Copper is a key element affecting blood vessel growth and muscle development. However, the ions released from Cu salts are toxic. Given their specific physicochemical properties, nanoparticles of Cu (NanoCu) may have different bioactivity and affect the development of blood vessel and muscles in a different manner than Cu salts. The objective of the study was to evaluate the influence of NanoCu on embryo development and angiogenesis at the systemic and molecular level, in experiments using a chick embryo model. Fertilized chicken eggs were divided into a control group, and groups injected with a placebo, CuSO4 or NanoCu. Embryo development at the whole body level and molecular indices using an embryo chorioallantoic membrane model were me...
Nanoparticles (NPs) are at the leading edge of nanomedicine, and determining their biosafety remains...
Copper is an essential trace metal that has been implicated in angiogenesis, the formation of new bl...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
Copper is a key element affecting blood vessel growth and muscle development. However, the ions rele...
Abstract Background: Copper nanoparticles (Cu NPs) induced angiogenesis, has been adapted to respon...
Results of research on copper nanoparticles influence on index of readiness to apoptosis and structu...
Objective: Today, nanotechnology is widely used in many fields because of its ability to alter the s...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Abstract Background: Angiogenesis occurs in physiologic (wound healing) and pathological conditions...
<p>Copper oxide nanomaterials (nano-CuOs) are widely used and can be inadvertently introduced into e...
Copper oxide nanomaterials (nano-CuOs) are widely used and can be inadvertently introduced into estu...
The growing nanoparticulate pollution (e.g. engineered nanoparticles (NPs) or nanoplastics) has been...
This article presents the results of physiological and biochemical investigations of the copper nano...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
Angiogenesis, which is required for physiological events, plays a crucial role in several pathologic...
Nanoparticles (NPs) are at the leading edge of nanomedicine, and determining their biosafety remains...
Copper is an essential trace metal that has been implicated in angiogenesis, the formation of new bl...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...
Copper is a key element affecting blood vessel growth and muscle development. However, the ions rele...
Abstract Background: Copper nanoparticles (Cu NPs) induced angiogenesis, has been adapted to respon...
Results of research on copper nanoparticles influence on index of readiness to apoptosis and structu...
Objective: Today, nanotechnology is widely used in many fields because of its ability to alter the s...
Angiogenesis in a tissue-engineered device may be induced by incorporating growth factors (e. g., va...
Abstract Background: Angiogenesis occurs in physiologic (wound healing) and pathological conditions...
<p>Copper oxide nanomaterials (nano-CuOs) are widely used and can be inadvertently introduced into e...
Copper oxide nanomaterials (nano-CuOs) are widely used and can be inadvertently introduced into estu...
The growing nanoparticulate pollution (e.g. engineered nanoparticles (NPs) or nanoplastics) has been...
This article presents the results of physiological and biochemical investigations of the copper nano...
Angiogenesis represents a major focus for novel therapeutic approaches to the treatment and manageme...
Angiogenesis, which is required for physiological events, plays a crucial role in several pathologic...
Nanoparticles (NPs) are at the leading edge of nanomedicine, and determining their biosafety remains...
Copper is an essential trace metal that has been implicated in angiogenesis, the formation of new bl...
The osteogenic and angiogenic responses of organisms to the ionic products of degradation of bioacti...