Aptamer 学术简报 — therapeutic — 2026-09-28

自动生成 by RBTX Aptamer Tracker v0.1。 子主题 therapeutic:近 14 天 51 篇命中(aptamer 池 157 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 [15.0] Advances in Aptamer Drug Delivery Systems for Treatment of Glioblastoma.

Therapeutic strategies for glioblastoma have progressed considerably over recent decades. Despite the development of new biomedical technologies and advances in our understanding of physiology and disease progression, effective drug delivery to brain cancer remains a significant challenge. The challenge is delivering therapeutics to the correct ...


#2 [15.0] Continuous Molecular Monitoring Using Electrochemical Aptamer-Based Sensors: Remaining Challenges for Long-Term In Vivo Deployment.

In vivo continuous molecular monitoring represents a long-standing, transformative objective in medicine, with the potential to fundamentally reshape disease diagnostics, therapeutic decision-making, and long-term patient management by providing dynamic biochemical information that is currently inaccessible. Electrochemical aptamer-based biosens...


#3 [14.9] A Self-Propelled DNA-Based Nanorobot for Hypoxic Tumor Therapy.

Solid tumors pose major therapeutic hurdles due to pathophysiological barriers such as hypoxia and dense stroma, which severely restrict drug penetration. Conventional nanomedicines lack the autonomous capability to navigate these evolving obstacles. Here, we engineer a DNA‑based nanorobot constructed on an optimized tetrahedral framework nuclei...


#4 [13.8] DNA Nanoassembly Modified Polydopamine@MnO(2) Nanoparticles: Enhancement of miRNA-21 Downregulation for Reversal of Breast Cancer Drug-Resistance.

Downregulating oncogenic microRNAs (miRNAs) is an attractive strategy for reversing drug resistance in cancer therapy. Compared to antisense, DNAzyme (Dz) possesses advantages such as recyclability and stability. However, it still suffers from insufficient stability and inadequate endogenous cofactors. Herein, by using miRNA-21 (miR-21) as targe...


#5 [13.3] Membrane-Coated DNA Nanoflowers Attenuate Cognitive Decline in Apolipoprotein E4 Mice.

APOE4-driven mitochondrial dysfunction is one of the important primary drivers of cognitive decline in neurodegenerative diseases. However, achieving mitochondrial-targeted drug delivery in the nervous system requires overcoming multiple barriers, necessitating the development of a safer and more efficient bionanoparticle drug delivery system. D...


#6 [12.6] Myelin-Inspired 3D PEGylation of Framework Nucleic Acids Enables Simultaneous Long Circulation and Rapid Renal Clearance.

The rational design of nanomedicines is fundamentally constrained by a physicochemical paradox at the bio-nano interface: strategies to prolong circulation inevitably suppress clearance, often resulting in long-term accumulation and systemic toxicity. To address this, we propose spatial conformation engineering as an additional design dimension ...


#7 [12.6] Modular Lysosome-Targeting Platform Based on a Multivalent DNA Framework for Programmable Protein Degradation.

Targeted degradation of extracellular and membrane-bound proteins holds immense therapeutic potential but remains technically challenging. Lysosome-targeting chimeras (LYTACs) have emerged to bridge this gap, yet platforms built on monomeric aptamers suffer from inadequate stability, inefficient cellular uptake, and a lack of modularity. Here, w...


#8 [12.2] A Sprayable Multifunctional Film Based on EGFR-Targeting DNA Nanoactivators for Burn Wound Healing.

Burn treatment remains a tough clinical hurdle, as traditional epidermal growth factor (EGF) treatments suffer from rapid proteolytic degradation and poor skin permeation. Herein, a sprayable, multifunctional film (STAR) based on EGFR-targeting DNA nanoactivators is reported for efficient burn wound healing. The STAR platform combines tannic aci...


#9 [12.0] Leukemic Stem Cell-Targeted Liposomal Nanoimmunotherapy Reverses Immune Evasion and Inhibits Fusion Oncoprotein-Driven Acute Myeloid Leukemia by Silencing B-Cell Lymphoma 2.

Acute Myeloid Leukemia (AML) is a prevalent and aggressive hematologic cancer driven by leukemic stem cells and immune evasion. Among its subtypes, Mixed Lineage Leukemia-AF9 (MLL-AF9)- rearranged AML is exceptionally lethal, with B-cell lymphoma 2 (Bcl2), a key anti-apoptotic protein, supporting leukemic survival and immune dysfunction. Targeti...


#10 [11.5] Universal contamination-free nucleic acid biosensing enabled by guide-independent Argonaute amplicon elimination

Amplicon contamination remains a major challenge in nucleic acid biosensing, frequently compromising diagnostic accuracy in both clinical testing and field-deployable sensing systems. Although strategies such as uracil-DNA glycosylase (UDG) treatment and CRISPR-based approaches have been developed to mitigate this problem, their broader implemen...



Methodology