Home

Home - Support and Resources - Citation

2026. 01Primers and Probes

Ultra-high multiplex PCR uniformity is enhanced by carbon nanotube-dendrimer-encapsulated gold nanoparticles

Dongqing Zhao, Yao Lu, Meng Lu,Chen Tang, Huanhuan Zong,Yingbo Chen, Bingxue Cai, Yuxun Zhou, Kai Lia and Junhua Xiao

Full Text

ABSTRACT

Polymerase chain reaction (PCR) remains the gold standard in molecular diagnostics. However, under highly multiplexed conditions, PCR often suffers from poor amplification uniformity, which limits its highthroughput potential and clinical applicability. To address this limitation, we developed a novel nanocomposite—carbon nanotube-dendrimer-encapsulated gold nanoparticles (CNT-G3-Au), synthesized by covalently conjugating third-generation dendrimer-coated gold nanoparticles to carboxylated carbon nanotubes (CNT–COOH) via EDCHCl/NHS coupling chemistry. The resulting point–line–surface nanostructure integrates the high thermal conductivity of CNT–COOH and gold nanoparticles with the electrostatic DNA enrichment capability of dendrimer assemblies, enabling efficient heat transfer and electrostatic enrichment of DNA during amplification. When applied to 120-plex ultra-high multiplex PCR and 40-plex methylation-specific PCR systems, CNT-G3-Au significantly enhanced amplification uniformity. Quantitative polymerase chain reaction analysis revealed cycle threshold variation of less than 4 among amplicons, while high-throughput sequencing revealed a read uniformity of 83.6%, along with increased mapping rates and improved genomic coverage depth. Mechanistic studies, including zeta potential analysis, thermal conductivity testing and finite element modeling, confirmed the synergistic effects of thermal conduction (1.503 W m1 K1) and electrostatic enrichment. Furthermore, CNT-G3-Au exhibited excellent specificity, structural stability and compatibility under highly multiplexed conditions. These results highlight CNT-G3-Au as a promising and broadly applicable PCR enhancer, offering a new strategy for improving amplification performance in complex systems and enabling more robust and accurate nucleic acid detection in both clinical and research settings.

Associated articles

Dynegene Next-Gen Synthesis: Powering Biotech Revolution With Nucleic Acids

Contact Us

Tel: 400-017-9077

Address: Floor 2, Building 5, No. 248 Guanghua Road, Minhang District, Shanghai

Email: info2@dynegene.com

Follow Us

Copyright © 2026 Shanghai Dynegene Technologies Co., Ltd.
All rights reserved.   

Website Map I Privacy Policy