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Further developments potentiate combination delivery of multiple drugs using mixed micelles.
Illustrative examples of nanoparticles engineered for drug/gene combination delivery and stimuli responsive nanoparticle systems for cancer therapy are also discussed.
In the current study, biodegradable PHBV/PLGA blend nanoparticles (NPs) containing Teriparatide were loaded in hyaluronic acid/jeffamine (HA-JEF ED-600) hydrogel to prepare a combination delivery system (CDS) for prolonged delivery of Teriparatide.
Continuous development of such combination delivery systems will ultimately lead toward availability of effective therapies for cancer.
According to recent research, it is clear that combination delivery of gene and drug using nanocarriers is indeed helpful in inhibiting tumor growth compared to gene or drug alone.
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This study highlights the potential in using a combination of delivery strategies to improve gene expression.
Future theranostic applications in clinical trials comprise of combination drug delivery, magnetic resonance imaging, and hyperthermia.
Many organizations offer services and/or finished products through a combination of delivery methods.
These results clearly indicate that tumor-targeting and glutathione-sensitive micelles provide means for combination drug delivery in cancer treatment.
In this review, we explore the key considerations in the development of these combination drug delivery systems.
It is becoming increasingly common for researchers to use a combination of delivery strategies to achieve higher transfection rates in vivo.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com