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Biomedical subjects

N Tada

Publications and source records attributed to N Tada.

149 records · Page 9Linked to original sources

High-level expression of naked DNA delivered to rat liver via tail vein injection.

BACKGROUND: High levels of foreign gene expression in mouse hepatocytes can be achieved by rapid tail vein injection of a large volume of a naked DNA solution, the 'hydrodynamics-based procedure'. Rats are more tolerant of the frequent phlebotomies required for monitoring blood parameters than mice, and thus are better for some biomedical research. METHODS: We tested this technique for the delivery of a therapeutic protein in normal rats, using a rat erythropoietin (Epo) expression plasmid vector, pCAGGS-Epo. RESULTS: We obtained maximal Epo expression when the DNA solution was injected in a volume of 25 ml (approximately 100 ml/kg body weight) within 15 s. We observed a dose-response relationship between serum Epo levels and the amount of injected DNA up to 800 microg. Using quantitative real-time PCR, the vector-derived Epo mRNA expression was mainly detected in the liver. When a lacZ expression plasmid was injected similarly, beta-galactosidase was exclusively detected in the liver, mainly in hepatocytes. Toxicity attributable to the technique was mild and transient, as assessed by histochemical analysis. Epo gene expression and erythropoiesis occurred with Epo gene transfer in a dose-dependent manner, and persisted for at least 12 weeks, the last time point examined. Repeated administration of the plasmid DNA also effectively led to erythropoiesis. CONCLUSIONS: These results demonstrate that gene transfer into the liver via rapid tail vein injection can easily be achieved in the rat, which is more than 10 times larger than the mouse, and has significant value for gene function analysis in rats.

Animals↗

Accumulation of beta-amyloid fibrils in pancreas of transgenic mice.

Some forms of familial Alzheimer's disease are caused by mutations in the amyloid beta protein precursor (beta APP), and there is excellent evidence that these mutations foster amyloid deposition by increasing secretion of total amyloid beta protein (A beta) or the highly amyloidogenic A beta 1-42 form. These observations provide a powerful rationale for developing an animal model of AD by generating transgenic mice in which cerebral amyloid deposition is induced by A beta overproduction. To produce substantial A beta in vivo, we generated mice expressing the transgene of signal peptide and 99 residues of carboxyl-terminal fragment (CTF) of beta APP under control of the cytomegalovirus enhancer/chicken beta-actin promoter. The transgenic mRNA was detected in many tissues of these mice, but the levels of transgenic mRNA, CTF, and A beta did not correlate well indicating that tissue-specific posttranslational processing may play an important role in determining the amount of A beta that accumulates in various tissues. A beta was detected biochemically in brain, kidney, and pancreas with the largest amount present in pancreas. In transgenic plasma, there was a marked accumulation of human A beta 1-40 and A beta 1-42(43) to levels over 30-times those observed in normal human plasma. Thus, the transgenic mice produce and secrete considerable A beta. Despite this increase in A beta secretion and the elevated A beta in brain, immunohistochemistry revealed no consistent cerebral A beta deposition. In pancreas, however, intracellular A beta deposits were detected immunohistochemically in acinar cells and interstitial macrophages, some of which showed severe degeneration. In addition, examination of these cells by immunoelectron microscopy revealed many putative amyloid fibrils (7-12 nm) that were stained by anti-A beta antibodies. Overall, our findings indicate that tissue-specific posttranslational processing may play a pivotal role in A beta production and amyloid fibril formation in vivo. By carefully analyzing the changes that occur in the transgenic mice described here as compared to the transgenic line that has recently been shown to form extracellular amyloid plaques in brain, it may be possible to gain considerable insight into the factors that determine the location and amount of A beta that accumulates as amyloid.

Amyloid beta-Peptides↗

Neurodegeneration and gliosis in transgenic mice overexpressing a carboxy-terminal fragment of Alzheimer amyloid-beta protein precursor.

In order to study the properties of beta-amyloid in vivo, we generated a total of 28 transgenic founder mice that harbored the gene for the 17-amino acid signal sequence and the 99-amino acid carboxy-terminal fragment (CTF) of the human amyloid-beta protein precursor (beta APP) linked to the cytomegalovirus enhancer and chicken beta-actin promoter. Two of these founders, termed 0304 and 0809, exhibited decreased behavioral activity with gliosis and neurodegeneration in the hippocampus at 2.5 and 9 months of age. Both mice had also decreased levels of synaptophysin, a presynaptic marker, but no evidence for beta-amyloid deposition in their brains. Neurodegeneration in the hippocampus was transmitted to the offspring of mouse 0304, although the frequency was low (5 of 44 mice examined) and the time of onset of the disorder was rather later than that in the founder mouse. This is probably due to reduced levels of the transgene-derived products in the offspring of mouse 0304. The 0809 line failed to produce its offspring. The other remaining transgenic founders appeared normal and had lesser amounts of the CTF mRNA and protein in their brains than did 0304 and 0809 founders, though some mice died in earlier stages or exhibited hydrocephalus. These findings suggest that overexpression of the CTF of human beta APP has the potential to elicit neurodegeneration in vivo without appreciable production of beta-amyloid fibrils.

Amyloid beta-Protein Precursor↗

Reinforcing effect of a Ni-Cr alloy plate on an acrylic resin denture base.

The authors previously reported on the strengthening effect of a thin Ni-Cr plate on an acrylic resin test specimen in the three-point bending test. This study evaluated the reinforcement of acrylic resin denture bases by measuring the strain distribution in the palate of a maxillary complete denture. It was found that this reinforcing technique led to a uniform distribution of strain in the palatal area of the maxillary denture and a reduction of strain in the midpalatal area.

Acrylic Resins↗

Reinforcement of acrylic resin denture base with a Ni-Cr alloy plate.

A pilot study was conducted to evaluate the strengthening effect of a Ni-Cr metal plate on an acrylic resin test specimen. Test specimens were retained using a mechanical method and adhesion with 4-META resin. Three positions of the metal plate were evaluated: on the compression surface, on the tension surface, and in the middle layer. A three-point bend test was used to compare physical properties of the specimens with metal-plate reinforcement to a resin specimen without reinforcement. No advantage was derived from placing the metal plate in the center of the resin. Both methods of retention produced improved physical properties when placed on either the compressive or tensile side, but the greatest advantages were gained when an adhesive-retained plate was placed on the side in tension.

Acrylic Resins↗