The development of stable, safe, and efficient carriers for targeted delivery of active pharmaceutical ingredients is a key focus in contemporary inorganic, medicinal, and materials chemistry. In the present study, a pH-responsive carrier was rationally designed based on an amino-functionalized Zn (II) trilinker metal–organic framework (MOF), Zn3 (DAP) (BTC) 6 (BTA) 3n•4. 425nDMF, abbreviated as NH2–Zn-MUM-11 MUM = Material from the University of Maragheh, 3, 5-diaminopyridine (DAP), 1, 3, 5-benzenetricarboxylic acid (BTC), benzotriazole (BTA), and conjugated with folic acid (FA), to enable selective delivery of doxorubicin (DOX) as a model anticancer drug. The FA@NH2–Zn-MUM-11 carrier demonstrated high biocompatibility, with no cytotoxic effects observed in normal breast epithelial cells (MCF-10A), while inducing significant cytotoxicity in human breast cancer cells (MCF-7). Under acidic conditions (pH 5. 2), the system achieved nearly a 4-fold increase in drug release relative to physiological pH (97% vs 24%, respectively). Flow cytometry, the wound healing assay, and confocal laser scanning microscopy (CLSM) collectively demonstrated the system’s ability to recognize cancer cells via folate receptor-mediated uptake, facilitate intracellular DOX release, and promote efficient cancer cell elimination. Hence, the obtained material might be further explored as a promising alternative for drug delivery.
Abazari et al. (2026) studied this question.