Evidence map›Paper›PMID 41193501›Full record

ArticleScientific reports2025

Inhibition of cytotoxic fibrillation of human insulin using silver nanoparticles capped by aqueous extract of Echium amoenum.

Sedigheh Keramati, Somayeh Ahmadi, Mozhgan Omidi, Foad Rezaeifar, Mohammad Bagher Shahsavani, Ali Akbar Meratan

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Article in Scientific reports, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

6 authors.

Sedigheh KeramatiDepartment of Chemistry, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran.
Somayeh AhmadiDepartment of Biological Sciences, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran.
Mozhgan OmidiDepartment of Biological Sciences, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran.
Foad RezaeifarDepartment of Biological Sciences, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran.
Mohammad Bagher ShahsavaniProtein Chemistry Laboratory (PCL), Department of Biology, College of Sciences, Shiraz University, Shiraz, Iran.
Ali Akbar MeratanDepartment of Biological Sciences, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran. a.meratan@iasbs.ac.ir.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Iranian Borage (Echium amoenum) is a medicinal plant with a wide spectrum of therapeutic properties, including antioxidant, antimicrobial, anti-inflammatory, and immunomodulatory effects, which are commonly used in Iranian folk medicine for the treatment of sore throat, coughing, pneumonia, anxiety, and depression. In the present study, the capacity of aqueous extract of Iranian Borage (AEIB) to inhibit cytotoxic fibrillation of human insulin in vitro is investigated for the first time. Using LC-MS analysis, we identified caffeic acid and m-geranyl-p-dihydroxybenzoic acid as two main phenols and methylated derivatives of kaempferol and luteolin as the main flavonoids presented in AEIB. The impact of AEIB on the amyloid fibrillation and cytotoxicity of human insulin was examined using ThT fluorescence assay, circular dichroism spectroscopy, fluorescence microscopy, MTT-based cell viability assay, intracellular ROS content and mitochondrial membrane potential measurements, and hemolysis assay. The obtained results indicate that AEIB can significantly inhibit the amyloid assembly and cytotoxicity of human insulin. Based on the seeding experiments, we propose that binding to and stabilizing monomeric/partially unfolded species may be the main mechanism by which AEIB modulates fibrillogenesis of human insulin. Moreover, we found that green synthesis of metal-based nanoparticles is an effective strategy to improve the anti-amyloidogenic effects of AEIB. Molecular docking studies indicate the binding of two main constituents of AEIB to monomeric form of human insulin. Given significant neuroprotective effects of AEIB and its effectiveness in treatment of several neuropsychiatric disorders, and according to the obtained results, we believe that AEIB has the potency to be considered as a novel therapeutic drug for future research associated with neurodegenerative diseases.

Indexed as

AmyloidInsulinMetal NanoparticlesPlant ExtractsSilverCell SurvivalHumansMembrane Potential, MitochondrialReactive Oxygen SpeciesAmyloidInsulinPlant ExtractsReactive Oxygen SpeciesSilverAmyloid fibrilsCytotoxicityEchium amoenumGreen synthesis of nanoparticlesHuman insulin

Identifiers

PMID41193501
PMCPMC12589552

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.