Electron microscopy of postmortem autolysis of rat muscle tissue. 1976

Y Collan, and M Salmenperä

To define the progression of ultrastructural changes in normal muscle at post mortem, rat gastrocnemius muscles were studied at various times after storage at +4 degrees C and +22 degrees C. Degeneration of the I-zone (discoid necrosis) and membranous bodies were found to be similar to that seen in muscle diseases, and lamellar formations were seen in mitochondria. At +4 degrees C there was contraction of the sarcomere which vanished in 12 h and inter-filamentous oedema appeared. Z-line degeneration was seen at 24 h and at 4 days all Z-lines had disappeared, and the H-zone showed darkening. In the same samples collapse or ruptures of the I band were seen. At 8 days the H-zones and M-lines were still discernible. In the early stages the mitochondria showed swelling and loss of matrix granules, while later they showed broken cristae and outer membranes, and flocculent densities. At 4 days rearrangement of the cristal material into long pentalaminar "needles" was seen in a few mitochondria. At 4 and 8 days membranous bodies were seen and the T-system and sarcoplasmic reticulum showed ruptures and disintegration into vesicles. The nucleus showed increasing condensation of chromatin at the periphery and clearing of the center. Polysomes and glycogen were reduced at 2 h, and has practically vanished at 24 h. At 22 degrees C the changes were the same but appeared about 4 times as quickly as at +4 degrees C.

UI MeSH Term Description Entries
D008931 Mitochondria, Muscle Mitochondria of skeletal and smooth muscle. It does not include myocardial mitochondria for which MITOCHONDRIA, HEART is available. Sarcosomes,Mitochondrion, Muscle,Muscle Mitochondria,Muscle Mitochondrion,Sarcosome
D008933 Mitochondrial Swelling An increase in MITOCHONDRIAL VOLUME due to an influx of fluid; it occurs in hypotonic solutions due to osmotic pressure and in isotonic solutions as a result of altered permeability of the membranes of respiring mitochondria. Giant Mitochondria,Megamitochondria,Mitochondrial Hypertrophy,Giant Mitochondrias,Hypertrophy, Mitochondrial,Megamitochondrias,Mitochondria, Giant,Mitochondrial Hypertrophies,Swelling, Mitochondrial
D009132 Muscles Contractile tissue that produces movement in animals. Muscle Tissue,Muscle,Muscle Tissues,Tissue, Muscle,Tissues, Muscle
D009210 Myofibrils The long cylindrical contractile organelles of STRIATED MUSCLE cells composed of ACTIN FILAMENTS; MYOSIN filaments; and other proteins organized in arrays of repeating units called SARCOMERES . Myofilaments,Myofibril,Myofilament
D006003 Glycogen
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001329 Autolysis The spontaneous disintegration of tissues or cells by the action of their own autogenous enzymes. Autolyses
D012519 Sarcoplasmic Reticulum A network of tubules and sacs in the cytoplasm of SKELETAL MUSCLE FIBERS that assist with muscle contraction and relaxation by releasing and storing calcium ions. Reticulum, Sarcoplasmic,Reticulums, Sarcoplasmic,Sarcoplasmic Reticulums
D013696 Temperature The property of objects that determines the direction of heat flow when they are placed in direct thermal contact. The temperature is the energy of microscopic motions (vibrational and translational) of the particles of atoms. Temperatures
D013997 Time Factors Elements of limited time intervals, contributing to particular results or situations. Time Series,Factor, Time,Time Factor

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