Seagrass Enhalus acoroides extract mitigates obesity and diabetes via GLP-1, PPARγ, SREBP-1c modulation and gut microbiome restoration in diabetic zebrafish

Kadharusman, Marcello Mikhael and Syahputra, Rony Abdi and Kurniawan, Rudy and Hadinata, Edwin and Tjandrawinata, Raymond Rubianto and Taslim, Nurpudji Astuti and Romano, Raffaele and Santini, Antonello and Nurkolis, Fahrul (2025) Seagrass Enhalus acoroides extract mitigates obesity and diabetes via GLP-1, PPARγ, SREBP-1c modulation and gut microbiome restoration in diabetic zebrafish. Diabetology and Metabolic Syndrome, 17 (1).

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15. Seagrass Enhalus acoroides extract mitigates obesity and diabetes via GLP-1, PPARγ, SREBP-1c modulation and gut microbiome restoration in diabetic zebrafish.pdf
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Abstract

Background: The global rise in obesity and type 2 diabetes highlights the need for safe and effective therapeutic interventions. Enhalus acoroides is a tropical seagrass rich in carotenoids and other bioactives. Its potential for metabolic regulation has been suggested in vitro, but in vivo efficacy and molecular mechanisms remain unexplored. This study aimed to evaluate the anti-obesity and anti-diabetic effects of Enhalus acoroides extract (SEAE) in a zebrafish model of diet- and glucose-induced metabolic dysfunction. Methods: Adult zebrafish were subjected to overfeeding and glucose immersion, after overfeeding and 14 days of glucose immersion to induce diabetes, adult zebrafish were randomized into three groups: untreated diabetic, SEAE-treated (5 mg/L), and metformin-treated (3.3 mg/L) for 20 days. Body weight, fasting blood glucose, lipid profile, gene expression (GLP-1, PPARγ, SREBP-1c), and gut microbiota profiles via 16 S rRNA sequencing were assessed. Results: SEAE significantly reduced body weight and blood glucose in diabetic zebrafish (p < 0.05), with efficacy comparable to or exceeding Metformin. It upregulated GLP-1 and downregulated PPARγ and SREBP-1c. SEAE also reduced total cholesterol, triglycerides, and LDL levels, while increasing HDL levels. Moreover, SEAE restored the Firmicutes/Bacteroidetes ratio, increased alpha diversity, and shifted beta diversity toward healthy controls. SEAE-treated fish showed microbial profiles closer to normal than those treated with Metformin. Conclusions: SEAE exhibits strong anti-obesity and anti-hyperglycemic effects by modulating key metabolic pathways and restoring gut microbial homeostasis. These findings highlight SEAE as a promising marine-derived therapeutic candidate for metabolic syndrome and warrant further investigation as a functional food or nutraceutical. Clinical trial: Not applicable. © The Author(s) 2025.

Item Type: Article
Additional Information: Cited by: 1; All Open Access; Gold Open Access; Green Open Access
Uncontrolled Keywords: antidiabetic agent; antiobesity agent; Enhalus acoroides extract; glucagon like peptide 1; high density lipoprotein; low density lipoprotein; metformin; peroxisome proliferator activated receptor gamma; plant extract; sterol regulatory element binding protein 1c; triacylglycerol; unclassified drug; adult; animal experiment; animal model; antidiabetic activity; antiobesity activity; Article; Bacteroidetes; body weight loss; controlled study; diabetes mellitus; diet-induced obesity; drug efficacy; Enhalus acoroides; female; Firmicutes; gene expression; glycemic control; intestine flora; male; nonhuman; seagrass; total cholesterol level; zebra fish
Subjects: R Medicine > RC Internal medicine
Divisions: Artikel Ilmiah > SCOPUS INDEXED JOURNAL
Creators:
CreatorsNIM
Kadharusman, Marcello MikhaelUNSPECIFIED
Syahputra, Rony AbdiUNSPECIFIED
Kurniawan, RudyUNSPECIFIED
Hadinata, EdwinUNSPECIFIED
Tjandrawinata, Raymond RubiantoUNSPECIFIED
Taslim, Nurpudji AstutiUNSPECIFIED
Romano, RaffaeleUNSPECIFIED
Santini, AntonelloUNSPECIFIED
Nurkolis, FahrulUNSPECIFIED
Depositing User: Ny Wahyuni -
Date Deposited: 05 Oct 2026 07:03
Last Modified: 05 Oct 2026 07:03
URI: http://repository.unair.ac.id/id/eprint/145869
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