Aptamer 学术简报 — biosensor — 2026-08-28

自动生成 by RBTX Aptamer Tracker v0.1。 子主题 biosensor:近 14 天 131 篇命中(aptamer 池 192 篇)。

评分公式:composite = 0.45×log(IF) + 0.35×log(cites_velocity) + 0.10×social + 0.10×recency_bonus;满分 100。


#1 [18.3] Bifunctional DNA multivalent structure integrating stable capture of urothelial carcinoma cells with CRISPR/Cas12a signal amplification for bladder cancer detection.

Noninvasive detection of bladder cancer remains challenging due to the limited analytical performance of current urine-based assays under realistic detection conditions. Here, we report a linear programmable DNA nanostructure that integrates multivalent aptamer recognition with CRISPR/Cas12a signal transduction for detecting tumor-derived urinar...


#2 [17.0] Shell-thickness-modulated electrochemiluminescence of colloidal quantum dots for ultrasensitive PSA detection.

Electrochemiluminescence (ECL) biosensors hold great promise for clinical diagnostics, yet their performance is often constrained by the limited efficiency and stability of available luminophores in complex biological matrices. Colloidal quantum dots (QDs) have emerged as attractive alternatives to conventional emitters, but a systematic underst...


#3 [15.0] Integrated single-tube detection of miRNAs in subpopulation-specific extracellular vesicles via spatially colocalized dual-module DNA scaffold.

Extracellular vesicles (EVs)-derived miRNAs are valuable non-invasive biomarkers for early cancer diagnosis. However, most current methods detect either total EVs-miRNAs or those from a single subpopulation, overlooking subpopulation heterogeneity. Moreover, EVs isolation and miRNA analysis are often conducted in separate workflows, increasing s...


#4 [14.8] Cell‐Like Portable Biologics‐Free Sensors for Stress Diagnostics

ABSTRACT Mental health is a pressing and widespread global concern, necessitating accessible, reliable and cost‐effective tools for its ongoing monitoring and effective management. Herein, a portable “molecule‐probe” platform is presented that integrates a specific chemical reaction within a hydrogel microreactor with n ‐type semiconductor dopin...


#5 [14.0] Steric hindrance effect synergizing hole-trapping technique: High-Stability and high-accuracy Si/CdS n-n heterojunction photoelectrochemical biosensing of amyloid-β42.

Due to rapid carrier recombination and photodegradation, cadmium sulfide (CdS), an n-type semiconductor photosensitive material, has a low utilization efficiency that restricts its use in biosensing. A synergistic hole-trapping approach utilizing steric hindrance effects is proposed in this paper. First, chemical bath deposition (CBD) is used to...


#6 [14.0] A multifunctional electrode interface: A hybrid hexanethiol and polyethylene glycol monolayer for concurrent anti-fouling, stability, and ultrasensitive detection of ochratoxin A.

Integrating antifouling capability, operational stability, and high sensitivity into electrochemical biosensors in a simple and cost-effective manner remains a significant challenge. Herein, we present a multifunctional biointerface based on a hybrid hexanethiol and polyethylene glycol (HT-PEG) self-assembled monolayer (SAM) that concurrently ad...


#7 [13.8] Highly sensitive galectin-3 electrochemical sensor based on a dual-recognition interface of cyclodextrin-integrated molecularly imprinted polymers (MIPs) and an aptamer.

Heart failure (HF) is a major global health burden, and elevated serum levels of galectin-3 (Gal3) are widely recognized as a reliable biomarker of disease progression. Accurate detection of Gal3 is vital for prognosis and effective management of HF. This study develops a dual-recognition sandwich sensor for Gal3, providing a sensitive and selec...


#8 [13.5] Electropolymerized Aptasensor for Femtogram-Level Cytokine Detection.

Detecting cytokines at ultralow concentrations is important for the early diagnosis and monitoring of inflammatory and immune disorders, yet remains constrained by the sensitivity and stability of bioelectronic interfaces. Here, we present an electropolymerization strategy for preparing poly(amino-ʟ-tyrosine) (pALT) nanofilms as functional bioin...


#9 [13.5] Biomaterials Meet Organic Electrochemical Transistors: Materials, Interfaces, and Biosensing Frontiers

ABSTRACT Organic electrochemical transistors (OECTs) are emerging as powerful biosensing platforms, offering high transduction efficiency, low‐voltage operation, and intrinsic compatibility with aqueous and physiological environments. Central to their recent progress is the strategic integration of biomaterials, which govern interfacial charge t...


#10 [13.5] Biphasic spatiotemporal regulation of Cas12a substrate cleavage enables one-pot autocatalytic CRISPR biosensing of non-nucleic-acid targets.

One-pot autocatalytic CRISPR biosensing offers a promising route for signal amplification without nucleic acid pre-amplification, but its efficiency is limited by an intrinsic readout-amplification conflict: the ssDNA reporter required for signal output competes with the autocatalytic mediator required for feedback amplification. Here, we report...



Methodology