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F A Garofalo

Publications and source records attributed to F A Garofalo.

14 recordsLinked to original sources

Effects of mass transfer and reaction kinetics on serum cholesterol depletion rates of free and immobilized Pseudomonas pictorum.

Pseudomonas pictorum in free or immobilized form can deplete serum cholesterol. The reaction kinetics control the global rate of cholesterol depletion during the initial part of free P. pictorum fermentation. Then, mass transfer takes control of the global rate. In this part of the fermentation, the global rate is first order with respect to the cholesterol concentration. The halftime was 330 min. The global rate is zero order with respect to the bacterial concentration. The activation energy was 83 kJ/mol. These results are consistent with the aqueous cholesterol diffusion model. The open pore agar microcapsule experimental effective diffusivity for lipoproteins at 37 degrees C was 6.7 x 10(-11) m2/s. Mass transfer across the microcapsule was not the limiting factor for the global rate.

Agar

Enhanced cavernometry: procedure for the diagnosis of venogenic impotence.

A technique of cavernometry to diagnose corporovenous leakage (CVL) is described. The criterion used to define CVL was a corporeal infusion rate greater than 60 ml/min after the intracorporeal injection of 60 mg papaverine or 30 mg papaverine and 1 mg phentolamine. Alpha blockade in addition to papaverine decreased the incidence of corporovenous leakage.

Adolescent

Immobilization of P. pictorum in open pore agar, alginate and polylysine-alginate microcapsules for serum cholesterol depletion.

P. pictorum depletes serum cholesterol levels upon induction of the involved enzymes. Analysis of the fermentation broth shows cholesterol esterase and cholesterol oxidase activity. P. pictorum was immobilized in alginate beads, polylysine microcapsules and open pore agar beads. The pore size of the former two was too small to allow a barrier free mass transfer of lipoproteins. However, open pore agar beads depleted serum cholesterol. The rates of depletion were similar to those of free P. pictorum, suggesting a barrier free mass transfer. Furthermore, open pore agar beads could effectively retain P. pictorum, and no leakage was detected.

Agar