virulence factors

毒力因子
  • 文章类型: Journal Article
    Background. Pseudomonas aeruginosa is an invasive organism that frequently causes severe tissue damage in diabetic foot ulcers.Gap statement. The characterisation of P. aeruginosa strains isolated from diabetic foot infections has not been carried out in Tunisia.Purpose. The aim was to determine the prevalence of P. aeruginosa isolated from patients with diabetic foot infections (DFIs) in Tunisia and to characterize their resistance, virulence and molecular typing.Methods. Patients with DFIs admitted to the diabetes department of the International Hospital Centre of Tunisia, from September 2019 to April 2021, were included in this prospective study. P. aeruginosa were obtained from the wound swabs, aspiration and soft tissue biopsies during routine clinical care and were confirmed by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. Antimicrobial susceptibility testing, serotyping, integron and OprD characterization, virulence, biofilm production, pigment quantification, elastase activity and molecular typing were analysed in all recovered P. aeruginosa isolates by phenotypic tests, specific PCRs, sequencing, pulsed-field gel electrophoresis (PFGE) and multilocus sequence typing.Results. Sixteen P. aeruginosa isolates (16.3 %) were recovered from 98 samples of 78 diabetic patients and were classified into 6 serotypes (O:11 the most frequent), 11 different PFGE patterns and 10 sequence types (three of them new ones). The high-risk clone ST235 was found in two isolates. The highest resistance percentages were observed to netilmicin (69 %) and cefepime (43.8 %). Four multidrug-resistant (MDR) isolates (25 %) were detected, three of them being carbapenem-resistant. The ST235-MDR strain harboured the In51 class 1 integron (intI1 +aadA6+orfD+qacED1-sul1). According to the detection of 14 genes involved in virulence or quorum sensing, 5 virulotypes were observed, including 5 exoU-positive, 9 exoS-positive and 2 exoU/exoS-positive strains. The lasR gene was truncated by ISPpu21 insertion sequence in one isolate, and a deletion of 64 bp in the rhlR gene was detected in the ST235-MDR strain. Low biofilm, pyoverdine and elastase production were detected in all P. aeruginosa; however, the lasR-truncated strain showed a chronic infection phenotype characterized by loss of serotype-specific antigenicity, high production of phenazines and high biofilm formation.Conclusions. Our study demonstrated for the first time the prevalence and the molecular characterization of P. aeruginosa strains from DFIs in Tunisia, showing a high genetic diversity, moderate antimicrobial resistance, but a high number of virulence-related traits, highlighting their pathological importance.
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  • 文章类型: Journal Article
    The bacterial species Salmonella enterica (S. enterica) is a highly diverse pathogen containing more than 2600 distinct serovars, which can infect a wide range of animal and human hosts. Recent global emergence of multidrug resistant strains, from serovars Infantis and Muenchen is associated with acquisition of the epidemic megaplasmid, pESI that augments antimicrobial resistance and pathogenicity. One of the main pESI\'s virulence factors is the potent iron uptake system, yersiniabactin encoded by fyuA, irp2-irp1-ybtUTE, ybtA, and ybtPQXS gene cluster. Here we show that yersiniabactin, has an underappreciated distribution among different S. enterica serovars and subspecies, integrated in their chromosome or carried by different conjugative plasmids, including pESI. While the genetic organization and the coding sequence of the yersiniabactin genes are generally conserved, a 201-bp insertion sequence upstream to ybtA, was identified in pESI. Despite this insertion, pESI-encoded yersiniabactin is regulated by YbtA and the ancestral Ferric Uptake Regulator (Fur), which binds directly to the ybtA and irp2 promoters. Furthermore, we show that yersiniabactin genes are specifically induced during the mid-late logarithmic growth phase and in response to iron-starvation or hydrogen peroxide. Concurring, yersiniabactin was found to play a previously unknown role in oxidative stress tolerance and to enhance intestinal colonization of S. Infantis in mice. These results indicate that yersiniabactin contributes to Salmonella fitness and pathogenicity in vivo and is likely to play a role in the rapid dissemination of pESI among globally emerging Salmonella lineages.
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  • 文章类型: Journal Article
    假中间葡萄球菌,它是狗皮肤微生物组的一部分,引起各种机会性感染。由于生物膜的形成,这些感染可能变得更难以治疗。假中介链球菌形成生物膜的能力,以及相关的基因,尚未阐明。本研究评估了假中介链球菌生物膜的产生和组成。从感染的狗和无症状的狗收集样品。使用质谱和多重PCR鉴定分离物。使用定量微量滴定板测定法评估生物膜产生和组成。使用常规PCR研究了ica操纵子基因和sps基因的存在。对24个测序样品进行了Agr型和毒力基因的研究。所有菌株都能产生强大的生物膜,大多数分离物呈现多糖生物膜。63.6%的分离株携带完整的ica操纵子(ADBC)。所有样本都显示存在spsK基因,spsA,和spsL,而其他基因的分布不同。AgrIII型是最普遍的(52.2%)。所有测序的样本都带有细胞毒素hlb,Luk-S,Luk-F,以及去角质毒素siet和se_int。没有分离物显示其他剥脱毒素。只有LB1733提出了一套不同的肠毒素(海,seb,sec_犬,seh,sek,sel,和seq)。我们的发现表明,假中介链球菌是生物膜的强大生产者,并携带毒力基因。
    Staphylococcus pseudintermedius, which is part of the skin microbiome of dogs, causes a variety of opportunistic infections. These infections may become more difficult to treat due to the formation of biofilm. The capacity of S. pseudintermedius to form biofilm, as well as the associated genes, has not been elucidated. This study evaluated the production and composition of S. pseudintermedius biofilm. Samples were collected from both infected dogs and asymptomatic dogs. Isolates were identified using mass spectrometry and Multiplex-PCR. Biofilm production and composition were assessed using a quantitative microtiter plate assay. The presence of ica operon genes and sps genes was investigated using conventional PCR. The investigation of Agr type and virulence genes was conducted in silico on 24 sequenced samples. All strains could produce strong biofilms, with most of the isolates presenting a polysaccharide biofilm. 63.6% of the isolates carried the complete ica operon (ADBC). All samples showed the presence of the genes spsK, spsA, and spsL, while the distribution of other genes varied. Agr type III was the most prevalent (52.2%). All sequenced samples carried the cytotoxins hlb, luk-S, luk-F, as well as the exfoliative toxins siet and se_int. No isolate displayed other exfoliative toxins. Only LB1733 presented a set of different enterotoxins (sea, seb, sec_canine, seh, sek, sel, and seq). Our findings suggest that S. pseudintermedius is a strong producer of biofilm and carries virulence genes.
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  • 文章类型: Journal Article
    鼠疫Riemerella是一种引起鸭浆膜炎和脑膜炎的致病菌,对养鸭业造成重大危害。为了逃离宿主免疫系统,引起脑膜炎的细菌必须在血液中存活和繁殖,依赖于特定的毒力因子,如胶囊。因此,研究与厌食R.anatipestifer胶囊生物合成有关的基因至关重要。在这项研究中,我们成功构建了针对GE296_RS03820和GE296_RS03830基因的基因缺失突变体Δ3820和Δ3830,分别,使用RA-LZ01菌株作为亲本菌株。生长动力学分析表明,这两个基因有助于细菌生长。透射和扫描电子显微镜(TEM和SEM)以及银染表明,Δ3820和Δ3830产生了改变的胶囊和荚膜多糖(CPS)化合物。血清抗性测试显示突变体还表现出减少的C3b沉积和减少的抗性血清杀伤。在体内,Δ3820和Δ3830显示出穿过血脑屏障的能力明显下降,与RA-LZ01相比。这些发现表明,GE296_RS03820和GE296_RS03830基因参与CPSs的生物合成,并在抗药性R.anatipestifer的致病性中起关键作用。此外,Δ3820和Δ3830突变体在体内表现出更高的RA-LZ01攻击存活率的趋势。此外,用突变体免疫的鸭血清显示出与不同血清型的R.anatipestifer的交叉免疫反应性,包括1、2、7和10。Western印迹和SDS-PAGE测定表明,Δ3820和Δ3830的CPS改变导致一些保守蛋白的暴露在交叉免疫反应中起关键作用。我们的研究清楚地表明,GE296_RS03820和GE296_RS03830基因参与了厌食R.anatipestifer中的CPS生物合成,并且胶囊是疫苗开发中减毒的目标。
    Riemerella anatipestifer is a pathogenic bacterium that causes duck serositis and meningitis, leading to significant harm to the duck industry. To escape from the host immune system, the meningitis-causing bacteria must survive and multiply in the bloodstream, relying on specific virulence factors such as capsules. Therefore, it is essential to study the genes involved in capsule biosynthesis in R. anatipestifer. In this study, we successfully constructed gene deletion mutants Δ3820 and Δ3830, targeting the GE296_RS03820 and GE296_RS03830 genes, respectively, using the RA-LZ01 strain as the parental strain. The growth kinetics analysis revealed that these two genes contribute to bacterial growth. Transmission and scanning electron microscopy (TEM and SEM) and silver staining showed that Δ3820 and Δ3830 produced the altered capsules and compounds of capsular polysaccharides (CPSs). Serum resistance test showed the mutants also exhibited reduced C3b deposition and decreased resistance serum killing. In vivo, Δ3820 and Δ3830 exhibited markedly declining capacity to cross the blood-brain barrier, compared to RA-LZ01. These findings indicate that the GE296_RS03820 and GE296_RS03830 genes are involved in CPSs biosynthesis and play a key role in the pathogenicity of R. anatipestifer. Furthermore, Δ3820 and Δ3830 mutants presented a tendency toward higher survival rates from RA-LZ01 challenge in vivo. Additionally, sera from ducklings immunized with the mutants showed cross-immunoreactivity with different serotypes of R. anatipestifer, including 1, 2, 7 and 10. Western blot and SDS-PAGE assays revealed that the altered CPSs of Δ3820 and Δ3830 resulted in the exposure of some conserved proteins playing the key role in the cross-immunoreactivity. Our study clearly demonstrated that the GE296_RS03820 and GE296_RS03830 genes are involved in CPS biosynthesis in R. anatipestifer and the capsule is a target for attenuation in vaccine development.
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  • 文章类型: Journal Article
    肺炎链球菌感染是一个主要的公共卫生问题,发病率和死亡率都很高。本研究旨在评估血清型分布,抗菌素耐药性的变化,克隆组合物,2000年至2021年中国东北地区肺炎链球菌分离株的毒力因子。共纳入1,454株肺炎链球菌分离株,有568个侵袭性菌株和886个非侵袭性菌株。分离肺炎链球菌的患者年龄从26天到95岁不等,≤5岁的人群占最大组(67.19%)。19F,19A,23F,14和6B是最常见的血清型,其中19A和19F是侵袭性和非侵袭性肺炎链球菌的主要血清型,分别。CC271是最常见的多位点序列类型。血清型14有最低的cbpA的表达,rrgA,和psrP基因,但19A和19F基因的表达水平相似。所有分离株对厄他培南敏感,莫西沙星,利奈唑胺,和万古霉素,但对大环内酯类药物具有高度抗性,四环素,和复方新诺明。同时对红霉素耐药,克林霉素,四环素,甲氧苄啶/磺胺甲恶唑是多重耐药分离株中的常见模式。非侵袭性肺炎链球菌对β-内酰胺类抗生素的耐药性高于侵袭性菌株。19A和19F是耐青霉素肺炎链球菌的主要菌株。与前一时期相比,2017年至2021年β-内酰胺类抗生素的耐药率下降。将PCV13纳入国家免疫规划可以有效降低肺炎球菌病的发病率和死亡率。
    Streptococcus pneumoniae infection is a major public health concern with high morbidity and mortality rates. This study aimed to evaluate the serotype distribution, antimicrobial resistance changes, clonal composition, and virulence factors of S. pneumoniae isolates causing pneumococcal disease in northeast China from 2000 to 2021. A total of 1,454 S. pneumoniae isolates were included, with 568 invasive strains and 886 non-invasive strains. The patients from whom the S. pneumoniae were isolated ranged in age from 26 days to 95 years, with those ≤ 5 years old comprising the largest group (67.19%). 19 F, 19 A, 23 F, 14, and 6B were the most common serotypes, of which 19 A and 19 F were the main serotypes of invasive and non-invasive S. pneumoniae, respectively. CC271 was the most common multilocus sequence type. Serotype 14 had the lowest expression of cbpA, rrgA, and psrP genes, but expression levels of 19 A and 19 F genes were similar. All isolates were sensitive to ertapenem, moxifloxacin, linezolid, and vancomycin but highly resistant to macrolides, tetracyclines, and cotrimoxazole. Simultaneous resistance to erythromycin, clindamycin, tetracyclines, and trimethoprim/sulfamethoxazole was common pattern among multidrug-resistant isolates. Non-invasive S. pneumoniae had higher resistance to β-lactam antibiotics than invasive strains. 19 A and 19 F were the main strains of penicillin-resistant S. pneumoniae. The resistance rate of β-lactam antibiotics decreased from 2017 to 2021 compared to previous periods. Including PCV13 in the national immunization program can reduce the morbidity and mortality rates of pneumococcal disease effectively.
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  • 文章类型: Journal Article
    螺旋虫,属于Mollicutes班,是一个小,螺旋,缺乏细胞壁的能动细菌。它的宿主范围包括昆虫,植物,和水生甲壳类动物。最近,已经报道了一些人感染螺旋体的病例。螺旋虫引起的疾病给农业带来了严重的经济损失,阻碍了农业的健康发展。螺旋体的发病机制涉及粘附能力,例如通过螺旋体的末端结构,殖民,和侵入性酶。然而,螺旋体的确切致病机制仍然是个谜。因此,在这篇综述文章中,我们系统地总结了有关螺旋体的所有信息。这为今后研究螺旋体的毒力因子和治疗策略提供了参考。
    Spiroplasma, belonging to the class Mollicutes, is a small, helical, motile bacterium lacking a cell wall. Its host range includes insects, plants, and aquatic crustaceans. Recently, a few human cases of Spiroplasma infection have been reported. The diseases caused by Spiroplasma have brought about serious economic losses and hindered the healthy development of agriculture. The pathogenesis of Spiroplasma involves the ability to adhere, such as through the terminal structure of Spiroplasma, colonization, and invasive enzymes. However, the exact pathogenic mechanism of Spiroplasma remains a mystery. Therefore, we systematically summarize all the information about Spiroplasma in this review article. This provides a reference for future studies on virulence factors and treatment strategies of Spiroplasma.
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  • 文章类型: Journal Article
    基于全基因组测序(WGS)数据,研究了来自遍布各大洲和30年的不同宿主的克隆复合物(CC)398的金黄色葡萄球菌的国际集合。该集合由来自2994个菌株和134个最近测序的瑞士耐甲氧西林金黄色葡萄球菌(MRSA)CC398菌株的公开基因组数据组成。时间校准的系统发育揭示了亚洲存在的不同的系统群,北美、南美和欧洲。欧洲MRSA在1950年代初与甲氧西林敏感的金黄色葡萄球菌(MSSA)不同。两个主要的欧洲系统组(EP4和EP5),大约在1974年,是MRSACC398在欧洲传播的主要驱动因素。在EP5中,在欧洲马群中传播的新兴MRSA谱系(EP5-Leq)大约在1996年与猪谱系(EP5-Lpg)不同,还含有与人类相关的菌株。EP5-Leq的特征是葡萄球菌盒染色体mec(SCCmec)IVa和spa型t011(CC398-IVa-t011),和EP5-Lpg通过CC398-SCCmecVc-t011。谱系特异性抗生素抗性和毒力基因模式主要是通过获得可移动的遗传元件如SCCmec介导的,金黄色葡萄球菌基因组群岛(SaGI),预言和转座子。金黄色葡萄球菌致病性岛(SaPIs)上存在不同的毒力因子组合,和含有新的抗微生物药物抗性基因的元件与在欧洲扩展的某些谱系有关。这项基于WGS的分析揭示了考虑宿主的国际MRSACC398人群的实际进化轨迹和流行病学趋势,temporal,地理和分子因素。它为基于WGS的全球MRSACC398适应性进化的单一健康研究以及当地爆发调查提供了基线。
    An international collection of Staphylococcus aureus of clonal complex (CC) 398 from diverse hosts spanning all continents and a 30 year-period is studied based on whole-genome sequencing (WGS) data. The collection consists of publicly available genomic data from 2994 strains and 134 recently sequenced Swiss methicillin-resistant S. aureus (MRSA) CC398 strains. A time-calibrated phylogeny reveals the presence of distinct phylogroups present in Asia, North and South America and Europe. European MRSA diverged from methicillin-susceptible S. aureus (MSSA) at the beginning of the 1950s. Two major European phylogroups (EP4 and EP5), which diverged approximately 1974, are the main drivers of MRSA CC398 spread in Europe. Within EP5, an emergent MRSA lineage spreading among the European horse population (EP5-Leq) diverged approximately 1996 from the pig lineage (EP5-Lpg), and also contains human-related strains. EP5-Leq is characterized by staphylococcal cassette chromosome mec (SCCmec) IVa and spa type t011 (CC398-IVa-t011), and EP5-Lpg by CC398-SCCmecVc-t011. The lineage-specific antibiotic resistance and virulence gene patterns are mostly mediated by the acquisition of mobile genetic elements like SCCmec, S. aureus Genomic Islands (SaGIs), prophages and transposons. Different combinations of virulence factors are present on S. aureus pathogenicity islands (SaPIs), and novel antimicrobial resistance gene containing elements are associated with certain lineages expanding in Europe. This WGS-based analysis reveals the actual evolutionary trajectory and epidemiological trend of the international MRSA CC398 population considering host, temporal, geographical and molecular factors. It provides a baseline for global WGS-based One-Health studies of adaptive evolution of MRSA CC398 as well as for local outbreak investigations.
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  • 文章类型: Journal Article
    污泥中的多重耐药细菌和多重耐药基因已成为公共卫生的严重问题。开发可行且环境友好的污泥堆肥方法来缓解多药耐药基因势在必行。植物精油是一种有效的天然和生态友好的抗菌,在农业中对抑制病原体有很大的利用。然而,植物精油在堆肥中控制病原菌和抗生素抗性的应用尚未见报道。这项研究通过添加植物来源的精油进行了堆肥系统,即牛至精油(OEO),污泥堆肥。研究结果表明,多药耐药基因和优先病原体(关键,高,与对照组相比,添加OEO(OH处理)和中等类别)降低了(17.0±2.2)%和(26.5±3.0)%。此外,OH处理改变了堆肥微生物中细菌群落并增强了与碳水化合物代谢相关的基因序列。Mantel检验和变异划分分析表明,目标毒力因子(VFs),目标移动遗传元件(MGEs),和优先病原菌是影响堆肥多药耐药性的最重要因素。OH处理能显著抑制靶VFs,目标MGE,和优先病原体,有助于抑制和消除多药耐药基因。这些发现为污泥堆肥过程中多药耐药基因的调控提供了新的见解,并为降低抗生素耐药性的环境风险提供了新的途径。
    Multidrug-resistant bacteria and multi-resistance genes in sludge have become a serious issue for public health. It is imperative to develop feasible and environmentally friendly methods of sludge composting to alleviate multidrug resistance genes. Plant-derived essential oil is an effective natural and eco-friendly antibacterial, which has great utilization in inhibiting pathogens in the agricultural industry. Nevertheless, the application of plant-derived essential oil to control pathogenic bacteria and antibiotic resistance in composting has not been reported. This study conducted a composting system by adding plant-derived essential oil i.e., oregano essential oil (OEO), to sludge composting. The findings indicated that multidrug resistance genes and priority pathogens (critical, high, and medium categories) were reduced by (17.0 ± 2.2)% and (26.5 ± 3.0)% in the addition of OEO (OH treatment) compared to control. Besides, the OH treatment changed the bacterial community and enhanced the gene sequences related to carbohydrate metabolism in compost microorganisms. Mantel test and variation partitioning analysis revealed that the target virulence factors (VFs), target mobile genetic elements (MGEs), and priority pathogens were the most important factors affecting multidrug resistance in composting. The OH treatment could significantly inhibit the target VFs, target MGEs, and priority pathogens, which were helpful for the suppression and elimination of multidrug resistance genes. These findings provide new insights into the regulation of multidrug resistance genes during sludge composting and a novel way to diminish the environmental risk of antibiotic resistance.
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  • 文章类型: Journal Article
    铜绿假单胞菌是医疗保健机构中常见的革兰氏阴性细菌,以其形成生物膜的能力及其由群体感应(QS)系统控制的毒力因子而闻名。这种细菌的多重耐药菌株的日益流行在医学领域提出了重大挑战。因此,新型抗菌药物的探索已成为当务之急。本研究旨在使用响应面法(RSM)计算方法优化来自白虾(Metapenaeusaffinis)的壳聚糖。目的是研究壳聚糖作为抑制铜绿假单胞菌ATCC10,145中QS活性和生物膜形成的解决方案的潜力。在优化条件下,几丁质用NaOH(1.41M)处理15.75h,盐酸(7.49%vol)2.01h,和81.15℃的脱乙酰温度。得到的壳聚糖的脱乙酰度(DD%)超过93.98%,通过傅里叶变换红外(FTIR)光谱分析证实,表明其高纯度。当与头孢他啶联合使用时,提取的壳聚糖对铜绿假单胞菌具有明显的协同抗生素作用,将其杀菌活性提高15倍。此外,亚MIC(最低抑制浓度)浓度的提取的壳聚糖(10和100µg/mL)成功地减少了生成的绿脓苷和鼠李糖脂,以及游泳的运动性,蛋白酶活性和生物膜形成能力与对照组比较(P<0.05)。此外,与对照组相比,壳聚糖处理下调了铜绿假单胞菌的RhlR和LasR基因(P<0.05)。优化的壳聚糖提取物显示出作为手术设备涂层剂的巨大潜力,有效预防铜绿假单胞菌病原菌引起的医院感染。
    Pseudomonas aeruginosa is a commonly found Gram-negative bacterium in healthcare facilities and is renowned for its ability to form biofilms and its virulence factors that are controlled by quorum sensing (QS) systems. The increasing prevalence of multidrug-resistant strains of this bacterium poses a significant challenge in the field of medicine. Consequently, the exploration of novel antimicrobial agents has become a top priority. This research aims to optimize chitosan derived from white shrimp (Metapenaeus affinis) using the Response Surface Methodology (RSM) computational approach. The objective is to investigate chitosan\'s potential as a solution for inhibiting QS activity and biofilm formation in P. aeruginosa ATCC 10,145. Under optimized conditions, chitin was treated with NaOH (1.41 M) for 15.75 h, HCl (7.49% vol) for 2.01 h, and at a deacetylation temperature of 81.15 °C. The resulting chitosan exhibited a degree of deacetylation (DD%) exceeding 93.98%, as confirmed by Fourier-transform infrared (FTIR) spectral analysis, indicating its high purity. The extracted chitosan demonstrated a significant synergistic antibiotic effect against P. aeruginosa when combined with ceftazidime, enhancing its bactericidal activity by up to 15-fold. In addition, sub-MIC (minimum inhibitory concentration) concentrations of extracted chitosan (10 and 100 µg/mL) successfully reduced the production of pyocyanin and rhamnolipid, as well as the swimming motility, protease activity and biofilm formation ability in comparison to the control group (P < 0.05). Moreover, chitosan treatment downregulated the RhlR and LasR genes in P. aeruginosa when compared to the control group (P < 0.05). The optimized chitosan extract shows significant potential as a coating agent for surgical equipment, effectively preventing nosocomial infections caused by P. aeruginosa pathogens.
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  • 文章类型: Journal Article
    表皮生长因子受体(EGFR)是癌症治疗的重要靶点。据报道,许多头颈癌(HNC)细胞过度表达EGFR;因此,已经在HNC患者中尝试了抗EGFR治疗。然而,由于耐药性的发展,其临床疗效有限。在这项研究中,我们开发了一种EGFR靶向免疫毒素,该免疫毒素由临床证明的抗EGFRIgG(西妥昔单抗;CTX)和源自假单胞菌外毒素A(PE)的毒素片段(LR-LO10)使用新型位点特异性缀合技术(肽导向的光交联反应),作为另一种选择。免疫毒素(CTX-LR-LO10)显示出与EGFR的特异性结合和典型IgG的特性,比如稳定性,与免疫细胞受体的相互作用,和药代动力学,并通过修饰延伸因子2抑制蛋白质合成。用免疫毒素处理EGFR阳性HNC细胞导致细胞凋亡和细胞迁移和侵袭的抑制。在异种移植小鼠模型中评估CTX-LR-LO10的功效,免疫毒素表现出比CTX或LR-LO10更强的肿瘤抑制作用。转录组分析显示,免疫毒素引起免疫反应并改变与其作用机制相关的基因表达。这些结果支持CTX-LR-LO10可以作为靶向EGFR阳性癌症的新治疗剂的观点。
    The epidermal growth factor receptor (EGFR) is an important target for cancer therapies. Many head and neck cancer (HNC) cells have been reported to overexpress EGFR; therefore, anti-EGFR therapies have been attempted in patients with HNC. However, its clinical efficacy is limited owing to the development of drug resistance. In this study, we developed an EGFR-targeting immunotoxin consisting of a clinically proven anti-EGFR IgG (cetuximab; CTX) and a toxin fragment (LR-LO10) derived from Pseudomonas exotoxin A (PE) using a novel site-specific conjugation technology (peptide-directed photo-crosslinking reaction), as an alternative option. The immunotoxin (CTX-LR-LO10) showed specific binding to EGFR and properties of a typical IgG, such as stability, interactions with receptors of immune cells, and pharmacokinetics, and inhibited protein synthesis via modification of elongation factor-2. Treatment of EGFR-positive HNC cells with the immunotoxin resulted in apoptotic cell death and the inhibition of cell migration and invasion. The efficacy of CTX-LR-LO10 was evaluated in xenograft mouse models, and the immunotoxin exhibited much stronger tumor suppression than CTX or LR-LO10. Transcriptome analyses revealed that the immunotoxins elicited immune responses and altered the expression of genes related to its mechanisms of action. These results support the notion that CTX-LR-LO10 may serve as a new therapeutic agent targeting EGFR-positive cancers.
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