Biomedical nanotechnology allows us to engineer versatile nanosized platforms that are comparable in size to biological molecules and intracellular organelles. These platforms can be loaded with large amounts of biological cargo, administered systemically and act at a distance, target specific cell populations, undergo intracellular internalization via endogenous uptake mechanisms, and act as contrast agents or release cargo for therapeutic purposes. Over recent years, nanomaterials have been increasingly viewed as favorable candidates for intragamete delivery. Particularly in the case of sperm, nanomaterial-based approaches have been shown to improve the efficacy of existing techniques such as sperm-mediated gene transfer, loading sperm wi...
A spermatological review of the use of nanotechnology in reproductive biotechnologies is made in thi...
Seminal plasma (SP) is not a pre-requisite for pregnancy. Yet, this heterogeneous, composite SP has ...
Forecasting the consequence of nanoparticles (NPs) and therapeutically significant molecules before ...
Currently, even the most sophisticated methods of assisted reproductive technology (ART) allow us to...
Abstract Background Advances in nanotechnology have permitted molecular-based targeting of cells thr...
Reproductive medicine is a field of science which searches for new alternatives not only to help cou...
This study aimed to investigate the effects of actively targeting mesoporous silica nanoparticles (M...
Nanotechnology has opened a new field in medicine as well as in other sciences. The aim of this stud...
The real impact of nanoparticles on male fertility is evaluated after a careful analysis of the avai...
Cellular micromotors are attractive for locally delivering high concentrations of drug, and targetin...
Semen contain a heterogeneous population of viable and non-viable (damaged) spermatozoa. Proportions...
Nanotechnology is employed in sperm preparation for assisted reproduction in animals, in the form of...
A spermatological review of the use of nanotechnology in reproductive biotechnologies is made in thi...
Seminal plasma (SP) is not a pre-requisite for pregnancy. Yet, this heterogeneous, composite SP has ...
Forecasting the consequence of nanoparticles (NPs) and therapeutically significant molecules before ...
Currently, even the most sophisticated methods of assisted reproductive technology (ART) allow us to...
Abstract Background Advances in nanotechnology have permitted molecular-based targeting of cells thr...
Reproductive medicine is a field of science which searches for new alternatives not only to help cou...
This study aimed to investigate the effects of actively targeting mesoporous silica nanoparticles (M...
Nanotechnology has opened a new field in medicine as well as in other sciences. The aim of this stud...
The real impact of nanoparticles on male fertility is evaluated after a careful analysis of the avai...
Cellular micromotors are attractive for locally delivering high concentrations of drug, and targetin...
Semen contain a heterogeneous population of viable and non-viable (damaged) spermatozoa. Proportions...
Nanotechnology is employed in sperm preparation for assisted reproduction in animals, in the form of...
A spermatological review of the use of nanotechnology in reproductive biotechnologies is made in thi...
Seminal plasma (SP) is not a pre-requisite for pregnancy. Yet, this heterogeneous, composite SP has ...
Forecasting the consequence of nanoparticles (NPs) and therapeutically significant molecules before ...