Electrophoresis-assisted SERS-LFA strip for simultaneous HIV and HBV detection
Electrophoresis-assisted SERS-LFA strip for simultaneous HIV and HBV detection
Biomimetic peptide self-assembly: interfacing with biomacromolecules to regulate cellular signaling
Biomimetic peptide self-assembly: interfacing with biomacromolecules to regulate cellular signaling
SIGMA: Shear-Induced Gelation by Microbead Aggregation in Tubular Flow Systems
SIGMA: Shear-Induced Gelation by Microbead Aggregation in Tubular Flow Systems
Optimising CNT-FET biosensor design through modelling of biomolecular electrostatic gating and its application to β-lactamase detection
Optimising CNT-FET biosensor design through modelling of biomolecular electrostatic gating and its application to β-lactamase detection
The antifibrotic effects of a click chemistry-based albumin nanocomplex in an idiopathic pulmonary fibrosis model
The antifibrotic effects of a click chemistry-based albumin nanocomplex in an idiopathic pulmonary fibrosis model
J. Nanobiotechnol., DOI: 10.1186/s12951-026-04413-2
Optimization of SWCNT-FET Biosensors by Aptamer Engineering and Toehold-Mediated Strand Displacement
Optimization of SWCNT-FET Biosensors by Aptamer Engineering and Toehold-Mediated Strand Displacement
Adv. Sci., DOI: 10.1002/advs.75328
2026-04
바이오·의료융합
한빛사논문
이민/upload/board/files/hbs_author/author_0/0028070_1.jpg(University of California, Los Angeles)이민
Self-Assembled Nanoclay Gel With Spheroid MSC-Derived Exosome Mimetics to Integrate Demineralized Bone Matrix and Noggin-Targeting miRNA for Synergistic Osteogenesis
Self-Assembled Nanoclay Gel With Spheroid MSC-Derived Exosome Mimetics to Integrate Demineralized Bone Matrix and Noggin-Targeting miRNA for Synergistic Osteogenesis
Synergistic development of micro/nano fabrication for lab-on-the-needle devices: Recent advances, biomedical applications, and challenges
Synergistic development of micro/nano fabrication for lab-on-the-needle devices: Recent advances, biomedical applications, and challenges
A Monolithic 3D-Printed Platform for Functional Maturation and In-Situ Contractility Assessment of 3D Skeletal Muscle
A Monolithic 3D-Printed Platform for Functional Maturation and In-Situ Contractility Assessment of 3D Skeletal Muscle
Biomater. Res., DOI: 10.34133/bmr.0363
2026-04
바이오·의료융합
한빛사논문
김영탁/upload/board/files/hbs_author/author_8/0051548_1.jpg(Massachusetts General Hospital, Harvard Medical School)김영탁 / 도신호 / 임동권
Targeted Surface-Enhanced Raman Scattering for Highly Accurate Identification of Bacterial Species and Finding Spectral Signatures with Explainable Artificial Intelligence
Targeted Surface-Enhanced Raman Scattering for Highly Accurate Identification of Bacterial Species and Finding Spectral Signatures with Explainable Artificial Intelligence