Recombinant Proteins

重组蛋白质类
  • 文章类型: Journal Article
    在真核生物中,小核糖体亚基在mRNA转录物中的定位需要在起始位点翻译Kozak元件。Kozak元件的序列影响蛋白质合成的翻译效率。然而,Kozak序列的上游核苷酸是否影响中国仓鼠卵巢(CHO)细胞中重组蛋白的表达尚不清楚。为了寻找增强重组蛋白在CHO细胞中表达的最佳序列,比较了100个CHO基因中ATG周围的-10到+4个序列,构造了具有不同平移强度的扩展Kozak元件。使用经典的Kozak元素作为控件,研究了优化的延伸Kozak元件对分泌的碱性磷酸酶(SEAP)和人血清白蛋白(HSA)基因的影响。结果表明,优化后的延伸Kozak序列可以增强重组蛋白在CHO细胞中的稳定表达水平。此外,发现重组蛋白表达水平的增加与较高的转录水平无关。总之,优化延伸Kozak元件可以增强重组蛋白在CHO细胞中的表达,有助于CHO细胞高效表达系统的构建。
    In eukaryotes, the localization of small ribosomal subunits to mRNA transcripts requires the translation of Kozak elements at the starting site. The sequence of Kozak elements affects the translation efficiency of protein synthesis. However, whether the upstream nucleotide of Kozak sequence affects the expression of recombinant proteins in Chinese hamster ovary (CHO) cells remains unclear. In order to find the optimal sequence to enhance recombinant proteins expression in CHO cells, -10 to +4 sequences around ATG in 100 CHO genes were compared, and the extended Kozak elements with different translation intensities were constructed. Using the classic Kozak element as control, the effects of optimized extended Kozak elements on the secreted alkaline phosphatase (SEAP) and human serum albumin (HSA) gene were studied. The results showed that the optimized extended Kozak sequence can enhance the stable expression level of recombinant proteins in CHO cells. Furthermore, it was found that the increased expression level of the recombinant protein was not related with higher transcription level. In summary, optimizing extended Kozak elements can enhance the expression of recombinant proteins in CHO cells, which contributes to the construction of an efficient expression system for CHO cells.
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  • 文章类型: Journal Article
    目的:由于治疗选择有限,缺血性卒中在医学研究中仍然是一个挑战。重组人组织纤溶酶原激活剂(rtPA)是再通的主要治疗方法。然而,近50%的患者出现并发症,导致无效的再灌注。导致无效再灌注的确切因素仍不清楚;然而,最近的研究表明,免疫细胞,特别是中性粒细胞,可能通过中性粒细胞胞外陷阱的形成等机制影响rtPA溶栓的结果。本研究旨在探讨rtPA对中性粒细胞的非溶栓作用,并强调其对无效再灌注的贡献。
    方法:我们评估了rtPA治疗对大鼠大脑中动脉闭塞的影响。我们还评估了大量脑缺血(MCI)患者中rtPA治疗后的中性粒细胞浸润和活化。
    结果:rtPA增加了中性粒细胞向脑微血管的浸润,并恶化了缺血期间的血脑屏障损伤。它还增加了MCI患者的中性粒细胞计数。
    结论:中性粒细胞在促进缺血性损伤和血脑屏障破坏中起关键作用,使它们成为潜在的治疗目标。
    OBJECTIVE: Ischemic stroke remains a challenge in medical research because of the limited treatment options. Recombinant human tissue plasminogen activator (rtPA) is the primary treatment for recanalization. However, nearly 50% of the patients experience complications that result in ineffective reperfusion. The precise factors contributing to ineffective reperfusion remain unclear; however, recent studies have suggested that immune cells, notably neutrophils, may influence the outcome of rtPA thrombolysis via mechanisms such as the formation of neutrophil extracellular traps. This study aimed to explore the nonthrombolytic effects of rtPA on neutrophils and highlight their contribution to ineffective reperfusion.
    METHODS: We evaluated the effects of rtPA treatment on middle cerebral artery occlusion in rats. We also assessed neutrophil infiltration and activation after rtPA treatment in vitro and in vivo in a small cohort of patients with massive cerebral ischemia (MCI).
    RESULTS: rtPA increased neutrophil infiltration into the brain microvessels and worsened blood-brain barrier damage during ischemia. It also increased the neutrophil counts of the patients with MCI.
    CONCLUSIONS: Neutrophils play a crucial role in promoting ischemic injury and blood-brain barrier disruption, making them potential therapeutic targets.
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  • 文章类型: English Abstract
    OBJECTIVE: To prepare and characterize the mouse polyclonal antibody against the dense granule protein 24 (GRA24) of Toxoplasma gondii, and explore its preliminary applications.
    METHODS: The GRA24 coding sequences of different T. gondii strains were aligned using the MEGA-X software, and the dominant peptide of the GRA24 protein was analyzed with the Protean software. The base sequence encoding this peptide was amplified using PCR assay and ligated into the pET-28a vector, and the generated GRA24 truncated protein was transformed into Escherichia coli BL21. After induction by isopropyl-beta-D-thiogalactopyranoside (IPTG), the expression and purification of the recombinant GRA24 protein was analyzed using sodium dodecyl sulfate - polyacrylamide gel electrophoresis (SDS-PAGE). BALB/c mice were immunized by subcutaneous injection with the purified recombinant GRA24 truncated protein to generate the polyclonal antibody, and the titer of the polyclonal antibody was measured using enzyme linked immunosorbent assay (ELISA). The specificity of the polyclonal antibody was tested using Western blotting, and the intracellular localization of the polyclonal antibody was investigated using immunofluorescence assay (IFA).
    RESULTS: SDS-PAGE showed successful construction of the recombinant expression plasmid, and Coomassie brilliant blue staining showed the generation of the high-purity recombinant GRA24 truncated protein. ELISA measured that the titer of the polyclonal antibody against the GRA24 truncated protein was higher than 1:208 400, and Western blotting showed that the polyclonal antibody was effective to recognize the endogenous GRA24 proteins of different T. gondii strains and specifically recognize the recombinant GRA24 truncated protein. Indirect IFA showed that the GRA24 protein secreted 16 hour following T. gondii invasion in host cells.
    CONCLUSIONS: The polyclonal antibody against the T. gondii GRA24 protein has been successfully prepared, which has a widespread applicability, high titers and a high specificity. This polyclonal antibody is available for Western blotting and IFA, which provides the basis for investigating the function of the GRA24 protein.
    [摘要] 目的 制备并鉴定鼠抗刚地弓形虫致密颗粒蛋白24 (dense granule protein 24, GRA24) 多克隆抗体, 并探索其初 步应用。方法 利用MEGA-X软件比对弓形虫不同虫株GRA24编码区序列, 使用Protean软件分析GRA24蛋白优势肽 段, 通过PCR反应扩增编码该肽段的碱基序列, 并连接至pET-28a载体中。将获得的GRA24截短蛋白原核表达质粒转化 于大肠埃希菌BL21感受态细胞中, 异丙基-β-D-硫代半乳糖苷 (isopropyl-beta-D-thiogalactopyranoside, IPTG) 诱导后采用 十二烷基硫酸钠聚丙烯酰胺凝胶电泳 (sodium dodecyl sulfate-polyacrylamide gel electrophoresis, SDS-PAGE) 检测蛋白表达 与纯化。使用纯化的GRA24截短蛋白皮下注射免疫BALB/c小鼠获得GRA24截短蛋白多克隆抗体, 采用酶联免疫吸附 试验 (enzyme-linked immunosorbent assay, ELISA) 检测抗体效价, 采用Western blotting检测抗体特异性, 并将该抗体应用 于免疫荧光试验 (immunofluorescence assay, IFA) 。结果 SDS-PAGE结果表明成功构建重组质粒, 考马斯亮蓝染色结果 显示获得高纯度重组GRA24截短蛋白。ELISA结果显示, GRA24 截短蛋白多克隆抗体效价在 1:208 400 以上; Western blotting检测发现, 该抗体可识别弓形虫不同虫株内源性 GRA24 蛋白, 特异性识别重组 GRA24 截短蛋白; 间接IFA检测发 现, 弓形虫入侵宿主细胞 16 h 后分泌的GRA24蛋白定位于宿主细胞核中。结论 成功制备广适性、高效价、强特异性的 抗弓形虫 GRA24 多克隆抗体, 可应用于 Western blotting 与 IFA, 为进一步研究 GRA24 功能奠定了基础。.
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  • 文章类型: Journal Article
    单克隆抗体在疾病治疗和抗原检测中有着广泛的应用。它们传统上是使用哺乳动物细胞表达系统生产的,不能大规模满足这些蛋白质日益增长的需求。杆状病毒表达载体系统(BEVS)是用于产生生物活性单克隆抗体的有吸引力的替代平台。在这一章中,我们证明了在BEVS中产生HIV-1广泛中和抗体b12。包括转移载体构建在内的过程,重组杆状病毒一代,描述了抗体的产生和检测。
    Monoclonal antibodies have widespread applications in disease treatment and antigen detection. They are traditionally produced using mammalian cell expression system, which is not able to satisfy the increasing demand of these proteins at large scale. Baculovirus expression vector system (BEVS) is an attractive alternative platform for the production of biologically active monoclonal antibodies. In this chapter, we demonstrate the production of an HIV-1 broadly neutralizing antibody b12 in BEVS. The processes including transfer vector construction, recombinant baculovirus generation, and antibody production and detection are described.
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  • 文章类型: Journal Article
    病毒引起的疾病对水生动物的健康构成重大风险,目前还没有有效的补救措施。干扰素(IFN)作为抗病毒剂,经常在临床环境中使用。由于水生动物独特的生存条件,传统的干扰素注射麻烦,耗时耗力。本研究旨在利用抗性淀粉(RS)和羧甲基壳聚糖(CMCS)通过乳化技术制备IFN微胶囊。使用Box-Behnken设计(BBD)响应面技术实现了优化,然后通过乳化产生微胶囊。当RS浓度为1.27%时,水氧比为3.3:7.4,CaCl2为13.67%,CMCS为1.04%,包封率可以上升到80.92%。感染传染性造血坏死病毒(IHNV)的虹鳟鱼和感染春季病毒血症(SVCV)的鲤鱼在用IFN微胶囊处理后表现出65%和60%的相对存活率(RPS)。分别。此外,微胶囊有效降低血清AST水平,增强IFNα的表达,IHNV感染的虹鳟鱼和SVCV感染的鲤鱼中的IRF3,ISG15,MX1,PKR和Viperin。总之,这种整合的IFN微胶囊显示出作为治疗水产养殖病毒性疾病的抗病毒药物的潜力。
    Diseases caused by viruses pose a significant risk to the health of aquatic animals, for which there are presently no efficacious remedies. Interferon (IFN) serving as an antiviral agent, is frequently employed in clinical settings. Due to the unique living conditions of aquatic animals, traditional injection of interferon is cumbersome, time-consuming and labor-intensive. This study aimed to prepare IFN microcapsules through emulsion technique by using resistant starch (RS) and carboxymethyl chitosan (CMCS). Optimization was achieved using the Box-Behnken design (BBD) response surface technique, followed by the creation of microcapsules through emulsification. With RS at a concentration of 1.27 %, a water‑oxygen ratio of 3.3:7.4, CaCl2 at 13.67 %, CMCS at 1.04 %, the rate of encapsulation can escalate to 80.92 %. Rainbow trout infected with Infectious hematopoietic necrosis virus (IHNV) and common carp infected with Spring vireemia (SVCV) exhibited a relative survival rate (RPS) of 65 % and 60 % after treated with IFN microcapsules, respectively. Moreover, the microcapsules effectively reduced the serum AST levels and enhanced the expression of IFNα, IRF3, ISG15, MX1, PKR and Viperin in IHNV-infected rainbow trout and SVCV-infected carp. In conclusion, this integrated IFN microcapsule showed potential as an antiviral agent for treatment of viral diseases in aquaculture.
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  • 文章类型: Journal Article
    Artv4.01是一种众所周知的profilin蛋白,属于泛过敏原组,通常参与引发过敏性哮喘,多重过敏,和交叉敏感。由于其起源,它也被称为艾草。艾草粗提取物用于过敏原特异性免疫疗法(AIT)。重组Artv4.01(rArtv4.01)是否可以通过皮下免疫疗法(SCIT)产生体内免疫耐受性仍然难以捉摸。在这项研究中,研究rArtv4.01,Th2,Th1,Treg的体内免疫反应,检测Th17型相关细胞因子和免疫细胞表型,促进对潜在机制的探索。使用重组技术进行Artv4.01的表达和纯化。通过艾草花粉提取物的皮下致敏和鼻内刺激诱导过敏性哮喘雌性BALB/c小鼠。使用rArtv4.01和艾草花粉提取物进行无佐剂的SCIT2周。面对挑战后,免疫球蛋白E(IgE)的水平,细胞因子,和炎症细胞通过酶联免疫吸附试验(ELISA)和血清组织学检查进行评估,支气管肺泡灌洗液(BALF),和肺组织。随后在接受rArtv4.01和艾草花粉提取物的处理组之间比较这些参数。rArtv4.01蛋白表达,其具有高纯度(>90%)和致敏效力。与花粉提取物相比,rArtv4.01在减少白细胞(WBC)数量方面优于总有核细胞(跨国公司),BALF中单核细胞(MNs)和肺部炎症程度(1.77±0.99vs.2.31±0.80,P>0.05)。与模型组相比,只有rArtv4.01降低了血清IgE水平(1.19±0.25vs.1.61±0.17μg/ml,P=0.062),以及Th2型相关细胞因子的水平(白细胞介素-4(IL-4)(107.18±16.17vs.132.47±20.85pg/ml,P<0.05)和IL-2(19.52±1.19vs.24.02±2.14pg/ml,P<0.05))。研究表明,rArtv4.01在减少BALF中炎性细胞数量方面优于花粉提取物,肺炎,促炎细胞因子的水平,和血清IgE水平。这些发现证实了Artv4.01可能是过敏原特异性免疫治疗的潜在候选蛋白。
    Art v4.01 is a well-known profilin protein belonging to the pan-allergens group and is commonly involved in triggering allergic asthma, polyallergy, and cross-sensitization. It is also referred to as Wormwood due to its origin. Crude wormwood extracts are applied for allergen-specific immunotherapy (AIT). Whether the recombinant Art v4.01 (rArt v4.01) can produce in vivo immunological tolerance by subcutaneous immunotherapy (SCIT) remains elusive. In this study, to investigate the in vivo immunological response of rArt v4.01, Th2, Th1, Treg, Th17 type-related cytokines and phenotypes of immune cells were tested, facilitating the exploration of the underlying mechanisms. The expression and purification of Art v4.01 were carried out using recombinant techniques. Allergic asthma female BALB/c mice were induced by subcutaneous sensitization of wormwood pollen extract and intranasal challenges. SCIT without adjuvant was performed using the rArt v4.01 and wormwood pollen extract for 2 weeks. Following exposure to challenges, the levels of immunoglobulin E (IgE), cytokines, and inflammatory cells were assessed through enzyme-linked immunosorbent assay (ELISA) and histological examination of sera, bronchoalveolar lavage fluid (BALF), and lung tissue. These parameters were subsequently compared between treatment groups receiving rArt v4.01 and wormwood pollen extract. The rArt v4.01 protein was expressed, which had a high purity (>90%) and an allergenic potency. Compared with the pollen extract, rArt v4.01 was superior in terms of reducing the number of white blood cells (WBCs), total nucleated cells (TNCs), and monocytes (MNs) in BALF and the degree of lung inflammation (1.77±0.99 vs. 2.31±0.80, P > 0.05). Compared with the model group, only rArt v4.01 reduced serum IgE level (1.19±0.25 vs. 1.61±0.17 μg/ml, P = 0.062), as well as the levels of Th2 type-related cytokines (interleukin-4 (IL-4) (107.18±16.17 vs. 132.47±20.85 pg/ml, P < 0.05) and IL-2 (19.52±1.19 vs. 24.02±2.14 pg/ml, P < 0.05)). The study suggested that rArt v4.01 was superior to pollen extract in reducing the number of inflammatory cells in BALF, pneumonitis, levels of pro-inflammatory cytokines, and serum IgE level. These findings confirmed that Art v4.01 could be a potential candidate protein for allergen-specific immunotherapy.
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  • 文章类型: Journal Article
    背景:成年哺乳动物心脏的再生能力有限。许多研究已经探索了成年心肌细胞细胞周期退出的机制。这项翻译研究评估了rhCHK1(重组人检查点激酶1)对猪缺血/再灌注损伤后心肌细胞存活和增殖以及心肌修复的影响及其潜在机制。
    结果:心肌内注射包裹在水凝胶中的rhCHK1蛋白(1mg/kg)在缺血/再灌注损伤后3天刺激心肌细胞增殖并降低心脏炎症反应,改善心功能,减轻心室重构,并在缺血/再灌注损伤后28天减少梗死面积。机械上,多组学测序分析表明rhCHK1治疗后糖酵解和mTOR(哺乳动物雷帕霉素靶蛋白)途径的富集.免疫共沉淀(Co-IP)实验和蛋白质对接预测显示CHK1(检查点激酶1)直接结合并激活PKM2(丙酮酸激酶同工型M2)的丝氨酸37(S37)和酪氨酸105(Y105)位点以促进代谢重编程。我们进一步构建了敲除不同CHK1和PKM2氨基酸结构域的质粒,并将其转染到人胚胎肾293T(HEK293T)细胞中进行CO-IP实验。结果显示CHK1的1-265结构域直接结合PKM2的157-400个氨基酸。此外,hiPSC-CM(人iPS细胞衍生的心肌细胞)的体外和体内实验均表明,CHK1通过激活PKM2C结构域介导的心脏代谢重编程刺激心肌细胞更新和心脏修复。
    结论:本研究表明,CHK1的1-265个氨基酸结构域与PKM2的157-400结构域结合,激活PKM2介导的代谢重编程,促进成年猪缺血再灌注损伤后心肌细胞增殖和心肌修复。
    BACKGROUND: The regenerative capacity of the adult mammalian hearts is limited. Numerous studies have explored mechanisms of adult cardiomyocyte cell-cycle withdrawal. This translational study evaluated the effects and underlying mechanism of rhCHK1 (recombinant human checkpoint kinase 1) on the survival and proliferation of cardiomyocyte and myocardial repair after ischemia/reperfusion injury in swine.
    RESULTS: Intramyocardial injection of rhCHK1 protein (1 mg/kg) encapsulated in hydrogel stimulated cardiomyocyte proliferation and reduced cardiac inflammation response at 3 days after ischemia/reperfusion injury, improved cardiac function and attenuated ventricular remodeling, and reduced the infarct area at 28 days after ischemia/reperfusion injury. Mechanistically, multiomics sequencing analysis demonstrated enrichment of glycolysis and mTOR (mammalian target of rapamycin) pathways after rhCHK1 treatment. Co-Immunoprecipitation (Co-IP) experiments and protein docking prediction showed that CHK1 (checkpoint kinase 1) directly bound to and activated the Serine 37 (S37) and Tyrosine 105 (Y105) sites of PKM2 (pyruvate kinase isoform M2) to promote metabolic reprogramming. We further constructed plasmids that knocked out different CHK1 and PKM2 amino acid domains and transfected them into Human Embryonic Kidney 293T (HEK293T) cells for CO-IP experiments. Results showed that the 1-265 domain of CHK1 directly binds to the 157-400 amino acids of PKM2. Furthermore, hiPSC-CM (human iPS cell-derived cardiomyocyte) in vitro and in vivo experiments both demonstrated that CHK1 stimulated cardiomyocytes renewal and cardiac repair by activating PKM2 C-domain-mediated cardiac metabolic reprogramming.
    CONCLUSIONS: This study demonstrates that the 1-265 amino acid domain of CHK1 binds to the 157-400 domain of PKM2 and activates PKM2-mediated metabolic reprogramming to promote cardiomyocyte proliferation and myocardial repair after ischemia/reperfusion injury in adult pigs.
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  • 文章类型: Journal Article
    黄曲霉毒素B1(AFB1)沾染严重威逼营养平安和公共卫生。我们实验室先前报道的地衣芽孢杆菌ANSB821的CotA漆酶显示出在没有氧化还原介质的情况下降解AFB1的巨大潜力。然而,由于其催化效率低和表达水平低,因此使用这种CotA-漆酶去除动物饲料中的AFB1受到限制。为了更好地利用这种优异的酶有效降解AFB1,通过定点诱变构建了12个CotA-漆酶突变体。在这些突变体中,E186A和E186R对AFB1的降解能力最好,12h内降解率分别为82.2%和91.8%,比野生型CotA漆酶高1.6倍和1.8倍,分别。E186A和E186R的催化效率(kcat/Km)分别为1.8和3.2倍,分别,比野生型CotA漆酶的那些。然后构建具有优化信号肽的表达载体pPICZαA-N-E186A和pPICZαA-N-E186R,并将其转化到毕赤酵母GS115中。优化的信号肽改善了毕赤酵母GS115中E186A和E186R的分泌表达。总的来说,本研究为食品和动物饲料中AFB1解毒提供了理想的候选CotA-漆酶突变体,并提供了可行的方案,这是工业生产CotA漆酶迫切需要的。
    Aflatoxin B1 (AFB1) contamination is a serious threat to nutritional safety and public health. The CotA-laccase from Bacillus licheniformis ANSB821 previously reported by our laboratory showed great potential to degrade AFB1 without redox mediators. However, the use of this CotA-laccase to remove AFB1 in animal feed is limited because of its low catalytic efficiency and low expression level. In order to make better use of this excellent enzyme to effectively degrade AFB1, twelve mutants of CotA-laccase were constructed by site-directed mutagenesis. Among these mutants, E186A and E186R showed the best degradation ability of AFB1, with degradation ratios of 82.2% and 91.8% within 12 h, which were 1.6- and 1.8-times higher than those of the wild-type CotA-laccase, respectively. The catalytic efficiencies (kcat/Km) of E186A and E186R were found to be 1.8- and 3.2-times higher, respectively, than those of the wild-type CotA-laccase. Then the expression vectors pPICZαA-N-E186A and pPICZαA-N-E186R with an optimized signal peptide were constructed and transformed into Pichia pastoris GS115. The optimized signal peptide improved the secretory expressions of E186A and E186R in P. pastoris GS115. Collectively, the current study provided ideal candidate CotA-laccase mutants for AFB1 detoxification in food and animal feed and a feasible protocol, which was desperately needed for the industrial production of CotA-laccases.
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  • 文章类型: Journal Article
    功能性M细胞通过NF-κB配体(RANKL)的受体激活剂分化,并捕获腔抗原以启动免疫应答。我们旨在使用基于后生物的重组鸡RANKL(cRANKL)促进M细胞分化并测试口服疫苗的功效。小鸡被分为三组,分别给予磷酸盐缓冲盐水(PBS),野生型乳酸乳球菌亚种的细胞提取物。乳酸IL1403(WT_CE),或表达cRANKL(cRANKL_CE)的重组乳酸乳球菌的细胞提取物。测量M细胞标志物的表达,并对肠道微生物组进行了分析。在连续12天施用cRANKL_CE后测试传染性法氏囊病(IBD)疫苗的效率。给予cRANKL_CE(p=0.038)的鸡的膜联蛋白A5(ANXA5)mRNA表达水平明显高于PBS组(PBSvs.WT_CE,p=0.657)。在肠道微生物组分析中,没有观察到显著的变化。然而,大肠杆菌-志贺氏菌的相对丰度与Peyer\'s斑块中ANXA5mRNA表达呈负相关(r=-0.43,p=0.019)。cRANKL_CE/IBD(p=0.018)的IBD特异性粪便IgA水平明显高于PBS/IBD(PBS/IBD与WT_CE/IBD,p=0.217)。基于后生物的重组cRANKL有效地提高了M细胞标志物的表达和口服疫苗的效率。在施用基于后生物的重组cRANKL后,在肠道微生物组中没有观察到显著变化。该策略可用于饲料添加剂和佐剂的开发。关键点:•基于后生生物的重组cRANKL增强ANXA5在鸡中的表达。•大肠杆菌志贺氏菌的相对丰度与ANXA5表达呈负相关。•基于后生物的重组cRANKL有效地提高了口服疫苗的效率。
    Functional M cells are differentiated by receptor activator of NF-κB ligand (RANKL) and capture of luminal antigens to initiate immune responses. We aimed to use postbiotic-based recombinant chicken RANKL (cRANKL) to promote M cell differentiation and test the efficacy of oral vaccines. Chicks were divided into three groups that were administered phosphate-buffered saline (PBS), cell extracts of wild-type Lactococcus lactis subsp. lactis IL1403 (WT_CE), or cell extracts of recombinant L. lactis expressing cRANKL (cRANKL_CE). The expression of the M cell marker was measured, and the gut microbiome was profiled. The efficiency of the infectious bursal disease (IBD) vaccine was tested after 12 consecutive days of administering cRANKL_CE. The chickens that were administered cRANKL_CE (p = 0.038) had significantly higher Annexin A5 (ANXA5) mRNA expression levels than those in the PBS group (PBS vs. WT_CE, p = 0.657). In the gut microbiome analysis, no significant changes were observed. However, the relative abundance of Escherichia-Shigella was negatively correlated (r =  - 0.43, p = 0.019) with ANXA5 mRNA expression in Peyer\'s patches. cRANKL_CE/IBD (p = 0.018) had significantly higher IBD-specific faecal IgA levels than PBS/IBD (PBS/IBD vs. WT_CE/IBD, p = 0.217). Postbiotic-based recombinant cRANKL effectively improved the expression of M cell markers and the efficiency of oral vaccines. No significant changes were observed in the gut microbiome after administration of postbiotic-based recombinant cRANKL. This strategy can be used for the development of feed additives and adjuvants. KEY POINTS: • Postbiotic-based recombinant cRANKL enhanced the expression of ANXA5 in chicken. • The relative abundance of Escherichia-Shigella was negatively correlated with ANXA5 expression. • Postbiotic-based recombinant cRANKL effectively improved the efficiency of oral vaccine.
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  • 文章类型: Journal Article
    考虑到生物技术专业传统的制造过程学习方法中存在的问题,本文介绍了“重组人红细胞生成制造过程虚拟仿真实验”课程的开发和实施过程。该实验结合了现代生物制造技术和三维信息技术,以重组人红细胞生成药物为焦点。本文阐述了教学理念,目标,内容,实施方法,实验程序,互动的步骤,和实验中使用的评估标准。通过创新性实验方案设计,教学方法,和评估系统,本课程旨在培养学生在生物制药工程领域的分析和解决问题的能力,同时也拓宽了学生的视野和视野。
    Considering the issues present in traditional learning methods of manufacturing process for biotechnology majors, this paper presents the development and implementation process of the course entitled \"Virtual Simulation Experiment of Recombinant Human Erythropoiesis Manufacturing Process\". The experiment combines modern biological manufacturing technology and three-dimensional information technology, with recombinant human erythropoiesis drug serving as the focal point. This paper elaborates on the teaching concepts, objectives, contents, implementation methods, experimental procedures, interactive steps, and assessment criteria used in the experiment. Through innovative experimental scheme design, teaching methodologies, and evaluation systems, this course aims to cultivate students\' analytical and problem-solving skills in the field of biopharmaceutical engineering, while also broadening students\' perspective and expanding their vision.
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