Bone is a site of distant metastases, which are a common cause of morbidity and mortality with a high socio-economic impact, for many malignant tumours. In order to engineer pharmacological therapies that are suitable for this debilitating disease, this experimental work presents injectable lipid nanoemulsions, which are endowed with a long history of safe clinical usage in parenteral nutrition, their loading with vincristine and their grafting with alendronate, with a dual purpose: merging the anticancer activity of bisphosphonates and vincristine, and enhancing bone-targeted delivery. In cell studies, alendronate synergised with the anti-migration activity of vincristine, which is important as migration plays a key role in the metastatisation process. In preliminary animal studies, carried out thanks to IVIS technology, alendronate conjugation enhanced the bone targeting of fluorescently labelled nanoemulsions. These encouraging results will drive further studies on suitable animal models of the disease.

Alendronate-Grafted Nanoemulsions for Bone-Targeted Vincristine Delivery: Preliminary Studies on Cell and Animal Models

Dianzani, Chiara;Bozza, Annalisa;Bordano, Valentina;Garelli, Sara;Cangemi, Luigi;Dianzani, Umberto;Battaglia, Luigi
2024-01-01

Abstract

Bone is a site of distant metastases, which are a common cause of morbidity and mortality with a high socio-economic impact, for many malignant tumours. In order to engineer pharmacological therapies that are suitable for this debilitating disease, this experimental work presents injectable lipid nanoemulsions, which are endowed with a long history of safe clinical usage in parenteral nutrition, their loading with vincristine and their grafting with alendronate, with a dual purpose: merging the anticancer activity of bisphosphonates and vincristine, and enhancing bone-targeted delivery. In cell studies, alendronate synergised with the anti-migration activity of vincristine, which is important as migration plays a key role in the metastatisation process. In preliminary animal studies, carried out thanks to IVIS technology, alendronate conjugation enhanced the bone targeting of fluorescently labelled nanoemulsions. These encouraging results will drive further studies on suitable animal models of the disease.
2024
Inglese
Esperti anonimi
14
2
1
18
18
alendronate; nanoemulsion; vincristine
no
   Compagnia di San Paolo -Bando ex-post 2020 - "An Innovative Nanotechnology for Glioma Chemotherapy" - Cda 21/12/2021
   CA200180
   COMPAGNIA DI SAN PAOLO
   BATTAGLIA L.

   CRT II TORNATA 2021 - Nanocarriers lipidici nasali come device per la prevenzione e il trattamento di patologie cerebrovascolari
   NanoLipid@NasalDevice
   FONDAZIONE CRT
   BATTAGLIA L. - RF= 2021.1856
1 – prodotto con file in versione Open Access (allegherò il file al passo 6 - Carica)
262
9
Stoppa, Ian; Dianzani, Chiara; Clemente, Nausicaa; Bozza, Annalisa; Bordano, Valentina; Garelli, Sara; Cangemi, Luigi; Dianzani, Umberto; Battaglia, L...espandi
info:eu-repo/semantics/article
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1963371
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