Exosomes Engineering and Their Roles as Therapy Delivery Tools, Therapeutic Targets, and Biomarkers
Инженерия экзосом и их роль в качестве инструментов доставки терапевтических средств, терапевтических мишеней и биомаркеров
2021-09-02
SCID: 54.1/fyf2jtzc
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BiomarkersDrug deliveryExosome engineeringExosome productionTherapeutic delivery
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Abstract (AI)
Exosomes are becoming increasingly important therapeutic biomaterials for use in a variety of therapeutic applications due to their unique characteristics, especially due to the ineffectiveness and cytotoxicity of some existing therapies and synthetic therapeutic nanocarriers. They are highly promising as carriers of drugs, genes, and other therapeutic agents that can be incorporated into their interior or onto their surface through various modification techniques to improve their targeting abilities. In addition, they are biocompatible, safe, and stable. The review focuses on different types of exosomes and methods of their preparation, including the incorporation of different kinds of cargo, especially for drug delivery purposes. In particular, their importance and effectiveness as delivery vehicles of various therapeutic agents for a variety of therapeutic applications, including different diseases and disorders such as cancer treatment, cardiovascular and neurodegenerative diseases, are emphasized. Administration routes of exosomes into the body are also included. A novelty in the article is the emphasis on global companies that are already successfully developing and testing such therapeutic biomaterials, with a focus on the most influential ones. Moreover, a comparison of the advantages and disadvantages of the various methods of exosome production is summarized for the first time.
Key Findings
1
Cargo can be incorporated inside exosomes or onto their surfaces using engineering techniques that improve targeting capabilities.
2
Exosome-based delivery shows potential across cancer, cardiovascular, and neurodegenerative disease applications.
3
Exosomes are promising biocompatible, safe, and stable carriers for drugs, genes, and other therapeutic agents.
4
It highlights influential global companies developing and testing exosome therapeutics and provides a first comparative summary of exosome production methods’ advantages and disadvantages.
5
The review summarizes exosome types, preparation methods, cargo-loading strategies, and administration routes for therapeutic use.
Research Object
engineered exosomes used as therapeutic biomaterials and delivery vehicles
Research Subject
their preparation, cargo loading and engineering, therapeutic delivery performance, therapeutic targeting, and biomarker potential
Publication Details
Publication Date
2021-09-02
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