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Synthetic Receptors for Early Detection and Treatment of Cancer. | LitMetric

Synthetic Receptors for Early Detection and Treatment of Cancer.

Biosensors (Basel)

Department of Chemical Engineering and Biotechnology, University of Cambridge, Philippa Fawcett Drive, Cambridge CB3 0AS, UK.

Published: October 2023

AI Article Synopsis

  • Synthetic macrocyclic compounds like cyclodextrins and calixarenes are gaining attention for their ability to form complexes with various molecules, making them useful in sensing applications.
  • These compounds are particularly relevant in cancer detection, as they can bind to cancer cells or biomarkers, allowing for sensitive identification and quantification.
  • Additionally, these macrocyclic compounds can enhance the solubility and stability of anti-cancer drugs, improving their effectiveness in treatment by facilitating better delivery to target sites.

Article Abstract

Over recent decades, synthetic macrocyclic compounds have attracted interest from the scientific community due to their ability to selectively and reversibly form complexes with a huge variety of guest moieties. These molecules have been studied within a wide range of sensing and other fields. Within this review, we will give an overview of the most common synthetic macrocyclic compounds including cyclodextrins, calixarenes, calixresorcinarenes, pillarenes and cucurbiturils. These species all display the ability to form a wide range of complexes. This makes these compounds suitable in the field of cancer detection since they can bind to either cancer cell surfaces or indeed to marker compounds for a wide variety of cancers. The formation of such complexes allows sensitive and selective detection and quantification of such guests. Many of these compounds also show potential for the detection and encapsulation of environmental carcinogens. Furthermore, many anti-cancer drugs, although effective in in vitro tests, are not suitable for use directly for cancer treatment due to low solubility, inherent instability in in vivo environments or an inability to be adsorbed by or transported to the required sites for treatment. The reversible encapsulation of these species in a macrocyclic compound can greatly improve their solubility, stability and transport to required sites where they can be released for maximum therapeutic effect. Within this review, we intend to present the use of these species both in cancer sensing and treatment. The various macrocyclic compound families will be described, along with brief descriptions of their synthesis and properties, with an outline of their use in cancer detection and usage as therapeutic agents. Their use in the sensing of environmental carcinogens as well as their potential utilisation in the clean-up of some of these species will also be discussed.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669836PMC
http://dx.doi.org/10.3390/bios13110953DOI Listing

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