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Biomedical subjects

P Macchi

Publications and source records attributed to P Macchi.

22 records · Page 2Linked to original sources

[Adsorption of insulin directly added to infusion bottles].

A study of insulin adsorption to infusion system was undertaken in the situation of direct addition of insulin alone in the infusion bottles, with use of 125I-labelled insulin and non labelled insulin. The infusion solutions tested were glucose solutions (5, 10, 15 and 30%). There is an important adsorption of insulin (75%) to the infusion system when the insulin concentration in the solution is low. The effluent insulin is not degraded. The glucose content of the solution does not influence the phenomenon. Adsorption of insulin decreases when the insulin concentration in the solution is increased and a plateau is reached starting from an insulin concentration in the solution of about 400 ng/ml; at higher concentrations, 80 to 90% of insulin that has been initially put in the bottle is recovered. Since the insulin concentrations in the solutions used in clinical practice are higher than 400 ng/ml, this adsorption phenomenon can be neglected and therefore can explain the efficiency of this mode of insulin-therapy. Kinetics of effluent insulin is a plateau, stable all along the infusion. Thus, direct addition of insulin alone into infusion bottles is an efficient and controlled mode of insulin-therapy if a minimal insulin concentration in the infused solution has been reached.

Adsorption↗

[Adsorption of insulin introduced directly into perfusion bottles].

A study of insulin adsorption to infusion system was undertaken in the situation of direct addition of insulin alone in the infusion bottles, with use of 125I-labelled insulin and non labelled insulin. The infusion solutions tested were glucose solutions (5, 10, 15 and 30%). There is an important adsorption of insulin (75%) to the infusion system when the insulin concentration in the solution is low. The effluent insulin is not degraded. The glucose content of the solution does not influence the phenomenon. Adsorption of insulin decreases when the insulin concentration in the solution is increased and a plateau is reached starting from an insulin concentration in the solution of about 400 ng/ml; at higher concentrations, 80 to 90% of insulin that has been initially put in the bottle is recovered. Since the insulin concentrations in the solutions used in clinical practice are higher than 400 ng/ml, this adsorption phenomenon can be neglected and therefore can explain the efficiency of this mode of insulin-therapy. Kinetics of effluent insulin is a plateau, stable all along the infusion. Thus, direct addition of insulin alone into infusion bottles is an efficient and controlled mode of insulin-therapy if a minimal insulin concentration in the infused solution has been reached.

Adsorption↗

[Technic of continuous axillary plexus block].

A technique of continuous axillary brachial plexus block, using an epidural Tuohy needle and an epidural catheter, is described. Studies were carried out in ten patients using this technique with bupivacaine as a local anesthetic drug. The catheter remained indwelling during a mean period of five days. Good analgesia was obtained in nine out of the ten patients. Thus this technique allows pain-free postoperative period in hand surgery.

Axilla↗

[The mechanisms of binding of active drugs to polyalkylcyanoacrylate nanoparticles].

Studies on colloidal carriers such as nanoparticles are generally based on the evaluation of the optimal amount of drug linked to the polymer matrix. This figure is obtained through the mathematical treatment of adsorption/incorporation isotherms. However, results of the literature show an obvious heterogeneity in the isotherms mathematical treatment. A theoretical review of the potential models of the sorption process of drugs will be used to compare the results previously published in the literature. An experimental and systematic approach will be proposed in order to compare more easily the studies from the different research teams and to evaluate the interactions between drugs and colloidal carriers.

Chemistry, Pharmaceutical↗