Magnetoliposomes: Envisioning new strategies for water decontamination

Stefania Petralito, Patrizia Paolicelli, Martina Nardoni, Francesca Apollonio, Micaela Liberti, Caterina Merla, Rosanna Pinto, Maria Antonietta Casadei, Maria Cristina Annesini

Research output: Contribution to journalArticle

3 Citations (Scopus)


In this work, the inclusion of magnetic nanoparticles (MNPs) within phospholipid vesicles has been investigated as novel strategy for improving stability and reactivity of these nanoparticles and extending their potential use in the environmental field. Two phospholipids able to form liposomes characterized by different rigidity and stiffness, were used as potential carriers of MNPs. The magneto-responsive liposomes were investigated for their physicochemical and stability properties. In particular, the stability of the two systems was indirectly investigated evaluating the ability of the hybrid constructs to retain a fluorescent marker in their structure. Alterations in the permeability of the membranes were determined by the rate of the marker release from the liposomes, under both mechanical and thermal stress conditions.
Original languageEnglish
Pages (from-to)37 - 42
Number of pages6
JournalChemical Engineering Transactions
Publication statusPublished - 1 Mar 2016
Externally publishedYes


All Science Journal Classification (ASJC) codes

  • Chemical Engineering(all)

Cite this

Petralito, S., Paolicelli, P., Nardoni, M., Apollonio, F., Liberti, M., Merla, C., Pinto, R., Casadei, M. A., & Annesini, M. C. (2016). Magnetoliposomes: Envisioning new strategies for water decontamination. Chemical Engineering Transactions, 47, 37 - 42.