Search PubMed⌕ Search

Biomedical subjects

R Hertz

Publications and source records attributed to R Hertz.

At least 55 records · Page 3Linked to original sources

Ubiquinone synthetic pathway in flagellation of Salmonella typhimurium.

Flagellation of Salmonella typhimurium was found to require a functional pathway for ubiquinone synthesis as well as growth in the presence of aliphatic or aromatic carboxylic acids. Selection for constitutive flagellation eliminated the requirement for growth in the presence of added carboxylic acids.

Aerobiosis↗

Anaerobic electron transport in anaerobic flagellum formation in Escherichia coli.

Flagellum formation by ubiquinone- and menaquinone-deficient mutant strains of Escherichia coli K-12 was studied under both aerobic and anaerobic growth conditions. Ubiquinone was found to be obligatory for aerobic flagellum formation but could be replaced by menaquinone for anaerobic flagellum formation. A mutant devoid of both quinones was immotile aerobically as well as anaerobically. Hence, the respective electron transport system is obligatory for flagellum formation in Escherichia coli.

Aerobiosis↗

Spontaneous regression in choriocarcinoma and related gestational trophobalstic neoplasms.

Gestational trophoblastic neoplasia represents a biologic spectrum of tumors progressing from the hydatid mole, to invasive mole, and to choriocarcinoma. This progression is reflected in increasing degrees of aneuploidy in the respective lesions. Just as there is a natural tendency for the rejection of the trophoblast of a normal pregnancy culminating either in parturition or in spontaneous abortion, rejection of tumors of trophoblast occurs at any point in the progression of the disease spectrum. The unusual effectiveness of chemotherapy in trophoblastic disease may be related to this natural tendency to rejection. This tendency, in turn, is thought to derive from the genetic disparity between the maternal host and the tumor tissue of fetal origin, since the fetus possesses both maternal and fetal antigens.

Aneuploidy↗

Permeability and integrity properties of lecithin-sphingomyelin liposomes.

The properties of multibilayered liposomes formed from mixtures of sphingomyelin and phosphatidylcholine in varying mole ratio (all containing one mole dicetylphosphate per 10 moles of phospholipids) have been studied. The principal findings are: (1) Over the range 0 to 1 mole fraction sphingomyelin the liposomes exhibit multibilayer structure as visualized by electron microscopy using negative staining. (2) The two phospholipids differ in their interaction with dicetylphosphate in a bilayer structure. In mixtures of the two the effect of sphingomyelin is dominant. (3) The ability of sphingomyelin to form osmotically active liposomes depends on its fatty acid's composition. (4) Liposomes of all mole fractions of sphingomyelin are osmotically active if the C24: 1 fatty acid content of sphingomyelin exceeds 10% of the total acyl residues. The degree of osmotic activity, however, depends upon the molar ratio between the two phospholipids. The highest initial rate of water permeability was found for lecithin liposomes. The maximal change of volume by osmotic gradients was obtained for liposomes composed of 1:1 lecithin to sphingomyelin (mole ratio). (5) Permeability to glucose increased with increasing lecithin mole fraction. (6) Liposomes composed of 1:1 lecithin to sphingomyelin have the largest aqueous volume per mole of phospholipid as measured by glucose trapping. (7) The osmotic fragility of liposomes made of sphingomyelin is higher than for those made of lecithin but the highest osmotic fragility was obtained for liposomes containing lecithin and sphingomyelin in 1:1 molar ratio. (8) When the temperature is abruptly lowered to about 2 degrees C, lipsomes formed from phosphatidylcholine release about 20% of trapped glucose during a transient increase in permeability. Liposomes containing 0.5 mole fraction sphingomyelin release about 30% of the trapped glucose under these conditions. Liposomes composed of sphingomyelin alone do not exhibit this phenomenon.

Animals↗