Advances in drug delivery systems, challenges and future directions
Достижения в системах доставки лекарственных средств, проблемы и перспективные направления
2023-06-01
SCID: 54.1/jw2et7xv
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drug delivery systemsminiaturized devicesnanomaterialstargeted drug deliverytherapeutic efficacy
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Abstract (AI)
Advances in molecular pharmacology and an improved understanding of the mechanism of most diseases have created the need to specifically target the cells involved in the initiation and progression of diseases. This is especially true for most life-threatening diseases requiring therapeutic agents which have numerous side effects, thus requiring accurate tissue targeting to minimize systemic exposure. Recent drug delivery systems (DDS) are formulated using advanced technology to accelerate systemic drug delivery to the specific target site, maximizing therapeutic efficacy and minimizing off-target accumulation in the body. As a result, they play an important role in disease management and treatment. Recent DDS offer greater advantages when compared to conventional drug delivery systems due to their enhanced performance, automation, precision, and efficacy. They are made of nanomaterials or miniaturized devices with multifunctional components that are biocompatible, biodegradable, and have high viscoelasticity with an extended circulating half-life. This review, therefore, provides a comprehensive insight into the history and technological advancement of drug delivery systems. It updates the most recent drug delivery systems, their therapeutic applications, challenges associated with their use, and future directions for improved performance and use.
Key Findings
1
Advanced drug delivery systems are designed to target disease-relevant cells and tissues, reducing systemic exposure and treatment-related side effects.
2
Compared with conventional systems, newer platforms offer enhanced performance, automation, precision, and efficacy.
3
Recent drug delivery systems improve therapeutic efficacy by accelerating delivery to specific target sites while minimizing off-target drug accumulation.
4
The review summarizes technological advances, therapeutic applications, current challenges, and future directions for improving drug delivery systems.
5
These systems commonly use biocompatible, biodegradable nanomaterials or miniaturized multifunctional devices with high viscoelasticity and extended circulating half-lives.
Research Object
advanced drug delivery systems (DDS)
Research Subject
their technological advancement, therapeutic applications, challenges, and future directions for improving targeted delivery performance
Publication Details
Publication Date
2023-06-01
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