AbstractThe encapsulation of cytotoxic drugs within liposomes enhances pharmacokinetics and allows passive accumulation within tumors. However, liposomes designed to achieve good stability during the delivery phase often have compromised activity at the target site. This problem of inefficient and unpredictable drug release is compounded by the present lack of low-cost, non-invasive methods to measure such release. Here we show that focused ultrasound, used at pressures similar to those applied during diagnostic ultrasound scanning, can be utilised to both trigger and monitor release of payload from liposomes. Notably, drug release was influenced by liposome composition and the presence of SonoVue® microbubbles, which provided the nuclei fo...
Ultrasound-mediated targeted drug delivery is a therapeutic modality under development with the pote...
Stable and inertial cavitation have been shown to play a key role in several therapeutic ultrasound ...
Context: On a conceptual level, triggering drug release from liposomes using ultrasound (US) involve...
The encapsulation of cytotoxic drugs within liposomes enhances pharmacokinetics and allows passive a...
AbstractThe encapsulation of cytotoxic drugs within liposomes enhances pharmacokinetics and allows p...
The sonication of a tumor, where liposomes have been accumulated, allows potentially to release enca...
L'application d'ultrasons sur une tumeur, où des liposomes se sont accumulés, permet potentiellement...
Side effects of current chemotherapeutics limit their use in cancer therapy. Although many current d...
One of the major limiting factors of cancer therapy is the inability to deliver a sufficient dose of...
Due to their size (1-10 μm) microbubble-based drug delivery agents suffer from confinement to the va...
Ultrasound-induced cavitation of microbubbles has increased anticancer drug Doxorubicin (DOX) releas...
Nanomedicines allow active targeting of cancer for diagnostic and therapeutic applications through i...
Ultrasound is a toolbox for interacting with the human body and especially cancer where there is a n...
AbstractAcoustically active liposomes (AAL), previously developed as ultrasound contrast agents, con...
Drug delivery plays a crucial role in the chemotherapeutic treatment of cancerous solid tumours. A d...
Ultrasound-mediated targeted drug delivery is a therapeutic modality under development with the pote...
Stable and inertial cavitation have been shown to play a key role in several therapeutic ultrasound ...
Context: On a conceptual level, triggering drug release from liposomes using ultrasound (US) involve...
The encapsulation of cytotoxic drugs within liposomes enhances pharmacokinetics and allows passive a...
AbstractThe encapsulation of cytotoxic drugs within liposomes enhances pharmacokinetics and allows p...
The sonication of a tumor, where liposomes have been accumulated, allows potentially to release enca...
L'application d'ultrasons sur une tumeur, où des liposomes se sont accumulés, permet potentiellement...
Side effects of current chemotherapeutics limit their use in cancer therapy. Although many current d...
One of the major limiting factors of cancer therapy is the inability to deliver a sufficient dose of...
Due to their size (1-10 μm) microbubble-based drug delivery agents suffer from confinement to the va...
Ultrasound-induced cavitation of microbubbles has increased anticancer drug Doxorubicin (DOX) releas...
Nanomedicines allow active targeting of cancer for diagnostic and therapeutic applications through i...
Ultrasound is a toolbox for interacting with the human body and especially cancer where there is a n...
AbstractAcoustically active liposomes (AAL), previously developed as ultrasound contrast agents, con...
Drug delivery plays a crucial role in the chemotherapeutic treatment of cancerous solid tumours. A d...
Ultrasound-mediated targeted drug delivery is a therapeutic modality under development with the pote...
Stable and inertial cavitation have been shown to play a key role in several therapeutic ultrasound ...
Context: On a conceptual level, triggering drug release from liposomes using ultrasound (US) involve...