Aptamer-Functionalized DNA Frameworks as Targeted Drug Buffers for Concentration Regulation of Maytansine

Traditional chemotherapy often suffers from nonspecific distribution and poor drug concentration control, leading to compromised therapeutic efficacy and adverse effects. Mertansine (DM1), a potent cytotoxic agent with poor selectivity, dose-limiting toxicity, and a narrow therapeutic window, demands targeted delivery and precise concentration regulation for safety and efficacy. Herein, we constructed two Janus DNA triangular prism-based molecular buffers (3A-JTP-3S2 and A-MTP-3S2) for targeted DM1 delivery and concentration regulation. Both of the buffers integrate nucleolin-targeting aptamer (Apt-AS1411) for cancer cell recognition and DM1-specific aptamer (Apt-Seq2-X) for regulating DM1 concentration within a desired therapeutic range. When we evaluated their endocytic behaviors, 3A-JTP-3S2 was prone to lysosomal degradation via clathrin-mediated endocytosis. In contrast, A-MTP-3S2, a higher-order multivalent assembly built from 3A-JTP-3S2 units, forms an endocytosis-resistant DNA network that anchors onto cell membranes due to its enlarged size. We thus prioritized the latter for subsequent studies. A-MTP-3S2 delivered DM1 with favorable tumor-targeting ability across a total DM1 concentration (CDM1) range of 50-1000 nM, significantly killing A549 cancer cells (viability: 55.7 ± 8.15% - 50.84 ± 2.27%) while showing less impact on BEAS-2B normal cells (viability: 91.21 ± 2.72% - 76.31 ± 5.97%). Notably, even as CDM1 varied from 50 to 1000 nM, A-MTP-3S2 still maintained free DM1 at a relatively constant level (1-55 nM), confirming its great buffering capacity. Our work offers a facile strategy for simultaneous targeted delivery and precise concentration regulation of low-specific and high-toxic drugs.

Authors

Institutions

Publication Details

Journal
ACS Applied Bio Materials
Published
2026-09-10
DOI
https://doi.org/10.1021/acsabm.6c00958
Primary Topic
Advanced biosensing and bioanalysis techniques
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Aptamer-Functionalized DNA Frameworks as Targeted Drug Buffers for Concentration Regulation of Maytansine

Kemin Wang, Jin Huang, Xiaohai Yang, Qian Xiong et al.
ACS Applied Bio Materials
Advanced biosensing and bioanalysis techniques
article

Aptamer-Functionalized DNA Frameworks as Targeted Drug Buffers for Concentration Regulation of Maytansine

Kemin Wang, Jin Huang, Xiaohai Yang, Qian Xiong, Qing Wang, Jiaojiao Li, Dan Jiang, Yanan Luan, Jia Liu, Lei Luo, Ying Xiao
article en

Abstract

Traditional chemotherapy often suffers from nonspecific distribution and poor drug concentration control, leading to compromised therapeutic efficacy and adverse effects. Mertansine (DM1), a potent cytotoxic agent with poor selectivity, dose-limiting toxicity, and a narrow therapeutic window, demands targeted delivery and precise concentration regulation for safety and efficacy. Herein, we constructed two Janus DNA triangular prism-based molecular buffers (3A-JTP-3S2 and A-MTP-3S2) for targeted DM1 delivery and concentration regulation. Both of the buffers integrate nucleolin-targeting aptamer (Apt-AS1411) for cancer cell recognition and DM1-specific aptamer (Apt-Seq2-X) for regulating DM1 concentration within a desired therapeutic range. When we evaluated their endocytic behaviors, 3A-JTP-3S2 was prone to lysosomal degradation via clathrin-mediated endocytosis. In contrast, A-MTP-3S2, a higher-order multivalent assembly built from 3A-JTP-3S2 units, forms an endocytosis-resistant DNA network that anchors onto cell membranes due to its enlarged size. We thus prioritized the latter for subsequent studies. A-MTP-3S2 delivered DM1 with favorable tumor-targeting ability across a total DM1 concentration (CDM1) range of 50-1000 nM, significantly killing A549 cancer cells (viability: 55.7 ± 8.15% - 50.84 ± 2.27%) while showing less impact on BEAS-2B normal cells (viability: 91.21 ± 2.72% - 76.31 ± 5.97%). Notably, even as CDM1 varied from 50 to 1000 nM, A-MTP-3S2 still maintained free DM1 at a relatively constant level (1-55 nM), confirming its great buffering capacity. Our work offers a facile strategy for simultaneous targeted delivery and precise concentration regulation of low-specific and high-toxic drugs.

ACS Applied Bio Materials
Hunan University (CN), Changsha Normal University (CN)
No poverty
Openalex Percentile: Top 18%
Advanced biosensing and bioanalysis techniques
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.