Doxil(®) is a stealth marketed PEGylated liposomal formulation, containing the anticancer drug doxorubicin. After loading via a pH gradient, fibrillar supramolecular structures of doxorubicin sulfate originates inside the core of the liposomes. Recently, the crystallinity of doxorubicin sulfate has been confirmed by high-resolution calorimetry. However, no detailed information are available on the nature of doxorubicin sulfate nanocrystals and on the effect of different thermal treatments. Thus, the aim of this work was to characterize the thermal behaviour of Doxil(®) in comparison to the unloaded liposomes using microcalorimetry, dynamic light scattering and high-resolution ultrasound spectroscopy (HR-US). Different thermal programmes wer...
Nanomedicine-based delivery with non-invasive techniques is a promising approach to increase local d...
<p>Traditionally, the goal of nanoparticle-based chemotherapy has been to decrease normal tissue tox...
The objective of this study was to design temperature-sensitive liposomes with tunable release chara...
Doxil(®) is a stealth marketed PEGylated liposomal formulation, containing the anticancer drug doxor...
Liposomes are nano-sized lipid bilayer vesicles of great interest in drug delivery. Doxil® is a...
Drug delivery systems aim to reduce the side effects of cytotoxic chemotherapy drugs by targeting tu...
Drug delivery systems have been developed to target tumors and decrease toxicity and side effects as...
Liposomes are lamellar nanovesicles made of phospholipids of a great interest as drug delivery carri...
Local drug delivery of doxorubicin holds promise to improve the therapeutic efficacy and to reduce t...
In this thesis, temperature-sensitive liposomes co-encapsulating the chemotherapeutic drug doxorubic...
The current study is aimed to fabricate doxorubicin (Dox) loaded mild temperature responsive liposom...
Doxorubicin (DOX), an anticancer drug, incorporated in a new Liposomal Locked-in Dendrimer (LLD) dru...
Targeted delivery of anticancer drugs by delivery devices such as thermosensitive liposomes promises...
The systemic toxicity of current chemotherapeutic treatments motivates the investigation of targeted...
Nanomedicine-based delivery with non-invasive techniques is a promising approach to increase local d...
Nanomedicine-based delivery with non-invasive techniques is a promising approach to increase local d...
<p>Traditionally, the goal of nanoparticle-based chemotherapy has been to decrease normal tissue tox...
The objective of this study was to design temperature-sensitive liposomes with tunable release chara...
Doxil(®) is a stealth marketed PEGylated liposomal formulation, containing the anticancer drug doxor...
Liposomes are nano-sized lipid bilayer vesicles of great interest in drug delivery. Doxil® is a...
Drug delivery systems aim to reduce the side effects of cytotoxic chemotherapy drugs by targeting tu...
Drug delivery systems have been developed to target tumors and decrease toxicity and side effects as...
Liposomes are lamellar nanovesicles made of phospholipids of a great interest as drug delivery carri...
Local drug delivery of doxorubicin holds promise to improve the therapeutic efficacy and to reduce t...
In this thesis, temperature-sensitive liposomes co-encapsulating the chemotherapeutic drug doxorubic...
The current study is aimed to fabricate doxorubicin (Dox) loaded mild temperature responsive liposom...
Doxorubicin (DOX), an anticancer drug, incorporated in a new Liposomal Locked-in Dendrimer (LLD) dru...
Targeted delivery of anticancer drugs by delivery devices such as thermosensitive liposomes promises...
The systemic toxicity of current chemotherapeutic treatments motivates the investigation of targeted...
Nanomedicine-based delivery with non-invasive techniques is a promising approach to increase local d...
Nanomedicine-based delivery with non-invasive techniques is a promising approach to increase local d...
<p>Traditionally, the goal of nanoparticle-based chemotherapy has been to decrease normal tissue tox...
The objective of this study was to design temperature-sensitive liposomes with tunable release chara...