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排序方式: 共有197条查询结果,搜索用时 640 毫秒
101.
Xiaodong Zhang Frank Tong Chun-Xia Li Yumei Yan Doty Kempf Govind Nair Silun Wang E. Chris Muly Stuart Zola Leonard Howell 《PloS one》2015,10(2)
MethodsPermanent MCA occlusion was induced with silk sutures through an interventional approach via the femoral artery in adult rhesus monkeys (n = 8, 10–21 years old). The stroke lesions were examined with high-resolution DWI and perfusion MRI, and T2-weighted imaging (T2W) on a clinical 3T scanner at 1–6, 48, and 96 hours post occlusion and validated with H&E staining.ResultsThe stroke infarct evolved via a natural logarithmic pattern with the mean infarct growth rate = 1.38 ± 1.32 ml per logarithmic time scale (hours) (n = 7) in the hyperacute phase (1–6 hours). The mean infarct volume after 6 hours post occlusion was 3.6±2.8 ml (n = 7, by DWI) and increased to 3.9±2.9 ml (n = 5, by T2W) after 48 hours, and to 4.7±2.2ml (n = 3, by T2W) after 96 hours post occlusion. The infarct volumes predicted by the natural logarithmic function were correlated significantly with the T2W-derived lesion volumes (n = 5, r = 0.92, p = 0.01) at 48 hours post occlusion. The final infarct volumes derived from T2W were correlated significantly with those from H&E staining (r = 0.999, p < 0.0001, n = 4). In addition, the diffusion-perfusion mismatch was visible generally at 6 hours but nearly diminished at 48 hours post occlusion.ConclusionThe infarct evolution follows a natural logarithmic pattern in the hyperacute phase of stroke. The logarithmic pattern of evolution could last up to 48 hours after stroke onset and may be used to predict the infarct volume growth during the acute phase of ischemic stroke. The nonhuman primate model, MRI protocols, and post data processing strategy may provide an excellent platform for characterizing the evolution of acute stroke lesion in mechanistic studies and therapeutic interventions of stroke disease. 相似文献
102.
S B Doty 《The journal of histochemistry and cytochemistry》1980,28(1):66-68
Problems encountered in the histochemical localization of alkaline phosphatase activity are discussed and solutions presented. The purpose is to achieve a reaction that can be studied by light and electron microscopy and to distinguish alkaline glycerophosphatase from inorganic pyrophosphatase activity. Details are presented concerning fixatives, fixation times, incubation media, enzyme inhibitors, activators, and associated techniques that can be used to obtain optimal histochemical results. 相似文献
103.
Niels H. Skotte Amber L. Southwell Michael E. ?stergaard Jeffrey B. Carroll Simon C. Warby Crystal N. Doty Eugenia Petoukhov Kuljeet Vaid Holly Kordasiewicz Andrew T. Watt Susan M. Freier Gene Hung Punit P. Seth C. Frank Bennett Eric E. Swayze Michael R. Hayden 《PloS one》2014,9(9)
Huntington disease (HD) is an inherited, fatal neurodegenerative disorder caused by a CAG repeat expansion in the huntingtin gene. The mutant protein causes neuronal dysfunction and degeneration resulting in motor dysfunction, cognitive decline, and psychiatric disturbances. Currently, there is no disease altering treatment, and symptomatic therapy has limited benefit. The pathogenesis of HD is complicated and multiple pathways are compromised. Addressing the problem at its genetic root by suppressing mutant huntingtin expression is a promising therapeutic strategy for HD. We have developed and evaluated antisense oligonucleotides (ASOs) targeting single nucleotide polymorphisms that are significantly enriched on HD alleles (HD-SNPs). We describe our structure-activity relationship studies for ASO design and find that adjusting the SNP position within the gap, chemical modifications of the wings, and shortening the unmodified gap are critical for potent, specific, and well tolerated silencing of mutant huntingtin. Finally, we show that using two distinct ASO drugs targeting the two allelic variants of an HD-SNP could provide a therapeutic option for all persons with HD; allele-specifically for roughly half, and non-specifically for the remainder. 相似文献
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Abbott , Isabella A. (Hopkins Marine Station of Stanford U., Pacific Grove, Calif.), and Maxwell S. Doty . Studies in the Helminthocladiaceae. II. Trichogloeopsis . Amer. Jour. Bot. 47(8) : 632–640. Illus. 1960.—A new genus, Trichogloeopsis , in the Helminthocladiaceae of the red algal order Nemalionales is described. Its diagnostic features are the possession of sterile rhizoids produced by the gonimoblast, and the fact that the carpogonial branch is a modified vegetative filament. The type species of the genus is T. hawaiiana from the Hawaiian Islands. Two species of Liagora, L. pedicellata from the Bahamas and L. mucosissima from the Ryukyus, are transferred to the new genus. 相似文献
108.
Inter-strand crosslinking of DNA by nitrogen mustard 总被引:9,自引:0,他引:9
109.
Conditional inactivation of the CXCR4 receptor in osteoprecursors reduces postnatal bone formation due to impaired osteoblast development 总被引:1,自引:0,他引:1
Zhu W Liang G Huang Z Doty SB Boskey AL 《The Journal of biological chemistry》2011,286(30):26794-26805
Cysteine (C)-X-C motif chemokine receptor 4 (CXCR4), the primary receptor for stromal cell-derived factor-1 (SDF-1), is involved in bone morphogenic protein 2 (BMP2)-induced osteogenic differentiation of mesenchymal progenitors. To target the in vivo function of CXCR4 in bone and explore the underlying mechanisms, we conditionally inactivated CXCR4 in osteoprecursors by crossing osterix (Osx)-Cre mice with floxed CXCR4 (CXCR4(fl/fl)) mice to generate knock-outs with CXCR4 deletion driven by the Osx promoter (Osx::CXCR4(fl/fl)). The Cre-mediated excision of CXCR4 occurred exclusively in bone of Osx::CXCR4(fl/fl) mice. When compared with littermate controls, Osx::CXCR4(fl/fl) mice developed smaller osteopenic skeletons as evidenced by reduced trabecular and cortical bone mass, lower bone mineral density, and a slower mineral apposition rate. In addition, Osx::CXCR4(fl/fl) mice displayed chondrocyte disorganization in the epiphyseal growth plate associated with decreased proliferation and collagen matrix syntheses. Moreover, mature osteoblast-related expression of type I collagen α1 and osteocalcin was reduced in bone of Osx::CXCR4(fl/fl) mice versus controls, suggesting that CXCR4 deficiency results in arrested osteoblast progression. Primary cultures for osteoblastic cells derived from Osx::CXCR4(fl/fl) mice also showed decreased proliferation and impaired osteoblast differentiation in response to BMP2 or BMP6 stimulation, and suppressed activation of intracellular BMP receptor-regulated Smads (R-Smads) and Erk1/2 was identified in CXCR4-deficient cells and bone tissues. These findings provide the first in vivo evidence that CXCR4 functions in postnatal bone development by regulating osteoblast development in cooperation with BMP signaling. Thus, CXCR4 acts as an endogenous signaling component necessary for bone formation. 相似文献
110.