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Advisor(s)
Abstract(s)
The nutritional composition and bioactive properties of roots and rhizomes of Asparagus stipularis were evalu-
ated. Antioxidant activity of extracts obtained by infusion was evaluated using free radicals scavenging and
reducing power methods. Porcine liver primary cell was used to check the hepatotoxicity of infusions. Results
revealed that Asparagus samples are likely a source of nutrients, such as dietary fibre and essential fatty acids.
HPLC-DAD-ESI/MS characterization of infusions allowed the identification and quantitation of 7 phenolic
compounds, all hydroxycinnamoyl derivatives, with caffeic acid as the most abundant. Roots infusion contained
the highest amounts of these compounds. It also exhibited the highest antioxidant activity in all assays, with EC50
values of 0.44 ± 0.01, 0.98 ± 0.03 and 0.64 ± 0.01 mg/mL for DPPH, ABTS and FRAP assays, respectively, with
no toxicity towards PLP2 primary cell cultures (GI50 > 400 μg/mL). PLGA nanoparticles loaded with root extract
were prepared using solvent-evaporation double emulsion method. Nanoparticles size was about 260 nm and a
polydispersity index around 0.1, with a zeta potential of about -36 mV, as well as a good encapsulation efficiency
of approximately 83%. Their morphology was analysed by SEM and spherical polymeric nanoparticles with a
smooth surface were observed. FTIR and DSC were also performed, which allowed corroborating the efficacy of
the encapsulation and to confirm the production of a stable and robust system to load Asparagus extracts. The
developed nanoparticles are expected to be used as delivery systems for bioactive compounds of A. stipularis and
they could be used as an innovative dietary supplement.
Description
Keywords
Asparagus stipularis Nutritional composition Antioxidant activity Nanoparticles PLGA
Citation
Publisher
Elsevier