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Gab-Soo Do Yasuyuki Sagara Mizuho Tabata Ken-ichi Kudoh Toshiro Higuchi 《International Journal of Refrigeration》2004,27(2):184-190
A novel technique has been developed for measuring the three-dimensional (3-D) structure and distribution of ice crystals formed in frozen beef by using a micro-slicer image processing system (MSIPS). The system has functions to reconstruct the 3-D image based on the image data of exposed cross-sections obtained by multi-slicing of a frozen sample with the minimum thickness of 1 μm and to display the internal structure as well as an arbitrary cross-section of the sample choosing observation angles. The size and distribution of ice crystals can be determined from the 2-D quantitative information, such as the periphery and area of the crystals. The effects of freezing conditions on the morphology and distribution of the ice crystals were demonstrated quantitatively from the observations of raw beef stained by fluorescent indicator. For the samples frozen at −15 °C, the network structure of ice crystals were observed mainly at intercellular space, having approximately 100 μm in cross-sectional size, while that prepared at −120 °C showed the spherical crystals of 10–20 μm in diameter within the cells. The 3-D image of the sample demonstrated that the growth of ice columns was restricted by the intrinsic structure of muscle fibers. The proposed method provided a new tool to investigate the effects of freezing conditions on the size, morphology and distribution of ice crystals. 相似文献
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Saito M Kitamura A Murahashi M Yamanaka K Hoa le Q Yamaguchi Y Tamiya E 《Analytical chemistry》2012,84(13):5494-5500
Herein, a nanoporous alumina was fabricated to use as a mold in transforming nanopillar structures onto a thin film polymer by thermal nanoimprint lithography (NIL). The size of the pores was successfully controlled by varying the applied voltages and etching time. These nanoporous structures were transferred to the Cyclo-olefin polymer (COP) film surface from the porous mold by a thermal nanoimprinting process. A plasmonic substrate was fabricated by sputtering a thin layer of gold onto this nanopillar polymer structure, and the refractive index response in a variety of media was evaluated. Finally, the biosensing capacity of this novel plasmonic substrate was verified by analysis of Human immunoglobulin and achieved a minimum detection limit of 1.0 ng/mL. With the advantages of mass production with consistent reproducibility stemming from the nanoimprint fabrication process, our gold-capped polymeric pillars are ready for the transition from academic interest into commercialization systems for practical use in diagnostic applications. 相似文献
15.
Tomokazu Saiki Nobuhisa Nakamura Megumi Miyabe Mizuho Ito Tomomi Minato Kazunori Sango Tatsuaki Matsubara Keiko Naruse 《International journal of molecular sciences》2021,22(11)
Schwann cells play an important role in peripheral nerve function, and their dysfunction has been implicated in the pathogenesis of diabetic neuropathy and other demyelinating diseases. The physiological functions of insulin in Schwann cells remain unclear and therefore define the aim of this study. By using immortalized adult Fischer rat Schwann cells (IFRS1), we investigated the mechanism of the stimulating effects of insulin on the cell proliferation and expression of myelin proteins (myelin protein zero (MPZ) and myelin basic protein (MBP). The application of insulin to IFRS1 cells increased the proliferative activity and induced phosphorylation of Akt and ERK, but not P38-MAPK. The proliferative potential of insulin-stimulated IFRS1 was significantly suppressed by the addition of LY294002, a PI3 kinase inhibitor. The insulin-stimulated increase in MPZ expression was significantly suppressed by the addition of PD98059, a MEK inhibitor. Furthermore, insulin-increased MBP expression was significantly suppressed by the addition of LY294002. These findings suggest that both PI3-K/Akt and ERK/MEK pathways are involved in insulin-induced cell growth and upregulation of MPZ and MBP in IFRS1 Schwann cells. 相似文献
16.
Summary The permeation and separation characteristics of methanol/n-pentanol systems and n-propanol/n-heptane systems through nylon 12 membranes were studied by changing the feed composition of the binary organic mixtures. These characteristics were discussed from the viewpoints of physical and chemical nature of the permeating molecules and the membrane. 相似文献
17.
Tadaaki Satou Mariko Matsuura Mizuho Takahashi Toyoshi Umezu Shinichiro Hayashi Kiyomi Sadamoto Kazuo Koike 《Flavour and Fragrance Journal》2011,26(6):416-420
It has been proposed that essential oil extracted from Abies sachalinensis (EOAS) has a relaxation effect, among others, in humans; however, the scientific evidence is currently insufficient. To clarify the influence of EOAS on emotional behaviour, we examined its anxiolytic‐like effect using a mouse model. The elevated plus maze task was used to evaluate the anxiolytic‐like effect. The results showed that intraperitoneal (i.p.) administration of EOAS at 0.6 g/kg body weight did not produce an anxiolytic‐like effect. However, a significant anxiolytic‐like effect was observed after inhalation of EOAS at 3.6 mg/l air (P < 0.05). Next, the effect of the route of administration (i.p. vs. inhalation) on the distribution of the major components of EOAS was analysed. α‐Pinene was observed in the brain at 5.7 ± 2.0 mg/kg (i.p.) and 19.7 ± 0.9 mg/kg (inhalation). The data showed that EOAS effectively produced an anxiolytic‐like effect after administration by inhalation. Thus, the efficacy of EOAS in producing an anxiolytic‐like effect is likely to be due to achieving adequate levels in the brain after EOAS had been inhaled. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
18.
Ursodeoxycholic Acid Suppresses Lipogenesis in Mouse Liver: Possible Role of the Decrease in β-Muricholic Acid,a Farnesoid X Receptor Antagonist
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The farnesoid X receptor (FXR) is a major nuclear receptor of bile acids; its activation suppresses sterol regulatory element-binding protein 1c (SREBP1c)-mediated lipogenesis and decreases the lipid contents in the liver. There are many reports showing that the administration of ursodeoxycholic acid (UDCA) suppresses lipogenesis and reduces the lipid contents in the liver of experimental animals. Since UDCA is not recognized as an FXR agonist, these effects of UDCA cannot be readily explained by its direct activation of FXR. We observed that the dietary administration of UDCA in mice decreased the expression levels of SREBP1c and its target lipogenic genes. Alpha- and β-muricholic acids (MCA) and cholic acid (CA) were the major bile acids in the mouse liver but their contents decreased upon UDCA administration. The hepatic contents of chenodeoxycholic acid and deoxycholic acid (DCA) were relatively low but were not changed by UDCA. UDCA did not show FXR agonistic or antagonistic potency in in vitro FXR transactivation assay. Taking these together, we deduced that the above-mentioned change in hepatic bile acid composition induced upon UDCA administration might cause the relative increase in the FXR activity in the liver, mainly by the reduction in the content of β-MCA, a farnesoid X receptor antagonist, which suggests a mechanism by which UDCA suppresses lipogenesis and decreases the lipid contents in the mouse liver. 相似文献
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Mizuho Nisizawa 《应用聚合物科学杂志》1988,36(7):1673-1676
Solid agar–agar was irradiated with 60Co gamma-rays, and effects of radiation on the water-holding capacity of agar–agar molecules were studied by measuring the water content of the agar–agar hydrogel. The effects of postirradiation were also studied. Empirical equations of changes of water holding capacity were obtained. 相似文献