The Rise and Promise of Macrocyclic Hosts in Biomedicine
Рост и перспективы макроциклических хостов в биомедицине
2025-10-01
SCID: 54.1/2r8w538f
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antimicrobial applicationsmacrocyclic hostsmolecular encapsulationpreorganized cavitiestransmembrane transport
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Abstract (AI)
Macrocyclic hosts, possessing cyclic structures capable of encapsulating other molecules and ions, have exhibited unique characteristics in biomedical applications. Having preorganized cavities, macrocyclic hosts can monitor, intervene in, and simulate biological processes by complexing with bioactive substances. Additionally, the framework of macrocyclic hosts can exhibit remarkable efficacy in some applications such as transmembrane transport and antimicrobial. In this Outlook, we expressed some of our personal insights on the distinctive aspects of macrocyclic hosts in biomedical applications, highlighting some examples in disease diagnosis and treatment to provide illustrations. We also discussed the future opportunities and challenges of macrocyclic hosts in biomedical applications along with some suggestions on how to overcome these challenges. Considering the progress we have witnessed in the past decade, we believe that the future of this field is very bright.
Key Findings
1
Macrocyclic frameworks show notable efficacy in applications like transmembrane transport and antimicrobial activity.
2
Macrocyclic hosts have preorganized cavities enabling encapsulation and complexing with bioactive molecules and ions.
3
The Outlook highlights examples of macrocyclic hosts applied to disease diagnosis and treatment.
4
The field has progressed significantly in the past decade and presents promising future opportunities, alongside challenges and suggested strategies to address them.
5
These hosts can monitor, intervene in, and simulate biological processes through molecular complexation.
Research Object
Macrocyclic hosts (cyclic molecules with preorganized cavities used to encapsulate other molecules and ions)
Research Subject
Their biomedical applications, specifically their ability to encapsulate/complex bioactive substances and modulate biological processes (diagnosis, transmembrane transport, antimicrobial activity, therapeutic intervention) and associated opportunities and challenges
Publication Details
Publication Date
2025-10-01
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