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Raffaello Cortesini

Publications and source records attributed to Raffaello Cortesini.

27 records · Page 2Linked to original sources

Diltiazem impairs maturation and functions of human dendritic cells.

The aim of this study was to define the effects of diltiazem, a calcium antagonist drug used in cardiology and in clinical transplantation, on the differentiation and maturation of human dendritic cells (DC). Herein, we demonstrate that diltiazem, in association with granulocyte macrophage-colony-stimulating factor (GM-CSF) and interleukin-4 (IL-4), induces monocytes to differentiate into cells with many of the characteristic of DC. However, diltiazem-induced DC express high levels of mannose receptor and Fc gamma RII and, consequently, manifest a higher endocytic activity compared with GM-CSF+IL-4-induced DC. Importantly, diltiazem-induced DCs have an impaired responsiveness to lipopolysaccharide and CD40 ligand because they produce decreased levels of IL-12 and reveal a reduced ability to stimulate alloreactive T-cell responses as well as in inducing interferon-gamma producing Th1 cells. These effects may contribute to a decreased DC-dependent T-cell activation and may help to explain the immunoregulatory function of diltiazem and its effectiveness in preventing transplant rejection.

Adjuvants, Immunologic↗

Tailoring of immunosuppression in renal and liver allograft recipients displaying donor specific T-suppressor cells.

Although transplantation tolerance cannot be yet reliably achieved in humans, there is evidence that active immunosuppression contributes to the maintenance of quiescence. However, the mechanism that underlies quiescence and the precise identity of regulatory cells are not completely understood. We have demonstrated that allograft recipients who remain rejection-free display allospecific T-suppressor cells (Ts). Ts express the CD8(+) CD28(-) phenotype, recognize major histocompatibility complex (MHC) class I antigens, and suppress the up-regulation of costimulatory molecules induced by CD40 ligation of donor antigen presenting cells. The presence of Ts is inversely correlated with T cell alloreactivity to donor MHC peptides, alloantibody production, and rejection. Monitoring of Ts has been successfully used in our studies for tailoring immunosuppression in kidney and liver allograft recipients.

Antigen-Presenting Cells↗

MARS (Molecular Adsorbent Recirculating System): experience in 34 cases of acute liver failure.

As reported in the literature, the mortality rates for patients with Acute Hepatic Failure (AHF) approaches 80% in cases in which liver transplantation is not possible. Post-transplant mortality mostly depends on the severity of the neurological condition at the time of the operation (20% in I-II degree coma patients and 44% in III degree coma patients). The primary indications for liver transplantation in AHF are Fulminant Hepatitis (FH)(93%), Subfulminant Hepatitis (5%) and other indications (2%). Other causes of AHF are Primary Non-Function (PNF) and Delayed Function (DF), which occur in 7-10%. Therefore it becomes necessary to monitor the patients with a Liver Support Device to be able to improve the clinical condition of the patients before liver transplantation (LT). In our experience we used the Molecular Adsorbent Recirculating System (MARS) (MARS Monitor; Teraklin AG, Rostock Germany), which enables the selective removal of albumin-bound substances accumulating in liver failure by the use of albumin-enriched dialysate. The system is used as a bridging device to orthotopic liver transplantation (OLT) of patients with FHF. We studied 34 patients, including 16 males and 18 females: 9 were affected by Primary-Non-Function (PNF), nine by Fulminant Hepatitis (FH), six by Delayed-Non-Function (DNF), and ten by Acute on Chronic Hepatic Failure (AOCHF). The average age of the patients was 41.8 years and the average number of applications was 6.4; the median length of application was about eight hours. The parameters that we monitored, before and after each treatment, were neurological status (EEG, cerebral CT, Glasgow Coma Score), haemodynamic parameters, acid base equilibrium, and blood gas analysis. We also monitored hepatic and renal function. In addition, the clinical conditions of the patients were monitored using kidney and liver ultrasound/ultrasonography (US). Inclusion criteria were bilirubin > 15 mg/dL, ammonia > 160 micro g/dL and a Glasgow Coma Score between 6 and 11. The reduction of bilirubin and ammonia were very significant (P < 0.01), whereas the changes of International Normalized Ratio (INR) were not significant. Also the modifications of albumin, total protein, sodium, potassium and calcium were not significant. In conclusion, four out of nine patients with PNF are alive without a second transplantation and were discharged after about 48 days; four out of nine underwent OLT, while one out of nine died; five out of six patients with DF are alive without a second transplantation, and they were discharged after an average time of 55.5 days, one out of six died; six out of nine patients with fulminant hepatitis underwent OLT and four of these are alive, while two died due to sepsis; three patients are alive without OLT. Four patients with AOCHF underwent OLT and are alive, three patients are alive and on a waiting list, two died while on a waiting list and one patient who experienced reactivation of HBV infection during chemotherapy for non-Hodgkin's lymphoma is alive. In spite of the limited number of cases of our study, we believe that MARS can be applied with high tolerance for a very long period of time. In addition, its repeatability allows it to be used in patients with DNF and FH as a bridge to transplant. In patients with DNF, it is used while waiting for complete recovery of the transplanted organ.

Adult↗

Living unrelated kidney transplantation.

The use of living donors, particularly if unrelated, in kidney transplantation is still not recommended although many transplant centers have come to accept the procedure. Usually the main argument against this approach is ethical. Acknowledging this problem, we accept biologically unrelated donors only if they have an emotional closeness to the recipient. From November 1982 to November 1997, 527 kidney allografts from living donors were performed at our institution. Of these 302 living donors were first-degree relatives of the recipient and shared one haplotype (LRD) and 172 were unrelated(LURD). Among the LURD group 146 donors were "emotionally related"--wife to husband 110 cases and husband to wife 35 cases and 1 case from a nun to a friar. Statistical analysis of the results was performed with the chi(2) method. Actuarial graft survival rates in the LRD and LURD groups were 91% and 87% at 1 year, 77% and 79% at 5 years, and 66% and 69% at 9 years (P =n.s.). In conclusion kidney transplantation between unrelated donors and recipients may be a valid alternative in view of the cadaver organ shortage. It is a procedure that can be performed successfully and that provides a "gift of life" for both the patient and the family.

Adult↗

The concept of "partial" clinical tolerance.

The status of "partial" tolerance to organ allografts versus the status of complete tolerance is the main topic of this paper. Progress made in immunosuppression, particularly by use of various lymphocyte depleting agents for "induction therapy", seems to favor the subsequent development of T cells with suppressor/regulatory properties. The effective deletion of alloreactive T helper and cytotoxic cells in conjunction with the expansion of antigen-specific suppressor (CD8 + CD28 - FOXP3+) and regulatory (CD4 + CD25+ FOXP3+) T cells creates a milieu in which the graft is well tolerated under an "umbrella" of low dosage immunosuppression. The most effective induction treatment is Campath-1H, although ATGAM at high dosage is also widely used. Total lymphoid irradiation (TLI) is another very effective pretreatment strategy in spite of the risks which are associated with it. The induction of "partial" tolerance is a step in the right direction for exploring strategies that may lead to the induction of complete tolerance. It is safe for the patients and can prolong significantly the function of the graft, preventing the onset of chronic rejection.

Animals↗

Generation and function of antigen-specific suppressor and regulatory T cells.

The identification and characterization of regulatory and suppressor T cells that control immune responsiveness to self and non-self antigens has become the focus of innumerable studies. There are two broad categories of naturally occurring and induced CD4(+)CD25(+) regulatory T cells. Naturally occurring T(R) are antigen non-specific and interact directly with other T cells inhibiting their activation. Induced T(R) are either CD4(+)CD25(+) or CD8(+), produce immunosuppressive cytokines such as IL-10, act directly on other T cells or APC and are antigen specific in some but not in all systems. Finally, a distinct subset of T suppressor cells, characterized by their CD8(+)CD28(-) phenotype have been shown to be antigen-specific, recognizing HLA class I/peptide complexes. T(S) act directly on APC inducing the up-regulation of inhibitory receptors ILT3 and ILT4, which render the APC tolerogenic. Tolerized APC, which expresses high ILT3 and ILT4, trigger the generation of antigen-specific CD4(+) T(R) propagating antigen-specific suppression. Up-regulation of ILT3 and ILT4 appears to be a general characteristic of tolerogenic DC since it is also induced by use of vit D3, IL-10 and/or IFN-alpha. The clinical relevance of these inhibitory receptors is in the maintenance of transplantation tolerance as well as in progression of AIDS has been demonstrated.

Antigen-Presenting Cells↗

High expression of ILT3 and ILT4 is a general feature of tolerogenic dendritic cells.

The direct interaction between antigen specific CD8(+) CD28(-) T suppressor cells (T(S)) with dendritic cells (DC) results in the tolerization of DC by inducing the upregulation of immunologlobulin like transcript 3 (ILT3) and ILT4. We show here that such tolerogenic DC anergize alloreactive CD4(+) CD45RO(+) CD25(+) T cells converting them into regulatory T cells (T(R)), which in turn, continue the cascade of suppression by tolerizing other DC. Interleukin 10 (IL-10) and interferon-alpha (IFN-alpha) also induce ILT3 and ILT4 upregulation in DC, rendering them tolerogenic. This implies a common mechanism of DC-mediated suppression. This finding and the observation that in organ allograft recipients quiescence is associated with the presence in the circulation of donor-specific T(S) and T(R) emphasize the importance of the cross talk between tolerogenic DC and T cells in suppression of the immune response.

Antigen-Presenting Cells↗