Diatomite is a natural fossil material of sedimentary origin, composed by fragments of diatom siliceous skeletons. Due to its chemical inertness, thermal stability, high surface area, non-toxicity and biocompatibility, diatomite is considered an ideal material for the preparation of diatomite silica drug delivery nanocarriers. In this work, the properties of diatomite nanoparticles (DNPs) as potential system for drug delivery in cancer cells were exploited
Diatoms are the most abundant resource of biosilica on Earth. These microalgae are encased in a 3-D ...
Diatomite is a natural porous silica material of sedimentary origin, formed by remains of diatom ske...
Drug delivery using synthetic nanoparticles including porous silicon has been extensively used to ov...
Diatomite is a natural fossil material of sedimentary origin, composed...
Diatomite is a natural fossil material of sedimentary origin, constituted by fragments of diatom sil...
Diatomite is a natural porous silica material of sedimentary origin, formed by remains of diatom ske...
Background: Diatomite is a natural porous biomaterial of sedimentary origin, formed by fragments of ...
Diatomite is a natural porous biomaterial of sedimentary origin, formed by fragments of diatom silic...
Diatom microalgae are the most outstanding natural source of porous silica. The diatom cell is enclo...
Diatomite is a natural porous silica material of sedimentary origin. Due to its peculiar properties,...
Diatoms are unicellular photosynthetic algae enclosed in porous 3D nanopatterned silica enclosures c...
Silicon plays an important role in bone formation andmaintenance, improving osteoblast cell function...
Diatoms are widespread unicellular photosynthetic algae that produce unique highly ordered siliceous...
Aim: This study explores the use of natural silica-based porous material from diatoms, known as diat...
Diatomite makes a promising candidate for a drug carrier because of its high porosity, large surface...
Diatoms are the most abundant resource of biosilica on Earth. These microalgae are encased in a 3-D ...
Diatomite is a natural porous silica material of sedimentary origin, formed by remains of diatom ske...
Drug delivery using synthetic nanoparticles including porous silicon has been extensively used to ov...
Diatomite is a natural fossil material of sedimentary origin, composed...
Diatomite is a natural fossil material of sedimentary origin, constituted by fragments of diatom sil...
Diatomite is a natural porous silica material of sedimentary origin, formed by remains of diatom ske...
Background: Diatomite is a natural porous biomaterial of sedimentary origin, formed by fragments of ...
Diatomite is a natural porous biomaterial of sedimentary origin, formed by fragments of diatom silic...
Diatom microalgae are the most outstanding natural source of porous silica. The diatom cell is enclo...
Diatomite is a natural porous silica material of sedimentary origin. Due to its peculiar properties,...
Diatoms are unicellular photosynthetic algae enclosed in porous 3D nanopatterned silica enclosures c...
Silicon plays an important role in bone formation andmaintenance, improving osteoblast cell function...
Diatoms are widespread unicellular photosynthetic algae that produce unique highly ordered siliceous...
Aim: This study explores the use of natural silica-based porous material from diatoms, known as diat...
Diatomite makes a promising candidate for a drug carrier because of its high porosity, large surface...
Diatoms are the most abundant resource of biosilica on Earth. These microalgae are encased in a 3-D ...
Diatomite is a natural porous silica material of sedimentary origin, formed by remains of diatom ske...
Drug delivery using synthetic nanoparticles including porous silicon has been extensively used to ov...