Related Experiment Video
Updated: Jan 25, 2026

Failure of Cleaning Verification in Pharmaceutical Industry Due to Uncleanliness of Stainless Steel Surface
Published on: August 11, 2017
Pharmaceutical Applications of Molecular Tweezers, Clefts and Clips
Amira Mbarek1, Ghina Moussa2, Jeanne Leblond Chain3,4,5
1Gene Delivery Laboratory, Faculty of pharmacy, Université de Montréal, H3C 3J7, Montréal, Québec, Canada. a.mbarek_bm@yahoo.ca.
Abstract:
Synthetic acyclic receptors, composed of two arms connected with a spacer enabling molecular recognition, have been intensively explored in host-guest chemistry in the past decades. They fall into the categories of molecular tweezers, clefts and clips, depending on the geometry allowing the recognition of various guests. The advances in synthesis and mechanistic studies have pushed them forward to pharmaceutical applications, such as neurodegenerative disorders, infectious diseases, cancer, cardiovascular disease, diabetes, etc. In this review, we provide a summary of the synthetic molecular tweezers, clefts and clips that have been reported for pharmaceutical applications. Their structures, mechanism of action as well as in vitro and in vivo results are described. Such receptors were found to selectively bind biological guests, namely, nucleic acids, sugars, amino acids and proteins enabling their use as biosensors or therapeutics. Particularly interesting are dynamic molecular tweezers which are capable of controlled motion in response to an external stimulus. They proved their utility as imaging agents or in the design of controlled release systems. Despite some issues, such as stability, cytotoxicity or biocompatibility that still need to be addressed, it is obvious that molecular tweezers, clefts and clips are promising candidates for several incurable diseases as therapeutic agents, diagnostic or delivery tools.
Related Concept Videos
Applications of Molecular Taxonomy
Pharmaceutical Equivalents
Pharmaceutical Alternatives: Stability-Related Therapeutic Nonequivalence
Molecular Models
Factors Influencing Drug Absorption: Pharmaceutical Parameters
Pharmaceutical Alternatives: Excipients and Impurities-Related Therapeutic Nonequivalence

