Trastuzumab-MMAU Antibody-Auristatin Conjugates: Valine-Glucoserine Linker with Stabilized Maleimide Conjugation Improves In Vivo Efficacy and Tolerability.


Journal

Molecular cancer therapeutics
ISSN: 1538-8514
Titre abrégé: Mol Cancer Ther
Pays: United States
ID NLM: 101132535

Informations de publication

Date de publication:
07 Feb 2024
Historique:
accepted: 01 02 2024
received: 06 09 2023
revised: 16 11 2023
medline: 7 2 2024
pubmed: 7 2 2024
entrez: 7 2 2024
Statut: aheadofprint

Résumé

Antibody-drug conjugates (ADCs) have shown impressive clinical activity with approval of many agents in hematological and solid tumors. However, challenges remain with both efficacy and safety of ADCs. This study describes novel trastuzumab-auristatin conjugates with the hydrophilic MMAE prodrug MMAU, and optimization of a glycopeptide linker leading to a wider therapeutic window. Trastuzumab was conjugated with auristatin payloads via a series of linkers using a stabilized maleimide handle. The ADCs were characterized in vitro and their relative in vivo anti-tumor efficacies were assessed in HER2+ xenograft models. Relative linker stabilities and the mechanism of linker cleavage were studied using in vitro assays. Toxicity and toxicokinetics of the best performing ADC were evaluated in cynomolgus monkey (cyno). The trastuzumab-MMAU ADC with stabilized glycopeptide linker showed maleimide stabilization and higher resistance to cleavage by serum and lysosomal enzymes compared to a valine-citrulline conjugated trastuzumab ADC (trastuzumab-vc-MMAE). A single dose of 1 or 2 mg/kg of trastuzumab-MMAU at drug-to-antibody ratios (DAR) of 8 and 4 respectively resulted in xenograft tumor growth inhibition, with superior efficacy to trastuzumab-vc-MMAE. Trastuzumab-MMAU DAR4 was tolerated at doses up to 12 mg/kg in cyno, which represents 2- to 4-fold higher dose than that observed with vedotin ADCs, and had increased terminal half-life and exposure. The optimized trastuzumab-MMAU ADC showed potent antitumor activity and was well tolerated with excellent pharmacokinetics in non-human primates, leading to a superior preclinical therapeutic window. The data supports potential utility of trastuzumab-MMAU for treatment of HER2+ tumors.

Identifiants

pubmed: 38324296
pii: 734116
doi: 10.1158/1535-7163.MCT-23-0591
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Shalom D Goldberg (SD)

Johnson & Johnson (United States), Spring House, PA, United States.

Tero Satomaa (T)

Glykos Finland Oy, Helsinki, Finland.

Olulanu Aina (O)

Janssen R&D, Spring House, PA, United States.

Olli Aitio (O)

Glykos Finland Oy, Helsinki, Finland.

Krista Burke (K)

Janssen, Spring House, PA, United States.

Vadim Dudkin (V)

Janssen R&D, Spring House, PA, United States.

Brian Geist (B)

Janssen R&D, Spring House, PA, United States.

Onyi Irrechukwu (O)

Janssen R&D, Spring House, PA, United States.

Anna-Liisa Hänninen (AL)

Glykos Finland Oy, Helsinki, Finland.

Annamari Heiskanen (A)

Glykos Finland Ltd., Helsinki, Finland.

Jari Helin (J)

Glykos Finland Oy, Helsinki, Finland.

Jukka O Hiltunen (JO)

Glykos Finland Oy, Helsinki, Finland.

Jacqueline Kinyamu-Akunda (J)

Janssen R&D, Spring House, PA, United States.

Donna M Klein (DM)

Janssen R&D, Spring House, PA, United States.

Neeraj Kohli (N)

Janssen R&D, Spring House, PA, United States.

Titta Kotiranta (T)

Glykos Finland Oy, Helsinki, Finland.

Tuula Lähteenmäki (T)

Glykos Finland Oy, Helsinki, Finland.

Ritva Niemelä (R)

Glykos Finland Oy, Helsinki, Finland.

Virve Pitkänen (V)

Glykos Finland Oy, Helsinki, Finland.

Henna Pynnönen (H)

Glykos Finland Oy, Helsinki, Finland.

William Rittase (W)

Janssen R&D, Spring House, PA, United States.

Kristen Wiley (K)

Janssen R&D, Spring House, PA, United States.

Junguo Zhou (J)

Janssen R&D, Spring House, PA, United States.

Juhani Saarinen (J)

Glykos Finland Ltd., Helsinki, Finland.

Classifications MeSH