Passive accumulation of Au nanoparticles in tumours in mice
- 1. Institute of Physics, Academia Sinica, Taiwan, China (China)
- 2. National Health Research Institute, Taiwan, China (China)
- 3. Ecole Polytechnique federal de Lussane (EPFL), Switzerland (Switzerland)
Description
Full text: Enhance biocompatibility and passive accumulation of gold nanoparticles into tumours in vivo. Improved biocompatible nanoparticles synthesized by radical synthesis in solution by X-ray irradiation (5,000 Gy/sec). As an alternative to the use of chemical reducing agents, irradiation solutions can cause the reduction of dissolved ions to form nuclei form in sub-second times and growth is easily controlled by physically the X-ray intensity. The intensity can be used to manipulate growth rates for different applications and in the information of spherical and rod-structures. Size is easily controlled by exposure time and capping agents and provides high reproducibility with small size distributions. Resulting body burden in subcutaneous tumour mouse models was determined in various organs with ICP-MS. Cellular distributions were analysed with transmission x-ray Microscopy and conventional histology. The resulting nanoparticle sols were highly concentrated. naturally sterile, have high temperature stability and synthesised with fewer chemical reactants; providing greater chemical and biological adaptability. The results demonstrated that a passivated biocompatible surface, minimizing physiological clearance from the animal allows non-specific accumulation of large concentrations of nanoparticles into tumour tissues and significant penetration and circumnavigation of the binding site barrier effect. Concentrations of gold reached ∼ 25 times greater than surrounding muscle tissue and were retained for many hours. Physicochemical properties of nanoparticles impart significant influence on their ability to penetrate and accumulate in tumour tissues. Effective synthesis enables high concentrations of gold nanoparticles to accumulate in tumour tissues which could be applied to development in radiation oncology applications.
Additional details
Publishing Information
- Publisher
- Australasian College of Physical Scientists and Engineers in Medicine
- Imprint Place
- Darwin (Australia)
- Imprint Title
- Abstract EPSM-ABEC 2011 Conference
- Imprint Pagination
- 79 p.
- Journal Page Range
- p. 624
Conference
- Title
- The Engineering and Physical Sciences in Medicine and the Australian Biomedical Engineering Conference
- Acronym
- EPSM-ABEC 2011
- Dates
- 14-18 Aug 2011
- Place
- Darwin (Australia)
INIS
- Country of Publication
- Australia
- Country of Input or Organization
- Australia
- INIS RN
- 44026408
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- BIOMEDICAL RADIOGRAPHY; DIAGNOSTIC TECHNIQUES; DISEASES; HISTOLOGY; MICE; NANOSTRUCTURES; NEOPLASMS; NUCLEAR MEDICINE; RADIOLOGY
- Descriptors DEC
- ANIMALS; DIAGNOSTIC TECHNIQUES; DISEASES; MAMMALS; MEDICINE; NUCLEAR MEDICINE; RADIOLOGY; RODENTS; VERTEBRATES