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Dive into the research topics where Sarah Marktel is active.

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Featured researches published by Sarah Marktel.


The New England Journal of Medicine | 2009

Gene Therapy for immunodeficiency due to Adenosine Deaminase Deficiency

Alessandro Aiuti; Federica Cattaneo; Stefania Galimberti; Ulrike Benninghoff; Barbara Cassani; Luciano Callegaro; Samantha Scaramuzza; Grazia Andolfi; Massimiliano Mirolo; Immacolata Brigida; Antonella Tabucchi; Filippo Carlucci; Martha M. Eibl; Memet Aker; Shimon Slavin; Hamoud Al-Mousa; Abdulaziz Al Ghonaium; Alina Ferster; Andrea Duppenthaler; Luigi D. Notarangelo; Uwe Wintergerst; Rebecca H. Buckley; Marco Bregni; Sarah Marktel; Maria Grazia Valsecchi; Pier Luca Rossi; Fabio Ciceri; Miniero R; Claudio Bordignon; Maria Grazia Roncarolo

BACKGROUND We investigated the long-term outcome of gene therapy for severe combined immunodeficiency (SCID) due to the lack of adenosine deaminase (ADA), a fatal disorder of purine metabolism and immunodeficiency. METHODS We infused autologous CD34+ bone marrow cells transduced with a retroviral vector containing the ADA gene into 10 children with SCID due to ADA deficiency who lacked an HLA-identical sibling donor, after nonmyeloablative conditioning with busulfan. Enzyme-replacement therapy was not given after infusion of the cells. RESULTS All patients are alive after a median follow-up of 4.0 years (range, 1.8 to 8.0). Transduced hematopoietic stem cells have stably engrafted and differentiated into myeloid cells containing ADA (mean range at 1 year in bone marrow lineages, 3.5 to 8.9%) and lymphoid cells (mean range in peripheral blood, 52.4 to 88.0%). Eight patients do not require enzyme-replacement therapy, their blood cells continue to express ADA, and they have no signs of defective detoxification of purine metabolites. Nine patients had immune reconstitution with increases in T-cell counts (median count at 3 years, 1.07x10(9) per liter) and normalization of T-cell function. In the five patients in whom intravenous immune globulin replacement was discontinued, antigen-specific antibody responses were elicited after exposure to vaccines or viral antigens. Effective protection against infections and improvement in physical development made a normal lifestyle possible. Serious adverse events included prolonged neutropenia (in two patients), hypertension (in one), central-venous-catheter-related infections (in two), Epstein-Barr virus reactivation (in one), and autoimmune hepatitis (in one). CONCLUSIONS Gene therapy, combined with reduced-intensity conditioning, is a safe and effective treatment for SCID in patients with ADA deficiency. (ClinicalTrials.gov numbers, NCT00598481 and NCT00599781.)


Leukemia | 2015

Sirolimus-based graft-versus-host disease prophylaxis promotes the in vivo expansion of regulatory T cells and permits peripheral blood stem cell transplantation from haploidentical donors

Jacopo Peccatori; Alessandra Forcina; D Clerici; Roberto Crocchiolo; Luca Vago; Maria Teresa Lupo Stanghellini; Maddalena Noviello; Carlo Messina; A. Crotta; Andrea Assanelli; Sarah Marktel; Sven Olek; Sara Mastaglio; Fabio Giglio; L Crucitti; A Lorusso; Elena Guggiari; F Lunghi; M G Carrabba; M. Tassara; Manuela Battaglia; Alessandra Ferraro; M R Carbone; Giacomo Oliveira; Maria Grazia Roncarolo; Silvano Rossini; Massimo Bernardi; Consuelo Corti; Magda Marcatti; Francesca Patriarca

Hematopoietic stem cell transplantation (HSCT) from human leukocyte antigen (HLA) haploidentical family donors is a promising therapeutic option for high-risk hematologic malignancies. Here we explored in 121 patients, mostly with advanced stage diseases, a sirolimus-based, calcineurin-inhibitor-free prophylaxis of graft-versus-host disease (GvHD) to allow the infusion of unmanipulated peripheral blood stem cell (PBSC) grafts from partially HLA-matched family donors (TrRaMM study, Eudract 2007-5477-54). Conditioning regimen was based on treosulfan and fludarabine, and GvHD prophylaxis on antithymocyte globulin Fresenius (ATG-F), rituximab and oral administration of sirolimus and mycophenolate. Neutrophil and platelet engraftment occurred in median at 17 and 19 days after HSCT, respectively, and full donor chimerism was documented in patients’ bone marrow since the first post-transplant evaluation. T-cell immune reconstitution was rapid, and high frequencies of circulating functional T-regulatory cells (Treg) were documented during sirolimus prophylaxis. Incidence of acute GvHD grade II–IV was 35%, and occurrence and severity correlated negatively with Treg frequency. Chronic GvHD incidence was 47%. At 3 years after HSCT, transpant-related mortality was 31%, relapse incidence 48% and overall survival 25%. In conclusion, GvHD prophylaxis with sirolimus–mycophenolate–ATG-F–rituximab promotes a rapid immune reconstitution skewed toward Tregs, allowing the infusion of unmanipulated haploidentical PBSC grafts.


Embo Molecular Medicine | 2016

Intra-arterial transplantation of HLA-matched donor mesoangioblasts in Duchenne muscular dystrophy

Giulio Cossu; Stefano C. Previtali; Sara Napolitano; Maria Pia Cicalese; Francesco Saverio Tedesco; Francesca Nicastro; Maddalena Noviello; Urmas Roostalu; Maria Grazia Natali Sora; Marina Scarlato; Maurizio De Pellegrin; Claudia Godi; Serena Giuliani; Francesca Ciotti; Rossana Tonlorenzi; Isabella Lorenzetti; Cristina Rivellini; Sara Benedetti; Roberto Gatti; Sarah Marktel; Benedetta Mazzi; Andrea Tettamanti; Martina Ragazzi; Maria Adele Imro; Giuseppina Marano; Alessandro Ambrosi; Rossana Fiori; Maria Pia Sormani; Chiara Bonini; Massimo Venturini

Intra‐arterial transplantation of mesoangioblasts proved safe and partially efficacious in preclinical models of muscular dystrophy. We now report the first‐in‐human, exploratory, non‐randomized open‐label phase I–IIa clinical trial of intra‐arterial HLA‐matched donor cell transplantation in 5 Duchenne patients. We administered escalating doses of donor‐derived mesoangioblasts in limb arteries under immunosuppressive therapy (tacrolimus). Four consecutive infusions were performed at 2‐month intervals, preceded and followed by clinical, laboratory, and muscular MRI analyses. Two months after the last infusion, a muscle biopsy was performed. Safety was the primary endpoint. The study was relatively safe: One patient developed a thalamic stroke with no clinical consequences and whose correlation with mesoangioblast infusion remained unclear. MRI documented the progression of the disease in 4/5 patients. Functional measures were transiently stabilized in 2/3 ambulant patients, but no functional improvements were observed. Low level of donor DNA was detected in muscle biopsies of 4/5 patients and donor‐derived dystrophin in 1. Intra‐arterial transplantation of donor mesoangioblasts in human proved to be feasible and relatively safe. Future implementation of the protocol, together with a younger age of patients, will be needed to approach efficacy.


Embo Molecular Medicine | 2010

Correction of β-thalassemia major by gene transfer in haematopoietic progenitors of pediatric patients

Emanuela Anna Roselli; Riccardo Mezzadra; Marta Claudia Frittoli; Giulietta Maruggi; Erika Biral; Fulvio Mavilio; Fabrizio Mastropietro; Antonio Amato; Giovanni Tonon; Chiara Refaldi; Maria Domenica Cappellini; Marco Andreani; Guido Lucarelli; Maria Grazia Roncarolo; Sarah Marktel; Giuliana Ferrari

β‐Thalassemia is a common monogenic disorder due to mutations in the β‐globin gene and gene therapy, based on autologous transplantation of genetically corrected haematopoietic stem cells (HSCs), holds the promise to treat patients lacking a compatible bone marrow (BM) donor. We recently showed correction of murine β‐thalassemia by gene transfer in HSCs with the GLOBE lentiviral vector (LV), expressing a transcriptionally regulated human β‐globin gene. Here, we report successful correction of thalassemia major in human cells, by studying a large cohort of pediatric patients of diverse ethnic origin, carriers of different mutations and all candidates to BM transplantation. Extensive characterization of BM‐derived CD34+ cells before and following gene transfer shows the achievement of high frequency of transduction, restoration of haemoglobin A synthesis, rescue from apoptosis and correction of ineffective erythropoiesis. The procedure does not significantly affect the differentiating potential and the relative proportion of haematopoietic progenitors. Analysis of vector integrations shows preferential targeting of transcriptionally active regions, without bias for cancer‐related genes. Overall, these results provide a solid rationale for a future clinical translation.


Haematologica | 2009

Type 1 regulatory T cells are associated with persistent split erythroid/lymphoid chimerism after allogeneic hematopoietic stem cell transplantation for thalassemia

Giorgia Serafini; Marco Andreani; Manuela Testi; Mariarosa Battarra; Andrea Bontadini; Eika Biral; Katharina Fleischhauer; Sarah Marktel; Guido Lucarelli; Maria Grazia Roncarolo; Rosa Bacchetta

Allogeneic hematopoietic stem cell transplantation can cure thalassemia major. Persistent mixed chimerism develops in around 10% of transplanted thalassemic patients, but the biological mechanisms underlying this phenomenon are poorly understood. The findings of this study suggest that interleukin-10 and type 1 regulatory cells are associated with persistent mixed chimerism and may play an important role in sustaining long-term tolerance. Background Thalassemia major can be cured with allogeneic hematopoietic stem cell transplantation. Persistent mixed chimerism develops in around 10% of transplanted thalassemic patients, but the biological mechanisms underlying this phenomenon are poorly understood. Design and Methods The presence of interleukin-10-producing T cells in the peripheral blood of eight patients with persistent mixed chimerism and five with full donor chimerism was investigated. A detailed characterization was then performed, by T-cell cloning, of the effector and regulatory T-cell repertoire of one patient with persistent mixed chimerism, who developed stable split erythroid/lymphoid chimerism after a hematopoietic stem cell transplant from an HLA-matched unrelated donor. Results Higher levels of interleukin-10 were produced by peripheral blood mononuclear cells from patients with persistent mixed chimerism than by the same cells from patients with complete donor chimerism or normal donors. T-cell clones of both host and donor origin could be isolated from the peripheral blood of one, selected patient with persistent mixed chimerism. Together with effector T-cell clones reactive against host or donor alloantigens, regulatory T-cell clones with a cytokine secretion profile typical of type 1 regulatory cells were identified at high frequencies. Type 1 regulatory cell clones, of both donor and host origin, were able to inhibit the function of effector T cells of either donor or host origin in vitro. Conclusions Overall these results suggest that interleukin-10 and type 1 regulatory cells are associated with persistent mixed chimerism and may play an important role in sustaining long-term tolerance in vivo. These data provide new insights into the mechanisms of peripheral tolerance in chimeric patients and support the use of cellular therapy with regulatory T cells following hematopoietic stem cell transplantation.


Biology of Blood and Marrow Transplantation | 2015

Post-transplantation Cyclophosphamide and Sirolimus after Haploidentical Hematopoietic Stem Cell Transplantation Using a Treosulfan-based Myeloablative Conditioning and Peripheral Blood Stem Cells

Nicoletta Cieri; Raffaella Greco; Lara Crucitti; Mara Morelli; Fabio Giglio; Giorgia Levati; Andrea Assanelli; Matteo Carrabba; Laura Bellio; Raffaella Milani; Francesca Lorentino; Maria Teresa Lupo Stanghellini; Tiago De Freitas; Sarah Marktel; Massimo Bernardi; Consuelo Corti; Luca Vago; Chiara Bonini; Fabio Ciceri; Jacopo Peccatori

Haploidentical hematopoietic stem cell transplantation (HSCT) performed using bone marrow (BM) grafts and post-transplantation cyclophosphamide (PTCy) has gained much interest for the excellent toxicity profile after both reduced-intensity and myeloablative conditioning. We investigated, in a cohort of 40 high-risk hematological patients, the feasibility of peripheral blood stem cells grafts after a treosulfan-melphalan myeloablative conditioning, followed by a PTCy and sirolimus-based graft-versus-host disease (GVHD) prophylaxis (Sir-PTCy). Donor engraftment occurred in all patients, with full donor chimerism achieved by day 30. Post-HSCT recovery of lymphocyte subsets was broad and fast, with a median time to CD4 > 200/μL of 41 days. Cumulative incidences of grade II to IV and III-IV acute GVHD were 15% and 7.5%, respectively, and were associated with a significant early increase in circulating regulatory T cells at day 15 after HSCT, with values < 5% being predictive of subsequent GVHD occurrence. The 1-year cumulative incidence of chronic GVHD was 20%. Nonrelapse mortality (NRM) at 100 days and 1 year were 12% and 17%, respectively. With a median follow-up for living patients of 15 months, the estimated 1-year overall and disease-free survival (DFS) was 56% and 48%, respectively. Outcomes were more favorable in patients who underwent transplantation in complete remission (1-year DFS 71%) versus patients who underwent transplantation with active disease (DFS, 34%; P = .01). Overall, myeloablative haploidentical HSCT with peripheral blood stem cells (PBSC) and Sir-PTCy is a feasible treatment option: the low rates of GVHD and NRM as well as the favorable immune reconstitution profile pave the way for a prospective comparative trial comparing BM and PBSC in this specific transplantation setting.


Blood | 2015

Generation of human memory stem T cells after haploidentical T-replete hematopoietic stem cell transplantation.

Nicoletta Cieri; Giacomo Oliveira; Raffaella Greco; Mattia Forcato; Cristian Taccioli; Beatrice Cianciotti; Veronica Valtolina; Maddalena Noviello; Luca Vago; Attilio Bondanza; Francesca Lunghi; Sarah Marktel; Laura Bellio; Claudio Bordignon; Silvio Bicciato; Jacopo Peccatori; Fabio Ciceri; Chiara Bonini

Memory stem T cells (TSCM) have been proposed as key determinants of immunologic memory. However, their exact contribution to a mounting immune response, as well as the mechanisms and timing of their in vivo generation, are poorly understood. We longitudinally tracked TSCM dynamics in patients undergoing haploidentical hematopoietic stem cell transplantation (HSCT), thereby providing novel hints on the contribution of this subset to posttransplant immune reconstitution in humans. We found that donor-derived TSCM are highly enriched early after HSCT. We showed at the antigen-specific and clonal level that TSCM lymphocytes can differentiate directly from naive precursors infused within the graft and that the extent of TSCM generation might correlate with interleukin 7 serum levels. In vivo fate mapping through T-cell receptor sequencing allowed defining the in vivo differentiation landscapes of human naive T cells, supporting the notion that progenies of single naive cells embrace disparate fates in vivo and highlighting TSCM as relevant novel players in the diversification of immunological memory after allogeneic HSCT.


Bone Marrow Transplantation | 2008

Second hematopoietic SCT in patients with thalassemia recurrence following rejection of the first graft

J Gaziev; P Sodani; G Lucarelli; Paola Polchi; Sarah Marktel; K Paciaroni; M Marziali; Antonella Isgrò; Maria Domenica Simone; Andrea Roveda; Aldo Montuoro; Alessandro Lanti; C Alfieri; G De Angelis; C Gallucci; Fabio Ciceri; Maria Grazia Roncarolo

There is a substantial incidence of graft failure in patients with thalassemia after myeloablative conditioning regimens especially in class 3 patients in whom its incidence could be as high as 8–38.5%. Most patients with graft failure have recurrence of thalassemic marrow. Historically, results of second transplants for thalassemia were poor because of a high rejection rate and/or increased TRM. Sixteen patients with thalassemia recurrence following rejection of the first graft and with a median age of 9 years (range, 4–20) were given second transplants using BM (n=7) or PBSC (n=9) after preparation with a new treatment protocol. All but two patients received stem cells from the same donor. The median interval between two transplants was 28 months (range, 8–204). The sustained engraftment rate was high (94%) with only one patient having primary graft failure. The probability of overall survival, event-free survival, TRM and graft failure were 79, 79, 16 and 6%, respectively. There were three transplant-related deaths. Thirteen patients are alive with Lansky/Karnofsky score of 100. This intensified treatment protocol was well tolerated with no significant increase in toxicity. The excellent results obtained with this new preparative regimen allow us to recommend it for second transplantation for patients with thalassemia recurrence.


Frontiers in Pharmacology | 2015

Improving the safety of cell therapy with the TK-suicide gene.

Raffaella Greco; Giacomo Oliveira; Maria Teresa Lupo Stanghellini; Luca Vago; Attilio Bondanza; Jacopo Peccatori; Nicoletta Cieri; Sarah Marktel; Sara Mastaglio; Claudio Bordignon; Chiara Bonini; Fabio Ciceri

While opening new frontiers for the cure of malignant and non-malignant diseases, the increasing use of cell therapy poses also several new challenges related to the safety of a living drug. The most effective and consolidated cell therapy approach is allogeneic hematopoietic stem cell transplantation (HSCT), the only cure for several patients with high-risk hematological malignancies. The potential of allogeneic HSCT is strictly dependent on the donor immune system, particularly on alloreactive T lymphocytes, that promote the beneficial graft-versus-tumor effect (GvT), but may also trigger the detrimental graft-versus-host-disease (GvHD). Gene transfer technologies allow to manipulate donor T-cells to enforce GvT and foster immune reconstitution, while avoiding or controlling GvHD. The suicide gene approach is based on the transfer of a suicide gene into donor lymphocytes, for a safe infusion of a wide T-cell repertoire, that might be selectively controlled in vivo in case of GvHD. The herpes simplex virus thymidine kinase (HSV-TK) is the suicide gene most extensively tested in humans. Expression of HSV-TK in donor lymphocytes confers lethal sensitivity to the anti-herpes drug, ganciclovir. Progressive improvements in suicide genes, vector technology and transduction protocols have allowed to overcome the toxicity of GvHD while preserving the antitumor efficacy of allogeneic HSCT. Several phase I-II clinical trials in the last 20 years document the safety and the efficacy of HSV-TK approach, able to maintain its clear value over the last decades, in the rapidly progressing horizon of cancer cellular therapy.


Blood | 2012

Risk of complications during hematopoietic stem cell collection in pediatric sibling donors: a prospective European Group for Blood and Marrow Transplantation Pediatric Diseases Working Party study.

Jan Styczynski; Adriana Balduzzi; Lidia Gil; Myriam Labopin; Rose-Marie Hamladji; Sarah Marktel; M. Akif Yesilipek; Franca Fagioli; Karoline Ehlert; Martina Matulova; Jean-Hugues Dalle; Jacek Wachowiak; Maurizio Miano; Chiara Messina; Miguel Angel Diaz; Christiane Vermylen; Matthias Eyrich; Isabel Badell; Peter Dreger; Jolanta Gozdzik; Daphna Hutt; Jelena Rascon; Giorgio Dini; Christina Peters

We investigated prospectively factors influencing the safety of hematopoietic stem cell (HSC) collection in 453 pediatric donors. The children in the study donated either BM or peripheral blood stem cells (PBSCs) according to center policy. A large variability in approach to donor issues was observed between the participating centers. Significant differences were observed between BM and PBSC donors regarding pain, blood allotransfusion, duration of hospital stay, and iron supplementation; however, differences between the groups undergoing BM vs PBSC donation preclude direct risk comparisons between the 2 procedures. The most common adverse event was pain, reported mainly by older children after BM harvest, but also observed after central venous catheter (CVC) placement for PBSC collection. With regard to severe adverse events, one patient (0.7%) developed a pneumothorax with hydrothorax after CVC placement for PBSC collection. The risk of allotransfusion after BM harvest was associated with a donor age of < 4 years and a BM harvest volume of > 20 mL/kg. Children < 4 years were at higher risk than older children for allotransfusion after BM harvest and there was a higher risk of complications from CVC placement before apheresis. We conclude that PBSC and BM collection are safe procedures in children.

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Fabio Ciceri

Vita-Salute San Raffaele University

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Jacopo Peccatori

Vita-Salute San Raffaele University

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Massimo Bernardi

Vita-Salute San Raffaele University

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Consuelo Corti

Vita-Salute San Raffaele University

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Andrea Assanelli

Vita-Salute San Raffaele University

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Chiara Bonini

Fred Hutchinson Cancer Research Center

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Raffaella Greco

Vita-Salute San Raffaele University

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