Programmable nanomedicine via bioorthogonal molecular engineering

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초록

Bioorthogonal chemistry provides a versatile strategy for programming nanomedicines beyond static carrier design. It enables post-synthetic installation of functional modules on nanoparticle surfaces, spatiotemporal control of payload activation and release, and higher-order functions arising from nanoparticle aggregation or nanoparticle– cell conjugation in diseased tissues. These capabilities allow nanomedicines to be activated more selectively in space and time and to generate functions that are difficult to achieve with conventional formulations. This review summarizes recent advances in multiscale bioorthogonal engineering for programmable nanomedicines, focusing on surface functionalization, molecular control of drug release, and interparticle or cell-associated assembly, and discusses challenges and future directions

키워드

Bioorthogonal chemistry; Nanomedicine; Post-functionalization; Prodrug activation; In situ assembly; Diagnostic imaging; Targeted therapy; IRON-OXIDE NANOPARTICLES; FREE CLICK CHEMISTRY; OVERCOMING BIOLOGICAL BARRIERS; CONJUGATED GOLD NANOPARTICLES; TARGETED DRUG-DELIVERY; IN-VIVO; EXTRACELLULAR VESICLES; TRANS-CYCLOOCTENE; SURFACE FUNCTIONALIZATION; SYNERGISTIC THERAPY
제목
Programmable nanomedicine via bioorthogonal molecular engineering
저자
Im, Sunwoo; Koo, Seyoung; Kim, Jong Seung
DOI
10.1186/s40580-026-00568-8
발행일
2026-07-29
유형
Review
저널명
Nano Convergence
권
13
호
1