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Titel: pH-Responsive Isoprenoid-Antitumoral Polymer Conjugates for Superior Drug Loading via Self-Assembly and Endosomal-Targeted Anticancer Activity
VerfasserIn: Passi, Camilla
Neu, Tobias
Schneider-Daum, Nicole
Lehr, Claus-Michael
Schneider, Marc
Lee, Sangeun
Sprache: Englisch
Titel: ChemMedChem
Bandnummer: 21
Heft: 2
Verlag/Plattform: Wiley
Erscheinungsjahr: 2026
Freie Schlagwörter: antitumor agents
drug delivery
nanotechnology
pH-responsive drug delivery
polymer-drug conjugate
DDC-Sachgruppe: 500 Naturwissenschaften
Dokumenttyp: Journalartikel / Zeitschriftenartikel
Abstract: Polymer-drug conjugates (PDCs) are a promising strategy to enhance the delivery of poorly soluble drugs, particularly in cancer therapy. By improving solubility and enabling site-specific accumulation, PDCs minimize systemic toxicity while maximizing therapeutic efficacy. PDCs often employ stimuli-responsive linkers, such as Schiff's bases, to achieve controlled drug release in tumor microenvironments or acidic intracellular compartments. In this study, we designed a novel PDC by conjugating the anticancer agent farnesal (Far) to ∈-Poly-L-Lysine (PL) via an imine bond, without using additional linkers. PL is a natural, biodegradable, water-soluble polymer with inherent anticancer properties, while Far is a hydrophobic isoprenoid with potent antitumor activity. The conjugate (Far-PL) displayed pH-responsive behavior, remaining stable at physiological pH but releasing drugs under acidic tumor (pH 6.5) and endosomal (pH 5.5) conditions. Far-PL exhibited enhanced cytotoxicity against A549 lung cancer cells compared to its components alone, while showing reduced toxicity towards noncancerous cells (Arlo cells). The amphiphilicity allows the conjugate to self-assemble into stable nanoparticles with a positive surface charge, narrow size distribution, and 100% drug content—clearly exceeding conventional nanoparticles (5–10 wt%). This effective PDC design demonstrates strong potential to maximize tumor-selective activity while minimizing off-target effects, offering a promising platform for future cancer therapeutics.
DOI der Erstveröffentlichung: 10.1002/cmdc.202500810
URL der Erstveröffentlichung: https://doi.org/10.1002/cmdc.202500810
Link zu diesem Datensatz: urn:nbn:de:bsz:291--ds-483499
hdl:20.500.11880/42278
http://dx.doi.org/10.22028/D291-48349
ISSN: 1860-7187
1860-7179
Datum des Eintrags: 24-Jul-2026
Bezeichnung des in Beziehung stehenden Objekts: Supporting Information
In Beziehung stehendes Objekt: https://chemistry-europe.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Fcmdc.202500810&file=cmdc70169-sup-0001-SuppData-S1.pdf
Fakultät: NT - Naturwissenschaftlich- Technische Fakultät
Fachrichtung: NT - Pharmazie
Professur: NT - Prof. Dr. Claus-Michael Lehr
NT - Jun.-Prof. PhD. Sangeun Lee
NT - Prof. Dr. Marc Schneider
Sammlung:SciDok - Der Wissenschaftsserver der Universität des Saarlandes



Diese Ressource wurde unter folgender Copyright-Bestimmung veröffentlicht: Lizenz von Creative Commons Creative Commons