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101.
The biologic changes occurring in severely ischemic myocytes in vivo as the affected cells pass through the phase of reversible to the phase of lethal or irreversible injury are reviewed with special emphasis on the effect of ischemia on the production and utilization of highenergy phosphate, the destruction of the adenine nucleotide pool, and the appearance of signs of damage to the plasma membrane of the sarcolemma. Evidence is presented that indicates that the events occurring in severe ischemia in vivo are essentially identical to those found in total ischemia in vitro except that the biologic changes of ischemia develop more slowly in total ischemia in vitro than in severe ischemia in vivo. The slower time course of injury, together with the uniformity of injury provided by total ischemia in vitro, may allow for more precise identification of potential lethal cellular events in ischemic injury. The production of highenergy phosphates (HEP) from anaerobic glycolysis have been estimated in both in vivo and in vitro ischemia by the measurement of lactate accumulation, and total HEP utilization has been estimated from the depletion of stores of preformed HEP. The results show that between 80% and 90% of the HEP utilized by ischemic dog left ventricle is produced by anaerobic glycolysis. The onset of irreversibility is associated with marked depletion of the HEP and adenine nucleotide pools of the tissue and the cessation of energy production via glycolysis. The cessation of anaerobic glycolysis may be caused by the low sarcoplasmic, adenosine triphosphate (ATP) concentration of the dying myocyte. In addition to the foregoing changes, irreversibly injured tissue exhibits both ultrastructural and functional evidence of disruption of the plasmalemma of the sarcolemma. The possible relationships, causal and otherwise, between severe HEP depletion and membrane damage are discussed. Both HEP depletion (ATP < 3-8% of control) and membrane damage are considered to be objective signs of the presence of irreversible myocardial ischemic injury. However, at the present time, there is no proof that these changes are causally related either to each other or to cell death in severe in vivo ischemia. 相似文献
102.
103.
Retinal photoreceptor degeneration was induced by exposing albino rats to fluorescent illumination at elevated environmental temperatures. Fine carbon particles were injected intravenously or directly into the vitreous body or anterior chamber of the eye. The resulting pattern of invasion, migration, and egression of carbon-filled phagocytes in eyes with degenerated retinas was reconstructed from a time sequence series of light and electron microscopic tissue sections. Retinal debris, such as damaged photoreceptor outer segments and carbon particles, was most frequently removed by two populations of cells possessing phagocytic properties: mononuclear cells of vascular origin and pigment epithelial cells. After retinal damage, mononuclear cells appeared first in the vitreous body and later, in time sequence, progressively deeper in the inner plexiform layer and out to the bipolar nuclear layer, where they were seen within, or partially within, retinal capillaries. After intravenous carbon injection, however, marked phagocytes were not seen in the retina. Carbon-filled phagocytic cells were observed in the choroidal connective tissue and blood vessels after intravenous injection, but not after intravitreal injections of carbon. Therefore, retinal phagocytes did not appear to leave the eye through the choroidal circulation. Pigment epithelial cells proliferated by mitotic activity, occurred as single cells separated from Bruch's membrane, and were seen among the degenerated outer segments. After direct exposure to carbon particles, pigment cell phagosomes contained both carbon and lamellated discs of degenerated outer segments. Whether these cells exited from the eye through retinal capillaries or returned to Bruch's membrane to reestablish continuity in the pigment epithelium could not be determined. 相似文献
104.
Barbu E Sarvaiya I Green KL Nevell TG Tsibouklis J 《Journal of biomedical materials research. Part A》2005,74(4):598-606
Copolymeric hydrogels constituting of vinylpyrrolidone and methacrylic or acrylic acid repeat units have been prepared and investigated for their ability to act as controlled release vehicles in ophthalmic drug delivery. The materials were synthesized by radical-induced polymerization in the presence of N,N'-methylenebisacrylamide crosslinker, and the influences of network composition and drug solubility upon the swelling properties, adhesion behavior, and drug release characteristics were studied. In vitro release experiments showed that some of these materials could be useful vehicles for the delivery of drugs such as pilocarpine or chloramphenicol, while in vivo studies, using the rabbit model, confirmed their high potential for the controlled ocular delivery of pilocarpine hydrochloride. 相似文献
105.
A previous report from this laboratory suggested that expression of skeletal-muscle-derived, inducible nitric oxide synthase (iNOS), is associated with resistance to the autoimmune model of myasthenia gravis (MG) demonstrated by Wistar Furth rats following the passive transfer of antibody reactive with the nicotinic acetylcholine receptor (AChR). The study reported below demonstrates an association between increased expression of iNOS/NO in Wistar Furth rats and the induction of programmed cell death (apoptosis) in both macrophages and CD4+ T cells that attempt to traffic through targeted muscles. It is concluded that production of muscle-derived NO is protective in experimental MG, and in part, dictates the severity of eventual immunopathology. 相似文献
106.
Interpersonal stressors and resources as predictors of parental adaptation following pediatric traumatic injury 总被引:4,自引:0,他引:4
Wade SL Stancin T Taylor HG Drotar D Yeates KO Minich NM 《Journal of consulting and clinical psychology》2004,72(5):776-784
The authors examined the relationship of preinjury interpersonal resources and stressors to parental adaptation following pediatric traumatic brain injury (TBI) and orthopedic injury. Parents of children with severe TBI (n = 53), moderate TBI (n = 56), and orthopedic injuries (n = 80) were assessed soon after injury, 6 and 12 months after the initial evaluation, and at an extended follow-up with a mean of 4 years postinjury. General linear model analyses provide support for both main and moderating effects of stressors and resources on parental adjustment. Support from friends and spouse was associated with less psychological distress, whereas family and spouse stressors were associated with greater distress. The results also reveal a marked decline in injury-related stress over follow-up for families in the severe TBI group who reported a combination of high stressors and high resources. The decline suggests that interpersonal resources attenuated long-term family burden because of severe TBI. The findings are discussed in terms of their implications for intervention following TBI. 相似文献
107.
The physical stability of virions of Cucumber mosaic virus (CMV) mutants was investigated to determine if relative stability correlated with efficiency of aphid transmission. Virion stability was evaluated by a urea disruption assay and by testing the infectivity of virus following purifications. All viruses were infectious when purified using a low salt buffer without organic solvent, whereas two of seven viruses were less stable and inactivated following purification with a high salt buffer and chloroform. These two viruses were both reassortants derived from the spontaneous transmission-defective mutant CMV-M (F1F2M3 and F1F2M3-L129P). F1F2M3 was relatively unstable, being disrupted between 0 and 1 M urea versus the wild-type CMV-Fny (F1F2M3) that was destabilized at 3-4 M urea. Modifications of F1F2M3 at three amino acid positions (129, 162, 168), singly or in combination, increased the relative stability of virions. A second class of transmission-defective CMVs with engineered mutations in the betaH-betaI surface loop of the CMV-Fny capsid protein (CP) exhibited near wild-type levels of stability. Lastly, a single Pro to Leu substitution at CP position 129 of CMV-Fny (F1F2M3-P129L) conferred the induction of necrosis in tobacco plants and reduced aphid transmissibility, but did not markedly alter the physical stability of virions. Thus, only among CMV-M derivatives harboring the CP mutation of Thr to Ala at position 162 were increases in stability correlated with restoration of transmissibility by the aphid Aphis gossypii. 相似文献
108.
Louise Bergeron Gloria I. Perez Glen Macdonald Lianfa Shi Yi Sun Andrea Jurisicova Sue Varmuza Keith E. Latham Jodi A. Flaws Jessica C.M. Salter Hideaki Hara Michael A. Moskowitz En Li Arnold Greenberg Jonathan L. Tilly Junying Yuan 《Genes & development》1998,12(9):1304-1314
During embryonic development, a large number of cells die naturally to shape the new organism. Members of the caspase family of proteases are essential intracellular death effectors. Herein, we generated caspase-2-deficient mice to evaluate the requirement for this enzyme in various paradigms of apoptosis. Excess numbers of germ cells were endowed in ovaries of mutant mice and the oocytes were found to be resistant to cell death following exposure to chemotherapeutic drugs. Apoptosis mediated by granzyme B and perforin was defective in caspase-2-deficient B lymphoblasts. In contrast, cell death of motor neurons during development was accelerated in caspase-2-deficient mice. In addition, caspase-2-deficient sympathetic neurons underwent apoptosis more effectively than wild-type neurons when deprived of NGF. Thus, caspase-2 acts both as a positive and negative cell death effector, depending upon cell lineage and stage of development. 相似文献
109.
110.