Drug delivery using synthetic nanoparticles including porous silicon has been extensively used to overcome the limitations of chemotherapy. However, their synthesis has many challenges such as lack of scalability, high cost, and the use of toxic materials with concerning environmental impact. Nanoscale materials obtained from natural resources are an attractive option to address some of these disadvantages. In this paper, a new mesoporous biodegradable silicon nanoparticle (SiNP) drug carrier obtained from natural diatom silica mineral available from the mining industry is presented. Diatom silica structures are mechanically fragmented and converted into SiNPs by simple and scalable magnesiothermic reduction process. Results show that SiNPs...
Mesoporous silica nanoparticles (MSN) have been attracted in the field of biomedicine due to their v...
The ability to selectively kill cancerous cell populations while leaving healthy cells unaffected is...
The use of porous silica nanoparticles (PSN) offers new perspectives in drug delivery and cancer the...
Drug delivery using synthetic nanoparticles including porous silicon has been extensively used to ov...
Current development of drug microcarriers is mainly based on spherical shapes, which are not biologi...
Current development of drug microcarriers is mainly based on spherical shapes, which are not biologi...
Drug delivery using synthetic mesoporous nanomaterials, including porous silicon, has been extensive...
Mesoporous silica nanoparticles (MSNs) have great potential for applications as a drug delivery syst...
Mesoporous silica nanomaterials (MSNs) have made remarkable achievements and are being thought of by...
Cervical cancer is one of the most common causes of cancer death for women in the United States. The...
Even though cancer treatment has improved over the recent decades, still more specific and effective...
Even though cancer treatment has improved over the recent decades, still more specific and effective...
Aim: This study explores the use of natural silica-based porous material from diatoms, known as diat...
Nanocarriers sensitive to exogenous or endogenous stimuli emerged as an attractive alternative to ta...
Mesoporous silica nanoparticles (MSN) have been attracted in the field of biomedicine due to their v...
Mesoporous silica nanoparticles (MSN) have been attracted in the field of biomedicine due to their v...
The ability to selectively kill cancerous cell populations while leaving healthy cells unaffected is...
The use of porous silica nanoparticles (PSN) offers new perspectives in drug delivery and cancer the...
Drug delivery using synthetic nanoparticles including porous silicon has been extensively used to ov...
Current development of drug microcarriers is mainly based on spherical shapes, which are not biologi...
Current development of drug microcarriers is mainly based on spherical shapes, which are not biologi...
Drug delivery using synthetic mesoporous nanomaterials, including porous silicon, has been extensive...
Mesoporous silica nanoparticles (MSNs) have great potential for applications as a drug delivery syst...
Mesoporous silica nanomaterials (MSNs) have made remarkable achievements and are being thought of by...
Cervical cancer is one of the most common causes of cancer death for women in the United States. The...
Even though cancer treatment has improved over the recent decades, still more specific and effective...
Even though cancer treatment has improved over the recent decades, still more specific and effective...
Aim: This study explores the use of natural silica-based porous material from diatoms, known as diat...
Nanocarriers sensitive to exogenous or endogenous stimuli emerged as an attractive alternative to ta...
Mesoporous silica nanoparticles (MSN) have been attracted in the field of biomedicine due to their v...
Mesoporous silica nanoparticles (MSN) have been attracted in the field of biomedicine due to their v...
The ability to selectively kill cancerous cell populations while leaving healthy cells unaffected is...
The use of porous silica nanoparticles (PSN) offers new perspectives in drug delivery and cancer the...