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Title Amino-Functionalized Zn(II)-Based Trilinker Metal–Organic Frameworks Conjugated with Folic Acid for Targeted Delivery of Doxorubicin on the MCF-7 Cell Line of Human Breast Cancer
Type JournalPaper
Keywords Metal–organic framework, Caner
Abstract 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)3]n•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.
Researchers Jinjie Qian (Not In First Six Researchers), Alexandra M. Z. Slawin (Not In First Six Researchers), Rong Lin (Fifth Researcher), Yuanjie Cao (Fourth Researcher), Joanna Goscianska (Third Researcher), Zahra Yaghoubi (Second Researcher), Reza Abazari (First Researcher)