Selective and Synergistic Targeting of ErbB2-Positive Cancer Cells with ErbB2 Transmembrane Peptide-Ionic Liquid Nanocarrier Formulation
Artikel i vetenskaplig tidskrift, 2026

ErbB2-positive cancers are highly aggressive and remain difficult to treat due to limitations of current therapies, such as poor selectivity, insufficient delivery, and toxicity toward healthy tissues. Herein, we developed a dual-action nanoformulation combining prolinium-based surface-active ionic liquid (SAIL) nanocarriers with ErbB2-derived transmembrane (TM) peptide for selective targeting of ErbB2-positive cancer cells. Two new SAILs, which self-assemble into stable micelles/vesicles under physiological conditions, and a series of hydrophobic TM-peptides were synthesized and characterized. Among the resulting nanoformulations, V3-BAIL showed the strongest antiproliferative activity in ErbB2-positive breast, lung, and pancreatic cancer cell lines, whereas activity in low-ErbB2 NCl-H23 cells was minimal. The response correlated with ErbB2 expression level, demonstrating target-related selectivity. Chou-Talalay analysis revealed synergy between the SAIL nanocarrier and TM peptide. Mechanistic studies showed that V3-BAIL progressively accumulated in cells, reduced cellular fitness without rapid membrane lysis, and strongly suppressed PI3K/Akt and MAPK/ERK signaling. Relative to doxorubicin and cisplatin, V3-BAIL displayed greater selectivity toward ErbB2-positive cells, and it acted more rapidly and more strongly than trastuzumab under the tested conditions. These findings establish TM peptide-decorated SAIL nanocarriers as a promising strategy for selective and synergistic ErbB2-targeted cancer therapy.

ionic liquid

epidermal growth factor receptor

transmembrane peptide

ErbB2 cancer

nanocarrier

Författare

Helal Abujubara

Göteborgs universitet

Pankaj Bharmoria

ICMAB-CSIC

Universitat Politecnica de Catalunya

Dorota Raj

Göteborgs universitet

Samantha W. Alvarez

Göteborgs universitet

Siyuan Liu

Göteborgs universitet

Maryna Zhylinskaya

Göteborgs universitet

Enoch Appiah

Göteborgs universitet

Kasper Moth-Poulsen

Chalmers, Kemi och kemiteknik, Tillämpad kemi

Clotilde Wiel

Göteborgs universitet

Volkan I. Sayin

Göteborgs universitet

Alesia A. Tietze

Göteborgs universitet

ACS Applied Materials & Interfaces

1944-8244 (ISSN) 1944-8252 (eISSN)

Vol. In Press

Photo Thermal Management Materials (PHOTERM)

Europeiska kommissionen (EU) (EC/H2020/101002131), 2021-10-01 -- 2026-09-30.

Molecular Solar Thermal energy storage systems (MOST)

Energimyndigheten (2019-010724), 2019-05-07 -- 2019-09-03.

Europeiska kommissionen (EU) (EC/H2020/951801), 2020-09-01 -- 2024-02-29.

Ämneskategorier (SSIF 2025)

Cancer och onkologi

DOI

10.1021/acsami.6c08450

PubMed

42616845

Mer information

Senast uppdaterat

2026-09-01