Aptamers, Nucleotide

适体,核苷酸
  • 文章类型: Journal Article
    开发了一种基于催化发夹自组装(CHA)介导的循环信号放大策略的比率SERS传感器,用于快速可靠地测定大肠杆菌O157:H7。通过用封闭的适体修饰磁珠合成识别探针,SERS探针是通过用发夹结构的DNA和4-巯基苄腈(4-MBN)官能化金纳米颗粒(AuNPs)来构建的。识别探针特异性捕获大肠杆菌O157:H7并释放阻断剂DNA,其在SERS探针上激活CHA反应并打开6-羧基-x-罗丹明(ROX)的SERS信号。同时,4-MBN用作内部参考以校准基质干扰。因此,使用ROX与4-MBN的SERS信号强度的比率建立了对大肠杆菌O157:H7的灵敏和可靠的测定和定量。该aptasensor能够在大约3小时内检测2.44×102CFU/mL的大肠杆菌O157:H7,而无需预培养和DNA提取。此外,在加标水和牛奶样品中大肠杆菌O157:H7的测定中,观察到良好的可靠性和良好的重现性。本研究为快速,敏感,和可靠的SERS传感器。
    A ratiometric SERS aptasensor based on catalytic hairpin self-assembly (CHA) mediated cyclic signal amplification strategy was developed for the rapid and reliable determination of Escherichia coli O157:H7. The recognition probe was synthesized by modifying magnetic beads with blocked aptamers, and the SERS probe was constructed by functionalizing gold nanoparticles (Au NPs) with hairpin structured DNA and 4-mercaptobenzonitrile (4-MBN). The recognition probe captured E. coli O157:H7 specifically and released the blocker DNA, which activated the CHA reaction on the SERS probe and turned on the SERS signal of 6-carboxyl-x-rhodamine (ROX). Meanwhile, 4-MBN was used as an internal reference to calibrate the matrix interference. Thus, sensitive and reliable determination and quantification of E. coli O157:H7 was established using the ratio of the SERS signal intensities of ROX to 4-MBN. This aptasensor enabled detection of 2.44 × 102 CFU/mL of E. coli O157:H7 in approximately 3 h without pre-culture and DNA extraction. In addition, good reliability and excellent reproducibility were observed for the determination of E. coli O157:H7 in spiked water and milk samples. This study offered a new solution for the design of rapid, sensitive, and reliable SERS aptasensors.
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  • 文章类型: Journal Article
    背景:三阴性乳腺癌(TNBC)是一种复发性乳腺癌,异质,和浸润性乳腺癌。以顺序方式用紫杉醇和氟尿嘧啶治疗TNBC患者已显示出有希望的结果。然而,将这些化学治疗剂依次递送至TNBC肿瘤具有挑战性.我们旨在通过紫杉醇和氟尿嘧啶的序贯给药探索TNBC的精确治疗策略。
    方法:我们开发了一种双重化学负载的适体,该适体具有对氧化还原敏感的笼式紫杉醇,用于快速释放,而不可裂解的笼式氟尿嘧啶用于缓慢释放。使用酶连接的寡核苷酸测定和表面等离子体共振测定验证对靶蛋白的结合亲和力。使用流式细胞术测定和共聚焦显微镜测定证实了进入肿瘤的靶向和内化能力。通过体外和体内药理学研究评估了对TNBC进展的抑制作用。
    结果:合成了各种氧化还原响应性适体-紫杉醇缀合物。其中,具有硫醚接头(ASP)的AS1411-紫杉醇缀合物对TNBC细胞具有较高的抗增殖能力,并通过氟尿嘧啶修饰进一步提高了其靶向能力。具有硫醚接头(FASP)的氟尿嘧啶修饰的AS1411-紫杉醇缀合物表现出对TNBC细胞的有效靶向,并且在体外和体内显著改善对TNBC进展的抑制作用。
    结论:本研究成功开发了具有硫醚接头的氟尿嘧啶修饰的AS1411-紫杉醇偶联物,用于TNBC的靶向联合化疗。这些缀合物证明了对TNBC细胞的有效识别,实现紫杉醇和氟尿嘧啶的靶向递送和控释。这种方法导致协同抗肿瘤作用和降低的体内毒性。然而,与稳定有关的挑战,免疫原性,和可扩展性需要进一步研究未来的翻译应用程序。
    BACKGROUND: Triple-negative breast cancer (TNBC) is a recurrent, heterogeneous, and invasive form of breast cancer. The treatment of TNBC patients with paclitaxel and fluorouracil in a sequential manner has shown promising outcomes. However, it is challenging to deliver these chemotherapeutic agents sequentially to TNBC tumors. We aim to explore a precision therapy strategy for TNBC through the sequential delivery of paclitaxel and fluorouracil.
    METHODS: We developed a dual chemo-loaded aptamer with redox-sensitive caged paclitaxel for rapid release and non-cleavable caged fluorouracil for slow release. The binding affinity to the target protein was validated using Enzyme-linked oligonucleotide assays and Surface plasmon resonance assays. The targeting and internalization abilities into tumors were confirmed using Flow cytometry assays and Confocal microscopy assays. The inhibitory effects on TNBC progression were evaluated by pharmacological studies in vitro and in vivo.
    RESULTS: Various redox-responsive aptamer-paclitaxel conjugates were synthesized. Among them, AS1411-paclitaxel conjugate with a thioether linker (ASP) exhibited high anti-proliferation ability against TNBC cells, and its targeting ability was further improved through fluorouracil modification. The fluorouracil modified AS1411-paclitaxel conjugate with a thioether linker (FASP) exhibited effective targeting of TNBC cells and significantly improved the inhibitory effects on TNBC progression in vitro and in vivo.
    CONCLUSIONS: This study successfully developed fluorouracil-modified AS1411-paclitaxel conjugates with a thioether linker for targeted combination chemotherapy in TNBC. These conjugates demonstrated efficient recognition of TNBC cells, enabling targeted delivery and controlled release of paclitaxel and fluorouracil. This approach resulted in synergistic antitumor effects and reduced toxicity in vivo. However, challenges related to stability, immunogenicity, and scalability need to be further investigated for future translational applications.
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  • 文章类型: Journal Article
    据报道,双重识别策略可构建一步洗涤和高效信号转导标签系统,用于高灵敏度比色检测金黄色葡萄球菌(S.金黄色葡萄球菌)。作为信号标记的多孔(金核)@(铂壳)纳米酶(Au@PtNE)显示出高效的过氧化物酶模拟活性并且是稳健的。为了简单起见,检测涉及使用万古霉素固定的磁珠(MB)和适体官能化的Au@PtNE用于在金黄色葡萄球菌存在下的双重识别检测。此外,我们设计了一个磁性板,以适应96孔微孔板,以确保每个孔的磁性一致,这可以快速去除未反应的Au@PtNE和样品基质,同时避免繁琐的洗涤步骤。随后,Au@PtNE催化过氧化氢(H2O2)氧化3,3',5,5'-四甲基联苯胺(TMB)产生颜色信号。最后,开发的基于Au@PtNEs的双识别免洗涤比色测定显示在5×101-5×105CFU/mL的金黄色葡萄球菌范围内的响应,在1.5h内检测限为40CFU/mL。分析了金黄色葡萄球菌强化的样品,以进一步评估所提出方法的性能,平均回收率在93.66至112.44%之间,变异系数(CV)在2.72-9.01%之间。这些结果为开发不同的识别模式和廉价的无酶测定平台提供了新的视野,以替代传统的基于酶的免疫测定来检测其他革兰氏阳性病原菌。
    A dual-recognition strategy is reported to construct a one-step washing and highly efficient signal-transduction tag system for high-sensitivity colorimetric detection of Staphylococcus aureus (S. aureus). The porous (gold core)@(platinum shell) nanozymes (Au@PtNEs) as the signal labels show highly efficient peroxidase mimetic activity and are robust. For the sake of simplicity the detection involved the use of a vancomycin-immobilized magnetic bead (MB) and aptamer-functionalized Au@PtNEs for dual-recognition detection in the presence of S. aureus. In addition, we designed a magnetic plate to fit the 96-well microplate to ensure consistent magnetic properties of each well, which can quickly remove unreacted Au@PtNEs and sample matrix while avoiding tedious washing steps. Subsequently, Au@PtNEs catalyze hydrogen peroxide (H2O2) to oxidize 3,3\',5,5\'-tetramethylbenzidine (TMB) generating a color signal. Finally, the developed Au@PtNEs-based dual-recognition washing-free colorimetric assay displayed a response in the range of S. aureus of 5 × 101-5 × 105 CFU/mL, and the detection limit was 40 CFU/mL within 1.5 h. In addition, S. aureus-fortified samples were analyzed to further evaluate the performance of the proposed method, which yielded average recoveries ranging from 93.66 to 112.44% and coefficients of variation (CVs) within the range 2.72-9.01%. These results furnish a novel horizon for the exploitation of a different mode of recognition and inexpensive enzyme-free assay platforms as an alternative to traditional enzyme-based immunoassays for the detection of other Gram-positive pathogenic bacteria.
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  • 文章类型: Journal Article
    开发了一种用于细胞内miRNA成像和自给自足饥饿疗法(ST)和化学动力学疗法(CDT)的联合治疗的癌症靶向谷胱甘肽(GSH)门控治疗探针(CGT探针)。CGT探针是使用MnO2纳米片(MS)作为载体材料构建的,以吸附精心设计的功能DNA。它可以通过AS1411适体和核仁素之间的特异性识别被癌细胞内化。CGT探针进入癌细胞后,过度表达的GSH,作为栅极控制,可以通过类Fenton反应将MS降解为可用于CDT的Mn2。同时,Mn2+介导的CDT可以进一步与CGT探针的酶样活性(过氧化氢酶样活性和葡萄糖氧化酶样活性)级联,实现自给自足的ST/CDT协同治疗。同时,锚定的DNA被释放,通过miR-21的双取代催化发夹组装(DCHA)和FRET(荧光共振能量转移)成像实现原位信号放大。体外和体内实验表明,使用CGT探针可以实现准确和灵敏的miRNA检测。总的来说,巧妙的CGT探针为早期临床诊断和癌症治疗的发展开辟了新途径。
    A cancer-targeted glutathione (GSH)-gated theranostic probe (CGT probe) for intracellular miRNA imaging and combined treatment of self-sufficient starvation therapy (ST) and chemodynamic therapy (CDT) was developed. The CGT probe is constructed using MnO2 nanosheet (MS) as carrier material to adsorb the elaborately designed functional DNAs. It can be internalized by cancer cells via specific recognition between the AS1411 aptamer and nucleolin. After CGT probe entering the cancer cells, the overexpressed GSH, as gate-control, can degrade MS to Mn2+ which can be used for CDT by Fenton-like reaction. Simultaneously, Mn2+-mediated CDT can further cascade with the enzyme-like activities (catalase-like activity and glucose oxidase-like activity) of CGT probe, achieving self-sufficient ST/CDT synergistic therapy. Meanwhile, the anchored DNAs are released, achieving in situ signal amplification via disubstituted-catalytic hairpin assembly (DCHA) and FRET (fluorescence resonance energy transfer) imaging of miR-21. The in vitro and in vivo experiments demonstrated that accurate and sensitive miRNA detection can be achieved using the CGT probe. Overall, the ingenious CGT probe opens a new avenue for the development of early clinical diagnosis and cancer therapy.
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  • 文章类型: Journal Article
    亲和试剂,或靶结合分子,是相当多才多艺,是主要的工作在分子生物学和医学。抗体是最著名和经常使用的类型,它们已被用于广泛的应用。包括实验室技术,诊断,和治疗学。然而,抗体不是唯一可用的亲和试剂,它们确实有明显的缺点,包括费力和昂贵的生产。适体是一种具有多种独特优势的潜在替代品。它们是单链DNA或RNA分子,可以选择与许多靶标(包括蛋白质)结合。碳水化合物,和小分子-抗体通常对其具有低亲和力。还有多种经济有效的方法,用于在没有细胞的情况下在体外产生和修饰核酸,而抗体通常需要细胞甚至整个动物。虽然在治疗应用中使用适体也有明显的缺点,包括低体内稳定性,适体已经在用于治疗多种疾病的临床试验中取得了成功,并且两种基于适体的药物已经获得FDA的批准。适体开发仍在进行中,这可能会导致适体疗法的额外应用,包括抗毒素,以及与纳米颗粒和其他核酸疗法的组合方法,可以提高疗效。
    Affinity reagents, or target-binding molecules, are quite versatile and are major workhorses in molecular biology and medicine. Antibodies are the most famous and frequently used type and they have been used for a wide range of applications, including laboratory techniques, diagnostics, and therapeutics. However, antibodies are not the only available affinity reagents and they do have significant drawbacks, including laborious and costly production. Aptamers are one potential alternative that have a variety of unique advantages. They are single stranded DNA or RNA molecules that can be selected for binding to many targets including proteins, carbohydrates, and small molecules-for which antibodies typically have low affinity. There are also a variety of cost-effective methods for producing and modifying nucleic acids in vitro without cells, whereas antibodies typically require cells or even whole animals. While there are also significant drawbacks to using aptamers in therapeutic applications, including low in vivo stability, aptamers have had success in clinical trials for treating a variety of diseases and two aptamer-based drugs have gained FDA approval. Aptamer development is still ongoing, which could lead to additional applications of aptamer therapeutics, including antitoxins, and combinatorial approaches with nanoparticles and other nucleic acid therapeutics that could improve efficacy.
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  • 文章类型: Journal Article
    硒是人体和动物营养中必不可少的无机化合物,参与身体的正常运作。作为一种微量营养素,它积极地促进各种代谢活动的调节,即,甲状腺激素,和防止氧化应激。然而,Se在具有积极作用和发挥毒性作用之间表现出狭窄的浓度窗口。在更高的剂量,它会对生物体产生负面影响,并通过自由基的形成引起DNA损伤。Se阴离子的反应性增加也会破坏DNA修复蛋白的完整性和功能。由于饮用水中硒的允许浓度为10µg/L,开发灵敏可靠的水样中硒的检测方法至关重要。在这项研究中,第一次,我们提出了一种用于硒酸盐离子检测的选择性适体,选择遵循SELEX过程,及其在构建SeO42-离子电化学传感器中的应用。选择所使用的氧化还原标记物、测定溶液的pH值等测定条件。所提出的aptasensor的特征在于良好的选择性和1nM的LOD。在这项研究中还研究了生物传感器再生和储存的条件。
    Selenium is an essential inorganic compound in human and animal nutrition, involved in the proper functioning of the body. As a micronutrient, it actively contributes to the regulation of various metabolic activities, i.e., thyroid hormone, and protection against oxidative stress. However, Se exhibits a narrow concentration window between having a positive effect and exerting a toxic effect. In higher doses, it negatively affects living organisms and causes DNA damage through the formation of free radicals. Increased reactivity of Se anions can also disrupt the integrity and function of DNA-repairing proteins. As the permissible concentration of Se in drinking water is 10 µg/L, it is vital to develop sensitive and robust methods of Se detection in aqueous samples. In this study, for the first time, we proposed a selective aptamer for selenate ion detection, chosen following the SELEX process, and its application in the construction of an electrochemical aptasensor towards SeO42- ions. Measurement conditions such as the used redox marker and pH value of the measurement solution were chosen. The proposed aptasensor is characterized by good selectivity and an LOD of 1 nM. Conditions for biosensor regeneration and storage were also investigated in this research.
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  • 文章类型: Journal Article
    尽管在侵袭性真菌感染(IFIs)的诊断方面取得了显著进展,快速,具体,敏感,和具有成本效益的检测方法仍然难以捉摸。由于其稳定性,易于生产,以及对真菌病原体特征分子的特异性,短的单链DNA序列,RNA,XNA,统称为适体,已经成为有希望的诊断标志物。从这个角度来看,我们总结了基于适体的IFIs诊断工具的最新进展,并讨论了这些工具如何潜在地满足需求,并为更好地管理IFIs提供经济,简单的解决方案。
    Despite remarkable advances in the diagnosis of invasive fungal infections (IFIs), rapid, specific, sensitive, and cost-effective detection methods remain elusive. Due to their stability, ease of production, and specificity to signature molecules of fungal pathogens, short single-stranded sequences of DNA, RNA, and XNA, collectively called aptamers, have emerged as promising diagnostic markers. In this perspective, we summarize recent progress in aptamer-based diagnostic tools for IFIs and discuss how these tools could potentially meet the needs and provide economical and simple solutions for point-of-care for better management of IFIs.
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  • 文章类型: Journal Article
    血管平滑肌细胞(VSMC)的去分化和随后的增殖和炎症增加是动脉粥样硬化形成的机制之一。因此,将VSMC维持在收缩分化状态是动脉粥样硬化的有希望的治疗策略。我们已经报道了18个碱基的成肌寡脱氧核苷酸,iSN04,其充当抗核仁素适体并促进骨骼和心肌分化。本研究调查了iSN04对VSMC的影响,因为据报道,核仁素在病理生理条件下有助于VSMC去分化。核仁素位于大鼠和人VSMC的核质和核仁中。没有载体的iSN04自发地掺入到VSMC中,表明iSN04将充当抗核仁素适体。iSN04治疗降低了5-乙炔基-2'-脱氧尿苷(EdU)阳性增殖VSMC的比例,并增加了α-平滑肌肌动蛋白的表达,VSMC的收缩标记。iSN04还抑制了离体小鼠主动脉环的血管生成,这是一个与斑块形成有关的病理性血管生成模型,增长,和破裂。这些结果表明,用iSN04拮抗核仁素可以保留VSMC分化,提供用于治疗血管疾病的核酸候选药物。
    De-differentiation and subsequent increased proliferation and inflammation of vascular smooth muscle cells (VSMCs) is one of the mechanisms of atherogenesis. Maintaining VSMCs in a contractile differentiated state is therefore a promising therapeutic strategy for atherosclerosis. We have reported the 18-base myogenetic oligodeoxynucleotide, iSN04, which serves as an anti-nucleolin aptamer and promotes skeletal and myocardial differentiation. The present study investigated the effect of iSN04 on VSMCs because nucleolin has been reported to contribute to VSMC de-differentiation under pathophysiological conditions. Nucleolin is localized in the nucleoplasm and nucleoli of both rat and human VSMCs. iSN04 without a carrier was spontaneously incorporated into VSMCs, indicating that iSN04 would serve as an anti-nucleolin aptamer. iSN04 treatment decreased the ratio of 5-ethynyl-2\'-deoxyuridine (EdU)-positive proliferating VSMCs and increased the expression of α-smooth muscle actin, a contractile marker of VSMCs. iSN04 also suppressed angiogenesis of mouse aortic rings ex vivo, which is a model of pathological angiogenesis involved in plaque formation, growth, and rupture. These results demonstrate that antagonizing nucleolin with iSN04 preserves VSMC differentiation, providing a nucleic acid drug candidate for the treatment of vascular disease.
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  • 文章类型: Journal Article
    外周血循环肿瘤细胞(CTCs)的计数在早期诊断中起着至关重要的作用。复发监测,和癌症患者的预后评估。迫切需要开发一种用于捕获和鉴定这些稀有CTC的有效技术。然而,对单一标准的排他性依赖,如上皮细胞粘附分子(EpCAM)抗体或适体,对于上皮CTC的特异性识别并不普遍适用于临床应用,因为它通常不足以识别EpCAM阴性CTC。为了解决这个限制,我们提出了一种直接且具有成本效益的方法,涉及三重荧光标记的适体(FAM-EpCAM,Cy5-PTK7和TexasRed-CSV)改性负载Fe3O4的树枝状SiO2纳米复合材料(dmSiO2@Fe3O4/Apt)。这种基于多识别的策略不仅提高了捕获异构CTC的效率,同时也促进了CTC的快速准确鉴定。异构CTC的捕获效率达到93.33%,检测限低至5个细胞/mL。值得注意的是,开发的dmSiO2@Fe3O4/Apt纳米探针能够在短短30分钟内快速识别捕获的细胞,仅仅依靠荧光修饰的适体,与常规免疫细胞化学(ICC)技术相比,其鉴定时间减少了约90%。最后,使用来自各种类型癌症患者的血液样本验证了这些纳米探针的特征.
    The enumeration of circulating tumor cells (CTCs) in peripheral blood plays a crucial role in the early diagnosis, recurrence monitoring, and prognosis assessment of cancer patients. There is a compelling need to develop an efficient technique for the capture and identification of these rare CTCs. However, the exclusive reliance on a single criterion, such as the epithelial cell adhesion molecule (EpCAM) antibody or aptamer, for the specific recognition of epithelial CTCs is not universally suitable for clinical applications, as it usually falls short in identifying EpCAM-negative CTCs. To address this limitation, we propose a straightforward and cost-effective method involving triplex fluorescently labelled aptamers (FAM-EpCAM, Cy5-PTK7, and Texas Red-CSV) to modify Fe3O4-loaded dendritic SiO2 nanocomposite (dmSiO2@Fe3O4/Apt). This multi-recognition-based strategy not only enhanced the efficiency in capturing heterogeneous CTCs, but also facilitated the rapid and accurate identification of CTCs. The capture efficiency of heterogenous CTCs reached up to 93.33%, with a detection limit as low as 5 cells/mL. Notably, the developed dmSiO2@Fe3O4/Apt nanoprobe enabled the swift identification of captured cells in just 30 min, relying solely on the fluorescently modified aptamers, which reduced the identification time by approximately 90% compared with the conventional immunocytochemistry (ICC) technique. Finally, these nanoprobe characteristics were validated using blood samples from patients with various types of cancers.
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  • 文章类型: Journal Article
    基于荧光适体(FA)的杂交链反应(HCR)可以提供一种灵敏且无标记的信号放大方法,用于对活细胞中的分子进行成像。然而,现有的FA-HCR方法通常面临一些问题,例如复杂的设计和重大的背景泄漏,这极大地限制了它们的应用。在这里,我们开发了一种以FA为中心的HCR(FAC-HCR)方法,该方法基于远程立足点介导的链置换反应.与由四个发夹探针(HP)和两个HP介导的传统HCR相比,FAC-HCR显示背景渗漏显著减少,灵敏度提高.此外,FAC-HCR用于测试非核酸靶标,无嘌呤/无嘧啶核酸内切酶1(APE1),一种重要的BER相关核酸内切酶。荧光剖析成果证实FAC-HCR的检测限能到达0.1174U/mL。通过使用基于聚醚酰亚胺的纳米颗粒的FAC-HCR的两个HP,APE1在活细胞中的活性可以成像。总之,本研究为设计基于FA的HCR和提高HCR在活细胞成像中的性能提供了新的思路.
    A fluorogenic aptamer (FA)-based hybridization chain reaction (HCR) could provide a sensitive and label-free signal amplification method for imaging molecules in living cells. However, existing FA-HCR methods usually face some problems, such as a complicated design and significant background leakage, which greatly limit their application. Herein, we developed an FA-centered HCR (FAC-HCR) method based on a remote toehold-mediated strand displacement reaction. Compared to traditional HCRs mediated by four hairpin probes (HPs) and two HPs, the FAC-HCR displayed significantly decreased background leakage and improved sensitivity. Furthermore, the FAC-HCR was used to test a non-nucleic acid target, apurinic/apyrimidinic endonuclease 1 (APE1), an important BER-involved endonuclease. The fluorescence analysis results confirmed that FAC-HCR can reach a detection limit of 0.1174 U/mL. By using the two HPs for FAC-HCR with polyetherimide-based nanoparticles, the activity of APE1 in living cells can be imaged. In summary, this study could provide a new idea to design an FA-based HCR and improve the performance of HCRs in live cell imaging.
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