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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Encapsulation of ropivacaine in a combined (donor-acceptor, ionic-gradient) liposomal system promotes extended anesthesia time

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Author(s):
Goncalves da Silva, Camila Morais [1] ; Franz-Montan, Michelle [2] ; Gomez Limia, Cintia Elisabeth [1] ; de Morais Ribeiro, Ligia Nunes [1] ; Braga, Mario Antonio [1] ; Guilherme, Viviane Aparecida [1] ; da Silva, Camila Batista [2] ; Casadei, Bruna Renata [1] ; Saia Cereda, Cintia Maria [1] ; de Paula, Eneida [1]
Total Authors: 10
Affiliation:
[1] Univ Estadual Campinas, Inst Biol, Dept Biochem & Tissue Biol, UNICAMP, Campinas, SP - Brazil
[2] Univ Estadual Campinas, UNICAMP, Piracicaba Dent Sch, Dept Physiol Sci, Piracicaba, SP - Brazil
Total Affiliations: 2
Document type: Journal article
Source: PLoS One; v. 12, n. 10 OCT 5 2017.
Web of Science Citations: 9
Abstract

Ropivacaine is a local anesthetic with similar potency but lower systemic toxicity than bupivacaine, the most commonly used spinal anesthetic. The present study concerns the development of a combined drug delivery system for ropivacaine, comprised of two types of liposomes: donor multivesicular vesicles containing 250 mM (NH4)(2)SO4 plus the anesthetic, and acceptor large unilamellar vesicles with internal pH of 5.5. Both kinds of liposomes were composed of hydrogenated soy-phosphatidylcholine: cholesterol (2: 1 mol%) and were prepared at pH 7.4. Dynamic light scattering, transmission electron microscopy and electron paramagnetic resonance techniques were used to characterize the average particle size, polydispersity, zeta potential, morphology and fluidity of the liposomes. In vitro dialysis experiments showed that the combined liposomal system provided significantly longer (72 h) release of ropivacaine, compared to conventional liposomes (similar to 45 h), or plain ropivacaine (similar to 4 h) (p<0.05). The pre-formulations tested were significantly less toxic to 3T3 cells, with toxicity increasing in the order: combined system < ropivacaine in donor or acceptor liposomes < ropivacaine in conventional liposomes < plain ropivacaine. The combined formulation, containing 2% ropivacaine, increased the anesthesia duration up to 9 h after subcutaneous infiltration in mice. In conclusion, a promising drug delivery system for ropivacaine was described, which can be loaded with large amounts of the anesthetic (2%), with reduced in vitro cytotoxicity and extended anesthesia time. (AU)

FAPESP's process: 11/21735-3 - Liposome-based drug delivery systems for ropivacaine encapsulated by remote (pH and ion gradient) loading.
Grantee:Camila Morais Gonçalves da Silva
Support Opportunities: Scholarships in Brazil - Doctorate
FAPESP's process: 14/14457-5 - Lipid-based nanocarriers (SLN/NLC and remote-loading liposomes) used to improve the upload and potency of local anesthetics
Grantee:Eneida de Paula
Support Opportunities: Research Projects - Thematic Grants