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An automated on-line method for simultaneous analysis of five phenothiazine drugs by high-performance liquid chromatography (HPLC)/sonic spray ionization mass spectrometry (SSI-MS) has been established, using backflush column switching. A 400-μl portion of serum sample diluted 81-fold with distilled water was subjected to the on-line system. In the system, an Oasis HLB cartridge was used as the precolumn for extraction; large molecules such as proteins in serum were discarded by use of distilled water containing 0.1% formic acid as a mobile phase. After switching a valve, the analytes trapped in the precolumn were eluted in the backflush mode and separated by a Chromolith Performance RP-18e column, which is composed of C18-bonded monolithic silica. The column effluents were then introduced into the SSI-MS. The present method provided successful separation and determination of six phenothiazines including an internal standard. Satisfactory linearities, reproducibility, and sensitivity were obtained at concentration levels that matched the toxic levels of phenothiazines. All drug peaks appeared within 18 min, and the system could be reequilibrated in only about 8 min for the next run. Because of the simplicity and rapidness of the method, it is likely to be useful in the fields of emergency medicine and forensic toxicology.  相似文献   
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Sonic hedgehog(Shh)是一类在胚胎发育过程中起关键作用的信号调节因子。研究认为Shh信号在前列腺导管形成分化以及基质-上皮的相互作用等机制中发挥着重要作用,从而调节前列腺发育、生长和细胞增殖;Shh信号作用途径的紊乱可导致肿瘤细胞的生成和增殖。探讨Shh信号机制在前列腺正常生长和疾病状态中的作用将为研究前列腺疾病的发病机制提供重要的思路。  相似文献   
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目的检测Sonic Hedgehog蛋白(Shh)在帕金森病(Parkinson's disease,PD)大鼠中脑黑质的表达。方法将健康SD大鼠(雌雄不拘)随机分成3组:正常组大鼠不实施任何处理;应用脑立体定位技术,在大鼠右侧纹状体两针道内4点定位注射含0.2g/L抗坏血酸的生理盐水4μL(假手术组)或6-羟基多巴(6-OHDA)12μg/4μL(模型组)。术后1、2、4、6周以阿朴吗啡检测其异常旋转行为,左侧旋转的圈数大于7r/min者为合格的帕金森病模型大鼠。6周后在激光共聚焦显微镜下观察黑质Shh及酪氨酸羟化酶(TH)的免疫荧光双重染色结果,用Leica Confocal Software对Shh的荧光强度进行定量分析。结果Shh蛋白在正常对照组和假手术组大鼠中脑黑质中无明显表达,而在模型组表达显著。结论PD模型大鼠黑质中Shh蛋白的明显表达,提示Shh在PD模型大鼠中脑多巴胺能神经元(DA神经元)修复过程中可能发挥着一定的作用。  相似文献   
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音猬因子的功能受体斑片在培养神经干细胞中的表达   总被引:1,自引:0,他引:1  
许汉鹏  胡沛臻  苟琳  张萍  鞠躬 《解剖学报》2002,33(6):561-565
目的 观察在培养的神经干细胞内是否有发育调控分子———音猬因子 (sonichedgehog)功能受体———斑片 (patched)表达。 方法 神经干细胞克隆在体外培养传代后 ,用patched的特异性引物对培养的神经干细胞进行RT PCR分析 ,PCR产物经克隆测序后 ,用地高辛标记克隆的探针 ,对神经干细胞进行原位杂交分析。 结果 神经干细胞克隆内大量的细胞均可表达sonichedgehog的功能受体patched ,patched阳性细胞间未见明显差别 ,克隆边缘与中央的patched分布也未见明显差别。 结论 sonichedgehog信号传导路可能在神经干细胞的增殖与分化过程中起重要作用。  相似文献   
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Holoprosencephaly: from Homer to Hedgehog   总被引:5,自引:0,他引:5  
Holoprosencephaly (HPE), a common developmental defect affecting the forebrain and face, is etiologically heterogeneous and exhibits wide phenotypic variation. Graded degrees of severity of the brain malformation are also reflected in the highly variable craniofacial malformations associated with HPE. In addition, individuals with microforms of HPE, who usually have normal cognition and normal brain imaging, are at risk for having children with HPE. Some obligate carriers for HPE may not have any phenotypic abnormalities. Recurrent chromosomal rearrangements in individuals with HPE suggest loci containing genes important for brain development, and abnormalities in these genes may result in HPE. Recently, Sonic Hedgehog (SHH) was the first gene identified as causing HPE in humans. Proper function of SHH depends on cholesterol modification. Other candidate genes that may be involved in HPE include components of the SHH pathway, elements involved in cholesterol metabolism, and genes expressed in the developing forebrain.  相似文献   
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Sonoporation is emerging as a feasible, non-viral gene delivery platform for the treatment of cardiovascular disease and cancer. Despite promising results, this approach remains less efficient than viral methods. The objective of this work is to help substantiate the merit of polymeric microbubble sonoporation as a non-viral, localized cell permeation and payload delivery strategy by taking a ground-up approach to elucidating the fundamental mechanisms at play. In this study, we apply simultaneous microscopy of polymeric microbubble sonoporation over its intrinsic biophysical timescales–with sub-microsecond resolution to examine microbubble cavitation and millisecond resolution over several minutes to examine local macromolecule uptake through enhanced endothelial cell membrane permeability–bridging over six orders of magnitude in time. We quantified microbubble behavior and resulting sonoporation thresholds at transmit frequencies of 0.5, 1 and 2 MHz, and determined that sonic cracking is a necessary but insufficient condition to induce sonoporation. Further, sonoporation propensity increases with the extent of sonic cracking, namely, from partial to complete gas escape from the polymeric encapsulation. For the subset that exhibited complete gas escape from sonic cracking, a proportional relationship between the maximum projected gas area and resulting macromolecule uptake was observed. These results have revealed one aspect of polymeric bubble activity on the microsecond time scale that is associated with eliciting sonoporation in adjacent endothelial cells, and contributes toward an understanding of the physical rationale for sonoporation with polymer-encapsulated microbubble contrast agents.  相似文献   
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Introduction: Pancreatic adenocarcinoma (PDAC) has the worst prognosis of any major malignancy, with 5-year survival painfully inadequate at under 5%. Investigators have struggled to target and exploit PDAC unique biology, failing to bring meaningful results from bench to bedside. Nonetheless, in recent years, several promising targets have emerged.

Areas covered: This review will discuss novel drug approaches in development for use in PDAC. The authors examine the continued efforts to target Kirsten rat sarcoma viral oncogene homolog (KRas), which have recently been successfully abated using novel small interfering RNA (siRNA) eluting devices. The authors also discuss other targets relevant to PDAC including those downstream of mutated KRas, such as MAPK kinase and phosphatidylinositol 3-kinase.

Expert opinion: Although studies into novel biomarkers and advanced imaging have highlighted the potential new avenues toward discovering localized tumors earlier, the current therapeutic options highlight the fact that PDAC is a highly metastatic and chemoresistant cancer that often must be fought with virulent, systemic therapies. Several newer approaches, including siRNA targeting of mutated KRas and enzymatic depletion of hyaluronan with PEGylated hyaluronidase are particularly exciting given their early stage results. Further research should help in elucidating their potential impact as therapeutic options.  相似文献   
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