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M Hagopian

Publications and source records attributed to M Hagopian.

36 records · Page 2Linked to original sources

The filament lattice of cockroach thoracic muscle.

The fine structure of the tergo-coxal muscle of the cockroach, Leucophaea maderae, has been studied with the electron microscope. This muscle differs from some other types of insect flight muscles inasmuch as the ratio of thin to thick filaments is 4 instead of the characteristic 3. The cockroach flight muscle also differs from the cockroach femoral muscle in thin to thick filament ratios and diameters and in lengths of thick filaments. A comparison of these latter three parameters in a number of vertebrate and invertebrate muscles suggests in general that the diameters and lengths of the thick filaments and thin to thick filament ratios are related.

Aldehydes↗

The sarcoplasmic reticulum and its association with the T system in an insect.

The fine structure of the sarcoplasmic reticulum and the transverse tubular system of the femoral muscle of the cockroach, Leucophaea maderae, was studied after prefixation in glutaraldehyde, postfixation in osmium tetroxide, and embedding in Epon. The sarcoplasmic reticulum in this muscle reveals features not previously reported. The sarcoplasmic reticulum is abundant, consisting mainly of a fenestrated envelope which surrounds each myofibril at all levels in the sarcomere. This sarcoplasmic reticulum envelope is continuous transversally as well as longitudinally along the myofibrils. Dyadic junctions are formed by a single T system element which contacts the unfenestrated sarcoplasmic reticulum of adjacent myofibrils in an alternating manner at the ends of the A band. At the dyads, regularly spaced thickenings of the sarcoplasmic reticulum membranes bordering the dyadic spaces are noted. These thickenings, however, do not contact the T tubule membrane. Typical dyadic contacts also are seen between the cell surface membrane and sarcoplasmic reticulum. Z line-like material is seen in contact with the membranes of the cell surface and longitudinal branches of the T systems.

Cell Membrane↗

The myofilament arrangement in the femoral muscle of the cockroach, Leucophaea maderae fabricius.

The structure of the femoral muscle of the cockroach, Leucophaea maderae, was investigated by light and electron microscopy. The several hundred fibers of either the extensor or flexor muscle are 20 to 40 micro in diameter in transverse sections and are subdivided into closely packed myofibrils. In glutaraldehyde-fixed and epoxy resin-embedded material of stretched fibers, the A band is about 4.5 micro long, the thin filaments are about 2.3 micro in length, the H zone and I band vary with the amount of stretch, and the M band is absent. The transverse sections of the filaments reveal in the area of a single overlap of thick and thin filaments an array of 10 to 12 thin filaments encircling each thick filament; whereas, in the area of double overlap in which the thin filaments interdigitate from opposite ends of the A band, the thin filaments show a twofold increase in number. The thick filament is approximately 205 to 185 A in diameter along most of its length, but at about 0.2 micro from the end it tapers to a point. Furthermore, some well oriented, very thin transverse sections show these filaments to have electron-transparent cores. The diameter of the thin filament is about 70 A. Transverse sections exhibit the sarcolemma invaginating clearly at regular intervals into the lateral regions of the A band. Three distinct types of mitochondria are associated with the muscle: an oval, an elongate, and a type with three processes. It is evident, in this muscle, that the sliding filament hypothesis is valid, and that perhaps the function of the extra thin filaments is to increase the tensile strength of the fiber and to create additional reactive sites between the thick and thin filaments. These sites are probably required for the functioning of the long sarcomeres.

Animals↗

Carcinogenesis bioassay of acetamide, hexanamide, adipamide, urea and P-tolylurea in mice and rats.

As a part of the National Cancer Institute's effort to screen environmental and occupational chemicals for chronic toxicity and carcinogenicity, the amides acetamide, hexanamide, adipamide, urea, and p-tolylurea were fed to male and female C57B1/6 mice and Fischer 344 rats from 12 months. Rats received the following concentrations of compounds in their diets: acetamide, 2.36%; hexanamide, 1.5%; adipamide, 2.4% and 5.8%; urea, 0.45%, 0.9%, and 4.5%; and p-tolylurea, 0.2%. Mice received acetamide, 1.18% and 2.36%; hexanamide, 1.0% and 1.5%; adipamide, 1.6% and 2.4%; urea, 0.45%, 0.9%, and 4.5%; and p-tolylurea, 0.2%. In acetamide treated rats, there was a compound-related occurrence of neoplastic nodules (1/47 male, 3/48 female) and hepatocellular carcinomas (41/47 male, 33/48 female). The incidence, speed of onset and frequency of metastases, were greater in males than in females. In male mice treated with acetamide (low dose, 7/50; high dose, 7/46); hexanamide (low dose, 6/35; high dose, 6/39); and p-tolylurea (10/43), there was a compound-related increase in hematopoietic tumors, namely malignant lymphomas. Therefore, under the conditions of these studies, acetamide was an hepatocarcinogen in rats. In male mice, acetamide, hexanamide, and p-tolylurea caused malignant lymphomas. Urea and adipamide were considered to be non-carcinogenic.

Amides↗