Search PubMed⌕ Search

Biomedical subjects

J Brody

Publications and source records attributed to J Brody.

50 records · Page 3Linked to original sources

Response of normal and beige mouse alveolar type 2 cells to lung injury.

To study the relation between normal and abnormal alveolar type 2 cells and lung repair after injury, and to gain insight into the defect responsible for the giant lamellar bodies in type 2 cells of the beige mouse (an animal model of the Chediak-Higashi syndrome), we produced lung injury with a single injection of butylated hydroxytoluene (BHT). Type 2 cell proliferation and differentiation were analyzed in light microscopic autoradiographs of mice that had received tritiated thymidine (3H-T) at intervals after the injection of BHT. The approximate age of 3H-T labeled type 2 cells and lamellar body volume density and area were correlated by combining light microscopic autoradiography with ultrastructural morphometry. Type 2 cell proliferation and differentiation were identical in normal and in beige mice. In normal mice, the lamellar body area per cell was unchanged at the time periods studied. In beige mice, the lamellar body area per cell, which was initially 9 times that of the normal mice, decreased to nearly normal values after mitosis, and then increased over the subsequent 7 days of study. Thus, the abnormal type 2 cell of the beige mouse was able to proliferate and differentiate in a normal fashion after lung injury. The beige mouse defect, which results in impaired lamellar body release, was transiently corrected in the perimitotic period. The postmitotic enlargement of lamellar bodies provided a model for studying the basic defect in the Chediak-Higashi syndrome and the process of type 2 cell maturation.

Animals↗

Why colic?

Explore the source record for details and available documents.

Adult↗

RNA-instructed DNA polymerase activity in a cytoplasmic particulate fraction in brains from Guamanian patients.

Nervous system tissues from a number of patients with idiopathic neurological disorders were examined for biochemical evidence of RNA tumor virus infection. RNase-sensitive DNA polymerase activity was found in a cytoplasmic particulate fraction from two patients with Guamanian amyotrophic lateral sclerosis (ALS) but not in brains from two normal U.S. individuals. The buoyant density of the enzyme-containing fraction was 1.16-1.18 g/ml and could be converted to a denser region of the gradient (1.24 g/ml) by treatment with the nonionic surfactant, Sterox. The cation and detergent requirements for the endogenous RNase-sensitive DNA polymerase reaction were determined. The early (5 min) endogenous reverse transcriptase product was analyzed by cesium sulfate gradient centrifugation. RNase- and heat-sensitive RNA-DNA hybrids were detected in the product analysis of two ALS, one Parkinsonism-dementia (PD) brain, and two brains from asymptomatic Chamorros but not in brains from normal U.S. individuals and a number of patients with neuro-psychiatric disorders. The DNA product was a 4.5S heteropolymer that hybridized more extensively to RNA extracted from the enzyme-containing pellet from PD brain as compared to a similar fraction from normal U.S. brain. The DNA product appeared to be unrelated to Rausvher or visna virus 70S RNA as determined by RNA-[-3H]DNA hybridization.

Amyotrophic Lateral Sclerosis↗