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Biomedical subjects

L Marini

Publications and source records attributed to L Marini.

At least 19 recordsLinked to original sources

A randomized phase II trial evaluating standard (50 mg/min) versus low (10 mg/min) infusion duration of gemcitabine as first-line treatment in advanced non-small-cell lung cancer patients who are not eligible for platinum-based chemotherapy.

PURPOSE: Gemcitabine is one of the most active drugs against non-small-cell lung cancer (NSCLC). Preclinical data suggested that gemcitabine efficacy could be improved by increasing the dose or by increasing the infusion duration. This study has been designed in order to explore two different approaches of gemcitabine dose intensification in patients with advanced NSCLC. PATIENTS AND METHODS: A total of 121 chemonaive patients with locally advanced or metastatic NSCLC not suitable for a platinum-based chemotherapy were randomly allocated to chemotherapy with gemcitabine 1500 mg/m2 on days 1 and 8 every 3 weeks by standard 30 min intravenous infusion (arm A), or gemcitabine 10 mg/m2/min for 150 min on days 1 and 8 every 3 weeks by intravenous infusion at fixed dose rate (arm B). RESULTS: One hundred and seventeen patients were fully analyzed. No difference in response rate (16.1% versus 9.9%, p=0.28), median time to disease progression (4 months versus 4.5 months, p=0.34) median survival (9.8 months in both arms), and 1-year survival (42.6% versus 39.0% p=0.98) was detected in arms A and B, respectively. No treatment-related deaths occurred. Main hematological toxicities were grade 3-4 neutropenia observed in 17.9% of patients in group A and in 49.2% of individuals in group B (p=0.0002). The incidence of febrile neutropenia was 3.3% in arm A and 0% in arm B (p=0.17). Grade 3-4 thrombocytopenia was more frequently observed in arm B patients (9.9% versus 1.8%, p=0.057). Non-hematological toxicity was similar in both arms, and consisted in grade 1-2 gastrointestinal toxicity observed in 48.2% of patients in arm A and 41.0% in arm B. CONCLUSION: Intensification of standard doses or prolonged infusion schedule did not result in efficacy improvement. Gemcitabine infusion duration does not warrant further investigation in patients with advanced NSCLC.

Aged↗

Primary chemotherapy with gemcitabine, epirubicin and taxol (GET) in operable breast cancer: a phase II study.

This trial was conducted to assess the activity and tolerability of the gemcitabine, epirubicin, taxol triplet combination in patients with operable breast cancer. After core biopsy, 43 women with stage II-IIIA breast cancer were treated with gemcitabine 1000 mg m(-2) over 30 min on days 1 and 4, epirubicin 90 mg m(-2) as an intravenous bolus on day 1, and taxol 175 mg m(-2) as a 3-h infusion on day 1, every 21 days for four cycles. The primary end point was the percentage of pathological complete responses (pCR) in the breast; secondary end points were tolerability, clinical response rates, overall and progression-free survival, tumour biomarkers before and after primary chemotherapy (PCT). All patients were included in safety and survival analyses; 41 eligible patients were evaluated for response. The overall clinical response rate was 87.8% (95% CI 77.8-97.8), with 26.8% complete responses (95% CI 13.3-40.3). A pCR in the breast was observed in six patients (14.6%; 95% CI 3.8-25.4); 15 patients (36.6%; 95% CI 21.9-51.3) had negative axillary lymph nodes. Grade 4 neutropenia was observed in 67.4% of the patients; febrile neutropenia occurred in 1.9% of cycles (granulocyte colony-stimulating factor was used in 3.2% of the cycles to shorten the duration of neutropenia). A statistically significant difference between Mib-1 at baseline (> or =20% in 71.4% of the patients) and at definitive surgery (28.6%, P < 0.05) was observed. The gemcitabine, epirubicin, taxol regimen is active and well tolerated as PCT for operable breast cancer. This combination allows the administration of full doses of active agents with a low incidence of febrile neutropenia.

Adult↗

A closed system for the clinical banking of umbilical cord blood.

Umbilical cord blood (UCB) is a source of hematopoietic progenitor cells and is used as an alternative to the bone marrow or peripheral blood for treatment of several onco-hematological diseases. Because of the limited number of CD34+ hematopoietic stem cells present in UCB units and of the elevated costs of cryopreservation, it is of paramount importance to select the UCB units that are clinically useful before storage and optimize banking efficiency by designing reliable procedures to process and freeze the selected units. Among the different parameters characterizing UCB, nucleated cell (NC) and CD34+ cell content provides useful criteria to select UCB units since clinical data documented that the infused cell load (both NC and CD34+ cells) plays an important role in the successful outcome of transplants. By evaluating volume, CD34+ cell content, NC total amount, and NC density of 117 UCB units, we found a significant association between CD34+ cell content and NC density and total amount, indicating these parameters as useful to decide UCB clinical utility. Furthermore, we set up a fast procedure to process UCB units for storage. A system for NC separation and volume reduction of UCB samples in a dedicated, germ-free, closed circuit was developed, where plasma and red blood cells (RBC) depletion was obtained by sedimentation in the presence of a 3.5% Polygeline solution. By this separation system, both RBC depletion and high NC and CD34+ cell recoveries were achieved in 60 min, and the yield was comparable to the one obtained by other separation methods. Since Polygeline has been clinically used as a plasma expander and no toxic effects on patients were reported, the protocol can be applied in the large-scale banking of UCB.

Antigens, CD34↗

Phase II study of gemcitabine plus oxaliplatin as first-line chemotherapy for advanced non-small-cell lung cancer.

This phase II study evaluated the response rate and tolerability of gemcitabine-oxaliplatin chemotherapy in non-small-cell lung cancer (NSCLC) patients. Chemonaive patients with stage IIIB or IV NSCLC received gemcitabine 1000 mg m(-2) on days 1 and 8, followed by oxaliplatin 130 mg m(-2) on day 1. Cycles were repeated every 21 days for up to six cycles. From February 2002 to May 2004, 60 patients were enrolled into the study in seven Italian institutions. We observed one complete response (1.7%) and 14 partial responses (23.3%), for an overall response rate of 25.0% (95% confidence interval, 14.7-37.9%). The median duration of response was 5.9 months (range 1.5-17.1 months). With a median follow-up of 6.7 months, median time to progressive disease and overall survival were 2.7 (range 1.9-3.4 months) and 7.3 months (range 7.2-8.6 months), respectively. The main grade 3-4 haematological toxicities were transient neutropenia in 11.7% and thrombocytopenia in 8.3% of the patients. Nausea/vomiting was the main grade 3-4 nonhaematological toxicity, occurring in 10.0% of the patients. Two (3.3%) patients developed grade 3 neurotoxicity. Our results show that gemcitabine-oxaliplatin chemotherapy is active and well tolerated in patients with advanced NSCLC, deserving further study, especially for patients not eligible to receive cisplatin.

Adult↗

Pharmacokinetic study of intravesical gemcitabine in carcinoma in situ of the bladder refractory to bacillus Calmette-Guérin therapy.

INTRODUCTION: Gemcitabine, a chemotherapeutic agent, has been shown to be active against transitional cell cancer of the bladder. The aim of the study was to determine the pharmacokinetic profile of gemcitabine, administered intravesically in patients with carcinoma in situ(CIS). MATERIAL AND METHODS: Nine patients with CIS refractory to intravesical bacillus Calmette-Guérin (BCG) therapy were enrolled. Gemcitabine was given in 50 ml 0.9% NaCl by catheterization and held in the bladder for 1 h, once weekly for 6 consecutive weeks. The pharmacokinetics for gemcitabine metabolites were performed in plasma and serum. Dose levels were: 1,000, 1,250, and 1,500 mg. Clinical evaluation was repeated 4 weeks after therapy and thereafter every 6 months. RESULTS: Grade-1 neutropenia was observed only in 1 patient. Grade-1 urinary frequency and hematuria were observed in 1 and 3 patients, respectively. No grade 2-4 toxicity or clinically relevant myelosuppression were observed. Gemcitabine was detectable in serum, but with an irrelevant pharmacological effect, in only 1 patient treated with 1,500 mg of gemcitabine. With regard to activity, after 6 instillations of this drug, 4 complete responses were observed. CONCLUSION: Intravesical gemcitabine is well tolerated and safe. No systemic absorption with a clinical or pharmacological effect was detected and only slightly irritative bladder symptoms were observed. These results warrant further investigation in phase-II trials.

Adjuvants, Immunologic↗

Qualitative multiplex RT-PCR for simultaneous detection of hepatitis C virus and human immunodeficiency virus in plasma samples.

This report describes the development of a one-tube multiplex reverse transcriptase (RT)-PCR assay for the simultaneous detection of hepatitis C virus (HCV) and human immunodeficiency virus (HIV) in plasma samples. The assay was evaluated with two panels of HCV- and HIV-1-positive samples, as well as negative plasma specimens. Extraction and amplification of HCV and HIV-1 RNA from plasma samples were performed in a single reaction, and amplified genomes were detected with specific probes. Serial dilutions of the HCV and HIV-1 first World Health Organization International Standards were used to evaluate the sensitivity of the method. Two RNA controls were constructed to determine inter-assay variations and the sensitivity of the amplification step. The assay had good specificity and detected all the genotypes and subtypes tested. The analytical sensitivity of the entire assay was 100 IU/mL for HCV and 200 IU/mL for HIV-1, while the amplification step detected ten copies/reaction for HCV and 20 copies/reaction for HIV-1. The multiplex assay allowed the simultaneous extraction, amplification and detection of two virus genomes, thereby providing an important practical advantage and an efficient approach for analysing individual and pooled plasma donations.

Feasibility Studies↗

Rationale for the use of gemcitabine in breast cancer (Review).

Many active cytotoxic drugs and several regimens exist for breast cancer therapy. However, these conventional treatments have not changed the outcome of patients with locally advanced and metastatic disease. As a consequence, the dynamic balance between chemotherapy-induced side effects and benefits attributable to relief of cancer-related symptoms must be carefully considered in this setting. Gemcitabine is a pyrimidine nucleoside antimetabolite that has shown activity in a variety of solid tumors, a good toxicity profile, and non-overlapping toxicity with other chemotherapeutic drugs. As a single agent, gemcitabine yields response rates ranging from 14 to 37% as first-line treatment for advanced breast cancer and 12-30% as salvage therapy for patients previously treated with anthracycline and/or taxane treatment. Combined with vinorelbine, platinum, anthracyclines, and taxanes as doublets or triplets, response rates of 50 to 80% have been reported in phase II clinical studies. Gemcitabine in combination with anthracyclines and taxanes has been evaluated in the neoadjuvant setting in patients with early-stage breast cancer with interesting clinical and pathological response rates. Preliminary results of gemcitabine in combination with the biologic agent, trastuzumab, are encouraging. Phase III trials of gemcitabine combinations compared to standard regimens are ongoing with the aim to assess the independent contribution of gemcitabine.

Antibodies, Monoclonal↗

Comparison of hippocampal G protein activation by 5-HT(1A) receptor agonists and the atypical antipsychotics clozapine and S16924.

This study employed [(35)S]guanosine 5'- O-(3-thiotriphosphate) ([(35)S]GTPgammaS) binding to compare the actions of antipsychotic agents known to stimulate cloned, human 5-HT(1A) receptors with those of reference agonists at postsynaptic 5-HT(1A) receptors. In rat hippocampal membranes, the following order of efficacy was observed (maximum efficacy, E(max), values relative to 5-HT=100): (+)8-OH-DPAT (85), flesinoxan (62), eltoprazine (60), S14506 (59), S16924 (48), buspirone (41), S15535 (22), clozapine (22), ziprasidone (21), pindolol (7), p-MPPI (0), WAY100,635 (0), spiperone (0). Despite differences in species and tissue source, the efficacy and potency (pEC(50)) of agonists (with the exception of clozapine) correlated well with those determined previously at human 5-HT(1A) receptors expressed in Chinese hamster ovary (CHO) cells. In contrast, clozapine was more potent at hippocampal membranes. The selective antagonists p-MPPI and WAY100,635 abolished stimulation of binding by (+)8-OH-DPAT, clozapine and S16924 (p-MPPI), indicating that these actions were mediated specifically by 5-HT(1A) receptors. Clozapine and S16924 also attenuated 5-HT- and (+)8-OH-DPAT-stimulated [(35)S]GTPgammaS binding, consistent with partial agonist properties. In [(35)S]GTPgammaS autoradiographic studies, 5-HT-induced stimulation, mediated through 5-HT(1A) receptors, was more potent in the septum (pEC(50) approximately 6.5) than in the dentate gyrus of the hippocampus (pEC(50) approximately 5) suggesting potential differences in coupling efficiency or G protein expression. Though clozapine (30 and 100 microM) did not enhance [(35)S]GTPgammaS labelling in any structure, S16924 (10 micro M) modestly increased [(35)S]GTPgammaS labelling in the dentate gyrus. On the other hand, both these antipsychotic agents attenuated 5-HT (10 microM)-stimulated [(35)S]GTPgammaS binding in the dentate gyrus and septum. In conclusion, clozapine, S16924 and ziprasidone act as partial agonists for G protein activation at postsynaptic 5-HT(1A) receptors in the hippocampus. These data support a role of postsynaptic 5-HT(1A) receptors in the functional profiles of certain antipsychotic agents.

Animals↗

Chemotherapy with an every-2-week regimen of gemcitabine and paclitaxel in patients with transitional cell carcinoma who have received prior cisplatin-based therapy.

BACKGROUND: An every-2-week regimen of gemcitabine and paclitaxel was adapted for patients with advanced transitional cell carcinoma (TCC) who had received prior cisplatin-based chemotherapy. METHODS: Forty-one patients with advanced or metastatic TCC who had received prior cisplatin-based systemic chemotherapy were treated with an outpatient regimen of gemcitabine 2500-3000 mg/m(2) and paclitaxel 150 mg/m(2) every 2 weeks. RESULTS: Forty of 41 patients had measurable disease. Response was observed in 24 patients (60%; 95% confidence interval [CI], 45-75%). Eleven (28%) achieved complete response, and 13 (33%) obtained partial response. Twenty of 25 patients (80%; 95% CI, 64-96%) who had been previously treated in the neoadjuvant or adjuvant setting responded versus 4 of 15 (27%; 95% CI, 5-49%) in patients who received prior methotrexate, vinblastine, doxorubicin, cisplatin (M-VAC) for metastatic disease. The median duration of survival for patients given gemcitabine and paclitaxel after failing neoadjuvant or adjuvant M-VAC was 12 months (range, 2-43+), as compared with only 8 months (range, 2-28) for patients who had been treated after failure of prior therapy for metastatic disease. For all patients, the median duration of response was 6.4 months (range, 2-43.3+ months), and the median survival was 14.4 months (range, 2-43+). Thirteen patients (32%) developed World Health Organization Grade 3-4 neutropenia, with febrile neutropenia in 3 (7%) patients. Granulocyte colony-stimulating factor was given to 10 (24%) patients. There was no Grade 3-4 anemia or thrombocytopenia. CONCLUSIONS: The combination of gemcitabine and taxol in previously treated patients with recurrent TCC is highly effective and produces objective durable responses. This every-2-week schedule is a well tolerated outpatient regimen with minimal toxicity.

Adult↗

Changes in the expression of surface receptors on lymphocyte subsets in the elderly: quantitative flow cytometric analysis.

The immunophenotype of circulating lymphocytes, including the intensity expression of surface receptors, changes with ageing. Until now, no results of systematic studies on age-dependent changes with respect to the expression of the major lymphocyte surface receptors in healthy elderly subjects have been reported. In order to identify age-related changes in both representation and immunophenotype of lymphocyte populations, we investigated, by means of triple-color whole-blood immunostaining and quantitative flow cytometry, the percent values and the absolute numbers, as well as the levels of surface antigen expression or antigen molecules per cell (ABC values x 10(3)), of different peripheral blood lymphocyte subsets from 23 healthy elderly subjects and 13 young donors. Naive (CD45RA+CD3+) T cells, total B cells, and CD5+ B lymphocytes are decreased (22%, 6%, 0.8% vs. 30%, 12%, 1.4%, respectively), whereas activated (HLA-DR+CD3+) and memory (CD45RO+CD3+) T cells, CD3+CD7- T lymphocytes, and lymphocytes expressing the NK marker CD56 are expanded in the elderly (2%, 53%, 13%, 6% vs. 0.8%, 45%, 8%, 8%, respectively). Moreover, T lymphocytes from elderly individuals express lower CD3 (61 +/- 10) compared to young (69 +/- 10). Considering the different T-cell populations, CD3 antigen is respectively decreased on CD45RO+ T cells (55 +/- 14 vs. 66 +/- 14) and up-regulated on CD56+ T lymphocytes (62 +/- 21 vs. 45 +/- 20). Increased CD8 expression characterizes CD3+CD7- lymphocytes (70 +/- 34 vs. 44 +/- 17) while HLA-DR on activated T cells is lower in old (39 +/- 7) than young (46 +/- 9) donors. CD7 is down-regulated both in T (22 +/- 3 vs. 28 +/- 3) and NK (48 +/- 18 vs. 71 +/- 18) cells, whereas CD2 expression, unchanged on NK cells, is up-regulated on T lymphocytes (54 +/- 10 vs. 41 +/- 8). Age-related changes in B-cell antigen expressions were also found: CD20 is increased (124 +/- 23 vs. 105 +/- 16) whereas, despite the unchanged CD5 expression of T cells, CD5 intensity on the B-cell subset co-expressing this antigen is higher in old (49 +/- 37) than in young (22 +/- 4) people. The observed changes in the expression of functionally important cellular receptors can contribute to the remodeling of immune function characteristic of the elderly. Moreover, since quantitative flow cytometry is becoming widely employed in clinical practice, our results also contribute to the assessment of specific age-dependent antigen expression changes to be considered for diagnostic approaches in the elderly.

Adult↗

[Thrombophilia and thromboembolic disease. A case report].

Congenital thrombophilia, specifically thrombophilia due to Leiden modified factor V as the cause of thromboembolic disease, is discussed. Thromboembolic disease is potentially fatal and disabling. A clinical case is presented of a girl of 15 with Leiden factor V thrombophilia in which all the typical thromboembolic events occurred: superficial thrombophlebitis, rapidly developing deep venous thrombosis of an extremity and ischaemic arterial thrombosis of the distal arterial trunk of the same extremity. Systemic thrombolytic therapy done quickly cleared up the acute phase of the thromboembolic event without it being necessary to resort to thrombectomy and prevented post-thrombotic sequelae involving the extremity.

Adolescent↗

Cell proliferation and apoptosis in the immune system in the elderly.

Loss of the cell proliferative capability and involution of tissues and organs are among the most important phenomena that characterize the aging process. Some of the aged-linked immune dysfunctions could be partly due to a dysregulation of apoptotic processes and to a lower responsiveness of aged lymphoid cells to activation and proliferation signals. The main changes in proliferative activity and cell death during aging and their impact on the process of immunosenescence are discussed. In fact, a very important function that has been suggested to deteriorate with age and to play a major role in the aging process is the capability of cells from aged subjects to respond to mitogenic stimuli and, consequently, to undergo cell proliferation. However, the cellular activation processes are very complex and the proliferative responses can follow different interconnected signal transduction pathways, and only some of them appear to be modified during age. Moreover, cell growth, immunosenescence, and longevity are strictly interconnected and deeply related to programmed cell death or apoptosis. The cellular equilibrium between cell survival and proliferation, on the one hand, and programmed cell death, on the other hand, seems to be unbalanced with advancing age, although in each type of immune cell it could be differentially modulated, resulting in a variety of clinicopathological consequences. Thus, cell proliferation and cell death are two physiologically active phenomena closely linked and regulated and a failure of these mechanisms determines profound dysregulations of cell homeostasis with major consequences in immune functioning and the onset of autoimmune diseases and cancer, whose incidence appears to be increased in the elderly.

Aging↗

The immune system in the elderly: I. Specific humoral immunity.

Profound and complex changes in the immune response occur during the aging process. Immunosenescence is reflected by a sum of disregulations of the immune system and its interaction with other systems. Many of the changes would appear to implicate age-related deficiencies of the immune responses. The term immunosenescence designates therefore a sort of deterioration of the immune function which is believed to manifest itself in the increased susceptibility to cancer, autoimmune disease, and infectious disease. Evidence has been accumulating from several studies which suggest an association between immune function and individual longevity. However, there are observations, especially in very old healthy people, that several immune functions are unexpectedly well preserved and substantially comparable to those observed in young subjects. These findings raise the question of whether the alterations that can be observed in the immune parameters of the elderly are a cause or a result of underlying disease processes. Moreover, studies on centenarians revealed a remodeling of the immune system rather than a deterioration, suggesting that the changes observed during immunosenescence do not correspond to immunodeficiency. The underlying mechanisms of these events are however still unclear. The purpose of the present review is to assess the status of research on the immunobiology of aging. In this first section, we focus attention on the B cell biology of aging. In clinical practice, the changes in humoral immune responsiveness and antibody-mediated defense mechanisms could greatly influence the incidence and outcome of bacterial infections and autoimmune diseases as well as the response to vaccines.

Aged↗

The immune system in the elderly: II. Specific cellular immunity.

Numerous changes occur in the immune system with advancing age, probably contributing to the decreased immunoresponsiveness in the elderly. These changes are often associated with important clinical manifestations such as increased susceptibility to infection and cancer frequently observed in the elderly population. Although both cellular and humoral immune responses are modified with advancing age, much of the decrease in immunoresponsiveness seen in elderly populations is associated with changes in T cell responses. The loss of effective immune activity is largely due to alterations within the T cell compartment which occur, in part, as a result of thymic involution. Substantial changes in both the functional and phenotypic profiles of T cells have been reported with advancing age. In fact, two prominent features of immunosenescence are altered T cell phenotype and reduced T cell response. One of the most consistent changes noted in T cells with advancing age is the decrease in the proportion of naive T cells with a concomitant increase in T cells with an activated/memory phenotype. In addition, there is evidence that the T cell population from aged individuals is hyporesponsive. The observed functional changes include decreased responsiveness to T cell receptor stimulation, impaired T cell proliferative capacity, a decline in the frequency of CD4+ T cells producing IL-2 and a decreased expression in IL-2 receptors. These latter findings probably explain the loss of proliferative capability of T cells from aged individuals. There is also evidence of a decrease in the early events of signal transduction, decreased activation-induced intracellular phosphorylation, and decreased cellular proliferative response to T cell receptor stimulation. The present review analyzes the main changes of the T cell compartment characterizing immunosenescence and discusses the possible mechanisms underlying these disregulations and their clinical implications.

Aged↗

The immune system in the elderly: III. Innate immunity.

The capability to cope with infectious agents and cancer cells resides not only in adaptive immune responses against specific antigens, mediated by T and B lymphocytes clonally distributed, but also in natural immune reactions. These innate defence mechanisms include chemotaxis, phagocytosis, natural cytotoxicity, cell interactions, and soluble mediators or cytokines. However, specific and natural immune mechanisms are always closely linked and interconnected, providing the primary defense against pathogens. The Authors discuss the main changes observed with advancing age in granulocytes and natural killer (NK) cell activity, in the expression and function of adhesion molecules, and in the pattern of cytokine production. Since phagocytic function is the primary mechanism through which the immune system eliminates most extracellular pathogenic microorganisms, analysis of this function is of clinical importance. Neutrophils from aged subjects often exhibit a diminished phagocytic capacity, as well as a depressed respiratory burst, notwithstanding an activated state. The activity of NK cells during aging has been studied extensively and different results have been reported. The most consistent data indicate an increase in cells with high NK activity with advancing age. Cells from healthy centenarians can efficiently kill target cells. This finding seems to suggest that innate immunity and in particular NK cell activity, is not heavily deteriorated with age. Conversely, a low NK activity is a predictor of impending morbidity. Immunosenescence is associated with increased expression of several cell adhesion molecules (CAM) resulting in an augmented capacity to adhere. Finally, also the cytokine network, responsible for differentiation, proliferation, and survival of lymphoid cells, undergoes complex changes with age. The main findings are a Th1 to Th2 cytokine production shift and an increased production of proinflammatory cytokines, which could explain many aspects of age-associated pathological events, such as atherosclerosis and osteoporosis.

Aged↗

Immunological changes in the elderly.

Immunosenescence is a complex remodelling of the immune system which may contribute significantly to morbidity and mortality in the elderly. Much evidence suggests an association between immune function and longevity. It was advanced that individuals who have survived in good health to the maximum life span are equipped with optimal cell defense mechanisms. Despite the great number of studies on the immune system in the elderly, little is known of the biological basis of immunosenescence in humans. This is partly due to the contrasting results often obtained by the various investigators. One source of discrepancy is that diseases are frequent in aging, and the alterations observed in the immune parameters of the elderly could be a cause or alternatively a consequence of the underlying pathological processes. Undoubtedly some diseases to which aged people are particularly susceptible, such as infectious, autoimmune and neoplastic pathologies, include dysregulation of several immune functions in their pathogenesis. On the other hand, recent studies in healthy centenarians suggest that the immunological changes observed during aging are consistent with a reshaping, rather than a generalized deterioration, of the main immune functions. Considering that the number of old people is dramatically increasing, and that geriatric pathology is becoming an important aspect of clinical practice, it seems particularly interesting to review the peculiar findings in the immune system of the elderly so as to better understand their susceptibility to certain diseases, and the links between health and longevity.

Aging↗

Neo-adjuvant chemotherapy and bladder preservation in locally advanced transitional cell carcinoma of the bladder.

BACKGROUND: The possibility of bladder preservation as well as the utility of neo-adjuvant chemotherapy for invasive bladder cancer are controversial issues. The purpose of this study was the evaluation of neo-adjuvant M-VAC chemotherapy and bladder preservation in patients with locally advanced transitional cell carcinoma of the bladder. PATIENTS AND METHODS: Eighty-seven consecutive evaluable patients with T2-T4aNxM0 TCC of the bladder were treated with three cycles of neo-adjuvant M-VAC chemotherapy. After three cycles of M-VAC, 42 patients had TURB alone, 13 patients underwent partial cystectomy, and 32 patients were to undergo radical cystectomy. RESULTS: Forty (51%) patients were T0 at the TURB following M-VAC. Thirty (71%) patients who had chemotherapy and TURB alone are alive; at a median follow-up of 54+ months (8(+)-109+). Twenty-four (57%) have maintained an intact bladder. Of 13 responding patients with monofocal lesions who underwent partial cystectomy, 8 patients (62%) are alive with a functioning bladder, at a median follow-up of 80+ months (16-107+ months). At a follow-up of 32 months (7-121+ months), 20 (63%) patients in the radical cystectomy group are alive. In patients who had downstaging to T0 or superficial disease, median follow-up is 55 months (10-121+ months) and five-year survival is 71%. Patients who failed to respond (T2 or greater after chemotherapy), at a median follow-up of 24 months (7-103+ months), had five-year survival of only 29%. CONCLUSIONS: Bladder sparing in selected patients on the basis of response to neo-adjuvant chemotherapy is a feasible approach which must be confirmed in prospective randomized trials.

Adult↗