Impact of Organ Impairment on the Pharmacokinetics of Therapeutic Peptides and Proteins

AAPS J. 2023 May 26;25(4):54. doi: 10.1208/s12248-023-00819-0.

Abstract

The kidneys and liver are major organs involved in eliminating small-molecule drugs from the body. Characterization of the effects of renal impairment (RI) and hepatic impairment (HI) on pharmacokinetics (PK) have informed dosing in patients with these organ impairments. However, the knowledge about the impact of organ impairment on therapeutic peptides and proteins is still evolving. In this study, we reviewed how often therapeutic peptides and proteins were assessed for the effect of RI and HI on PK, the findings, and the resulting labeling recommendations. RI effects were reported in labeling for 30 (57%) peptides and 98 (39%) proteins and HI effects for 20 (38%) peptides and 55 (22%) proteins. Dose adjustments were recommended for RI in 11 of the 30 (37%) peptides and 10 of the 98 (10%) proteins and for HI in 7 of the 20 (35%) peptides and 3 of the 55 (5%) proteins. Additional actionable labeling includes risk mitigation strategies; for example, some product labels have recommended avoid use or monitor toxicities in patients with HI. Over time, there is an increasing structural diversity of therapeutic peptides and proteins, including the use of non-natural amino acids and conjugation technologies, which suggests a potential need for reassessing the need to evaluate the effect of RI and HI. Herein, we discuss scientific considerations for weighing the risk of PK alteration due to RI or HI for peptide and protein products. We briefly discuss other organs that may affect the PK of peptides and proteins administered via other delivery routes.

Keywords: hepatic impairment; peptides; pharmacokinetics; proteins; renal impairment.

Publication types

  • Review

MeSH terms

  • Humans
  • Kidney* / metabolism
  • Peptides / pharmacokinetics
  • Pharmaceutical Preparations / metabolism
  • Proteins / metabolism
  • Renal Insufficiency*

Substances

  • Peptides
  • Proteins
  • Pharmaceutical Preparations