Magnetic relaxation switching (MRSw) assays that employ target-induced aggregation (or disaggregation) of magnetic nanoparticles (MNPs) can be used to detect a wide range of biomolecules. The precise working mechanisms, however, remain poorly understood, often leading to confounding interpretation. We herein present a systematic and comprehensive characterization of MRSw sensing. By using different types of MNPs with varying physical properties, we analyzed the nature and transverse relaxation modes for MRSw detection. The study found that clustered MNPs are universally in a diffusion-limited fractal state (dimension of ∼2.4). Importantly, a new model for transverse relaxation was constructed that accurately recapitulates observed MRSw phen...
Since pioneering work in the early 60s on the development of enzyme electrodes the field of sensors ...
Nanoparticle-based diagnostics typically involve the conjugation of targeting ligands to the nanopar...
To study the magnetic dynamics of superparamagnetic nanoparticles, we use scanning probe relaxometry...
Biomedical applications of magnetic nanoparticles (MNP) fundamentally rely on the particles’ magneti...
The target-induced clustering of magnetic nanoparticles is typically used for the identification of ...
The target-induced clustering of magnetic nanoparticles is typically used for the identification of ...
Conventional magnetic relaxation switching (MRS) sensor suffers from its relatively low sensitivity ...
Magnetic relaxation divided into the Néel and Brownian regimes determines the magnetization dynamics...
We investigated the effects of dipolar interactions on the long-time magnetization decay M(t) in clu...
Functionalized magnetic nanoparticles (MNPs) can serve as magnetic relaxation sensors (MRSs) to dete...
Magnetic particle spectroscopy (MPS) in the Brownian relaxation regime, also termed magnetic spectro...
We report a sensing methodology that combines magnetic separation (MS) and magnetic relaxation switc...
Magnetic nanoparticles are currently being investi-gated for various medical applications, this incl...
Magnetic nanoparticles (MNP) are widely investigated for biomedical applications in diagnostics (e.g...
Current magnetic relaxation switching (MRS) sensors for detection of trace targets in complex sample...
Since pioneering work in the early 60s on the development of enzyme electrodes the field of sensors ...
Nanoparticle-based diagnostics typically involve the conjugation of targeting ligands to the nanopar...
To study the magnetic dynamics of superparamagnetic nanoparticles, we use scanning probe relaxometry...
Biomedical applications of magnetic nanoparticles (MNP) fundamentally rely on the particles’ magneti...
The target-induced clustering of magnetic nanoparticles is typically used for the identification of ...
The target-induced clustering of magnetic nanoparticles is typically used for the identification of ...
Conventional magnetic relaxation switching (MRS) sensor suffers from its relatively low sensitivity ...
Magnetic relaxation divided into the Néel and Brownian regimes determines the magnetization dynamics...
We investigated the effects of dipolar interactions on the long-time magnetization decay M(t) in clu...
Functionalized magnetic nanoparticles (MNPs) can serve as magnetic relaxation sensors (MRSs) to dete...
Magnetic particle spectroscopy (MPS) in the Brownian relaxation regime, also termed magnetic spectro...
We report a sensing methodology that combines magnetic separation (MS) and magnetic relaxation switc...
Magnetic nanoparticles are currently being investi-gated for various medical applications, this incl...
Magnetic nanoparticles (MNP) are widely investigated for biomedical applications in diagnostics (e.g...
Current magnetic relaxation switching (MRS) sensors for detection of trace targets in complex sample...
Since pioneering work in the early 60s on the development of enzyme electrodes the field of sensors ...
Nanoparticle-based diagnostics typically involve the conjugation of targeting ligands to the nanopar...
To study the magnetic dynamics of superparamagnetic nanoparticles, we use scanning probe relaxometry...