Aptamer 学术简报 — 2026-07-31

自动生成 by RBTX Aptamer Tracker v0.1。 近 14 天入库 165 篇 aptamer-related papers。

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 [16.2] Inception-level signal amplification: Cascaded DNAzyme-Cas9 nickase achieves sub-nanomolar kanamycin tracking.

BACKGROUND: Kanamycin's persistent contamination in agricultural products poses significant human health risks due to its nephrotoxicity and bioaccumulation via the food chain. Existing methods for on-site kanamycin monitoring lack sufficient sensitivity and portability, limiting their utility in field settings. The urgent need for rapid detecti...


#2 [16.2] The integration of peptoid and phosphorothioate aptamer into electrochemical biosensors for the robust antifouling detection of prostate-specific antigen in human serum.

Electrochemical biosensors for biomarker detection in complex biological media often suffer from performance degradation. Two main causes are non-specific adsorption of biomolecules and enzymolysis of immobilized biomolecules. Consequently, the development of robust antifouling electrochemical biosensors represents an imperative research task. W...


#3 [14.9] Structure‐Guided Redesign of Terminal Deoxynucleotidyl Transferase Enables Scalable Enzymatic DNA Synthesis for Data Storage

ABSTRACT DNA, with its exceptional information capacity and chemical stability, represents a promising material for next‐generation data storage to meet the exponential growth of global digital information demands. Enzymatic DNA synthesis provides a sustainable route to DNA production. However, the practical scalability of the underlying polymer...


#4 [14.9] Structure‐Guided Redesign of Terminal Deoxynucleotidyl Transferase Enables Scalable Enzymatic DNA Synthesis for Data Storage

ABSTRACT DNA, with its exceptional information capacity and chemical stability, represents a promising material for next‐generation data storage to meet the exponential growth of global digital information demands. Enzymatic DNA synthesis provides a sustainable route to DNA production. However, the practical scalability of the underlying polymer...


#5 [14.9] Strategies for biofilm disruption: Mechanisms, polymeric networks, mixed infections, and emerging biomaterials.

Biofilms represent the predominant microbial lifestyle in clinical and environmental settings, where the extracellular polymeric substance (EPS) matrix provides structural integrity, metabolic cooperation, and pronounced antimicrobial tolerance. This matrix forms a dynamic macromolecular network of polysaccharides, proteins, extracellular DNA (e...


#6 [14.2] Functionalized Coacervates for Cancer Therapy: Advances and Prospects in Phase‐Separation–Based Intelligent Drug Delivery

Functionalized coacervates, a type of nanomaterial inspired by biomolecular condensation, have emerged as an important research direction in biomedicine, particularly in cancer therapy. These membraneless structures formed by liquid-liquid phase separation (LLPS) self-assembly have high drug-loading capacity, favorable biocompatibility, and tuna...


#7 [13.8] A Wearable Extracorporeal Device for Imaging‐Guided Therapy of Sepsis Through Rapid Removal of Bacteria

ABSTRACT Sepsis is a severe infectious disease triggered by pathogenic bacteria invading the bloodstream, with mortality risk increasing by 7%–9% for each hour of delayed treatment. Real‐time pathogen monitoring and rapid intervention are crucial for the timely and effective management of sepsis. Here, we show that a wearable extracorporeal bloo...


#8 [13.6] Corrigendum to "PSMA RNA aptamer A10-3.2 conjugated with indocyanine green for rapid intraoperative imaging and effective mild photothermal therapy of prostate cancer" [Int. J. Biol. Macromol. 2026 Feb; 341(Pt 2):150303].


#9 [13.3] Retraction Note: Fluorometric determination of okadaic acid using a truncated aptamer.


#10 [13.2] Detection of Point Mutation in Individual Living Circulating Malignant Cells by Targeting Molecular Beacon Delivery.

As a prevalent form of genetic alteration, single-base substitution serves as a critical determinant of targeted cancer therapeutic strategies and a driver of acquired drug resistance. Despite its clinical significance, detecting these mutations at the single-cell level remains challenging due to high costs, long analysis times, and difficulties...



Methodology