Hydrogel-Encapsulated Heterogenous Mesoporous Resin Catalyst for In Situ Anti-Cancer Agent Production under Biological Conditions.
Mahboubeh NabaviniaBaishali KanjilalManoj K PandeySubash C JonnalagaddaRobert HeskethManuela M Martins-GreenIman NoshadiPublished in: Biomolecules (2022)
A heterogenous Palladium anchored Resorcinol-formaldehyde-hyperbranched PEI mesoporous catalyst, made by one-pot synthesis, was used successfully for in situ Suzuki-Miyaura cross coupling synthesis of anticancer prodrug PP-121 from iodoprazole and boronic ester precursors. The mesoporous catalyst with the non-cytotoxic precursors were tested in 2D in vitro model with excellent cytocompatibility and a strong suppression of PC3 cancer cell proliferation, underscored by 50% reduction in PC3 cells viability and 55% reduction in cell metabolism activity and an enhanced rate of early and late apoptosis in flow cytometry, that was induced only by successful in situ pro drug PP121 synthesis from the precursors. The 3D gelatin methacrylate hydrogel encapsulated in vitro cell models underscored the results with a 52% reduction in cell metabolism and underscored apoptosis of PC3 cells when the Pd anchored catalyst was combined with the precursors. In situ application of Suzuki-Miyaura cross coupling of non-cytotoxic precursors to cancer drug, along with their successful encapsulation in an injectable hydrogel could be applied for tumor point drug delivery strategies that can circumvent deleterious side effects and poor bioavailability chemotherapy routes with concomitant enhanced efficacy.
Keyphrases
- drug delivery
- highly efficient
- room temperature
- metal organic framework
- reduced graphene oxide
- ionic liquid
- hyaluronic acid
- single cell
- flow cytometry
- cell proliferation
- cell therapy
- oxidative stress
- papillary thyroid
- cancer therapy
- endoplasmic reticulum stress
- cell death
- squamous cell
- stem cells
- cell cycle arrest
- drug release
- bone marrow
- gold nanoparticles
- lymph node metastasis
- high glucose
- radiation therapy
- locally advanced
- pi k akt
- endothelial cells
- signaling pathway
- electronic health record
- rectal cancer