Title
α-amyrin-loaded nanocapsules produce selective cytotoxic activity in leukemic cells
Date Issued
01 July 2021
Access level
open access
Resource Type
journal article
Author(s)
Neto S.F.
Prada A.L.
Achod L.D.R.
Torquato H.F.V.
Lima C.S.
Silva de Moraes M.O.
Lima E.S.
Sosa E.H.
de Souza T.P.
Amado J.R.R.
Universidade Federal de São Paulo
Publisher(s)
Elsevier Masson s.r.l.
Abstract
Introduction: Amyrins are triterpenes that have attractive pharmacological potential; however, their low water solubility and erratic stomach absorption hinders their use as a drug. The aim of this paper was to develop a novel α-amyrin-loaded nanocapsule for intestinal delivery and evaluate, preliminarily, its cytotoxic ability against leukemic cells. Material and methods: Five nanocapsule formulations were designed by the solvent displacement-evaporation method. Poly-ε-caprolactone, Eudragit® E100, and Kollicoat® Mae 100 P were used as film-former materials. Particle size, polydispersity index (PdI), zeta potential, and the pH of all formulations were measured. The cytotoxic potential of the nanocapsules was evaluated in vitro using different leukemic lineages Results: Nanocapsules coated with Kollicoat® Mae 100 P presented the smallest particle size (130 nm), the lowest zeta-potential (−38 mV), and the narrowest size distribution (PdI = 0.100). The entrapment efficiency was 65.47%, while the loading capacity was 2.40%. Nanocapsules release 100% of α-amyrin in 40 min (pH 7.4), by using a possible mechanism of swelling-diffusion. The formulation showed excellent on-shelf physicochemical stability during one year. Additionally, nanocapsules produced a selective cytotoxic effect on a human leukemia lineage Kasumi-1, an acute myeloid leukemia cell line, and produced cell death by apoptosis Conclusion: α-amyrin-loaded nanocapsules appear to be a promising nanoformulation that could be used against leukemia.
Volume
139
Language
English
OCDE Knowledge area
Biología celular, Microbiología
Bioquímica, Biología molecular
Subjects
Scopus EID
2-s2.0-85107633445
PubMed ID
Source
Biomedicine and Pharmacotherapy
ISSN of the container
07533322
Sponsor(s)
The authors wish to thank the Postgraduate Program in Pharmaceutical Innovation (PPGIF), Federal University of Amazonas and are grateful to BASF Company for its kind support.
Sources of information:
Directorio de Producción Científica
Scopus