Development and evaluation of lyophilized nanoliposomes as a stable delivery system for black soldier fly (Hermetia illucens) larvae oil

Black soldier fly larvae (BSFL) oil is a sustainable lipid with antimicrobial potential, yet its application is hindered by poor stability and undesirable odor. In this study, lyophilized nanoliposomes encapsulating BSFL oil were developed via thin-film hydration and freeze-drying, with process parameters optimized by single-factor and orthogonal experiments. The optimal conditions were pre-freezing at −80 °C for 12 h, drying for 24 h, 10% (w/v) β-lactose as lyoprotectant, and PBS (pH 7.0) for reconstitution. The resulting liposomes exhibited a mean size of 145.13 nm, PDI of 0.337, zeta potential of −46.76 mV, and encapsulation efficiency of 85.05%. TEM showed intact vesicular structures, while FTIR and XRD confirmed hydrogen-bonding stabilization and an amorphous glassy matrix. The in vitro release profile displayed no burst effect, indicating stable bilayer entrapment. Storage tests over 30 days demonstrated good stability at 4 °C and 25 °C, with encapsulation efficiency losses of only 3.99% and 6.2%, respectively, whereas 60 °C caused marked degradation. Collectively, this study establishes an optimized fre·eze-drying strategy for producing stable and redispersible BSFL oil nanoliposomes, with promising potential for further development in pharmaceutical and nutraceutical applications.

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Journal
Sustainable Chemistry and Pharmacy
Published
2026-09-13
DOI
https://doi.org/10.1016/j.scp.2026.102566
Primary Topic
Insect Utilization and Effects
Type
article
Field-Weighted Citation Impact
0.00

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article

Development and evaluation of lyophilized nanoliposomes as a stable delivery system for black soldier fly (Hermetia illucens) larvae oil

Yandaizi Zhou, Tielin Wang, Xiaoyu Chen
Sustainable Chemistry and Pharmacy
Insect Utilization and Effects
article

Development and evaluation of lyophilized nanoliposomes as a stable delivery system for black soldier fly (Hermetia illucens) larvae oil

Yandaizi Zhou, Tielin Wang, Xiaoyu Chen
article en

Abstract

Black soldier fly larvae (BSFL) oil is a sustainable lipid with antimicrobial potential, yet its application is hindered by poor stability and undesirable odor. In this study, lyophilized nanoliposomes encapsulating BSFL oil were developed via thin-film hydration and freeze-drying, with process parameters optimized by single-factor and orthogonal experiments. The optimal conditions were pre-freezing at −80 °C for 12 h, drying for 24 h, 10% (w/v) β-lactose as lyoprotectant, and PBS (pH 7.0) for reconstitution. The resulting liposomes exhibited a mean size of 145.13 nm, PDI of 0.337, zeta potential of −46.76 mV, and encapsulation efficiency of 85.05%. TEM showed intact vesicular structures, while FTIR and XRD confirmed hydrogen-bonding stabilization and an amorphous glassy matrix. The in vitro release profile displayed no burst effect, indicating stable bilayer entrapment. Storage tests over 30 days demonstrated good stability at 4 °C and 25 °C, with encapsulation efficiency losses of only 3.99% and 6.2%, respectively, whereas 60 °C caused marked degradation. Collectively, this study establishes an optimized fre·eze-drying strategy for producing stable and redispersible BSFL oil nanoliposomes, with promising potential for further development in pharmaceutical and nutraceutical applications.

Sustainable Chemistry and PharmacyVol. 53
Wuhan Institute of Technology (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 11%
Insect Utilization and Effects
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Development and evaluation of lyophilized nanoliposomes as a stable delivery system for black soldier fly (Hermetia illucens) larvae oil — Yandaizi Zhou, Tielin Wang, et al. · Sustainable Chemistry and Pharmacy (2026) | TGRS Research Map | TGRS