Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2023 Feb;112(2):416-434.
doi: 10.1016/j.xphs.2022.11.025. Epub 2022 Dec 1.

Drug Stability and Minimized Acid-/Drug-Catalyzed Phospholipid Degradation in Liposomal Irinotecan

Affiliations
Free article

Drug Stability and Minimized Acid-/Drug-Catalyzed Phospholipid Degradation in Liposomal Irinotecan

Dmitri B Kirpotin et al. J Pharm Sci. 2023 Feb.
Free article

Abstract

Therapeutics at or close to the nanoscale, such as liposomal irinotecan, offer significant promise for the treatment of solid tumors. Their potential advantage over the unencapsulated or free form of the drug is due in part to their altered biodistribution. For slow and sustained release, significant optimization of formulation is needed to achieve the required level of stability and allow long-term storage of the drug product. Gradient-based liposomal formulation of camptothecins such as irinotecan poses unique challenges owing to the camptothecin- and acid-catalyzed hydrolysis of phospholipid esters in the inner monolayer of the liposomal membrane. We demonstrated that a narrow set of conditions related to the external pH, temperature, intraliposomal concentration, identity of the drug-trapping agent, physical form of the drug inside the liposomes, and final drug load have a marked impact on the stability of the liposome phospholipid membrane. The physical form of the drug inside the liposome was shown to be an insoluble gel with an irinotecan-to-sulfate ratio approximating 1:1, reducing the potential for irinotecan-catalyzed phospholipid hydrolysis in the internal phospholipid monolayer. As a result of this work, a stable and active liposome formulation has been developed that maintains phospholipid chemical stability following long-term storage at 2-8°C.

Keywords: Cancer; Chemical stability; Drug delivery system(s); Hydrolysis; Liposome(s); Nanoparticle(s); Phospholipid(s); Physicochemical properties; Stabilization.

PubMed Disclaimer

Conflict of interest statement

Declaration of Competing Interest D.B.K., M.E.H., C.O.N., Z.R.H., K.W., D.M., K.K., D.O., and D.C.D. were all employees and stock option holders in Merrimack Pharmaceuticals at the time the work was completed. D.B.K., K.W., K.K., and D.C.D. currently own stock and stock options in Merrimack Pharmaceuticals. D.C.D. is currently a consultant to Merrimack Pharmaceuticals and Ipsen, and K.W. is currently an employee of and owns stock in Ipsen.

Publication types

LinkOut - more resources