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Updated: Apr 14, 2026

Analysis of Fatty Acid Content and Composition in Microalgae
Published on: October 1, 2013
Microalgae and Cyanobacteria in the Obesity Evidence Landscape: A PRISMA-ScR Scoping Review with Mechanistic and
Quoc-Phong Huynh1,2, Quoc-Dang Quan3,4, Viet-The Ho2
1Lanh Binh Thang General Hospital, 72 Street No. 5, Binh Thoi Ward, Ho Chi Minh City 72622, Vietnam.
None:
Microalgae and cyanobacteria are investigated for compounds that may relate to obesity and metabolic phenotypes, yet the evidence base remains scattered and inconsistently reported. We conducted a PRISMA-ScR scoping review of PubMed, Europe PMC, and OpenAlex and mapped eligible full-text studies to a controlled vocabulary covering intervention concepts, mechanistic pathway nodes, and obesity-related outcome domains. Of 2651 reports sought for full text, 936/2651 (35.3%) were not retrieved; therefore, evidence maps should be interpreted as conditioned on full-text accessibility. We included 836 studies and summarized study density (counts only) by population/model tier, mechanistic reporting depth, chemical class, and safety/toxin flags. The literature is concentrated in animal models (485 studies) and human studies (292), with fewer in vitro/ex vivo reports (59). Mechanistic reporting was often limited: 582 studies did not provide extractable mechanistic endpoints, whereas 254 reported biomarker or pathway "anchors". Across intervention concepts, lipid/PUFA, carotenoids, phycobiliproteins, and polysaccharides were most common; within the anchored subset, inflammation (NF-κB), AMPK signaling, adipogenesis (PPARγ-related), and lipogenesis were the most frequently mapped nodes. Together, this evidence map clarifies where mechanistic anchoring and safety documentation are sparse and provides a clear starting point for downstream evaluation.
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