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February 25, 2026Applied Sciences1 citationsOpen Access

Brazilian Microalgae-Derived Bioactives: Antioxidant and Antibacterial Properties for Skin Care Application

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ÉBÉdina A. R. BlasiJHJamili Seibel HofstetterPSPatrícia Susano

Key Points

  • The aim is to explore the antioxidant and antibacterial properties of Brazilian microalgae for skin care applications.
  • Cultivated eight native Brazilian microalgae strains under control and stress conditions.
  • Extracted bioactive compounds using acetone from 24 samples.
  • Assessed antioxidant capacity using FRAP, DPPH, and superoxide scavenging methods.
  • Evaluated antibacterial effects against four skin microorganisms.
  • Analyzed mechanistic effects on bacterial membrane integrity and DNA.
  • Extracts from Scenedesmus armatus and Chlorella sorokiniana showed highest antioxidant activity.
  • DPPH radical reduction of 22.6% for extract 40C and 20.7% for extract 198C.
  • IC50 values for superoxide scavenging were 150.9 µg/mL for extract 40C and 139.6 µg/mL for extract 198C.
  • Sample 198C exhibited the highest antibacterial potency against S. epidermidis with IC50 of 10.3 µg/mL.
  • Both samples demonstrated antimicrobial relevance against C. acnes, with IC50 values of 58.4 µg/mL and 83.5 µg/mL.

Abstract

Brazilian microalgae represent an underexplored reservoir of bioactive compounds with promising biotechnological and dermocosmetic applications. In this study, eight native Brazilian microalgae strains were cultivated under control (C) and stress conditions, nitrogen depletion (N) and salt stress (S), to modulate their bioactive profiles. Derived acetone extracts (24 samples) were evaluated for their antioxidant and antibacterial activities relevant to skin health. The antioxidant capacity of extracts was assessed by three complementary methods: ferric reducing antioxidant power (FRAP), 2,2-diphenyl-1-picryl-hydrazyl (DPPH) and superoxide anion radicals scavenging. Additionally, the antibacterial effects against four skin microorganisms (Staphylococcus epidermidis, Staphylococcus hominis, Staphylococcus aureus, and Cutibacterium acnes) were also assessed. Among the tested samples, extracts from Scenedesmus armatus (Extract 40C) and from Chlorella sorokiniana (Extract 198C) displayed the highest antioxidant potential, with DPPH radical reduction of 22.6 ± 1.6% and 20.7 ± 1.9% and FRAP values of 178.3 and 156.8 μmol FeSO4/g extract, respectively. Superoxide scavenging assays showed IC50 values of 150.9 μg/mL for sample 40C and 139.6 μg/mL for sample 198C. Regarding the antibacterial assay, the IC50 values for S. epidermidis were notable, with sample 198C exhibiting the highest potency (10.3 µg/mL), closely matching the standard drug (12.4 µg/mL). The inhibitory capacity against C. acnes showed that samples 40C (58.4 µg/mL) and 198C (83.5 µg/mL) demonstrated antimicrobial relevance. Mechanistic assays suggested that the antibacterial effects of both samples may involve alterations in bacterial membrane integrity and DNA damage. Overall, these findings highlight the dermocosmetic potential of native Brazilian microalgae, still largely untapped in biotechnology, as natural sources of multifunctional ingredients for the development of sustainable skin care formulations.

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Cite This Study

Blasi et al. (2026) studied this question.

synapsesocial.com/papers/699e919cf5123be5ed04f487https://doi.org/10.3390/app16042146
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