A general controllable release amplification strategy of liposomes for single-particle collision electrochemical biosensing

生物传感器 脂质体 化学 分析物 链霉亲和素 生物分子 色谱法 检出限 纳米技术 生物素 生物物理学 材料科学 生物化学 生物
作者
Jinrong Liu,Chong Ma,Siwei Shi,Heng Liu,Wei Wen,Xun Zhang,Zhen Wu,Shengfu Wang
出处
期刊:Biosensors and Bioelectronics [Elsevier]
卷期号:207: 114182-114182 被引量:13
标识
DOI:10.1016/j.bios.2022.114182
摘要

As an important component of the COVID-19 mRNA vaccines, liposomes play a key role in the efficient protection and delivery of mRNA to cells. Herein, due to the controllable release amplification strategy of liposomes, a reliable and robust single-particle collision electrochemical (SPCE) biosensor was constructed for H9N2 avian influenza virus (H9N2 AIV) detection by combining liposome encapsulation-release strategy with immunomagnetic separation. The liposomes modified with biotin and loaded with platinum nanoparticles (Pt NPs) were used as signal probes for the first time. Biotin facilitated the coupling of biomolecules (DNA or antibodies) through the specific reaction of biotin-streptavidin. Each liposome can encapsulate multiple Pt NPs, which were ruptured under the presence of 1 × PBST (phosphate buffer saline with 0.05% Tween-20) within 2 min, and the encapsulated Pt NPs were released for SPCE experiment. The combination of immunomagnetic separation not only improved the anti-interference capabilities but also avoided the agglomeration of Pt NPs, enabling the SPCE biosensor to realize ultrasensitive detection of 18.1 fg/mL H9N2 AIV. Furthermore, the reliable SPCE biosensor was successfully applied in specific detection of H9N2 AIV in complex samples (chicken serum, chicken liver and chicken lung), which promoted the universality of SPCE biosensor and its application prospect in early diagnosis of diseases.
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