构建了一种基于菲涅耳反射原理的光纤生物传感器,以生物素-链霉亲和素体系为模型验证了其进行生物传感的可行性。首先,利用硅烷偶联剂,在切平整的普通单模光纤端面修饰上生物素,将其作为吸附链霉亲和素的生物敏感膜。然后,将光纤端面浸...构建了一种基于菲涅耳反射原理的光纤生物传感器,以生物素-链霉亲和素体系为模型验证了其进行生物传感的可行性。首先,利用硅烷偶联剂,在切平整的普通单模光纤端面修饰上生物素,将其作为吸附链霉亲和素的生物敏感膜。然后,将光纤端面浸入不同浓度的链霉亲和素溶液中,测量宽带光源经过光纤端面反射后的光谱。实验结果表明,反射光谱的相对功率与链霉亲和素溶液浓度之间呈线性关系,测量得到灵敏度为15.38 d B/(mg/m L)。用牛血清白蛋白代替链霉亲和素,测量得到的反射光谱曲线与在之前浸入生物素后的反射光谱曲线基本重合,证明此生物传感器的选择性好。最后以人免疫球蛋白G与山羊抗人免疫球蛋白G体系验证了此结构进行生物传感的实用性。展开更多
Localized surface plasmon resonance(LSPR)biosensors,which enable nanoscale confinement and manipulation of light,offer the enhanced sensitivity and electromagnetic energy localization.The integration of LSPR with the ...Localized surface plasmon resonance(LSPR)biosensors,which enable nanoscale confinement and manipulation of light,offer the enhanced sensitivity and electromagnetic energy localization.The integration of LSPR with the fiber-optic technology has led to the development of compact and versatile sensors for miniaturization and remote sensing.This comprehensive review explores various sensor configurations,fiber types,and geometric shapes,highlighting their benefits in terms of sensitivity,integration,and performance improvement.Fabrication techniques such as focused non-chemical bonding strategies and self-assembly of nanoparticles are discussed,providing control over nanostructure morphology and enhancing sensor performance.Bio-applications of fiber-optic LSPR(FOLSPR)sensors are detailed,specifically in biomolecular interactions and analysis of proteins,pathogens and cells,nucleic acids(DNA and RNA),and other small molecules(organic compounds and heavy metal ions).Surface modification and detection schemes are emphasized for their potential for label-free and real-time biosensing.The challenges and prospects of FOLSPR sensors are addressed,including the developments in sensitivity,fabrication techniques,and measurement reliability.Integration with emerging technologies such as nanomaterials is highlighted as a promising direction for future research.Overall,this review provides insights into the advancements and potential applications of FOLSPR sensors,paving the way for sensitive and versatile optical biosensing platforms in various fields.展开更多
文摘构建了一种基于菲涅耳反射原理的光纤生物传感器,以生物素-链霉亲和素体系为模型验证了其进行生物传感的可行性。首先,利用硅烷偶联剂,在切平整的普通单模光纤端面修饰上生物素,将其作为吸附链霉亲和素的生物敏感膜。然后,将光纤端面浸入不同浓度的链霉亲和素溶液中,测量宽带光源经过光纤端面反射后的光谱。实验结果表明,反射光谱的相对功率与链霉亲和素溶液浓度之间呈线性关系,测量得到灵敏度为15.38 d B/(mg/m L)。用牛血清白蛋白代替链霉亲和素,测量得到的反射光谱曲线与在之前浸入生物素后的反射光谱曲线基本重合,证明此生物传感器的选择性好。最后以人免疫球蛋白G与山羊抗人免疫球蛋白G体系验证了此结构进行生物传感的实用性。
基金supported by the National Natural Science Foundation of China(Grant Nos.62375036,62005034,62171076,and 61727816)Liaoning Cancer Hospital Oncology+Funds(Grant No.2024-ZLKF-34)Fundamental Research Funds for the Central Universities(Grant No.DUT21RC(3)080).
文摘Localized surface plasmon resonance(LSPR)biosensors,which enable nanoscale confinement and manipulation of light,offer the enhanced sensitivity and electromagnetic energy localization.The integration of LSPR with the fiber-optic technology has led to the development of compact and versatile sensors for miniaturization and remote sensing.This comprehensive review explores various sensor configurations,fiber types,and geometric shapes,highlighting their benefits in terms of sensitivity,integration,and performance improvement.Fabrication techniques such as focused non-chemical bonding strategies and self-assembly of nanoparticles are discussed,providing control over nanostructure morphology and enhancing sensor performance.Bio-applications of fiber-optic LSPR(FOLSPR)sensors are detailed,specifically in biomolecular interactions and analysis of proteins,pathogens and cells,nucleic acids(DNA and RNA),and other small molecules(organic compounds and heavy metal ions).Surface modification and detection schemes are emphasized for their potential for label-free and real-time biosensing.The challenges and prospects of FOLSPR sensors are addressed,including the developments in sensitivity,fabrication techniques,and measurement reliability.Integration with emerging technologies such as nanomaterials is highlighted as a promising direction for future research.Overall,this review provides insights into the advancements and potential applications of FOLSPR sensors,paving the way for sensitive and versatile optical biosensing platforms in various fields.