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1.
肿瘤是机体在各种致瘤因子作用下,局部组织细胞异常增生所形成的赘生物。肿瘤治疗一直是临床上的一个难题,而放疗、化疗和手术等常规的肿瘤治疗方法均具有明显的局限性。早期研究发现某些厌氧菌或兼性厌氧菌具有抗肿瘤效应,例如兼性厌氧菌鼠伤寒沙门氏菌可以通过某些机制选择性定殖于肿瘤并抑制肿瘤生长,其应用于肿瘤治疗具有许多潜在的优势。过去的一二十年里,已有不少研究者通过遗传操作减弱沙门菌毒力,提高其定殖肿瘤的靶向性,或以减毒沙门菌作为载体向肿瘤靶向递呈各种治疗分子,并在许多动物试验中观察到遗传改造沙门菌的良好抗肿瘤效应。随着沙门菌抗肿瘤研究的不断深入,应用遗传改造的沙门菌有希望成为一条更有效的肿瘤治疗途径。本文将从沙门菌的抗肿瘤机制、遗传改造的沙门菌介导肿瘤治疗的研究进展和目前研究存在的问题等方面进行综述。  相似文献   

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冉茜  胡昌华 《生命科学》2009,(3):452-455
减毒鼠伤寒沙门菌由于具有肿瘤靶向性,能在肿瘤组织中复制并产生抗肿瘤效果的能力,使肿瘤治疗获得了新契机。减毒鼠伤寒沙门菌作为细菌载体使目的基因在肿瘤组织内特异表达,表现出良好治疗效果。近期研究发现,单独使用突变后的菌株A1-R在裸鼠模型上治疗乳腺癌和前列腺癌分别可达到40%和50%的治愈率;在小鼠肿瘤转移模型中也展现出良好的治疗效果。鼠伤寒沙门菌作为肿瘤治疗制剂有诱人的前景。本文就这些研究的最新进展做一综述。  相似文献   

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沙门菌(Salmonella)通过向宿主细胞分泌毒力效应蛋白(effector protein)来调控细胞内一系列的信号传导通路,从而有利于沙门菌的侵染和繁殖。NF-κB信号通路在宿主对病原菌的炎症反应及免疫应答中发挥着重要的作用,也是很多毒力效应蛋白调控的靶点。沙门菌致病岛(Salmonella pathogenicity island,SPI)-1上的毒力效应蛋白Sip A、Sop E、Sop E2和Sop B都能激活宿主细胞的NF-κB信号通路,而毒力效应蛋白Spt P、Avr A、Ssp H1以及SPI-2上的Sse L能有效地抑制NF-κB信号通路。研究这些毒力效应蛋白对NF-κB信号通路的时相调控和协同作用,将进一步揭示沙门菌的致病机制。  相似文献   

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沙门菌致病岛2 Ⅲ型分泌系统研究进展   总被引:1,自引:0,他引:1  
沙门菌(Salmonella)是革兰氏阴性的兼性胞内菌,可引起其广泛宿主的一系列疾病,严重时可导致全身性感染,威胁生命安全。沙门菌致病岛2(SPI2)是与沙门菌全身性感染密切相关的重要毒力基因簇,其编码的Ⅲ型分泌系统2(T3SS2)在沙门菌侵入宿主细胞后开始组装合成,经该装置分泌的多种效应蛋白对沙门菌在宿主细胞内的生存和增殖起着重要作用。近些年来,与沙门菌T3SS2相关的研究一直都是病原微生物领域关注的焦点之一。本文简要综述了SPI2的基因特征、SPI2基因表达的调控、T3SS2的结构和组成、T3SS2的效应蛋白及与T3SS2相关的疫苗研究等方面的主要研究进展。  相似文献   

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【背景】鼠伤寒沙门菌(Salmonella typhimurium)是一种重要的人畜共患病原菌,严重危害养殖业及人类健康。调控蛋白在病原菌的生存及感染过程中发挥重要作用。【目的】构建鼠伤寒沙门菌调控基因rtsB缺失株和互补株,分析调控蛋白RstB对鼠伤寒沙门菌生物学特性和致病性的影响。【方法】利用Red同源重组的方法构建鼠伤寒沙门菌SAT52的rtsB基因缺失株,并利用互补质粒构建互补株。然后比较分析野生株SAT52、缺失株?rtsB和互补株C?rtsB的生长特性、运动性、生物被膜形成能力、黏附入侵能力、胞内存活能力及致病性的差异。【结果】缺失rtsB基因不影响SAT52的生长速度,但导致运动能力增强,生物被膜形成能力减弱。细胞感染试验结果表明,rtsB基因有助于鼠伤寒沙门菌对Hela细胞的黏附入侵及RAW264.7细胞内的存活。动物试验结果表明rtsB基因缺失显著降低鼠伤寒沙门菌的致病力。【结论】rtsB基因在鼠伤寒沙门菌感染过程中发挥重要作用,可为阐释鼠伤寒沙门菌的致病机制提供参考。  相似文献   

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李豫  杨小鹃  张菊梅  王涓  吴清平 《微生物学报》2021,61(12):3918-3927
沙门菌(Salmonella spp.)是公共卫生学上具有重要意义的人畜共患病病原菌。人、畜感染沙门菌后会引起伤寒、副伤寒、胃肠炎、败血症和肠外局灶性感染等疾病。抗生素是治疗沙门菌严重感染的有效手段,随着临床和畜牧业中抗生素的大量使用,使得沙门菌的耐药情况日益严重。整合子是普遍存在于细菌中的一种可移动基因元件,可有效捕获外源基因确保其表达,并复合于转座子、质粒等,使多种耐药基因在细菌种内或者种间进行传播。在过去的二十年中,随着新基因盒和复杂整合子的不断出现,导致整合子系统迅速进化。整合子在沙门菌耐药性传播过程中具有非常重要的作用,因此,本文对整合子系统的分子结构、分类、作用机制,以及沙门菌中存在的Ⅰ、Ⅱ、Ⅲ类整合子介导的耐药性及现有检测方法的研究进展进行综述,以期为沙门菌耐药性研究提供参考。  相似文献   

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熊果酸(ursolic acid)是广泛存在于自然界植物中的一种五环三萜类化合物,具有广泛的生物学活性,主要经肝脏代谢。传统临床治疗中熊果酸多用于抗炎、抗病毒、调节免疫功能以及保肝治疗等。近年来的研究表明,在体外和体内实验中,熊果酸能够对不同肿瘤细胞产生杀伤作用,抑制恶性肿瘤组织的生长,具有广谱的抗肿瘤活性。此外,熊果酸联合放化疗能够提高肿瘤细胞对治疗的敏感性,产生辅助增强放化疗疗效的作用,并且在放疗中可保护受照射机体的正常组织,促进免疫机能的恢复。熊果酸的抗肿瘤作用机制与下调促肿瘤生长、侵袭和转移相关基因的水平,增强凋亡基因的表达有关,并且能够通过调节多种细胞信号转导通路,杀灭肿瘤细胞,延缓肿瘤组织生长。同时,熊果酸可影响肿瘤细胞周期的分布,导致细胞的G1/S期阻滞,从而抑制肿瘤细胞的有丝分裂,诱导细胞凋亡。因此,熊果酸是一种极具潜力的天然抗肿瘤药物。本文对熊果酸在肿瘤治疗中的研究结果进行整合,阐述了熊果酸的抗肿瘤分子机制及其疗效,为熊果酸今后在临床中的进一步应用提供指导思路。  相似文献   

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采用选择性培养、生化鉴定、血清型鉴定等方法,对从53份水貂病料中分离的35株沙门菌(Salmonella)进行了鉴定,分离率66.04%(35/53),其中34株为肠炎沙门菌(Salmonella enteritidis,Se),分别命名为Se-SD-1~Se-SD-34,1株为鼠伤寒沙门菌(S.typhimurium,St),命名为St-SD-1,这表明沙门菌在山东省诸城市水貂群中流行。采用PCR方法对35株沙门菌的10个毒力基因检测,结果invA和mgtC的携带率为100%(35/35),sopE和tolC 97.14%(34/35),stn 94.29%(33/35),avrA 88.57%(31/35),spiA 82.86%(29/35),hilC 68.57%(24/35),spvB 62.86%(22/35)和pefA 42.86%(15/35),毒力基因在不同菌株的分布不同。对阿莫西林等11种药物敏感性试验结果表明,35株水貂沙门菌存在不同程度的耐药,34株Se普遍耐药,其中对新霉素的耐药率最高(15/34),并存在对多种药物耐药现象,1株St耐药不严重,仅对四环素耐药...  相似文献   

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肠炎沙门菌(Salmonella enteritidis)是一种重要的人兽共患病原菌,在对该菌感染的预防与控制上一直存在困难,而糖蛋白疫苗的出现为其预防提供了新的思路。对于糖蛋白的合成,一般采用传统的化学交联方法,该法制备流程烦琐、生产成本高。因此,探索经济且稳定的生物合成方法非常必要。为了实现生物法合成肠炎沙门菌糖蛋白,本研究利用CRISPR/Cas9方法构建肠炎沙门菌waa L基因缺失株SEΔwaa L,使用银染的方法检测细菌外膜脂多糖(lipopolysaccharide,LPS)的合成情况。使用环形PCR方法构建了表达寡糖转移酶PglL、重组铜绿假单胞菌的外毒素(recombinant Pseudomonas aeruginosa exotoxin A,r EPA)和霍乱毒素B亚单位(cholera toxin B subunit,CTB)的表达质粒,并分别在rEPA的N端和CTB的C端加入了PilE;糖基化位点序列。将重组质粒转化到SE ΔwaaL中,诱导表达后通过Western blotting方法对糖蛋白的合成进行验证,并通过镍柱(Ni-NTA)对糖蛋白进行纯化。结果表明,waaL基因的缺失阻断了肠炎沙门菌LPS正常合成,在该缺失株中rEPA和CTB蛋白均可成功表达。此外,在表达寡糖转移酶PglL的情况下,rEPA和CTB发生了明显的糖基化,其糖基化部分为肠炎沙门菌O抗原多糖。本研究结果证明肠炎沙门菌缺失waaL基因后,在寡糖转移酶PglL的作用下可以将自身O抗原多糖链共价连接到载体蛋白rEPA和CTB上,形成糖蛋白,为生物法合成肠炎沙门菌糖蛋白的研究奠定了基础。  相似文献   

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沙门菌对酸压力的应答及其与毒力的关系   总被引:1,自引:0,他引:1  
沙门菌(Salmonella spp.)作为肠道细菌,必须克服胃中酸性环境,才能进一步入侵宿主肠道上皮细胞。已有的研究表明,沙门菌通过进化出多种应答机制,增强自身在酸性环境下的生存。本文回顾了沙门菌的耐酸特性,阐述了抵御酸压力时的几种应答机理,包括胞内pH的维持、调控酸激蛋白的时序表达以及细胞膜特性的改变。这些研究对人类了解和控制沙门菌的感染具有重要的指导意义。  相似文献   

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Defects in mitochondrial energy metabolism have been implicated in the pathology of several neurodegenerative disorders. In addition, the reactive metabolites generated from the metabolism and oxidation of the neurotransmitter dopamine (DA) are thought to contribute to the damage to neurons of the basal ganglia. We have previously demonstrated that infusions of the metabolic inhibitor malonate into the striata of mice or rats produce degeneration of DA nerve terminals. In the present studies, we demonstrate that an intrastriatal infusion of malonate induces a substantial increase in DA efflux in awake, behaving mice as measured by in vivo microdialysis. Furthermore, pretreatment of mice with tetrabenazine (TBZ) or the TBZ analogue Ro 4-1284 (Ro-4), compounds that reversibly inhibit the vesicular storage of DA, attenuates the malonate-induced DA efflux as well as the damage to DA nerve terminals. Consistent with these findings, the damage to both DA and GABA neurons in mesencephalic cultures by malonate exposure was attenuated by pretreatment with TBZ or Ro-4. Treatment with these compounds did not affect the formation of free radicals or the inhibition of oxidative phosphorylation resulting from malonate exposure alone. Our data suggest that DA plays an important role in the neurotoxicity produced by malonate. These findings provide direct evidence that inhibition of succinate dehydrogenase causes an increase in extracellular DA levels and indicate that bioenergetic defects may contribute to the pathogenesis of chronic neurodegenerative diseases through a mechanism involving DA.  相似文献   

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In order to determine if the absence of vitamin C in the diet of capybaras (Hydrochoerus hydrochaeris) causes scurvy, a group of seven young individuals were fed food pellets without ascorbic acid, while another group of eight individuals received the same food with 1 g of ascorbic acid per animal per day. Animals in the first group developed signs of scurvy-like gingivitis, breaking of the incisors and death of one animal. Clinical signs appeared between 25 and 104 days from the beginning of the trial in all individuals. Growth rates of individuals deprived of vitamin C was considerably less than those observed in the control group. Deficiency of ascorbic acid had a severe effect on reproduction of another population of captive capybaras. We found that the decrease in ascorbic acid content in the diet affected pregnancy, especially during the first stages. The results obtained suggest that it is necessary to supply a suitable quantity of vitamin C in the diet of this species in captivity.  相似文献   

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The lactate dehydrogenase activity in reactions of lactate oxidation and synthesis was studied in subfractions of the chicken brain, heart and liver at the embryonal, early postembryonal and adult stages of development after thyroxine administration. It has been shown that during embryogenesis thyroxine predominantly enhanced the rate of lactate oxidation in the mitochondrial tissues. A marked increase in the lactate synthesis was found in cytoplasm of the adult chicken tissues. Specificity of enzyme activity alterations was detected in the chicken brain during ontogenesis after thyroxine administration.  相似文献   

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Somatostatin (SST) peptide is a potent inhibitor of insulin secretion and its effect is mediated via somatostatin receptor 5 (SSTR5) in the endocrine pancreas. To investigate the consequences of gene ablation of SSTR5 in the mouse pancreas, we have generated a mouse model in which the SSTR5 gene was specifically knocked down in the pancreatic beta cells (betaSSTR5Kd) using the Cre-lox system. Immunohistochemistry analysis showed that SSTR5 gene expression was absent in beta cells at three months of age. At the time of gene ablation, betaSSTR5Kd mice demonstrated glucose intolerance with lack of insulin response and significantly reduced serum insulin levels. Insulin tolerance test demonstrated a significant increase of insulin clearance in vivo at the same age. In vitro studies demonstrated an absence of response to SST-28 stimulation in the betaSSTR5Kd mouse islet, which was associated with a significantly reduced SST expression level in betaSSTR5Kd mice pancreata. In addition, betaSSTR5Kd mice had significantly reduced serum glucose levels and increased serum insulin levels at 12 months of age. Glucose tolerance test at an older age also indicated a persistently higher insulin level in betaSSTR5Kd mice. Further studies of betaSSTR5Kd mice had revealed elevated serum C-peptide levels at both 3 and 12 months of age, suggesting that these mice are capable of producing and releasing insulin to the periphery. These results support the hypothesis that SSTR5 plays a pivotal role in the regulation of insulin secretion in the mouse pancreas.  相似文献   

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