Microemulsion Based Nanostructures for Drug Delivery
Наноструктуры на основе микроэмульсий для доставки лекарственных средств
2022-01-06
SCID: 54.1/knunthe7
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bioavailabilitycontrolled drug releasedrug delivery systemsmicroemulsion-based nanostructurestargeted drug delivery
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Abstract (AI)
Most of the active pharmaceutical compounds are often prone to display low bioavailability and biological degradation represents an important drawback. Due to the above, the development of a drug delivery system (DDS) that enables the introduction of a pharmaceutical compound through the body to achieve a therapeutic effect in a controlled manner is an expanding application. Henceforth, new strategies have been developed to control several parameters considered essential for enhancing delivery of drugs. Nanostructure synthesis by microemulsions (ME) consist of enclosing a substance within a wall material at the nanoscale level, allowing to control the size and surface area of the resulting particle. This nanotechnology has shown the importance on targeted drug delivery to improve their stability by protecting a bioactive compound from an adverse environment, enhanced bioavailability as well as controlled release. Thus, a lower dose administration could be achieved by minimizing systemic side effects and decreasing toxicity. This review will focus on describing the different biocompatible nanostructures synthesized by ME as controlled DDS for therapeutic purposes.
Key Findings
1
Improved delivery may allow lower drug doses while reducing systemic side effects and toxicity.
2
Microemulsion-based nanostructures encapsulate pharmaceutical compounds within nanoscale wall materials, enabling control over particle size and surface area.
3
Microemulsion-derived nanostructures support targeted and controlled drug release for therapeutic delivery.
4
The review examines biocompatible microemulsion-synthesized nanostructures as controlled drug delivery systems.
5
These nanostructures can protect bioactive compounds from adverse environments, improving drug stability and bioavailability.
Research Object
Biocompatible nanostructures synthesized by microemulsions for drug delivery
Research Subject
Their controlled drug-delivery performance, including protection of bioactive compounds, enhanced bioavailability, targeted delivery, and controlled release
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2022-01-06
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