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Therapeutic gas-releasing nanomedicines with controlled release: Advances and perspectives.

Yaw Opoku-DamoahRun ZhangHang Thu TaZhi Ping Gordon Xu
Published in: Exploration (Beijing, China) (2022)
Nanoparticle-based drug delivery has become one of the most popular approaches for maximising drug therapeutic potentials. With the notable improvements, a greater challenge hinges on the formulation of gasotransmitters with unique challenges that are not met in liquid and solid active ingredients. Gas molecules upon release from formulations for therapeutic purposes have not really been discussed extensively. Herein, we take a critical look at four key gasotransmitters, that is, carbon monoxide (CO), nitric oxide (NO), hydrogen sulphide (H 2 S) and sulphur dioxide (SO 2 ), their possible modification into prodrugs known as gas-releasing molecules (GRMs), and their release from GRMs. Different nanosystems and their mediatory roles for efficient shuttling, targeting and release of these therapeutic gases are also reviewed extensively. This review thoroughly looks at the diverse ways in which these GRM prodrugs in delivery nanosystems are designed to respond to intrinsic and extrinsic stimuli for sustained release. In this review, we seek to provide a succinct summary for the development of therapeutic gases into potent prodrugs that can be adapted in nanomedicine for potential clinical use.
Keyphrases
  • drug delivery
  • nitric oxide
  • room temperature
  • emergency department
  • hydrogen peroxide
  • carbon dioxide
  • drug induced
  • tyrosine kinase