SBA‐15 Particles as Carriers for a Series of Platinum(IV) Complexes with Oxaliplatin Scaffolds Bearing Different Anti‐Inflammatory Drugs: Promising Strategy Against Breast Cancer

Author:

Predarska Ivana12ORCID,Saoud Mohamad3ORCID,Cepus Valentin2ORCID,Hey‐Hawkins Evamarie1ORCID,Kaluđerović Goran N.23ORCID

Affiliation:

1. Faculty of Chemistry and Mineralogy Institute of Inorganic Chemistry Johannisallee 29 Universität Leipzig 04103 Leipzig Germany

2. Department of Engineering and Natural Sciences University of Applied Sciences Merseburg Eberhard‐Leibnitz‐Str. 2 06217 Merseburg Germany

3. Department of Bioorganic Chemistry Leibniz Institute of Plant Biochemistry Weinberg 3 06120 Halle (Saale) Germany

Abstract

AbstractOxaliplatin is a third‐generation platinum(II)‐based drug mainly utilized to treat colon cancer, as part of a combinatory regime. Aiming to expand the knowledge on the effects of oxaliplatin and its derivatives on different tumor types, oxaliplatin‐based platinum(IV) platforms are designed and prepared to assess their antitumor capacity against various breast cancer cell lines. In the two axial positions of the platinum(IV) system, different inflammation reducing agents, non‐steroidal anti‐inflammatory drugs (fenoprofen, flurbiprofen, both as racemates) and phenolic acids (acetyl‐protected and unprotected ferulic acid, cinnamic acid) are incorporated as anionic ligands. The prepared platinum(IV) hybrids are loaded with great encapsulation efficiency into mesoporous SBA‐15 material to serve as drug delivery vehicle, and the obtained nanostructured material can ensure very slow drug release beneficial for prolonged circulation in vivo and passive targeting. Both, free and in SBA‐15 immobilized platinum(IV) complexes with oxaliplatin core, displayed potent antitumor activity in four breast cancer cell lines (MCF‐7, BT‐474, HCC1937 and MDA‐MB‐468), showing great prospect in overcoming oxaliplatin and cisplatin resistance. Mechanistic investigations in MDA‐MB‐468 cells of oxaliplatin and its fenoprofen derivative as the most active representative of the prepared complexes showed that the decreased cell viability resides in activation of apoptotic mechanisms.

Funder

European Commission

Publisher

Wiley

Subject

Pharmacology (medical),Biochemistry (medical),Genetics (clinical),Pharmaceutical Science,Pharmacology,Medicine (miscellaneous)

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