Nanoparticle Tracking Analysis (NTA) has been employed to measure the particle concentration and size distribution of magnetosomes extracted and purified from Magnetospirillum gryphiswaldense MSR-1, and then exposed to probe ultrasonication for various times, or 1% (w/v) sodium dodecyl sulphate (SDS) for 1 h. Particle concentration increased 3.7-fold over the first 15 min of ultrasonication (from 2 × 108 to >7.3 × 108 particles mL−1), but fell steeply to ∼3.6 × 108 particles mL−1 after 20 min. NTA of untreated magnetosome preparation confirmed a wide particle distribution dominated by larger species (D[1,0] = 312 nm; Dn50 = 261 nm; mode = 243 nm) with no particles in the size range of isolated single magnetosomes. After 5 min of ultrasonica...
Magnetic nanoparticles are increasingly employed in biomedical applications such as disease detectio...
A new synthetic method for the production of artificial magnetosomes, i.e., lipid-coated vesicles co...
Interaction with biological material can alter physicochemical parameters of magnetic nanoparticles ...
Nanoparticle Tracking Analysis (NTA) has been employed to measure the particle concentration and siz...
One of the key challenges in the field of nanoparticle (NP) analysis is in producing reliable and re...
Magnetosomes are biologically-derived magnetic nanoparticles (MNPs) naturally produced by magnetotac...
Due to their extremely small size, nanoparticles cannot be analyses by conventional approaches such ...
Understanding of nano-sized particle separation processes has been limited by difficulties of nanopa...
Magnetospirillum gryphiswaldense biosynthesize high-quality magnetite nanoparticles, called magnetos...
The discrimination of immobilised superparamagnetic iron oxide nanoparticles (SPIONs) against SPIONs...
The present paper is focused on the theoretical and experimental study of the kinetics of field-indu...
The widespread use of magnetic nanoparticles in the biotechnical sector puts new demands on fast and...
Kappe D, Bondzio L, Swager J, et al. Reviewing Magnetic Particle Preparation: Exploring the Viabilit...
This work was supported by the University of St Andrews and Nanomorphomics group funds. The work for...
The development of metrological and analytical methods for the detection and quantification of nanom...
Magnetic nanoparticles are increasingly employed in biomedical applications such as disease detectio...
A new synthetic method for the production of artificial magnetosomes, i.e., lipid-coated vesicles co...
Interaction with biological material can alter physicochemical parameters of magnetic nanoparticles ...
Nanoparticle Tracking Analysis (NTA) has been employed to measure the particle concentration and siz...
One of the key challenges in the field of nanoparticle (NP) analysis is in producing reliable and re...
Magnetosomes are biologically-derived magnetic nanoparticles (MNPs) naturally produced by magnetotac...
Due to their extremely small size, nanoparticles cannot be analyses by conventional approaches such ...
Understanding of nano-sized particle separation processes has been limited by difficulties of nanopa...
Magnetospirillum gryphiswaldense biosynthesize high-quality magnetite nanoparticles, called magnetos...
The discrimination of immobilised superparamagnetic iron oxide nanoparticles (SPIONs) against SPIONs...
The present paper is focused on the theoretical and experimental study of the kinetics of field-indu...
The widespread use of magnetic nanoparticles in the biotechnical sector puts new demands on fast and...
Kappe D, Bondzio L, Swager J, et al. Reviewing Magnetic Particle Preparation: Exploring the Viabilit...
This work was supported by the University of St Andrews and Nanomorphomics group funds. The work for...
The development of metrological and analytical methods for the detection and quantification of nanom...
Magnetic nanoparticles are increasingly employed in biomedical applications such as disease detectio...
A new synthetic method for the production of artificial magnetosomes, i.e., lipid-coated vesicles co...
Interaction with biological material can alter physicochemical parameters of magnetic nanoparticles ...