In this research we propose a nanoplatform for anticancer therapy that is based on the combination of three components: (1) an antibiotic to target selectively the mitochondria of cancer cells, inhibiting their functions; (2) mineral nanoparticles (NPs) able to encapsulate the antibiotic and to enter into the cells across the cell membrane; and (3) a biocoating to protect the antibiotic during and/or after its regulated release, increasing its therapeutic efficacy. Chloramphenicol (CAM), a prototypical wide-spectrum antibiotic, has been used to induce mitochondrial-dysfunctions in cancer cells. Different in situ synthetic strategies have been tested to load such antibiotic into both crystalline hydroxyapatite (cHAp) and amorphous calcium ph...
Background: Osteosarcoma (OS) is a highly malignant primary bone cancer. Severe side effects and mul...
In recent years, antibiotics have emerged as alternative medicines in cancer therapy due to their ca...
Amorphous calcium phosphate nanoparticles (ACP NPs) exhibit excellent biocompatibility and biodegrad...
In this research we propose a nanoplatform for anticancer therapy that is based on the combination o...
Great advances in cancer treatment have been undertaken in the last years as a consequence of the de...
Targeted delivery of anticancer drugs is one of the most promising methods for cancer therapy. Howev...
Introduction: Cancer is one of the top-ranked noncommunicable diseases causing deaths to nine millio...
Local drug delivery for the treatment of infectious bone tissue diseases is a high importance topic ...
pH sensitive nanoparticles of carbonate apatite (CA) have been proven to be effective delivery vehic...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
Overall cancer survival rates steadily decline each year following diagnosis and side effects of che...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...
Nanotechnology is a promising branch of the medical field, directed to improve diagnostic and therap...
© 2015 by the authors. Hydrothermally converted coralline hydroxyapatite (HAp) particles loaded with...
The continuing growth of bacterial resistance makes the top challenge for the healthcare system espe...
Background: Osteosarcoma (OS) is a highly malignant primary bone cancer. Severe side effects and mul...
In recent years, antibiotics have emerged as alternative medicines in cancer therapy due to their ca...
Amorphous calcium phosphate nanoparticles (ACP NPs) exhibit excellent biocompatibility and biodegrad...
In this research we propose a nanoplatform for anticancer therapy that is based on the combination o...
Great advances in cancer treatment have been undertaken in the last years as a consequence of the de...
Targeted delivery of anticancer drugs is one of the most promising methods for cancer therapy. Howev...
Introduction: Cancer is one of the top-ranked noncommunicable diseases causing deaths to nine millio...
Local drug delivery for the treatment of infectious bone tissue diseases is a high importance topic ...
pH sensitive nanoparticles of carbonate apatite (CA) have been proven to be effective delivery vehic...
The first part of this review looks at the fundamental properties of hydroxyapatite (HAP), the basic...
Overall cancer survival rates steadily decline each year following diagnosis and side effects of che...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...
Nanotechnology is a promising branch of the medical field, directed to improve diagnostic and therap...
© 2015 by the authors. Hydrothermally converted coralline hydroxyapatite (HAp) particles loaded with...
The continuing growth of bacterial resistance makes the top challenge for the healthcare system espe...
Background: Osteosarcoma (OS) is a highly malignant primary bone cancer. Severe side effects and mul...
In recent years, antibiotics have emerged as alternative medicines in cancer therapy due to their ca...
Amorphous calcium phosphate nanoparticles (ACP NPs) exhibit excellent biocompatibility and biodegrad...