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991.
WJ Qui?ones-Baldrich MD Colburn SS Ahn HA Gelabert WS Moore 《Canadian Metallurgical Quarterly》1993,166(2):117-23; discussion 123
Forty-six bypass grafts to tibial arteries distal to the ankle were performed in 35 patients for salvage of extremities threatened by gangrene or nonhealing ulcers (grade III, category 5) or ischemic rest pain (grade II, category 4). Most patients (80%) were diabetic, with severely calcified arteries, whom previously we would have considered as candidates for primary amputation. All reconstructions were performed with autologous saphenous vein. Inflow was from the common femoral artery in 5 (11%), the popliteal artery in 25 (54%), or the mid-tibial arteries in 16 (35%). Life-table analysis was used to calculate primary patency and limb salvage. Results were analyzed according to origin of inflow, outflow, or configuration of the conduit (in situ saphenous vein, n = 29 [63%], reversed saphenous vein, n = 11 [24%], or nonreversed saphenous vein, n = 6 [13%]). Overall cumulative primary graft patency at 2 years for all grafts was 72%, and the cumulative limb salvage rate was 89% for the same interval. No significant differences were seen in comparing grafts originating from the femoral or popliteal level with those arising from the tibial arteries. No significant differences were noted in graft patency or limb salvage among grafts with a posterior tibial, dorsalis pedis, or plantar artery outflow. No significant difference was noted between in situ saphenous vein grafts and reversed saphenous vein grafts. A significant decreased primary patency was noted for grafts performed with nonreversed, translocated saphenous vein. We conclude that bypass grafts to the ankle or foot vessels are beneficial and should be considered for limb salvage in extremities with gangrene, ischemic ulceration, or ischemic rest pain. In our experience, in situ saphenous vein grafts or reversed saphenous vein grafts performed similarly, whereas nonreversed saphenous vein grafts have a poorer prognosis. Vessel wall calcification requires a modification in technique for performance of these grafts but did not affect long-term performance or limb salvage, and thus should not be considered a contraindication to vascular reconstruction. The operative microscope was used in 61% (28 of 46) of these cases and found useful in creating these delicate anastomoses. Additional follow-up is needed to document the long-term results of these very distal reconstructions. 相似文献
992.
993.
994.
Bacterial lipopolysaccharide induces uncoupling protein-2 expression in hepatocytes by a tumor necrosis factor-alpha-dependent mechanism 总被引:1,自引:0,他引:1
H Cortez-Pinto SQ Yang HZ Lin S Costa CS Hwang MD Lane G Bagby AM Diehl 《Canadian Metallurgical Quarterly》1998,251(1):313-319
The liver is a target for bacterial lipopolysaccharide (LPS) and participates in the metabolic response to endotoxemia. Recently published evidence indicates that LPS increases the expression of mitochondrial uncoupling protein-2 (UCP-2) mRNAs in several tissues, including the liver. Because hepatocytes in the healthy liver do not express UCP-2, LPS was thought to induce UCP-2 in liver macrophages, which express UCP-2 constitutively. However, the present studies of cultured peritoneal macrophages indicate that LPS reduces steady state levels of UCP-2 mRNAs in these cells. In contrast, UCP-2 mRNAs are induced in hepatocytes isolated from LPS treated rats and transfection of these hepatocytes with UCP-2 promoter-reporter constructs demonstrates substantial increases in UCP-2 promoter activity. LPS induction of hepatocyte UCP-2 expression is virtually abolished by prior treatment of rats with neutralizing antibodies to tumor necrosis factor alpha (TNF). Futhermore, TNFalpha treatment induces UCP-2 mRNA accumulation in primary cultures of hepatocytes from healthy rats. Thus, hepatocytes are likely to be important contributors to endotoxin-related increases in liver UCP-2 via a mechanism that involves the LPS-inducible cytokine, TNFalpha. 相似文献
995.
To investigate the energy-conserving function of the NADH:ubiquinone reductase (complex I), we have selected oxonol VI [bis(3-propyl-5-oxoisoxazol-4-yl)pentamethine oxonol] as the most sensitive probe for measuring the reactions of membrane potential generation in submitochondrial particles. Calibration of the oxonol signals with potassium diffusion potentials shows a non-linear response after a threshold around -50 mV. Thermodynamic evaluations indicate that the upper limit of the oxonol response to the potential generated by complex I is around -220 mV, which is close to the maximal protonmotive force in coupled submitochondrial particles. NADH addition to particles in which ubiquinol oxidation is blocked by inhibitors of other respiratory complexes generates oxonol signals corresponding to membrane potentials of -130 to -180 mV. These signals are produced by about four turnovers of the complex reducing endogenous ubiquinone (i.e. non-steady-state conditions) and are equivalent to a charge separation similar to that of the antimycin-sensitive reactions of ubiquinol:cytochrome c reductase (complex III). The transient oxonol signals under non-steady-state conditions are thus informative of crucial steps in the electrogenic reactions catalyzed by complex I. The possible nature of these electrogenic reactions is discussed in relation to proposed mechanisms for complex I. 相似文献
996.
997.
MD Harris 《Canadian Metallurgical Quarterly》1997,15(11):773-775
Individuals of all ages are discharged from acute-care facilities with a variety of medical and nursing diagnoses. Many of these individuals require home health aides services in addition to their skilled care. In the changing healthcare environment of the 1990s, home healthcare professionals are being challenged to provide effective, skilled care that is the most cost-effective and appropriate for patients. It is important that all professional home healthcare personnel work as a team with home health aides to accomplish these goals. The home health aide is an important member of the home care team. 相似文献
998.
An inhibitory neurotransmitter in mature brain, gamma-aminobutyric acid (GABA) also appears to be excitatory early in development. The mechanisms underlying this shift are not well understood. In vitro studies have suggested that Na-K-Cl cotransport may have a role in modulating immature neuronal and oligodendrocyte responses to the neurotransmitter GABA. An in vivo developmental study would test this view. Therefore, we examined the expression of the BSC2 isoform of the Na-K-2Cl cotransporter in the postnatal developing rat brain. A comparison of sections from developing rat brains by in situ hybridization revealed a well-delineated temporal and spatial pattern of first increasing and then diminishing cotransporter expression. Na-K-2Cl mRNA expression in the cerebral cortex and hippocampus was highest in the first week of postnatal life and then diminished from postnatal day (PND) 14 to adult. Cotransporter signal in white-matter tracts of the cerebrum, cerebellum, peaked at PND 14. Expression was detected in cerebellar progenitor cells of the external granular layer, in internal granular layer cells at least as early as PND 7, and in Purkinje cells beginning at PND 14. Double-labeling immunofluorescence of brain sections with anti-BSC2 antibody and cell type-specific antibodies confirmed expression of the cotransporter gene product in neurons and oligodendrocytes in the white matter in a pattern similar to that determined by in situ hybridization. The temporal pattern of expression of the Na-K-2Cl cotransporter in the postnatal rat brain supports the hypothesis that the cotransporter is the mechanism of intracellular Cl- accumulation in immature neurons and oligodendrocytes. 相似文献
999.
P Agostoni K Wasserman GB Perego GC Marenzi M Guazzi E Assanelli G Lauri MD Guazzi 《Canadian Metallurgical Quarterly》1997,79(8):1120-1124
In chronic heart failure, oxygen delivery during exercise is impaired mainly because of failure of cardiac output to increase normally. Compensatory mechanisms are hemoglobin concentration increase, right-ward shift in the oxyhemoglobin dissociation curve, and blood flow redistribution from the nonexercising organs to the exercising muscles. 相似文献
1000.
DE MacHugh MD Shriver RT Loftus P Cunningham DG Bradley 《Canadian Metallurgical Quarterly》1997,146(3):1071-1086
Genetic variation at 20 microsatellite loci was surveyed to determine the evolutionary relationships and molecular biogeography of 20 different cattle populations from Africa, Europe and Asia. Phylogenetic reconstruction and multivariate analysis highlighted a marked distinction between humpless (taurine) and humped (zebu) cattle, providing strong support for a separate origin for domesticated zebu cattle. A molecular clock calculation using bison (Bison sp.) as an outgroup gave an estimated divergence time between the two subspecies of 610,000-850,000 years. Substantial differences in the distribution of alleles at 10 of these loci were observed between zebu and taurine cattle. These markers subsequently proved very useful for investigations of gene flow and admixture in African populations. When these data were considered in conjunction with previous mitochondrial and Y chromosomal studies, a distinctive male-mediated pattern of zebu genetic introgression was revealed. The introgression of zebu-specific alleles in African cattle afforded a high resolution perspective on the hybrid nature of African cattle populations and also suggested that certain West African populations of valuable disease-tolerant taurine cattle are under threat of genetic absorption by migrating zebu herds. 相似文献