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A Franceschi

Publications and source records attributed to A Franceschi.

3 recordsLinked to original sources

Blocking effect of human serum but not of cerebrospinal fluid on ricin A chain immunotoxin potentiation by monensin or carrier protein-monensin conjugates.

The potentiation of monoclonal antibody/ligand toxin (immunotoxin) cytotoxicity by the ionophore monensin (Mo) or by human serum albumin-monensin (HSA-Mo) conjugates was investigated. Since disulfide cross-linked HSA-Mo (HSA-SPDP-Mo) is rapidly inactivated by human serum (M. Colombatti et al., Cancer Res., 50: 1385-1391, 1990), we synthesized thioether cross-linked HSA-Mo conjugates (HSA-SIA-Mo). HSA-SIA-Mo is resistant to treatment with reducing agents (e.g., glutathione, dithiothreitol) and shows potentiating activity identical to that of Mo or of HSA-SPDP-Mo, enhancing immunotoxin (IT) cytotoxicity 45-35,000-fold. Human leukemic and tumor cell lines are highly sensitive to treatment with IT in combination with Mo, HSA-SPDP-Mo, or HSA-SIA-Mo (concentration required to inhibit protein synthesis by 50%, 10(-10)-2.5 x 10(-13) M). IT potentiation by both types of HSA-Mo conjugates, however, is inhibited by whole human serum. In contrast, human cerebrospinal fluid has no effect on the potentiation of IT by Mo or HSA-Mo conjugates. The serum blocking factors reside mostly in a Mr 40,000-90,000 protein fraction. Serum components of low molecular weight (less than 10,000) show no detectable effect upon the stability of HSA-Mo conjugates. The toxicity of HSA-SIA-Mo in vivo was investigated by intrathecal injections in rats. Concentrations of up to 60 micrograms/kg can be injected into the brain with only transient neurological sequelae. We therefore conclude that if the systemic delivery of HSA-Mo conjugates for the potentiation of ricin A chain-IT presents some limitations due to the blocking effect of serum, the application of HSA-Mo conjugates in combination with ricin A chain-IT for regional tumor therapy in the brain appears more promising.

Ammonium Chloride

[Pain and extracorporeal lithotripsy for calculi of the upper urinary tract].

This study evaluates, 1) the pain induced by extracorporeal shock wave lithotripsy for renal stones using a piezo-electric shock wave lithotriptor (EDAP LT 01) and 2) the predictive factors for severe pain leading to an indication for analgesia. The relationship between extracorporeal shock wave lithotripsy intensity and pain intensity is evaluated by a numerical scale at the beginning of the session (T0), after 15 min (T15) and after 30 min (T30). At the end of the session, patients are categorized by one of us using a three-point scale which integrates the pain and the maximum tolerable intensity. These two types of evaluation are well correlated. Successive levels of stimulation are well discriminated by patients. Habituation is observed during the session for patients with low-level pain. In 28% of the patients, the intensity of pain required analgesia. Pain cannot be predicted by age, anxiety state, side of the stones and size, diameter of the contact between patient and convergence dome. In contrast, three parameters are correlated with the pain level: The L1 distance of renal parenchyma and the L2 distance skin-stone crossed by the piezoelectric waves, the size of the stone. The superior caliceal, middle caliceal and pelvic stones are significantly the most painful. These predictive variables can be easily measured before extracorporeal shock wave lithotripsy.

Adult