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1.
New J Chem ; 48(17): 7548-7551, 2024 Apr 29.
Article in English | MEDLINE | ID: mdl-38689796

ABSTRACT

We report the synthesis of 4-nitrophenyl (4-NP) functionalised Pt(iv) complexes as a colorimetric strategy for monitoring Pt(iv) reduction in aqueous solution. Treatment of each 4-NP functionalised Pt(iv) complex with the biological reductant sodium ascorbate led to a colour change from clear to yellow, which was attributed to the reduction of Pt(iv) to Pt(ii) and simultaneous release of 4-nitroaniline. Trends in reduction profiles and a photocatalysed reduction for each Pt(iv) complex were observed.

2.
Drug Deliv Transl Res ; 14(8): 2079-2084, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38388815

ABSTRACT

Achieving a controlled release of several active pharmaceutical ingredients (APIs) remains a challenge for improving their therapeutic effects and reduced their side effects. In the current work, stimulable Drug Delivery Systems (DDS) based on supramolecular hydrogels were designed by combining two APIs featuring anticancer activities, namely the doxorubicin and phenazine 14. In vitro studies revealed promising physicochemical properties for all the investigated API loaded gels. Fluorinated GlycoNucleoLipid (GNF) based supramolecular gels remain stable in the presence of either doxorubicin (Doxo) or phenazine 14 (Phe) as anticancer drugs. Noteworthy, the stiffness of the GNF-based supramolecular gels was enhanced in the presence of both APIs while maintaining their thixotropic properties. We demonstrated that the storage modulus (G') of the GNF gels was increased from 1.3 kPa to 9.3 kPa upon loading of both APIs within the same gels. With a low mechanical stimulation (within the LVR), a passive diffusion out of gels was observed for Dox whereas Phe remained trapped in the GNF gels over several hours. Also, in this work we showed that mechanical stress triggered the release of both Phe and Doxo at different rates.


Subject(s)
Doxorubicin , Drug Liberation , Glycolipids , Hydrogels , Hydrogels/chemistry , Hydrogels/administration & dosage , Doxorubicin/chemistry , Doxorubicin/administration & dosage , Glycolipids/chemistry , Glycolipids/administration & dosage , Phenazines/chemistry , Halogenation , Drug Delivery Systems , Antineoplastic Agents/chemistry , Antineoplastic Agents/administration & dosage , Delayed-Action Preparations/chemistry
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