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D H Kessel

Publications and source records attributed to D H Kessel.

6 recordsLinked to original sources

In vivo and in vitro photodynamic studies with benzochlorin iminium salts delivered by a lipid emulsion.

Benzochlorin iminium salts (BIs) are hydrophobic photosensitizers based on an octaethylbenzochlorin nucleus that absorb in the near-IR region of the visible spectrum. In these studies the photodynamic activities of the zinc, copper and metal-free BI derivatives were compared in vivo in C3H-HeJ mice bearing a mammary adenocarcinoma tumor line. In vitro studies were also performed with the radiation-induced fibrosarcoma tumor line. An argon-pumped Ti-sapphire laser tuned to deliver light between 710 and 800 nm or an Oriel arc-lamp filtered to deliver broadband light above 590 nm were used as light source. A lipid emulsion was used as the delivery system for sensitizers in all studies. A pronounced solvent dependence was observed for the Q band for each of all iminium salts examined. As an example, the metal-free (BI) derivative had an absorption maximum at 798 nm in dichloromethane and at 727 nm in serum. The action spectra showed a greater PDT response at blue-shifted wavelengths for each of the three iminium salts both in vivo and in vitro. Among the three derivatives, the zinc analog (ZnBI) produced the greatest tumor regression at the low drug/light dose of 0.7 (mumole/kg and 200 J/cm2. These results indicate that iminium salts have characteristics that may make them promising third-generation photosensitizers.

Adenocarcinoma↗

Reaction of the ArsA adenosinetriphosphatase with 2-(4'-maleimidoanilino)naphthalene-6-sulfonic acid.

The oxyanion-translocating ATPase encoded by the plasmid-borne ars operon catalyzes extrusion of antimonials and arsenicals from cells of Escherichia coli, thus providing resistance to those toxic oxyanions. The purified catalytic subunit of the ATPase, the ArsA protein, exhibits oxyanion-stimulated ATPase activity. The nature of the oxyanion binding site was probed by reaction with the fluorescent sulfhydryl probe 2-(4'-maleimidoanilino)naphthalene-6-sulfonic acid (MIANS). Our results indicate that MIANS reacts with the ArsA protein in an antimonite-dependent manner. After the protein had been modified with MIANS, two of four cysteines in the ArsA protein had reacted with the probe in the absence of the oxyanionic substrate, and three in the presence of antimonite. The quantum yield of the MIANS-ArsA protein adduct was significantly higher if modification of the protein had occurred in the presence of oxyanionic substrates. Thus binding of the anionic substrate of the pump produces a conformational change in the ArsA protein such that a single additional cysteinyl residue reacts more readily with the sulfhydryl probe.

Adenosine Triphosphatases↗

Plasma fucosyltransferase as an indicator of imminent blastic crisis.

Plasma fucosyltransferase activity was evaluated as an indicator of an impending blastic transformation in 25 patients with chronic granulocytic leukemia (CGL). Fifteen age-and sex-matched controls were also studied. The level of enzyme activity was significantly higher in the plasma of patients with blastic transformation (1,630 +/- 570 units) compared with steady chronic granulocytic leukemia (509 +/- 110 units) and normal controls (354 +/- 57 units). In three patients with CGL, a rise in fucosyltransferase activity preceded any other clinical or laboratory parameter of blastic transformation by 16-20 weeks.

Adult↗