the TCR complex with anti-CD3 mAb resulted in actin polymerization and colocalization with LFA-1, as detected by fluorescence microscopy. This association was confirmed by immunoprecipitating LFA-1 from the detergent insoluble, cytoskeletal-associated membrane fraction after TCR crosslinking. These consequences were inhibited by the protein kinase C (PKC) inhibitor staurosporine or by PKC desensitization, as was a transient CD11a hyperphosphorylation, induced by monoclonal anti-CD3. Furthermore, a small percentage of beta 2-deficient T cells maintained the ability to rearrange the cytoskeleton in response to TCR complex activation, with F-actin-VLA4 colocalization. These results provide evidence that the important consequences of TCR-induced signal transduction include a PKC-dependent cytoskeletal rearrangement, involving an association between leukocyte integrins and F-actin. We discuss the implications of these findings with respect to effective T cell functions.

Actins↗

CD3 negative "small agranular lymphocytes" are natural killer cells.

We describe here that CD3-, CD16+ and/or CD56+ small lymphocytes, in a highly reproducible fashion, mediate a significant level of K562 killing that is, on a "per cell" basis, comparable to the cytolytic activity of CD3- LGL. The CD3- small lymphocytes appeared to have no granules based on light and electron microscopy and lack of right-angle scatter on the FACS; we thus refer to them as small "agranular" lymphocytes (SAL). The lytic activity against K562 is inhibited by treatment with either L-leucine methyl ester or EGTA, which are reported to effect granule-dependent killing. We suggest that the SAL have lytic molecules in their cytoplasm (which are sensitive to these treatments) but that these molecules are not organized into discrete granules as found in LGL. The CD3- SAL are phenotypically very similar to LGL and both SAL and LGL mediated equal and reproducible antibody-dependent cell-mediated cytotoxicity. These observations force redefinition of the concept of NK cells to include both CD3- LGL and CD3- SAL.

Antibody-Dependent Cell Cytotoxicity↗

Dysregulated release and degradation of insulin during mononuclear cell-induced beta-cell lysis in HIT cells.

Activated human mononuclear cells (MCs) were coincubated for 8 h with HIT cells, a clonal cell line of pancreatic islet beta-cells. Measurements of HIT cell viability and insulin secretion were determined to 1) ascertain whether activated MCs can alter beta-cell viability in the absence of exogenously provided cytokines, 2) examine this response over a range of MC-HIT cell ratios, and 3) identify mechanisms responsible for altered insulin release consequent to MC-induced HIT cell damage. HIT cell viability was markedly decreased by activated MCs during an 8-h coincubation. HIT cell lysis could be attributed to activated natural killer cells, and lysis did not occur in the presence of activated T-lymphocyte clones. Activated MCs caused a marked early increase in insulin release from HIT cells (increase at 2 h: 7.75 +/- 0.16 nM for activated MCs, 2.66 +/- 0.09 nM for control; P less than 0.001). Insulin levels by the 8th h of the coincubation were significantly lower than the 2-h peak (4.33 +/- 0.13 vs. 7.75 +/- 0.16 nM, P less than 0.001). These changes in insulin were dependent on the ratio of activated MCs to HIT cells with the effects clearly evident at an activated MC-HIT cell ratio of greater than or equal to 10:1. Pretreatment of activated MCs and HIT cells with prostaglandin-synthesis inhibitors did not prevent the cytotoxic effects of activated MCs on HIT cells. Somatostatin did not inhibit the early exaggerated insulin release, suggesting that these increased insulin levels represented leakage of insulin from damaged HIT cells rather than functional insulin secretion.(ABSTRACT TRUNCATED AT 250 WORDS)

Arachidonic Acids↗

Signal requirements for activation of leukaemic T cells from a chronic lymphocytic leukaemia (T-CLL).

In order to define the signal requirements for leukaemic T cell activation, the proliferation and interleukin-2 (IL-2) production of peripheral lymphocytes from a patient with a HTLV-I-, CD4+, CD45RA+ CD45RO+ CD25- T-CLL were evaluated after the delivery of different stimuli. Unlike resting CD4+ normal T lymphocytes that can be activated only by a two-signal stimulation, T-CLL cells proliferated and released IL-2 in response to a pair of anti-CD2 monoclonal antibodies (MoAbs) or concanavalin A (Con A) in the absence of both accessory cells (AC) and phorbol myristate acetate (PMA). The two stimuli were also able to induce CD25 expression within 12-20 h on the majority of T-CLL cells. A response to anti-CD3 and anti-CD28 MoAbs was detected only in the presence of PMA, similar to that observed in normal resting T lymphocytes matched for phenotype. Both Con A- and CD2-induced proliferation were strongly inhibited by the addition of anti-CD25 MoAb. Furthermore, T-CLL lymphocytes acquired anti-tumour lytic activity after culture in the presence of PMA and ionomycin. We conclude that HTLV1- CD25- T-CLL can be characterized not only by morphological and phenotypical studies but also on the basis of signal requirements for cell activation.

Antibodies, Monoclonal↗

Anti-CD2 monoclonal antibodies and calcium ionophore A23187 modulate lytic activity in CD4+ and CD8+ alloreactive clones.

Alloreactive cytolytic clones can be modified in terms of their lytic specificity by several agents. We have evaluated the effects of anti-CD2 and anti-CD3 mAb and the calcium ionophore A23187 on CD4+ and CD8+ allospecific cytolytic clones. All these agents can modify the specificity of clones although the range of targets lysed depends on the agent used and subtype of the clone. Inhibition studies suggest that surface structures that are involved in non-specific cell-cell interaction processes play a role in this non-MHC-restricted cytolysis.

Antibodies, Monoclonal↗

Stepwise activation of T cells. Role of the calcium ionophore A23187.

The calcium ionophore A23187, at a concentration of 1 microgram/ml, is able to stimulate proliferation of freshly isolated peripheral blood lymphocytes, CD4+-enriched cells, or CD8+-enriched cells as measured by [3H]thymidine incorporation. This proliferation is accompanied by an increase in interleukin 2 (IL-2) receptor expression but not by a detectable up-regulation in (IL-2) production or the development of cytotoxicity. Proliferation can be blocked by anti-CD3, CD4, or CD8 monoclonal antibodies, but not by anti-Tac. If CD8+-enriched cells are activated for 3 days with A23187 and the blasts present on day 3 are sorted and returned to culture, they rapidly develop cytolytic activity in the presence of recombinant IL-2 but not recombinant interferon-gamma. CD4+ enriched cells, after activation with A23187, do not become cytotoxic in the presence of either recombinant IL-2 or recombinant interferon-gamma. These findings permit study of the stepwise maturation of T cells in this alternative pathway by using "minimal signals" that do not, by themselves and as used in these studies, stimulate precursor Tc to mature to full effector cytotoxic function. These findings are consistent with the model that A23187 drives T cells only part way along a pathway of maturation and that an additional second signal must be given to effect maturation of cytotoxic status.

Antibodies, Monoclonal↗

Role of CD2 and IL 1 beta in T cell responsiveness to IL 2.

We have evaluated the effects of an anti-CD2 monoclonal antibody (moAb), Leu-5b, on inhibition of lymphocyte responsiveness. Given previous reports that anti-CD2 moAb prevent production of interleukin 2 (IL 2), as well as up-regulation of IL 2 receptor, we chose a test system in which lymphocytes were activated by exogenously added recombinant IL 2 (rIL 2). Our studies thus allowed us to evaluate other possible mechanisms by which anti-CD2 moAb could act. We found that Leu-5b not only blocked the proliferative response of human peripheral blood leukocytes (PBL) to IL 2, but also the development of cytotoxicity as assayed in lectin-dependent cytotoxicity (LDCC). Addition of recombinant interleukin 1 beta (rIL 1 beta) reconstituted the proliferative response in the presence of Leu-5b but did not allow development of cytotoxicity. Our findings are consistent with the concept that Leu-5b delivers a signal to IL 2-responsive cells that prevents their subsequent proliferation and development of cytotoxicity, but that only the former event, i.e., proliferation, is reconstituted by the addition of IL 1 beta.

Antibodies, Monoclonal↗

Impairment of lymphocyte-suppressive system in recent-onset insulin-dependent diabetes mellitus. Correlation with metabolic control.

Impairment of suppressor-cell activity may be important in the pathogenesis and maintenance of insulin-dependent diabetes mellitus (IDDM). In 23 recent-onset IDDM patients, lymphocyte sensitivity in vitro to theophylline was tested both in basal conditions and after improvement of metabolic control. This pharmacologic agent is mainly effective on a lymphocytic subpopulation with phenotypic and functional suppressive features. Peripheral blood lymphocytes from IDDM patients showed a loss of theophylline sensitivity, identified as inhibition of both E-rosette formation and blastogenic response to polyclonal mitogens concanavalin A (ConA) and phytohemagglutinin (PHA). An inverse relationship was demonstrated between the theophylline-induced suppression of ConA blastogenic response and blood glucose and glycosylated hemoglobin levels (P less than .01). Metabolic control seemed to be important even in relation to lymphocyte subpopulation distribution. In IDDM patients we found a significant (P less than .05) reduction of OKT4+ lymphocytes that is correlated with blood glucose and glycosylated hemoglobin levels (P less than .01). The improvement of metabolic control led to recovery of theophylline sensitivity. We suggest a deficiency in a suppressive system that could be involved in IDDM onset and the possible role of metabolic control in the impairment of some immunologic functions reported with this pathologic condition.

Adolescent↗

[Cutaneous reactions to ubiquitous antigens in a young population hospitalized for minor pathologies].

Delayed hypersensitivity was evaluated by means of skin testing with ubiquitous antigens (Candidin, Tricophytin, Varidase and PPD) in a population of 233 young subjects (mean age 21 years, range 19-24) referred to the Army Hospital of Milan for minor pathologies. The results show a high incidence of anergies (20.1%) and hypoergies (50.9%) in the sample studied and low percentages of positive responses to Candidin (12.45%), Tricophytin (3%) and PPD (15.9%). A significant enhancement of the percentages of anergic subjects has also been observed in two subgroups selected on the basis of blood lymphocyte count (less than 1250 cells/mm2) (p less than 0.01) and on gamma-globulin levels (greater than 1.5 g/100 ml) (p less than 0.05). The observed findings are discussed.

Adult↗

In vivo effects of a single infusion of theophylline on human peripheral blood lymphocytes.

It has recently been proposed that theophylline activates T suppressor systems in vivo and this evidence is further supported by the ability of the drug to attenuate the allograft rejection in humans and in experimental animals. In this study the acute effects of aminophylline on human peripheral blood lymphocyte (PBL) mitogenic responses have been investigated. PBL from healthy young volunteers who received intravenous aminophylline (5 mg/kg i.v. over 20 min) showed an increased proliferative response to phytohaemagglutinin. This was correlated with an augmented OKT4/OKT8 ratio, due to an absolute increase in the OKT4+ subset as well as a decrease in OKT8+ cells. Furthermore, following in vivo aminophylline we observed a significant rise in lymphocyte cAMP levels. These data, together with studies from other laboratories, suggest that the dosages and duration of treatment may influence greatly the theophylline-induced modulation of immune functions.

Adult↗