Results 41 to 50 of about 26,778 (175)

不可忽视诱导导尿

open access: yesHuli yanjiu, 1989
诱导导尿是一种诱导尿潴留病人排尿的方法.此法简便易学,无付作用.但这种方法往往被人们忽视.本人曾遇一例,经多次行导尿术失败,而用诱导导尿成功的患儿,现报道如下;典型病例郭某、男、9岁,行单侧腹股沟斜病修补术后4小时,下腹部膨胀,排尿困难,责任护士草率诱导导尿,无效后,便匆忙行导尿术,多次插管均未成功 ...
贾海青
doaj  

p38MAPK induces apoptosis of glioma cell [PDF]

open access: yes, 2001
目的 研究 p38MAPK基因转染大鼠胶质瘤细胞系C6后对其生物学特性的影响 .方法 利用脂质体介导法将p38MAPK基因导入大鼠胶质瘤细胞系 C6中 ,用免疫细胞化学染色检测其在细胞转染前后的表达情况 ,用 HE染色、流式细胞仪等方法研究其对细胞形态、粘着状况和生长周期的影响 .结果 转染 p CMV5 - p38MAPK质粒组 p38MAPK蛋白表达阳性 ,细胞形态发生变化 ,贴壁性降低 ,出现大量凋亡细胞 .结论 转染 ...
叶菁(第四军医大学西京医院病理科)   +6 more
core  

Direct Observation of Matrix‐to‐Precipitate Elemental Diffusion in Severe Plastic Deformation

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Elemental redistribution, particularly the solute exchange between the matrix and precipitates, is a central issue in alloys subjected to severe plastic deformation (SPD). To elucidate this behavior, a nickel–aluminum bronze (NAB) alloy was processed by high‐pressure torsion (HPT), and its microstructural evolution was systematically ...
Xiaobin Yang   +9 more
wiley   +1 more source

Cyclooxygenase-2 Mediates Cadmium-induced Kidney Injury via Endoplasmic Reticulum Stress [PDF]

open access: yes, 2016
目的:镉及其化合物对哺乳动物的肝、肾、骨骼等脏器具有毒性损害作用。环氧合酶-2(cyclooxygenase-2,COX-2)是花生四烯酸代谢形成前列腺素家族(prostaglandins,PGs)成员通路中的关键限速酶,其在调控细胞增殖、转移、凋亡和血管形成中发挥重要作用。已有报道镉经由ROS诱导大鼠肾细胞中COX-2表达升高而引起肾损伤,同时也有报道自噬在镉诱导的肾损伤中扮演重要的作用,但是COX-2和自噬在镉暴露诱导肾毒性损伤中的作用及其机制尚待阐明。本研究拟探讨COX ...
骆冰
core  

Biodegradable Mg Alloys: Enhancing Anti‐tumor Immunity in Cancer Therapy

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Magnesium (Mg) alloys, as biodegradable metallic materials with excellent biocompatibility and mechanical properties, demonstrate significant advantages. In the field of immunotherapy, they present a promising potential option for enhancing therapeutic outcomes and hold broad prospects for application.
Can Feng   +8 more
wiley   +1 more source

PI3K/AKT/FKHRL1信号通路对CXLC16诱导的平滑肌细胞增殖的影响

open access: yesZhongguo shiyan zhenduanxue, 2008
目的探讨PI3K/AKT/FKHRL1信号转导通路在CXCL16诱导的血管平滑肌增殖中的作用。方法运用细胞计数法及MTT法检测CXCL16对于平滑肌细胞增殖的影响;免疫组化法观察CXCL16对PI3K/AKT/FKHRL1信号转导通路的作用,同时观察PI3K/AKT抑制剂LY294002对CXCL16诱导的上述变化的影响。结果CXCL16可明显诱导平滑肌细胞增殖,作用高峰时间在第4天,并且可增加磷酸化AKT及磷酸化FKHRL1的表达。PI3K ...
周珊珊, 魏岩, 郑杨
doaj  

Transcriptome and Proteome Analysis During Larval Settlement and Metamorphosis in Fujian Oyster(Crassostrea angulata) [PDF]

open access: yes, 2016
附着变态衔接浮游阶段与底栖阶段,是海洋无脊椎动物生活史的重要环节,附着变态过程涉及到复杂的生理过程和行为形态的改变,人们至今未能很好地阐释其中涉及到的分子机制。福建牡蛎(Crassostreaangulata)是我国南方主要的贝类养殖种之一,具有典型的附着变态过程。然而关于牡蛎附着变态过程的分子研究停留在个别基因的克隆和定量表达的研究,这并不能反映附着变态过程的多基因的调控网络。有大量的药理学研究表明肾上腺素能够诱导牡蛎幼体未经附着而直接变态,但是肾上腺素诱导的分子机制的研究至今空白。本研究采用转录组学、
肖小伙
core  

Cancellous Bone‐Like Sr‐Doped Hydroxyapatite/Gelatin Porous Scaffolds With Nanofibrous Architecture and Ion Release for Promoting Osteogenesis

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Constructing a porous scaffold with the essential features of natural cancellous bone, including structural architecture and biochemical cues, is one of the pivotal factors for effective bone regeneration. In this study, a biomimetic composite porous Gelatin fibrous scaffold (SrHA/Gelatin) incorporating ultralong strontium‐doped hydroxyapatite
Yin‐Chuan Wang   +8 more
wiley   +1 more source

全反式维甲酸对大鼠骨髓间质细胞的诱导分化作用

open access: yesZhongshan Daxue xuebao. Yixue kexue ban, 2002
【目的】探讨全反式维甲酸对大鼠骨髓间质细胞(BMSCs)的诱导分化作用。【方法】从大鼠骨髓中分离培养间质 细胞并传至第6 代, 诱导前24 h 加1 μg·L-1碱性成纤维生长因子(bFGF)入培养液中以促分裂, 再以反式维甲酸作诱导剂, 然 后观察细胞形态的变化, 并采用免疫组织化学法, 对诱导后第4 天的细胞行巢蛋白(nestin)、神经丝蛋白(NF)、神经元特异性 烯醇化酶(NSE)表达的检测。对第8 天的细胞行脂肪细胞特异性苏丹Ⅱ 染色。【结果】诱导后第4 天的部分细胞不仅在形态 ...
庄 菁, 谢金卫
doaj  

Study on the Function of the Neuron-Specific Protein TMEM59L in the Central Nervous System and in Oxidative Stress-Induced Cell Death [PDF]

open access: yes, 2016
细胞凋亡是受基因严格调控的、自然发生的程序性细胞死亡过程,而细胞自噬是细胞组分自我降解的过程,二者在发育、组织稳态以及病原体防御中扮演着重要角色。细胞凋亡和细胞自噬发生异常会引发多种疾病包括癌症和神经系统疾病。神经元对于氧化应激十分敏感,并易于受到活性氧的攻击;当神经元长期暴露于包括过氧化氢在内的活性氧的攻击时会引发细胞死亡,导致各种神经系统疾病。因此,鉴定参与神经元死亡的新基因蛋白并揭示其作用机制,将有助于阐明神经系统疾病的致病机理。 TMEM59L为新发现的脑特异性高表达蛋白 ...
郑秋阳
core  

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