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[The generalist and immunosuppressive agents].

The general practioneer is frequently concerned by the follow-up of patients receiving immunosuppressive agents for auto-immune diseases or for the prevention of graft rejection. We here review the side effects of the most frequently used immunosuppressive drugs: glucocorticoids, azathioprine, cyclophophamide, cyclosporine and methotrexate. Important drug interactions are also mentioned. We also discuss the adult vaccine schedule for patients treated with immunosuppressive agents. Finally, the consequences of immunosuppressive drugs on fertility and pregnancy are developed.

Adult↗

Everolimus: an immunosuppressive agent in transplantation.

Everolimus is a novel immunosuppressive agent related to sirolimus. It is a proliferation signal inhibitor with an improved pharmacokinetic profile and bioavailability compared with sirolimus. Everolimus has been shown to be as effective as mycophenolate mofetil in reducing acute rejection in renal transplantation. In cardiac transplant recipients, it is superior to azathioprine in reducing acute rejection and cardiac allograft vasculopathy. Its use is also associated with a decrease in cytomegalovirus infection. However, coadministration with calcineurin inhibitors requires careful dose adjustment to prevent renal toxicity. Antiproliferative effects of everolimus may abrogate the increased risk of malignancy seen in solid organ transplantation.

Animals↗

Naturally occurring immunosuppressive agents. I. The presence in normal pig liver of a factor possessing immunosuppressive properties with respect to pig lymphoid cells in vitro.

Saline cell-free extracts of normal pig liver, but not normal pig spleen, contain a noncytotoxic factor (or factors) capable of suppressing the blastogenic response of pig lymphocytes to stimulation with a number of plant mitogens: phytohemagglutinin, pokeweed, and concanavalin A. This reaction is generally considered to be a reflection of the capacity of the cell to participate in an immune reaction. Normal pig serum does not display inhibitory activity. The liver extract must be in contact with the lymphocytes for at least the final 48 hr of the 72-hr culture period in order to suppress the blastogenic response. Whether this active constituent in normal pig liver extract is an immunosuppressive agent in vivo remains to be determined.

Animals↗

[The BCTRIMS Expanded Consensus on treatment of multiple sclerosis: I. The evidences for the use of immunosuppressive agents, plasma exchange and autologous hematopoietic stem cell transplantation].

Since the sixties immunosuppressive agents have been used in the treatment of multiple sclerosis as there was cumulating evidence of the inflammatory nature of the disease. Cyclophosphamide, azathioprine and methotrexate have been the most frequently employed drugs whereas other agents such as cyclosporine and cladribine have been recently tested for RRMS. Mithoxantrone, on the other hand, was approved by the FDA for treatment of aggressive forms of the disease. Other immunointerventions such as plasma exchange and autologous hematopoietic stem cell transplantation have recently been employed in some special circumstances. This paper analyses the most important published data on the use of the immunosuppressive agents, plasma exchange and autologous hematopoietic stem cell transplantation according to the classes of evidences and types of recommendations of these drugs and immunointerventions. It provides sufficient information to support the guidelines expressed in the BCTRIMS Expanded Consensus on Treatment of MS.

Evidence-Based Medicine↗

Modulation of multidrug resistance by immunosuppressive agents: cyclosporin analogues, FK506 and mizoribine.

It has recently been reported that an immunosuppressive agent, cyclosporin A, shows a potent overcoming effect on multidrug resistance (MDR). We studied the presence of such a modulating effect of cyclosporin analogues and other immunosuppressive agents, FK506 and mizoribine, in human multidrug-resistant ovarian cancer cells (TAOV/A0.2). The intensity of the overcoming effect of cyclosporin analogues against adriamycin resistance was found to be in the other of cyclosporin D greater than A greater than C greater than H. It was found that cyclosporin D, which has relatively weak immunosuppressive activity, overcame adriamycin resistance in the multidrug-resistant ovarian cancer cells to a remarkable degree. On the other hand, it was found that FK506, a new potent immunosuppressant, could also distinctly modulate adriamycin-resistance. It was found that FK506 conferred chemosensitization upon adriamycin with reincreasing intracellular adriamycin accumulation in MDR cells which was far less than the parent strain. However, in the case of mizoribine, no modulation of drug resistance existed. Such modulation was not necessarily accompanied by immunosuppressive activity and the two functions were thought to be based on different mechanisms.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Impact of new immunosuppressive agents on late graft outcome.

Several new immunosuppressive agents have recently been launched for clinical use after kidney transplantation. FK506 or tacrolimus (Prograf) has been tested as an alternative for cyclosporine A (CsA). Both tacrolimus and CsA interfere with the early stage of lymphocyte proliferation by blocking interleukin-2 synthesis. Mycophenolate mofetil (MMF) (Cell-Cept) blocks the de novo synthesis of guanine nucleotides, the pathway essential for purine synthesis in dividing T- and B-lymphocytes, and has been used in conjunction with CsA and corticosteroids. In several prospective randomized trials a significant reduction in the incidence of acute rejection has been shown. As early acute rejection and especially recurrent acute rejection, is one of the most important risk factors for chronic rejection and late graft loss, there is a growing interest in the potential beneficial effect of these drugs on the late graft survival. In the European MMF trial, a further reduction of the late graft loss after one year is seen for patients treated with 2 g MMF. A retrospective comparison of international registry data has also shown a significant increase in the graft half-life of patients receiving tacrolimus compared with CsA treated patients. Taking into account the still limited follow-up of the available trials and the fact they were not primarily designed with adequate statistical benefits of these new drugs on the late graft outcome must be made with caution.

Graft Survival↗

[Study of the effects of immunosuppressive agents on human islet cells in vitro].

OBJECTIVE: To investigate the effects of immunosuppressive agents on insulin secretion of human islet cells in vitro. METHODS: Human islet cells were isolated by the solution of the liberase and purified by Ficoll's density gradient centrifugation and then were exposed to various concentrations of four immunosuppressive agents for 24 hr respectively. Glucose-stimulated insulin secretion during subsequent static incubation was measured using the human insulin ELISA kit. RESULTS: Glucose-stimulated insulin secretion from human islet cells was significantly reduced after exposed to high concentrations of MMF and FK506 (both P < 0.05). No significant reduction in insulin secretion was observed from human islet cells after exposed to FTY720 and rapamycin (both P > 0.05). CONCLUSION: (1) High concentrations of MMF and FK506 have deleterious effects on insulin secretion in human islet cells. Low-dose FK506 + MMF is available for clinical use. (2) FTY720 and rapamycin have no adverse effects on insulin secretion in human islet cells. FTY720 and rapamycin may become useful immunosupressants for future clinical islet allotransplantation.

Cell Separation↗

Immunosuppressive agents enhance the cytokine-induced priming of inflammatory cells.

The influence of the immunosuppressive substances cyclosporin A (CsA), FK506 and rapamycin on inflammatory mediators from cytokine-primed human leukocytes was studied. The cells were primed with granulocyte/macrophage-colony-stimulating factor, granulocyte-stimulating factor (G-CSF) and interleukin-3 (IL-3), and subsequently stimulated with the chemotactic peptide fMLP. The immunosuppressive agents CsA and FK506 enhanced the release of leukotriene B4 (LTB4) from human neutrophil granulocytes dependent on the priming with G-CSF and IL-3. IL-3-primed neutrophils released up to threefold higher amounts of LTB4 after subsequent stimulation with FK506 and fMLP. In contrast, the immunosuppressant rapamycin inhibited the formation of LTB4 after subsequent stimulation with fMLP. In addition to the well-documented inhibitory effects on lymphocyte function, our results indicate an enhancing effect of the immunosuppressive agents on the cellular inflammatory response of human peripheral blood neutrophils.

Cytokines↗

Single-agent immunosuppression after liver transplantation: what is possible?

Orthotopic liver transplantation is a life saving and life enhancing procedure. The development of immunosuppressive drugs has contributed to the high rate of success in terms of both patient and graft survival. However, the considerable adverse effects of these therapies are affecting long-term outcomes of transplant recipients. Complications related to immunosuppression are responsible for the majority of deaths in patients surviving more than 1 year. Therefore, the search for an optimal immunosuppressive regimen has become of paramount importance. The liver has proved to be an 'immunologically privileged' organ, capable in several animal models to be accepted as an allograft without any intervention on the immune system of the recipient. In some human liver allografts acceptance of the new organ is recognised after withdrawal of immunosuppressants, but prior identification of such individuals is not yet possible, thus negating this management option. Graft-recipient interaction is peculiar in liver transplantation: acute cellular rejection does not always need to be treated, and if it is not severe, appears to be associated with a better survival of both patient and graft. In the last decade there has been an evolution of immunosuppressive protocols, driven by empirical observation and a deeper understanding of immunological events after transplant. However, most modifications have been made because of the necessity to reduce long-term drug related morbidity and mortality. Withdrawal of corticosteroids has proven to be safely achievable in most patients, with no deleterious effects on patient or graft survival but with a great benefit in terms of reduction of incidence of metabolic and cardiovascular complications. Long-term 'steroid-free' regimens are therefore now widely used. Patients with stable graft function can be easily maintained using a single drug usually after 6 or 12 months and usually with a calcineurin inhibitor. The more evolved step of using monotherapy ab initio has also proven to be effective in a few studies and needs to be explored further. In the future new strategies will be designed to help the development of tolerance of the allograft, selectively stimulating instead of suppressing the immune reaction of the recipient.

Adrenal Cortex Hormones↗

Calcineurin inhibitor-induced chronic nephrotoxicity in liver transplant patients is reversible using rapamycin as the primary immunosuppressive agent.

The purpose of this study was to determine whether calcineurin inhibitor (CNI)-induced chronic nephrotoxicity in liver transplant patients is reversible by replacement of the CNI with rapamycin as the primary immunosuppressive agent. CNIs, while providing potent immunosuppression for liver transplant patients, exhibit nephrotoxicity as a major side-effect. Whereas acute CNI-induced nephrotoxicity is reversible by withdrawal of the CNI, chronic nephrotoxicity due to CNIs is a progressive process thought to be irreversible. Eight liver transplant patients with CNI-induced chronic nephrotoxicity were converted to rapamycin as the primary immunosuppressive agent. The CNI was either discontinued (four patients) or the dosage lowered to maintain a subtherapeutic level (four patients). Renal function as assessed by serum creatinine was measured before and after conversion to rapamycin. Two patients progressed to dialysis dependence following conversion to rapamycin. These two patients had been on CNIs for a mean of 112 months (range 93-131 months) prior to conversion to rapamycin. Five patients experienced improvement in renal function. These patients had been on calcineurin inhibitors for a mean of 60 months (range 42-75 months) prior to conversion. One patient with chronic nephrolithiasis as a contributing factor to his renal dysfunction has progressed to dialysis dependence despite conversion to rapamycin following exposure to a CNI for 24 months. In the five patients with improved renal function, serum creatinine levels decreased significantly (2.4 +/- 0.3 mg/dL to 1.5 +/- 0.1 mg/dL, p < 0.05) by a mean of 7.2 months (range 5-10 months) after conversion from CNI to rapamycin-based immunosuppression. Liver function remained stable after conversion to rapamycin. CNI-induced chronic nephrotoxicity can be reversed upon withdrawal of the CNI. Rapamycin is an effective replacement agent as primary immunosuppressive therapy following withdrawal of CNIs in liver transplant patients with CNI-induced chronic nephrotoxicity.

Adult↗

Severe B cell depletion in newborns from renal transplant mothers taking immunosuppressive agents.

There have been several reports of successful pregnancies of kidney transplant mothers receiving immunosuppressive agents such as CsA and/or AZA. However, few papers have investigated immune function of neonates from those mothers. We investigated the lymphocyte subpopulations and T cell subsets in cord blood of newborn infants from those mothers. The subjects were 6 infants born to mothers following renal transplantation, who all were receiving CsA, AZA, and methylprednisolone. Cord blood and peripheral blood at 1 month and 3 months of age were obtained from the subjects. Control samples were obtained from 5 normal newborns. The polyclonal antibody used to investigate B cells was anti-F(ab')2 fragment of human immunoglobulin. Direct immunofluorescence staining and flow cytometry were used for the investigation. The number of B cells and the percentage of B cell in total mononuclear cells were significantly lower in the subjects than in normal controls. There was no significant difference between numbers of CD2+, CD4+, or CD8+ cells in the subjects and the controls. This severe B cell depletion remained low at 1 month and 3 months of life in many cases. From our result, it is very possible that the B cell line is more sensitive to immunosuppressants in utero than the T cell line. Infants of mothers taking immunosuppressive agents during their pregnancy should be followed carefully for possible insufficiency of immune function.

Adult↗

The impact of novel immunosuppressive agents on infections in organ transplant recipients and the interactions of these agents with antimicrobials.

Several of the new immunosuppressive agents that are used to treat transplant recipients possess in vitro activity against specific pathogens, enhance the activity of antimicrobial agents, or have unique drug interactions with antimicrobial agents. Mycophenolate mofetil may have a protective effect against Pneumocystis carinii; it also enhances the activity of ganciclovir and has strong antiviral activity against human immunodeficiency virus type 1. High doses of mycophenolate mofetil have been associated with a higher frequency of tissue-invasive cytomegalovirus disease but not with asymptomatic cytomegalovirus infection. Rapamycin exhibits potent in vitro fungicidal activity against Cryptococcus neoformans and several pathogenic fungi in transplant recipients; however, it is not known whether its immunosuppressive effect in organ transplant recipients outweighs its antifungal activity. Recognition of the unique characteristics of these agents and the evolving spectrum of opportunistic infections has implications for the differential diagnosis, management, and prophylaxis of infections in organ transplant recipients in the modern immunosuppressive era.

Anti-Infective Agents↗

Infectious risk in pediatric organ transplant recipients: is it increased with the new immunosuppressive agents?

The risk of infection in pediatric organ transplant recipients is determined by several factors, including age, the types of organ transplanted and the immunosuppressive treatment which has dramatically changed over the past 10 yr. Little information has been reported regarding the infectious complications related to the current immunosuppressive protocols used in these children. This paper reviews (i) the immunosuppressive agents, focusing on their mechanisms of action and on the new regimens, (ii) the infections related to excessive immunosuppression and also anti-infectious properties or infectious adverse reactions associated with specific immunosuppressive agents. With the new immunosuppressive protocols, the advances in immunologic monitoring, microbiological diagnosis, anti-infectious prophylactic and preemptive treatments, strategies to minimize the risk of infection related to the immunosuppressive therapy are proposed.

Child↗

[Effect of immunosuppressive agents and antilymphocyte serum on bacterial translocation in mice].

Following intraperitoneally applied treatment with 0.5 ml of ana partes diluted antilymphocyte serum (ALS) of immunosuppressive effect no bacterial translocation (BT) was observed in mice. The ALS treatment applied in combination with other immunosuppressive agents such as lymphotropic cytostatics as dianhydrogalactitol (30 mg/kg) or chlorpromazine (75 mg/kg) did not increase the mice drug sensitivity to used agents. According to our results, ALS can be suitable for combined application with other immunosuppressive agents as it can increase immunosuppression without side-effects such as those induced by bacterial translocation.

Animals↗

Inhibition of cytomegalovirus in vitro and in vivo by the experimental immunosuppressive agent leflunomide.

Despite progress in antiviral chemotherapy, cytomegalovirus (CMV) remains a major cause of morbidity and mortality among pharmacologically immunosuppressed transplant recipients, frequently engaging the clinician in a struggle to balance graft preservation with control of CMV disease. Leflunomide, an inhibitor of protein kinase activity and pyrimidine synthesis, is an experimental immunosuppressive agent effective against acute and chronic rejection in animal models. Herein we summarize our recent studies demonstrating that leflunomide inhibits the production of multiple clinical CMV isolates (including multi-drug-resistant virus) in both human fibroblasts and endothelial cells. In contrast to all other anti-CMV drugs currently in use, leflunomide does not inhibit viral DNA synthesis, but rather appears to interfere with virion assembly. Finally, preliminary studies in a rat model suggest that this agent reduces viral load in vivo. These findings imply that leflunomide, an effective immunosuppressive agent, shows potential to concurrently attenuate a major complication of immunosuppression, CMV disease, by a novel mechanism of antiviral activity.

Animals↗

BK virus and immunosuppressive agents.

The last decade has witnessed the introduction of several potent immunosuppressive agents in the field of transplant medicine. Contemporaneously, infection with BK virus (BKV) has emerged as an important complication of immunosuppression and an important cause of allograft loss after kidney transplantation. Rhandhawa et al reported the first case of BKV associated nephropathy (BKVN) in the modern era of transplantation, in 1995. Since then there has been a resurgence of interest in the epidemiology, biology and pathogenic associations of BKV especially in transplant medicine. Up to 90% of adults have serologic evidence of exposure to BKV. However, only 1-5% of normal healthy adults excrete the virus in the urine (asymptomatic viruria). Thus, for a vast majority of the population, the virus remains perfectly latent and this state of latency is of no obvious consequence. Almost all instances of disease by the BKV have been seen in immunocompromised patients. In recent years, BKV has been associated with nephropathy (BKVN) in about 5% of renal transplant patients. Once established, the disease may result in allograft loss in 45-70% of patients. Although not proven by any prospective study, BKVN causing allograft failure has been linked to immunosuppressive regimens containing tacrolimus or mycophenolate mofetil. This is noteworthy, as both these agents have been used increasingly as the primary maintenance immunotherapy in solid organ transplantation since their introduction around 1990. In addition to the immunosuppressed state, other factors like allograft injury have been thought to be involved in the pathogenesis of the disease. We believe that reactivation of the BKV from its latent state crucially depends on an immunocompromised state but more factors than one dictate precipitation of clinical end organ disease. In this Chapter, we will discuss the clinical aspects of BKV infection in the renal transplant recipient. We will focus on the role of immunosuppression as a seminal factor allowing replication of the virus. Not all patients who have replicating BKV go on to develop nephropathy: we will discuss other host factors that may constitute a 'second hit' allowing replicating BKV to precipitate BKVN. Results of our recently concluded prospective study on the issue of current immunosuppressive agents in the development of BKVN will be discussed. Finally, based on our experience, we will provide some guidelines for early diagnosis and management of this disease.

BK Virus↗

Statins as immunosuppressive agents.

BACKGROUND: Coronary artery disease in the transplanted heart, also known as cardiac allograft vasculopathy, is one of the major causes of mortality late after heart transplantation. This accelerated form of atherosclerosis also affects the donor organs of other transplant recipients including that of liver, kidney and lung. There are multiple immune and non-immune risk factors associated with this disease process, one of which is hyperlipidemia. Use of lipid lowering agents, specifically HMG-CoA reductase inhibitors (statins) was initially reported to have outcomes benefit and possibly immunosuppressive effects in a single center study of heart transplant recipients. Other subsequent studies have supported this beneficial effect. METHOD AND RESULTS: In a recent paper by Kwak and colleagues, the specific mechanism for this immunosuppressive effect has been elucidated through the use of experiments monitoring cell surface expression assayed by fluorescence-activated cell sorting and by immunofluorescence as well as mRNA levels of major histocompatibility complex class II (MHC-II). They report that statins repress induction of MHC-II by interferon-gamma and that this in turn represses activation of T-lymphocytes and other cell types including primary human smooth muscle cells and fibroblasts, as well as in established cell lines such as ThP1, melanomas, and HeLa cells. CONCLUSION: In addition to previous clinical and laboratory publications this work by Kwak and colleagues has provided a firm scientific rationale to support the use of statins as adjunct immunosuppressive agents in organ transplantation.

Animals↗

Cardiovascular toxicities of immunosuppressive agents.

Cardiovascular disease is one of the major causes of morbidity and mortality following solid organ transplantation. Many of the current immunosuppressive drugs are associated with an increase of one or more risk factors for the development of atherosclerosis. This review compares the mechanism by which individual immunosuppressive agents may impact on these risk factors and the differential contribution of cyclosporine, tacrolimus, mycophenolate, azathioprine, and Rapamycin to these individual risk factors. Attention to the potential cardiovascular toxicities of individual immunosuppressive agents may help design strategies for maintenance of immunosuppression tailored to individual patients.

Adrenal Cortex Hormones↗