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Biomedical subjects

S Rossini

Publications and source records attributed to S Rossini.

14 recordsLinked to original sources

Transfer of the ADA gene into human ADA-deficient T lymphocytes reconstitutes specific immune functions.

Peripheral blood lymphocytes obtained from a patient affected by adenosine deaminase (ADA) deficiency and severe combined immunodeficiency were infected with a retroviral vector containing two copies of a human ADA minigene, and injected into bg/nu/xid (BNX) immunodeficient mice. Six to 10 weeks after injection, human T cells were cloned from the spleens of recipient animals and analyzed for proliferative potential, T-cell surface markers, expression of ADA activity, integration of retroviral sequences, T-cell receptor (TCR) beta gene rearrangement, and specificity of antigen recognition. Efficient gene transfer and expression restored proliferative potential in vitro and long-term survival in vivo. All clonable human T lymphocytes obtained from the spleen of recipient animals had high levels of vector-derived ADA enzyme activity and showed predominantly the CD4+ phenotype. Retroviral integrations and TCR-beta gene rearrangements demonstrated the presence of a variety of different clones in the spleens of recipient mice. Furthermore, the combined analyses of vector integration and TCR rearrangement provided evidence that a circulating progenitor cell was transduced by the retroviral vector, giving rise to different and functional TCRs. Evaluation of antigen-specificity demonstrated both alloreactive and foreign antigen specific immune responses. These results suggest that restoration of enzyme activity in human ADA-deficient peripheral blood T cells by retroviral-mediated ADA gene transfer allows in vivo survival and reconstitution of specific immune functions. Therefore, retroviral vector-mediated gene transfer into circulating mononuclear cells could be successful not only in maintaining the metabolic homeostasis, but also for the development of a functional immune repertoire. This is a fundamental prerequisite for the usage of genetically engineered peripheral blood lymphocytes for somatic cell gene therapy of ADA deficiency.

Adenosine Deaminase

An in vivo model of somatic cell gene therapy for human severe combined immunodeficiency.

Deficiency of adenosine deaminase (ADA) results in severe combined immunodeficiency (SCID), a candidate genetic disorder for somatic cell gene therapy. Peripheral blood lymphocytes from patients affected by ADA- SCID were transduced with a retroviral vector for human ADA and injected into immunodeficient mice. Long-term survival of vector-transduced human cells was demonstrated in recipient animals. Expression of vector-derived ADA restored immune functions, as indicated by the presence in reconstituted animals of human immunoglobulin and antigen-specific T cells. Retroviral vector gene transfer, therefore, is necessary and sufficient for development of specific immune functions in vivo and has therapeutic potential to correct this lethal immunodeficiency.

Adenosine Deaminase

Clinical utility of fractionating erythrocytes into "Percoll" density gradients.

Two rapid methods for fractionating the RBC into five or nine layers of increasing density are reported. These procedures have been used to monitor the decline of glucose-6-phosphate dehydrogenase (G6PD) and 6-phosphogluconate dehydrogenase (6PGD) activity during the process of red cell aging in normal subjects and in beta-thal carriers, to study transfused patients with G6PD and pyruvate kinase (PK) deficiency and to test the effects of inositol hexaphosphate (IHP) encapsulation on RBC subpopulations.

Adult

Decrease of CD4+CD45+ T-cells in chronic-progressive multiple sclerosis.

Circulating lymphocyte subpopulations defined by anti-CD45 and other more common T-cell-specific monoclonal antibodies were analysed in 77 patients with multiple sclerosis and 38 healthy controls. A selective decrease of CD4+CD45+ cell percentages and absolute numbers in chronic-progressive patients was found; in 13 out of 26 patients this subpopulation was less than 11% CD4+CD45+ cells. Similarly, the whole CD45+ cell subset, as well as CD45+ cells expressed as percentages of CD4+ cells, were significantly reduced in chronic-progressive multiple sclerosis. CD4+CD45+ cells, commonly termed "inducer of suppression" T-lymphocytes, did not correlate with percentages or numbers of CD8+ cells. It is concluded that suppressor inducer T-cells act on the CD8+ subset function rather than reducing CD8+ cell numbers. Since CD4+CD45+ cells represent an early stage of lymphocyte maturation (naive T-cells), an under-representation of this subpopulation in active multiple sclerosis might reflect an increased conversion of naive cells into memory cells. This concept may be relevant for a better understanding of the disease pathogenesis.

Adult

Impairment of in vitro natural antibacterial activity in HIV-infected patients.

Circulating PBMC of healthy subjects possess an in vitro natural antibacterial (NA) against enteropathogenic bacteria, including Salmonella species. The effector cell of NA activity is a CD: 4+, 8-, Leu-8/TQ-1+ T lymphocyte acting against bacteria via cytophylic IgA in a mechanism similar to antibody-dependent cellular activity. Because AIDS is a profound immunodeficiency caused by HIV involving primarily CD4 lymphocytes and in particular the Leu-8/TQ-1 subset, it was of interest to assess NA activity of HIV+ subjects at various stages of the disease. Results indicate that NA activity against Salmonella typhi and Salmonella paratyphi C is significantly decreased in AIDS as well as in lymphadenopathy syndrome patients. Furthermore, sera containing IgA against salmonellae were not able to arm PBMC from HIV+ patients. The humoral response against S. typhi-LPS was also greatly decreased after HIV infection, in contrast to the known hypergammaglobulinemia seen in these subjects. Defective NA activity might contribute to the increased incidence of salmonellosis observed in AIDS.

AIDS-Related Complex

[Importance of hyaluronic acid in the modulation of neutrophil migration].

The relationship between JA and phagocyte function has often been reported in the literature. The action of JA may either inhibit or stimulate PMNs function depending on the concentration. On the basis of this experience, the efficacy of JA action, both directly and mediated after incubation was studied. In particular phagocytosis, NBT, superoxide production and chemotaxis were studied in basal conditions and after incubation with hyaluronic acid. In particular chemotaxis was also performed to assay the chemotactic action of the medium in which the monocytes were incubated with JA and the technique was found to produce a distinct progressive improvement in the chemotactic index. In conclusion, it is hypothesised that monocytes incubated with JA produce a chemotactic factor for PMNs.

Adolescent

Induction of cytotoxicity by interleukin-2 in T gamma-lymphoproliferative disorders.

We have studied 7 patients with T gamma-lymphoproliferative disorders, in whom 78-88% of circulating nonadherent lymphocytes had the morphology of large granular lymphocytes (LGL) as assessed by light and transmission electron microscopy. The main common features of the membrane phenotype of these LGL expansions included expression of T3, HNK-1 and AB8.28. Other monoclonal antibody-defined surface markers of LGL (OKM1, B73.1, N901) were variably expressed or absent in these patients. Patients' LGL had little or no natural killer (NK) activity but mediated antibody-dependent cellular cytotoxicity (ADCC). Exposure to interferons (type B or gamma) for 20-72 hr resulted in no appreciable induction of cytolytic activity. In contrast, culture in the presence of interleukin-2 (IL-2) for 3 days resulted in the expression of strong cytolytic activity in all the patients tested against an NK-susceptible (K562) and an NK-resistant (Daudi) target. The expression of T3 antigen, the low levels or lack of native NK activity and the induction of consistent cytotoxicity by prolonged exposure to IL-2 led us to suggest that the cells expanding in these subjects are related to the effectors involved in lymphokine-activated killer (LAK) activity.

Adult

Immunomodulation of neutrophil chemotaxis in rheumatoid arthritis using levamisole and methisoprinol.

The inflammatory process of rheumatoid arthritis is characterized by an alteration in neutrophil function and an accompanying increase in the number of these cells within the joint space. Both inhibition of peripheral neutrophil chemotaxis and the paradoxic and concomitant deleterious effects of overreactive synovial neutrophils are expressions of an imbalance within the immune system. Levamisole and methisoprinol have been found to improve the alterations in cellular function and immune response. We studied the in vitro effect of these drugs on neutrophil function in four patients with rheumatoid arthritis whose basal chemotaxis was seriously inhibited. Levamisole and methisoprinol improved neutrophil chemotaxis by inducing, in monocytes incubated with these drugs, the production of an important chemotactic factor effective on the altered neutrophils. We suggest that the use of these drugs is beneficial in the treatment of rheumatoid arthritis.

Arthritis, Rheumatoid

Lymphokine-activated killer activity of tumor-associated and peripheral blood lymphocytes isolated from patients with ascites ovarian tumors.

Peripheral blood lymphocytes (PBLs) and tumor-associated lymphocytes (TALs) were isolated from 36 patients with advanced ovarian adenocarcinoma and peritoneal effusions for study of lymphokine-activated killer activity. PBLs and TALs cultured in vitro for 3-5 days in the presence of interleukin-2 (IL-2, supernatant of the MLA 144 gibbon cell line, or human recombinant IL-2) expressed higher levels of cytotoxicity as compared to cells cultured in medium alone, against natural killer (NK)-susceptible (K562) or NK-resistant targets (Daudi and the human ovarian carcinoma cell line SW626). When ovarian tumor cells, freshly isolated from carcinomatous ascites or surgical specimens, were used as target cells in the cytotoxicity assay, 8 of 14 PBLs and 5 of 7 TAL preparations lysed the autologous tumor after treatment with IL-2, while no spontaneous reactivity was observed in any of the 14 patients tested. Although levels of lysis were usually relatively low, these data demonstrate that PBLs and TALs from ovarian cancer patients (TALs usually exhibiting low NK activity) when stimulated in vitro by IL-2 acquire some cytotoxic potential against the autologous tumor.

Adenocarcinoma

Pharmacological effect of hyaluronic acid (HA) on phagocytes: hypothesis for an HA-induced monocyte chemotactic factor for neutrophils.

The connection between hyaluronic acid and phagocyte function is not well documented in the literature. Its action may either inhibit or enhance polymorphonuclear neutrophil (PMN) function, depending on its concentration. Studies were conducted to verify the effect of hyaluronic acid on phagocytes, both directly using hyaluronic acid and indirectly via a mediated route using the medium from a hyaluronic acid monocyte incubation. Determinations were made of phagocytosis, reduction of nitroblue tetrazolium, superoxide production, and chemotaxis before and after incubation with hyaluronic acid. Chemotaxis of PMNs was used to evaluate the chemotactic action of a medium in which monocytes had been incubated with hyaluronic acid. This method resulted in progressive improvement in the chemotactic index. The authors conclude that the monocytes incubated with hyaluronic acid produce a chemotactic factor for neutrophils.

Cell Movement

Immunological and genotypic analysis of human T gamma-lymphoproliferative disorders.

T gamma-lymphoproliferative disorders (T gamma-LPD) are rare diseases characterized by expansion of circulating elements with resemblance to large granular lymphocytes (LGL). We have studied 12 patients with T gamma-LPD. Morphological evaluation revealed 79-88% of LGL in non-adherent peripheral blood lymphocytes as assessed by light and electron microscopy. The most common features of the membrane phenotype included expression of T3, HNK-1 and AB8.28 (anti-Fc gamma); other surface markers of LGL (OKM1, B73.1, N901) were variably expressed or absent. Patients' LGL usually had little or no NK activity, with the exception of two patients who had values comparable to those of normal donors; in addition, cell preparations from all patients mediated antibody-dependent cellular cytotoxicity. The recent availability of the T cell receptor beta chain probes allowed us to investigate the lineage and the clonality of T gamma-LPD. Of the 12 patients analyzed, 10 displayed clonal rearrangements of T beta locus and expression of the T3 antigen, whereas the two remaining cases displayed a germ-line configuration of the T beta gene and no expression of the T3 antigen. We suggest that individual T gamma-LPD cases represent the clonal expansion of cells frozen at different stages of differentiation/activation within an individual hematopoietic LGL/NK lineage. These data suggest that either a subset of LGL or a particular step of differentiation may be related to the T cell lineage.

Antibody-Dependent Cell Cytotoxicity