Bioactive Potential, Gastrointestinal Bioaccessibility, and Preliminary Safety Assessment of a Phenolic-Rich Coffee Pulp (Coffea arabica) Extract

Background/Objectives: Coffee pulp (Coffea arabica) is an agroindustrial byproduct of coffee production and has high potential as a source of bioactive compounds. Methods: In this study, a coffee pulp extract was characterized by determining its total polyphenol content (TPC), condensed tannins (CT), and total flavonoids (TFC), as well as its antioxidant activity, inhibition of α-amylase and α-glucosidase, stability during in vitro gastrointestinal digestion, and toxicity in Artemia salina. Results: The extract exhibited a TPC of 90.33 mg GAE/g of extract, a TFC of 60.48 mg CE/g of extract, and a CT of 27.27 mg PC1eq/g of extract. Antioxidant activity was measured as follows: DPPH (105.41 mg TE/g of extract), ABTS (69.41 mg TE/g of extract), TAA (325.11 mg TE/g of extract), and FRAP (106.03 mg TE/g of extract). The extract inhibited α-amylase by 20.67% and α-glucosidase by 34.69% at 1000 µg/mL. In vitro digestion reduced phenolic compounds and antioxidant activity, with a low proportion of condensed tannins considered absorbable, while polyphenols could not be detected in the dialysis. On the other hand, the median lethal concentration (LC50) in A. salina was > 1000 µg/mL, thus considered non-toxic. Conclusions: These results demonstrate the potential of coffee pulp as a source of safe bioactive compounds, although its stability and gastrointestinal availability must be considered for its utilization.

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Journal
Journal of Pharmaceutical and BioTech Industry
Published
2026-10-01
DOI
https://doi.org/10.3390/jpbi3040023
Primary Topic
Coffee research and impacts
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article
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article

Bioactive Potential, Gastrointestinal Bioaccessibility, and Preliminary Safety Assessment of a Phenolic-Rich Coffee Pulp (Coffea arabica) Extract

Jorge E. Wong‐Paz, Juan Alberto Ascacio-Valdés, José Sandoval‐Cortés, Cristóbal N. Aguilar et al.
Journal of Pharmaceutical and BioTech Industry
Coffee research and impacts
article

Bioactive Potential, Gastrointestinal Bioaccessibility, and Preliminary Safety Assessment of a Phenolic-Rich Coffee Pulp (Coffea arabica) Extract

Jorge E. Wong‐Paz, Juan Alberto Ascacio-Valdés, José Sandoval‐Cortés, Cristóbal N. Aguilar, Eliseo Cárdenas-Hernández, Juan Carlos Contreras‐Esquivel, Jaqueline Inez de Santana, Mónica L. Chávez‐González
article en

Abstract

Background/Objectives: Coffee pulp (Coffea arabica) is an agroindustrial byproduct of coffee production and has high potential as a source of bioactive compounds. Methods: In this study, a coffee pulp extract was characterized by determining its total polyphenol content (TPC), condensed tannins (CT), and total flavonoids (TFC), as well as its antioxidant activity, inhibition of α-amylase and α-glucosidase, stability during in vitro gastrointestinal digestion, and toxicity in Artemia salina. Results: The extract exhibited a TPC of 90.33 mg GAE/g of extract, a TFC of 60.48 mg CE/g of extract, and a CT of 27.27 mg PC1eq/g of extract. Antioxidant activity was measured as follows: DPPH (105.41 mg TE/g of extract), ABTS (69.41 mg TE/g of extract), TAA (325.11 mg TE/g of extract), and FRAP (106.03 mg TE/g of extract). The extract inhibited α-amylase by 20.67% and α-glucosidase by 34.69% at 1000 µg/mL. In vitro digestion reduced phenolic compounds and antioxidant activity, with a low proportion of condensed tannins considered absorbable, while polyphenols could not be detected in the dialysis. On the other hand, the median lethal concentration (LC50) in A. salina was > 1000 µg/mL, thus considered non-toxic. Conclusions: These results demonstrate the potential of coffee pulp as a source of safe bioactive compounds, although its stability and gastrointestinal availability must be considered for its utilization.

Journal of Pharmaceutical and BioTech IndustryVol. 3(4)
Universidad Autónoma de Coahuila (MX), Autonomous University of San Luis Potosí (MX), Universidade Federal de Pernambuco (BR)
Openalex Percentile: Top 13%
Coffee research and impacts
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