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Biosensors 2025年光学和光子生物传感器栏目文章精选|主编荐读 |
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期刊名:Biosensors
期刊主页:https://www.mdpi.com/journal/biosensors
随着光学与光子学技术的不断演进,生物传感正从传统的“看得见/测得到”走向“高灵敏、多维度、可集成、可穿戴”的新阶段。本专题汇集了发表于 Biosensors 的一批具有代表性的工作,系统展示了光学与光子生物传感器的最新进展与前沿挑战。内容涵盖了从表面等离子体共振与等离激元/介质超表面等核心光学平台的系统综述与工程设计,到面向微纳塑料、蛋白质定量、食品安全等复杂样品的创新(生物)传感策略;从水凝胶集成 SERS、微针原位取样等新型光谱增强结构,到可诊断脱水状态的隐形眼镜等新一代可穿戴光学器件;同时也关注 FRET 技术在蛋白质–蛋白质相互作用研究中的应用前景以及3D打印、电化学–光学融合等多学科交叉方向。这些成果串联起了从底层传感机制到终端应用场景的完整技术路径,为未来精准医疗与即时诊断的落地提供了切实可行的技术参考。
1. Surface Plasmon Resonance-Based Biodetection Systems: Principles, Progress and Applications—A Comprehensive Review
基于表面等离子体共振的生物检测系统:原理、进展和应用—综述
https://www.mdpi.com/2079-6374/15/1/35
Butt, M.A. Surface Plasmon Resonance-Based Biodetection Systems: Principles, Progress and Applications—A Comprehensive Review. Biosensors 2025, 15, 35.
2. Exploring Innovative Approaches for the Analysis of Micro- and Nanoplastics: Breakthroughs in (Bio)Sensing Techniques
探索微纳米塑料分析的创新方法:生物传感技术的突破
https://www.mdpi.com/2079-6374/15/1/44
Sánchez-Álvarez, A.; Rivera-Rivera, D.M.; Luna-Moreno, D.; Cedillo-González, E.I.; Quintanilla-Villanueva, G.E.; Kaushik, G.; Rodríguez-Delgado, J.M.; Villarreal-Chiu, J.F.; Rodríguez-Delgado, M.M. Exploring Innovative Approaches for the Analysis of Micro- and Nanoplastics: Breakthroughs in (Bio)Sensing Techniques. Biosensors 2025, 15, 44.
3. Electrochemical Biosensors 3D Printed by Fused Deposition Modeling: Actualities, Trends, and Challenges
熔融沉积成型3D打印电化学生物传感器:现状、趋势与挑战
https://www.mdpi.com/2079-6374/15/1/57
Silva, L.R.G.; Lopes, C.E.C.; Tanaka, A.A.; Dantas, L.M.F.; Silva, I.S.; Stefano, J.S. Electrochemical Biosensors 3D Printed by Fused Deposition Modeling: Actualities, Trends, and Challenges. Biosensors 2025, 15, 57.
4. Advances in Hydrogel-Integrated SERS Platforms: Innovations, Applications, Challenges, and Future Prospects in Food Safety Detection
水凝胶集成SERS平台的进展:食品安全检测中的创新、应用、挑战与未来展望
https://www.mdpi.com/2079-6374/15/6/363
Nunekpeku, X.; Li, H.; Zahid, A.; Li, C.; Zhang, W. Advances in Hydrogel-Integrated SERS Platforms: Innovations, Applications, Challenges, and Future Prospects in Food Safety Detection. Biosensors 2025, 15, 363.
5. Plasmonic and Dielectric Metasurfaces for Enhanced Spectroscopic Techniques
用于增强光谱技术的等离激元与介质超表面
https://www.mdpi.com/2079-6374/15/7/401
García García, B.; Fernández-Manteca, M.G.; Zografopoulos, D.C.; Gómez-Galdós, C.; Ocampo-Sosa, A.A.; Rodríguez-Cobo, L.; Algorri, J.F.; Cobo, A. Plasmonic and Dielectric Metasurfaces for Enhanced Spectroscopic Techniques. Biosensors 2025, 15, 401.
6. Drying-Induced Salt Deposition Patterns as a Tool for Label-Free Protein Quantification
干燥诱导的盐沉积图案:一种无标记蛋白质定量分析工具
https://www.mdpi.com/2079-6374/15/8/520
Patrone-Garcia, A.; Avella-Oliver, M.; Maquieira, Á. Drying-Induced Salt Deposition Patterns as a Tool for Label-Free Protein Quantification. Biosensors 2025, 15, 520.
7. First Design of a Contact Lens for Diagnosis of Dehydration
首款用于脱水状态诊断的隐形眼镜设计
https://www.mdpi.com/2079-6374/15/8/532
Sivashanmugan, K.; Albert, R.E.; Lakowicz, J.R. First Design of a Contact Lens for Diagnosis of Dehydration. Biosensors 2025, 15, 532.
8. Progress and Prospects in FRET for the Investigation of Protein–Protein Interactions
用于研究蛋白质-蛋白质相互作用的FRET技术的进展与展望
https://www.mdpi.com/2079-6374/15/9/624
Zhang, Y.; Ma, X.; Zhu, M.; Wang, V.Y.-F.; Guo, J. Progress and Prospects in FRET for the Investigation of Protein–Protein Interactions. Biosensors 2025, 15, 624.
9. Recent Progress on the Application of Microneedles for In Situ Sampling in Surface-Enhanced Raman Scattering Detection
微针用于表面增强拉曼散射检测原位取样的最新应用进展
https://www.mdpi.com/2079-6374/15/6/350
Yang, W.; Chen, Y.; Cheng, X.; Liu, S.; Zhu, H.; Hu, Y. Recent Progress on the Application of Microneedles for In Situ Sampling in Surface-Enhanced Raman Scattering Detection. Biosensors 2025, 15, 350.
期刊介绍
主编:Prof. Dr. Giovanna Marrazza
Biosensors(ISSN 2079-6374)为生物传感器及生物传感相关科学与技术领域的研究提供了一个高水平的交流平台。该期刊发表原创性研究论文、综合性综述及简报。我们旨在鼓励科学家尽可能详尽地发表其实验与理论研究成果。论文篇幅不设上限,但必须提供完整的实验细节,以确保研究结果可被复现。
2025 Impact Factor:6.2
2025 CiteScore:12.1
Time to First Decision:17.3 Days
Acceptance to Publication:2.9 Days
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