Mucoadhesive gellan gum-based and carboxymethyl cellulose -based hydrogels containing gemcitabine and papain for bladder cancer treatment

Local treatment of bladder cancer faces several limitations such as short residence time or low permeation through urothelium tissue. The aim of this work was to develop patient-friendly mucoadhesive gel formulations combining gemcitabine and the enzyme papain for improved intravesical chemotherapy...

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Veröffentlicht in:International journal of biological macromolecules 2023-07, Vol.242 (Pt 3), p.124957-124957, Article 124957
Hauptverfasser: de Lima, Caroline S.A., Rial-Hermida, M. Isabel, de Freitas, Lucas Freitas, Pereira-da-Mota, Ana F., Vivero-Lopez, Maria, Ferreira, Aryel Heitor, Kadłubowski, Sławomir, Varca, Gustavo H.C., Lugão, Ademar B., Alvarez-Lorenzo, Carmen
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Sprache:eng
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Zusammenfassung:Local treatment of bladder cancer faces several limitations such as short residence time or low permeation through urothelium tissue. The aim of this work was to develop patient-friendly mucoadhesive gel formulations combining gemcitabine and the enzyme papain for improved intravesical chemotherapy delivery. Hydrogels based on two different polysaccharides, gellan gum and sodium carboxymethylcellulose (CMC), were prepared with either native papain or papain nanoparticles (nanopapain) to explore for the first time their use as permeability enhancers through bladder tissue. Gel formulations were characterized regarding enzyme stability, rheological behavior, retention on bladder tissue and bioadhesion, drug release properties, permeation capacity, and biocompatibility. After 90 days of storage, the enzyme loaded in the CMC gels retained up to 83.5 ± 4.9 % of its activity in the absence of the drug, and up to 78.1 ± 5.3 with gemcitabine. The gels were mucoadhesive and the enzyme papain showed mucolytic action, which resulted in resistance against washing off from the urothelium and enhanced permeability of gemcitabine in the ex vivo tissue diffusion tests. Native papain shortened lag-time tissue penetration to 0.6 h and enhanced 2-fold drug permeability All formulations demonstrated pseudoplastic behavior and no irritability. Overall, the developed formulations have potential as an upgraded alternative to intravesical therapy for bladder cancer treatment. [Display omitted] •CMC + PVA gels preserve papain activity up to 90 days.•CMC + PVA and gellan gum gels can remain on the bladder tissue and interact with mucin glycoproteins.•Papain in the gels has a mucolytic activity that can facilitate drug permeation.•CMC + PVA gels sustain gemcitabine release for up to 24 h, improving the efficiency of the therapy.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2023.124957