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L Maffioli

Publications and source records attributed to L Maffioli.

43 records · Page 3Linked to original sources

Experience with palliative [131I]metaiodobenzylguanidine therapy in advanced neuroblastoma.

Our experience with palliative [131I]metabenzylguanidine (131I-MIBG) therapy in 7 patients (6 children and 1 adult) affected by advanced neuroblastoma is reported. All patients (classified as IV stage) showed a progression following initial intensive therapy, including chemotherapy and, in some cases, hemi-body irradiation and surgery for their primary tumor. 131I-MIBG activity ranged for a single course between 2.77 GBq to 5.55 GBq on the basis of age, intensity of uptake, and the hematological assessment. Four patients received only one course of therapy due to progressive disease (2), early death (1) or persistent thrombocytopenia unrelated to 131I-MIBG therapy (1). Two patients received two courses and showed a partial response lasting 4 months and stable disease lasting 3 months respectively. Therapy was thereafter discontinued due to progression. One patient received 4 courses of therapy (cumulative activity = 19.61 GBq) in 5 months. A partial response for 9 months in the bone metastases was documented, but the therapy was discontinued due to persistent thrombocytopenia (58,000 plts/microL) lasting 4 months. Thrombocytopenia was the major side-effect, occurring in 5/7 patients over 8 courses of therapy for a mean period of 37 days (7-120 d). Thus, in our experience thrombocytopenia is the major factor limiting the therapeutic effect of 131I-MIBG therapy in palliative treatment.

3-Iodobenzylguanidine↗

[131I]metaiodobenzylguanidine therapy in paraganglioma.

Our experience with [131I]metaiodobenzylguanidine (131I-MIBG) therapy in a 10 year old boy is reported. At disease onset, in May 1988, this boy presented a large mass in the upper left abdominal quadrant, which was resected with a histopathological diagnosis of extra-adrenal malignant pheochromocytoma (paraganglioma). He subsequently underwent two further surgical resections and chemotherapy. When 131I-MIBG therapy was started, in June 1990, skeletal and abdominal metastases were present. These localizations were revealed by 131I-MIBG scans and confirmed by x-ray examination. At present 6 courses of therapy have been performed with a cumulative activity of 29.6 GBq. Side-effects have been limited to vomiting and mild thrombocytopenia, lasting 2 weeks during the second course of therapy. After 15 months of therapy, a progressive reduction of MIBG uptake, coupled with a stabilization of the lythic lesions, has been observed.

3-Iodobenzylguanidine↗

[131I]metaiodobenzylguanidine therapy in carcinoid tumors.

Our experience with [131I]metaiodobenzylguanidine (131I-MIBG) therapy in two patients with carcinoid tumor is described. These patients were selected because of multiple areas of uptake on 131I-MIBG scan, consistent with the extent of the disease. Both patients presented diarrhea and liver metastases. Para-aortical lymphonodes and skeletal metastases were present in the first and the second patient, respectively. Previous treatment involved r-alpha-interferon, surgery or radiotherapy. In both cases 131I-MIGB therapy was started in December 1990 and is still continuing. No haematologic or hepatic side-effects have been observed. Mild hypotension (90/60 mmHg) occurred in one patient during the first course of therapy and was resolved by corticoid treatment. A stabilization of disease and a progressive reduction of diarrhea have been observed in both patients. In the second patient an initial decrease in liver metastases was confirmed by ultrasonography 7 months after the beginning of therapy.

3-Iodobenzylguanidine↗

Prone scintimammography in patients with non-palpable breast lesions.

Non-palpable breast lesions are a clinical problem due to the low specificity of mammography and the resulting difficulty in choosing the type and extent of surgery. Twenty-four patients with non-palpable mammographic lesions underwent prone scintimammography after the i.v. injection of 740 MBq of 99m Tc-SestaMIBI (MIBI). For this purpose, we designed a special bed which allows the widest exposure of the breast to the detector and better visualisation of deep mammary tissue without interference from intra-thoracic activity. The day after the scintigraphy, all patients underwent quadrantectomy or a more limited excision. The specimens were X-rayed to check the presence of mammographic microcalcifications or opacities. All surgical specimens were histologically evaluated. The mammographic and scintigraphic findings were compared with the histological ones. Under these conditions, we observed that the MIBI scan has a good specificity (90%) but low sensitivity (50%) for this selected population. When the MIBI scan was positive, the probability of breast cancer was very high (positive predictive value of the test = 88%) as a consequence, a wider excision would be the most accurate surgical choice. On the other hand, if the MIBI scan is normal, the high number of false negative results does not allow any final diagnosis (negative predictive value of the test = 56%). The preliminary results of this work suggest that radionuclide imaging can help the surgeon in surgical planning.

Adult↗

[Nuclear medicine approach for the detection and characterization of liver metastasis].

Nuclear Medicine procedures include in vitro techniques able to detect and characterize liver metastases. Among the in vitro applications, circulating tumour markers level determination provides information about the response to therapy and the presence of active disease. While after a successful antineoplastic treatment the serum biological marker level usually falls, a progressive increase represents an alarm signal of occult/residual tumour or metastatic dissemination. However, this method is not able to identify the site of the lesion, therefore complementary imaging techniques are needed to confirm or exclude the diagnostic suspicion. The main advantages of the in vitro methods are the low cost and, consequently, the possibility of periodically checking of tumour activity. The in vivo nuclear medicine techniques are usually performed as second level test. In fact, they can play a role in detecting and characterizing hepatic metastases when radiological methods are inconclusive or when selected tumour seeking agents (i.e. radiolabelled antibodies, radioiodinated mIBG, Octreotide, etc.) can be used. Moreover, the introduction of PET procedures has provided physicians with a useful tool for the evaluation of tumour behaviour (glucose consumption, proteic, synthesis, receptor expression). A further significant diagnostic improvement is represented by the recent introduction of the multimodality co-registration of images (including CT scan, MRI, SPET, PET). The fusion imaging allows a superimposition of the functional and metabolic information to the morphological one.

Biomarkers, Tumor↗