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Stefano Ferrari

Publications and source records attributed to Stefano Ferrari.

59 records · Page 4Linked to original sources

Gene therapy approaches for epidermolysis bullosa.

Human epidermis consists of a stratified epithelium mainly composed of keratinocytes and relies on a stem cell compartment to undergo constant regeneration. Genetic mutations affecting the capacity of basal keratinocytes to adhere firmly to the epidermal basement membrane lead to severe, and very often lethal, blistering disorders known as epidermolysis bullosa. Gene therapy represents a promising potential treatment for these devastating inherited disorders. Human epidermal stem cells can be cultivated ex vivo and stably transduced with integrating gene transfer vectors, allowing genetic and, more important, phenotypic correction of the adhesion properties of keratinocytes. Here we will review some of the issues that need to be addressed to make gene therapy a realistic treatment for these disorders, such as (1) which cells should be targeted, (2) which approach (in vivo or ex vivo) should be chosen, and (3) which gene transfer vector (retrovirus, lentivirus, or integrating nonviral strategies) should be used for stable gene correction. In the last 10 years, many reports have shown that gene transfer approaches to target epidermal stem cells are feasible and able to restore the adhesion properties of primary keratinocytes from patients with epidermolysis bullosa. In addition, tremendous progress has been achieved in culturing epidermal stem cells and generating sheets of stratified epithelium for permanent coverage of full-thickness burns. Gene modification of stem cells in combination with advanced tissue-engineering techniques could therefore represent a realistic option for patients with epidermolysis bullosa.

Epidermolysis Bullosa↗

Prognostic significance of serum lactate dehydrogenase in osteosarcoma of the extremity: experience at Rizzoli on 1421 patients treated over the last 30 years.

AIMS: The study evaluated the correlation between pretreatment serum lactate dehydrogenase (LDH) levels with the stage of disease and its clinical prognostic value. METHODS: Pretreatment serum LDH of 1421 patients with osteosarcoma of the extremity were assessed to investigate whether the enzyme correlates with the stage of the tumor. In 860 assessable patients with localized disease, treated according to 10 different protocols of adjuvant (four) and neoadjuvant chemotherapy (six), we also evaluated the correlation between the serum levels of LDH and outcome. RESULTS: According to the stage of disease, the rate of high serum level of LDH was significantly higher in 199 patients with metastatic disease at presentation than in 1222 patients with localized disease (36.6% vs 18.8%; P < 0.0001). In these patients, the 5-year disease-free survival was 39.5% for patients with high LDH levels and 60% for those with normal values. The 5-year disease-free survival correlated with serum level of LDH at univariate and multivariate analysis, although it lost its significance when histologic response to chemotherapy was also considered in the multivarite analysis. CONCLUSIONS: Serum LDH has a prognostic value and it should be considered in evaluating the results of therapeutic trials of chemotherapy, as well as defining a category of patients at high-risk of relapse to be treated with a more aggressive regimen.

Adolescent↗

Prognostic significance of serum alkaline phosphatase in osteosarcoma of the extremity treated with neoadjuvant chemotherapy: recent experience at Rizzoli Institute.

In 560 patients with high-grade osteosarcoma of the extremity treated with 5 different protocols of neoadjuvant chemotherapy at a single institution between 1983 and 1995, the pre-treatment serum alkaline phosphatase (SAP) was examined to evaluate whether the enzyme levels had a clinical value in predicting the course of the disease. SAP was normal in 302 (54%) patients and high in 258 (46%). High levels of SAP was observed significantly and independently more frequently in male patients over 14-years-old, and in tumours larger than 150 ml and of osteoblastic subtypes. The 5-year event-free survival (EFS) and overall survival (OS) for all patients were respectively 60 and 68%. With multivariate analysis only two factors were independently correlated with the 5-year EFS: SAP levels (p=0.002) and the grade of chemotherapy-induced necrosis (p=0.0001). The authors conclude that in planning randomized clinical trials of neoadjuvant treatment for osteosarcoma, patients should be stratified according to SAP levels, and that when tailoring the aggressiveness of postoperative chemotherapy to the risk of relapse, in addition to the histologic response to preoperative treatment, the SAP levels should also be considered.

Adolescent↗

Delayed methotrexate clearance in osteosarcoma patients treated with multiagent regimens of neoadjuvant chemotherapy.

We retrospectively studied 790 patients with osteosarcoma treated by neoadjuvant chemotherapy at a single institution between 1983 and 2000 according to different protocols, all including a high dose of methotrexate (HDMTX), to determine the incidence of delayed clearance of HDMTX, and identify patients at high risk for this kind of toxicity. Chemotherapy was administered according to 7 different protocols, successively activated, in which HDMTX was associated with other drugs (cisplatin, adriamycin, ifosfamide) in different combinations. The doses of MTX ranged between 7.5 to 12 g/m(2) and patients received from 1 to 10 cycles with MTX for a total number of 4219 cycles. The incidence of delayed clearance of MTX (plasma values of the drug at 24 h >5 microM/l) was 8.6% per patient and 1.6% per cycle of treatment. In 51 cases the delayed clearance of MTX was "mild" (plasma values of MTX at 24 h between 5 and 19 microM/l) and in 18 cases "severe" (plasma values of MTX at the 24 h >20 microM/l). The delayed clearance of MTX was significantly correlated with the age of patients (16% for patients over 20 vs. 6% for younger patients: p=0.0001) and was significantly more frequent during the first cycles of chemotherapy (7% during the first 3 cycles of treatment vs. 2% during subsequent cycles). There was also a significant correlation (p=0.0001) between the plasma values of MTX at the end of the infusion and at 18 h and the delayed clearance of the drug. In addition to support treatment by increased hydration and sodium bicarbonate, all patients who experienced the delayed clearance of MTX were treated solely with a high dose of leucovorin (HDLV), which was started at the first 18 h. Significant neutropenia and/or thrombocythopenia, increase of serum creatinine, mucositis of varying degrees and vomiting occurred in most cases of severe delayed clearance of MTX, but all patients completely recovered. We conclude that in spite of adequate hydration and urine alkalinization and the use of pharmacokinetically guided leucoverin rescue, delayed clearance of MTX may still occur and that its incidence is higher in older patients and during the first cycles of treatment. However, if "rescue" treatment is started early, the consequent morbility is tolerable and these patients can be rescued using only HDLV, without the need for extracorporeal removal.

Adolescent↗

Recovery of stromal stem cells in bone sarcoma patients after chemotherapy: implication for cell-based therapy in bone defect reconstruction.

Bone sarcomas, such as osteosarcoma (OS) or Ewing sarcoma (ES), frequently arise in the intramedullary region of long bones. Patients affected by bone sarcomas are treated with preoperative aggressive chemotherapy immediately after diagnosis. After chemotherapy, patients undergo surgery that frequently entails the excision of wide bone segments. If a large segment of the bone is lost (defined as a critical defect) the patient undergoes bone reconstruction. Because bone marrow derived stromal stem cells (SSC) offer great promise for cell-based regenerative medicine in bone reconstruction, we investigated whether SSC could be isolated from chemotherapy-treated bone sarcoma patients. We also investigated whether chemotherapy modified SSC differentiation capability. We studied 9 SSC derived from OS and ES patients that had undergone chemotherapy and 5 SSC derived from bone sarcoma patients that had not undergone chemotherapy. SSC could be obtained from all the patients analyzed regardless of whether the patients received chemotherapy or not. Our results also showed that post-chemotherapy SSC can be cultured and expanded ex vivo, these cells retained the ability to differentiate toward the osteogenic lineage in vitro. In conclusion, our results support that SSC cells can be obtained from bone sarcoma patients that undergo chemotherapy and suggest that SSC can be used for cell-based bone reconstruction techniques in bone sarcoma patients treated with preoperative chemotherapy.

Adolescent↗