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41.
Exosomes hold great potential to deliver therapeutic reagents for cancer treatment due to its inherent low antigenicity. However, several technical barriers, such as low productivity and ineffective cancer targeting, need to be overcome before wide clinical applications. The present study aims at creating a new biomanufacturing platform of cancer‐targeted exosomes for drug delivery. Specifically, a scalable, robust, high‐yield, cell line based exosome production process is created in a stirred‐tank bioreactor, and an efficient surface tagging technique is developed to generate monoclonal antibody (mAb)‐exosomes. The in vitro characterization using transmission electron microscopy, NanoSight, and western blotting confirm the high quality of exosomes. Flow cytometry and confocal laser scanning microscopy demonstrate that mAb‐exosomes have strong surface binding to cancer cells. Furthermore, to validate the targeted drug delivery efficiency, romidepsin, a histone deacetylase inhibitor, is loaded into mAb‐exosomes. The in vitro anti‐cancer toxicity study shows high cytotoxicity of mAb‐exosome‐romidepsin to cancer cells. Finally, the in vivo study using tumor xenograft animal model validates the cancer targeting specificity, anti‐cancer efficacy, and drug delivery capability of the targeted exosomes. In summary, new techniques enabling targeted exosomes for drug delivery are developed to support large‐scale animal studies and to facilitate the translation from research to clinics.  相似文献   
42.
Hu Y  Jin Y  Han D  Zhang G  Cao S  Xie J  Xue J  Li Y  Meng D  Fan X  Sun LQ  Wang M 《Journal of virology》2012,86(6):3347-3356
Although an important role for mast cells in several viral infections has been demonstrated, its role in the invasion of highly pathogenic H5N1 influenza virus is unknown. In the present study, we demonstrate that mast cells were activated significantly by H5N1 virus (A/chicken/Henan/1/2004) infection both in vivo and in vitro. Mast cells could possibly intensify the lung injury that results from H5N1 infection by releasing proinflammatory mediators, including histamine, tryptase, and gamma interferon (IFN-γ). Lung lesions and apoptosis induced by H5N1 infection were reduced dramatically by treatment with ketotifen, which is a mast cell degranulation inhibitor. A combination of ketotifen and the neuraminidase inhibitor oseltamivir protected 100% of the mice from death postinfection. In conclusion, our data suggest that mast cells play a crucial role in the early stages of H5N1 influenza virus infection and provide a new approach to combat highly pathogenic influenza virus infection.  相似文献   
43.
中国南海侧扁软柳珊瑚中孕甾烷类化学成分的研究(英文)   总被引:1,自引:0,他引:1  
从南海侧扁软柳珊瑚Subergorgia suberosa的二氯甲烷-甲醇提取物中首次分离鉴定了8个孕甾烷类化合物,经波谱鉴定为3β-O-palmitoyl-pregn-5-ene-20-one-3-ol (1),3β-O-palmitoyl-5α-pregn-20-one-3-ol (2),5α-pregn-1-ene-3,20-dione (3),3β,5α-pregn-20-one-3-ol (4),3β-pregn-5-ene-20-one-3-ol (5),3β,5β-pregn-20-one-3-ol (6),5β-pregn-3,20-dione (7),pregn-4-ene-3,20-dione (8).其中化合物1,2为新化合物.  相似文献   
44.
Under the changing climate, asymmetric warming pattern would be more likely during day and night time, instead of symmetric one. Concurrently, the growth responses and water use of plants may be different compared with those estimated based on symmetric warming. In this work, it was compared with the effects of symmetric (ETs) and asymmetric (ETa) elevation of temperature alone, and in interaction with elevated carbon dioxide concentration (EC), on the grain yield (GY) and evapotranspiration in winter wheat (Triticum aestivum L.) based on pot experiment in the North China Plain (NCP). The experiment was carried out in six enclosed‐top chambers with following climate treatments: (1) ambient temperature and ambient CO2 (CON), (2) ambient temperature and elevated CO2 (EC), (3) elevated temperature and ambient CO2 (ETs; ETa), and (4) elevated temperature and elevated CO2 (ECETs, ECETa). In symmetric warming, temperature was increased by 3°C and in asymmetric one by 3.5°C during night and 2.5°C during daytime, respectively. As a result, GY was in ETa and ETs 15.6 (P < 0.05) and 10.3% (P < 0.05) lower than that in CON. In ECETs and ECETa treatments, GY was 14.9 (P < 0.05) and 9.1% (P < 0.05) higher than that in CON. Opposite to GY, evapotranspiration was 7.8 (P < 0.05) and 17.9% (P < 0.05) higher in ETa and ETs treatments and 7.2 (P < 0.05) and 2.1% (P > 0.05) lower in ECETs and ECETa treatments compared with CON. Thus, GY of wheat could be expected to increase under the changing climate with concurrent elevation of CO2 and temperature as a result of increased WUE under the elevated CO2. However, the gain would be lower under ETa than that estimated based on ETs due to higher evapotranspiration.  相似文献   
45.
热休克蛋白gp96是热休克蛋白90家族成员,能够引起非特异性和特异性免疫反应。得到大量高纯度的蛋白质是研究开发gp96的关键。然而重组的gp96容易在E.coli中降解,并在一定条件下形成多聚体。实验先将人gp96基因克隆到pET-30a载体上并在E.coli Blstar中表达,再经过亲和层析、阴离子交换、分子筛分别纯化gp96。最终去掉了大部分的降解片段和多聚体,得到一定量的可溶性gp96,为进一步研究其结构和功能打下一定的基础。  相似文献   
46.
土曲霉(Aspergillus terreus)产生洛伐他汀(lovastatin)的研究   总被引:14,自引:0,他引:14  
从土曲霉Aspergillus terreus CA951发酵液中,分离出一种白色针状晶体,经质谱、紫外光谱、红外光 谱和核磁共振谱分析,与文献报道的洛伐他汀(lovastatin)基本一致。 A.terreus  CA951经亚硝基胍诱变,选出 编号为CAN 187的突变株,其产生洛伐他汀的能力比CA951高66%。摇瓶发酵实验研究了不同碳源、氮源和 水质对 CAN187 菌株产生洛伐他汀的影响,并进行了 500L发酵罐实验,发酵单位达900mg/L左右。  相似文献   
47.
经过PCR克隆得到硫酸乙酰肝素3-O硫酸基转移酶5(3-OST-5)的基因,将其与大肠杆菌表达载体pET-15b连接后,在大肠杆菌BL21(DE3)中诱导表达,使用镍亲和层析柱纯化得到具有活性的3-OST-5。经测定纯化后的3-OST-5比活达到0.58 U/mg,是纯化前的5.27倍,回收率达80.4%。在此基础上,研究了该酶的酶学性质,酶反应的最适温度为35℃,稳定范围为20-40℃;最适pH为7.0,在pH7.0-9.0范围内稳定。在反应液中加入终浓度为1 mmol/L的K+、Ca2+、Ba2+对酶促反应有一定的促进作用。  相似文献   
48.
转基因白桦中GUS基因表达的定量分析   总被引:1,自引:0,他引:1  
以转基因白桦(Betula platyphylla)为材料,采用单酶切结合Southern杂交的方法揭示不同转基因植株中GUS基因的整合拷贝数为1—4个。采用组织化学染色法定性分析不同整合方式转基因白桦植株中GUS基因的表达。结果表明,11个转基因植株中有2株出现了GUS基因沉默,其余植株均有不同水平的GUS表达。在此基础上应用分光光度法定量分析不同拷贝数的GUS转基因白桦中β-葡萄糖醛酸酶活性。结果表明,在11个转基因尢性系中除2个株系的GUS基因沉默外,其它9个转基因植株中GUS酶活力差异明显,但这种差异与GUS基因的拷贝数没有必然联系。  相似文献   
49.
以小麦品种矮抗58为材料,采用0.3 mmol/L水杨酸(SA)溶液预处理灌浆期小麦叶片,以水预处理为对照,进行3种不同的光温处理:适宜温度中等光强(25℃,600 μmol m-2 s-1)2h、高温强光(38℃,1600μmol m-2 s-1)2h、高温强光2h后置于适宜温度中等光强下恢复3h.测定不同光温条件下,小麦叶绿体的Deg1蛋白酶、D1蛋白和PSⅡ功能的变化及SA的调节效应.结果表明,高温强光胁迫导致Deg1蛋白酶和D1蛋白降解,PSⅡ功能发生可逆损伤.与对照相比,水杨酸预处理不仅能够抑制高温强光下小麦叶绿体Deg1蛋白酶和D1蛋白的降解,维持较高的PSⅡ原初光化学效率(Fv/ Fm)、实际光化学效率(φPSⅡ)、电子传递速率和净光合速率(Pn),而且加快回到非逆境下PSⅡ功能的恢复.  相似文献   
50.
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