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Keywords = cycloartane saponins

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26 pages, 9464 KB  
Article
Cycloartane-Type Saponins, Phytochemical-Rich Extracts, and Sub-Extracts from Astragalus noeanus Boiss. Exhibit In Vitro and In Silico Effects on Glucose Metabolism
by Kevser Özdemir-Bayçınar, Timur Hakan Barak, İnci Kurt-Celep, M. Oluş Özbek, Dongdong Wang, Ozan Savaşan and Esra Eroğlu Özkan
Pharmaceuticals 2026, 19(3), 352; https://doi.org/10.3390/ph19030352 - 25 Feb 2026
Viewed by 1235
Abstract
Background/Objectives: This study aimed to evaluate the antidiabetic potential of five extracts/sub-extracts and five known cycloartane saponins [astragalosides (AST) I, II, III, IV, and cyclocanthoside E] from Astragalus noeanus (AN), using four specific diabetes-related molecular targets. Methods: Four diabetes-associated in vitro [...] Read more.
Background/Objectives: This study aimed to evaluate the antidiabetic potential of five extracts/sub-extracts and five known cycloartane saponins [astragalosides (AST) I, II, III, IV, and cyclocanthoside E] from Astragalus noeanus (AN), using four specific diabetes-related molecular targets. Methods: Four diabetes-associated in vitro and in silico targets—protein tyrosine phosphatase 1B (PTP1B), dipeptidyl peptidase IV (DPP IV), α-amylase, and advanced glycation end-products (AGEs)—were employed to obtain comprehensive antidiabetic activity profiles. Additionally, the antioxidant and prebiotic capacities of the extracts/sub-extracts were assessed in vitro. A cycloartane saponin was isolated and structurally characterized. Quantitative analyses of total flavonoids, total saponins, and high-performance thin-layer chromatography (HPTLC) were performed to profile the chemical constituents of the plant material. Results: Among the extracts/sub-extracts, the aqueous extract (ANW) exhibited the highest inhibitory effects against all four diabetes-related targets, with inhibition percentages ranging from 83.70% to 93.49%. The methanol extract (ANM) demonstrated significant prebiotic activity comparable to standard controls on two Lactobacillus strains. The chloroform extract (ANC) showed the highest flavonoid content and exhibited the strongest antioxidant activity across all assays. ANM yielded the highest saponin content (3250 mg escin equivalent/g). HPTLC quantification revealed that AST IV was the predominant saponin in ANM (14.28 μg/mg) after cyclocanthoside E (117.27 ± 6.71 μg/mg). Among the saponins, AST IV displayed the most potent inhibition in diabetes-related enzyme assays, surpassing reference drugs acarbose and vildagliptin at equivalent concentrations. AST III also demonstrated considerable activity, ranking just below AST IV. Molecular docking studies identified AST II and AST III as the most promising ligands, exhibiting superior binding affinities and stronger hydrogen bonding and hydrophobic interactions with target proteins. Cyclocanthoside E was isolated from A. noeanus and evaluated for its antidiabetic effects for the first time, with its structure confirmed by NMR and LC-HRMS analyses. Conclusions: This study highlights Astragalus noeanus as a promising source for safe and effective antidiabetic agents. The potent activity of the aqueous extract, along with AST IV and AST III, warrants further investigation through clinical trials to validate their therapeutic potential in diabetes management. Full article
(This article belongs to the Section Natural Products)
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12 pages, 2900 KB  
Article
Anti-Inflammatory Potential of Beesioside O: Target Prediction, Docking Studies, and Molecular Dynamics
by Qian Qiang, Qiong-Yu Zou, Lei Jin, Zheng Hu, Zi-Xuan Zhao, Hai-Feng Wu and Ji Zhang
Curr. Issues Mol. Biol. 2026, 48(2), 129; https://doi.org/10.3390/cimb48020129 - 23 Jan 2026
Viewed by 651
Abstract
Triterpenoids with diverse structural features have shown considerable potential as pharmaceutical precursors for anti-inflammatory therapies. Beesioside O (BO), a representative triterpenoid (cycloartane triterpene saponin), has previously been reported to exhibit notable anti-HIV and anticancer activities. However, its anti-inflammatory mechanisms have not been fully [...] Read more.
Triterpenoids with diverse structural features have shown considerable potential as pharmaceutical precursors for anti-inflammatory therapies. Beesioside O (BO), a representative triterpenoid (cycloartane triterpene saponin), has previously been reported to exhibit notable anti-HIV and anticancer activities. However, its anti-inflammatory mechanisms have not been fully elucidated. In this study, we investigated the anti-inflammatory activity and underlying molecular mechanisms of BO in LPS-induced RAW264.7 macrophages. In addition, NP AI Engine predictions, molecular docking, density functional theory (DFT) calculations, and molecular dynamics simulations were conducted to characterize the anti-inflammatory properties of BO further. The experimental results indicated that BO inhibited the mRNA expression levels of iNOS and COX-2. Moreover, it can regulate the phosphorylation of ERK at 3 h. Potential signaling pathways and targets were subsequently analyzed. The structural and electronic properties of BO were calculated using the B3LYP/6-311+G (d,p) basis set. The BO–ERK2 kinase complex was also constructed for simulation. Furthermore, a BO derivative was prepared through hydrolysis followed by acylation, and its anti-inflammatory activity was evaluated. Overall, this study provides deeper insight into the anti-inflammatory effects of BO and supports its potential for further development as an anti-inflammatory agent. Full article
(This article belongs to the Section Molecular Pharmacology)
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27 pages, 16635 KB  
Article
Revealing the Role of Beesioside O from Actaea vaginata for the Treatment of Breast Cancer Using Network Pharmacology, Molecular Docking, and Molecular Dynamics Simulation
by Shuyang Li, Juan Lu, Hongwei Xue, Yang Lou, Jia Liu, Yutian Wang, Haifeng Wu and Xi Chen
Int. J. Mol. Sci. 2025, 26(5), 2283; https://doi.org/10.3390/ijms26052283 - 4 Mar 2025
Cited by 5 | Viewed by 2575
Abstract
Breast cancer remains a leading cause of malignancy-related mortality among women, with rising global incidence. While surgical intervention is effective for early-stage breast cancer, drug therapy is indispensable, particularly for triple-negative breast cancer, where treatment options are still limited. Actaea vaginata, a [...] Read more.
Breast cancer remains a leading cause of malignancy-related mortality among women, with rising global incidence. While surgical intervention is effective for early-stage breast cancer, drug therapy is indispensable, particularly for triple-negative breast cancer, where treatment options are still limited. Actaea vaginata, a traditional Chinese medicinal herb, has been historically applied for inflammatory conditions, including pharyngitis and stomatitis. However, its antitumor potential remains under-reported. In this study, a cycloartane triterpene saponin, beesioside O (BO), was isolated from this plant. Its antitumor activity was evaluated in vitro. Its potential therapeutic mechanisms were elucidated through network pharmacology. BO exhibited substantial potency in inhibiting breast cancer cells. Network pharmacology analysis uncovered 179 potential pharmacological targets of BO, which were predominantly concentrated in pathways, such as pathways in cancer, the PI3K-Akt signaling pathway, and chemical carcinogenesis receptor activation. Molecular docking analysis indicated that STAT3 exhibited minimal binding energy with BO. Additionally, molecular dynamics simulations verified the conformational stability of the BO-STAT3 complex. Western blot analysis demonstrated that STAT3 was downregulated following administration. These results imply that BO may exhibit a multi-target, synergistic therapeutic effect against breast cancer, with STAT3 recognized as a pivotal target. This study demonstrates the potential of BO for development as a chemotherapeutic agent for breast cancer treatment. It lays the groundwork for further exploration of BO’s bioactivity and provides valuable insights into its molecular mechanisms in breast cancer therapy. Full article
(This article belongs to the Special Issue Molecular Modeling: Latest Advances and Applications)
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13 pages, 2474 KB  
Article
Phytochemical Analysis and In Vitro Effects on Isolated Murine Lymphocytes and Macrophages of Polymeric Micelles Loaded with Cycloartane Saponin
by Aleksandar Shkondrov, Denitsa Stefanova, Ivan Stambolov, Krassimira Yoncheva, Virginia Tzankova and Ilina Krasteva
Separations 2024, 11(10), 280; https://doi.org/10.3390/separations11100280 - 28 Sep 2024
Viewed by 1510
Abstract
Triterpenoid saponins from the Astragalus species possess valuable effects (cytotoxic, adjuvant, hepatoprotective, neuroprotective, antiviral, etc.). Some also have immunomodulatory activities. Astragalus glycyphyllos is distributed in Bulgaria and mainly accumulates cycloartane saponins. From the overground parts of the species, a triterpenoid cyloartane-type saponin (AGOS3) [...] Read more.
Triterpenoid saponins from the Astragalus species possess valuable effects (cytotoxic, adjuvant, hepatoprotective, neuroprotective, antiviral, etc.). Some also have immunomodulatory activities. Astragalus glycyphyllos is distributed in Bulgaria and mainly accumulates cycloartane saponins. From the overground parts of the species, a triterpenoid cyloartane-type saponin (AGOS3) was isolated by different chromatographic techniques. A quantitative LC-MS method for the determination of the saponin was developed and validated. Further, the saponin was loaded in copolymeric micelles based on triblock copolymers of polyethylene oxide and polypropylene oxide (Pluronics). The LC-MS method was applied on the developed micelles to determine their loading degrees. Afterwards, the possible pharmacological effects of free and encapsulated in polymeric nanoparticles of triterpenoid saponin (1, 5, 10, 25, 50, and 100 µg/mL) were evaluated in isolated murine macrophages and lymphocytes in vitro. Free AGOS3 stimulated proliferation only at the highest tested concentrations (50–100 µg/mL), and the effect was more evident in isolated macrophages. Interestingly, AGOS3-loaded polymeric micelles caused concentration dependency and statistically significant increases in the proliferation of both isolated lymphocytes and macrophages, even at a lower concentration (10 µg/mL). These results could serve as the basis for further research on the immunomodulatory effect of this saponin. Full article
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19 pages, 1530 KB  
Review
The Genus Eranthis: Prospects of Research on Its Phytochemistry, Pharmacology, and Biotechnology
by Andrey S. Erst, Natalia V. Petrova, Olga A. Kaidash, Wei Wang and Vera A. Kostikova
Plants 2023, 12(22), 3795; https://doi.org/10.3390/plants12223795 - 7 Nov 2023
Cited by 4 | Viewed by 2401
Abstract
This review summarizes information about the chemical composition and beneficial properties of species of the genus Eranthis Salisb. from the world’s flora. To date, seven out of ~14 species found in Asia and parts of Europe have been studied to various degrees. Here, [...] Read more.
This review summarizes information about the chemical composition and beneficial properties of species of the genus Eranthis Salisb. from the world’s flora. To date, seven out of ~14 species found in Asia and parts of Europe have been studied to various degrees. Here, data are presented on the diversity of sets of chromones, furochromones, triterpene saponins, coumarins, and other classes of secondary metabolites of Eranthis species according to the literature. For new compounds—isolated from Eranthis for the first time—structural formulas are also provided. Among the new compounds, chromones and coumarins predominate, as do triterpene saponins of the olean and cycloartane series and lectin. The results of pharmacological studies are presented showing anti-inflammatory, antioxidant, antiviral, and other types of biological activities found in extracts, in their fractions, and in individual compounds of the aboveground and underground organs and parts of Eranthis species. Despite the limited geographic range of Eranthis plants, it is possible to search for active substances, develop methods for biological and chemical synthesis of the isolated substances, and create a finished therapeutic substance based on them. In addition, it is feasible to obtain the desired standardized pure materials from Eranthis species grown in vitro. Full article
(This article belongs to the Special Issue Advances in Research on the Medicinal Value of Plants)
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14 pages, 2600 KB  
Article
Cycloartane Saponins from Astragalus glycyphyllos and Their In Vitro Neuroprotective, Antioxidant, and hMAO-B-Inhibiting Effects
by Ivan Stambolov, Aleksandar Shkondrov, Olaf Kunert, Franz Bucar, Magdalena Kondeva-Burdina and Ilina Krasteva
Metabolites 2023, 13(7), 857; https://doi.org/10.3390/metabo13070857 - 19 Jul 2023
Cited by 14 | Viewed by 2984
Abstract
Astragalus glycyphyllos (Fabaceae) is used in the traditional medicine of many countries against hepatic and cardiac disorders. The plant contains mainly flavonoids and saponins. From a defatted methanol extract from its overground parts, a new triterpenoid saponin, 3-O-[α-L-rhamnopyranosyl-(1→2)]-β [...] Read more.
Astragalus glycyphyllos (Fabaceae) is used in the traditional medicine of many countries against hepatic and cardiac disorders. The plant contains mainly flavonoids and saponins. From a defatted methanol extract from its overground parts, a new triterpenoid saponin, 3-O-[α-L-rhamnopyranosyl-(1→2)]-β-D-xylopyranosyl]-24-O-α-L-arabinopyranosyl-3β,6α,16β,24(R),25-pentahydroxy-20R-cycloartane, together with the rare saponin astrachrysoside A, were isolated using various chromatography methods. The compounds were identified via extensive high resolution electrospray ionisation mass spectrometry (HRESIMS) and NMR analyses. Both saponins were examined for their possible antioxidant and neuroprotective activity in three different in vitro models. Rat brain synaptosomes, mitochondria, and microsomes were isolated via centrifugation using Percoll gradient. They were treated with the compounds in three different concentrations alone, and in combination with 6-hydroxydopamine or tert-butyl hydroperoxide as toxic agents. It was found that the compounds had statistically significant dose-dependent in vitro protective activity on the sub-cellular fractions. The compounds exhibited a weak inhibitory effect on the enzyme activity of human recombinant monoamine oxidase type B (hMAO-B), compared to selegiline. Full article
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21 pages, 1360 KB  
Article
The Implication of Chemotypic Variation on the Anti-Oxidant and Anti-Cancer Activities of Sutherlandia frutescens (L.) R.Br. (Fabaceae) from Different Geographic Locations
by Samkele Zonyane, Olaniyi A. Fawole, Chris la Grange, Maria A. Stander, Umezuruike L. Opara and Nokwanda P. Makunga
Antioxidants 2020, 9(2), 152; https://doi.org/10.3390/antiox9020152 - 13 Feb 2020
Cited by 26 | Viewed by 7731
Abstract
Extracts of Sutherlandia frutescens (cancer bush) exhibit considerable qualitative and quantitative chemical variability depending on their natural wild origins. The purpose of this study was thus to determine bioactivity of extracts from different regions using in vitro antioxidant and anti-cancer assays. Extracts of [...] Read more.
Extracts of Sutherlandia frutescens (cancer bush) exhibit considerable qualitative and quantitative chemical variability depending on their natural wild origins. The purpose of this study was thus to determine bioactivity of extracts from different regions using in vitro antioxidant and anti-cancer assays. Extracts of the species are complex and are predominantly composed of a species-specific set of triterpene saponins (cycloartanol glycosides), the sutherlandiosides, and flavonoids (quercetin and kaempferol glycosides), the sutherlandins. For the Folin-Ciocalteu phenolics test values of 93.311 to 125.330 mg GAE/g DE were obtained. The flavonoids ranged from 54.831 to 66.073 mg CE/g DE using the aluminum chloride assay. Extracts from different sites were also assayed using the 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging method and ferric reducing anti-oxidant power (FRAP) methods. This was followed by an in vitro Cell Titer-Glo viability assay of various ecotypes using the DLD-1 colon cancer cell line. All test extracts displayed anti-oxidant activity through the DPPH radical scavenging mechanism, with IC50 values ranging from 3.171 to 7.707 µg·mL−1. However, the degree of anti-oxidant effects differed on a chemotypic basis with coastal plants from Gansbaai and Pearly Beach (Western Cape) exhibiting superior activity whereas the Victoria West inland group from the Northern Cape, consistently showed the weakest anti-oxidant activity for both the DPPH and FRAP methods. All extracts showed cytotoxicity on DLD-1 colon cancer cells at the test concentration of 200 µg·mL−1 but Sutherlandia plants from Colesburg (Northern Cape) exhibited the highest anti-cancer activity. These findings confirm that S. frutescens specimens display variability in their bioactive capacities based on their natural location, illustrating the importance of choosing relevant ecotypes for medicinal purposes. Full article
(This article belongs to the Special Issue Phenolic Profiling and Antioxidant Capacity in Plants)
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2 pages, 349 KB  
Abstract
Characterization of Cycloartane-Type Sapogenol Derivatives for Prostate Cancer Chemoprevention
by Bilge Debelec-Butuner, Mert Burak Ozturk, Ozgur Tag, Ismail Hakki Akgun, Erdal Bedir and Kemal Sami Korkmaz
Proceedings 2017, 1(10), 985; https://doi.org/10.3390/proceedings1100985 - 15 Nov 2017
Cited by 1 | Viewed by 2727
Abstract
Inhibition of inflammation-induced carcinogenesis is an efficient therapeutic strategy for cancer chemoprevention as use of anti-inflammatories was reported to decrease the cancer risk. In this study, we aimed to investigate the inhibition potential of semi-synthetic derivations of cycloartane-type sapogenol molecules on inflammation-related tumorigenic [...] Read more.
Inhibition of inflammation-induced carcinogenesis is an efficient therapeutic strategy for cancer chemoprevention as use of anti-inflammatories was reported to decrease the cancer risk. In this study, we aimed to investigate the inhibition potential of semi-synthetic derivations of cycloartane-type sapogenol molecules on inflammation-related tumorigenic mechanisms in LNCaP prostate cancer cells. Inflammatory microenvironment was stimulated by TNFα/inflammatory conditioned media (CM). WST1/Xcelligence (proliferation), luciferase reporter (NFkB activity), immunoblotting, DCFH (ROS) and Griess (NO release) methods were used. It has been found that TNFα-induced NFkB activation was suppressed by both astragenol and cycloastragenol derivatives through inhibition of IkB phosphorylation. Further, the loss of Androgen Receptor, NKX3.1 and p53 due to inflammatory microenvironment was partially restored. In addition, tumorigenic cellular events such as increased NO release and intracellular ROS levels were both suppressed by the molecules. Inhibition of B-catenin pathway at anti-inflammatory concentrations was determined through decreased levels of pAkt(S473), total B-catenin and B-catenin(S552) induced by both lipopolysaccharide and CM treatments in inflammatory microenvironment. Finally, saponin molecules were found to suppress the proliferation and migration of prostate cancer cells at apoptotic concentrations. Therefore, it is suggested that anti-inflammatory activity of these sapogenol derivatives through NFkB inhibition make them promising agents for chemoprevention of inflammation-related prostate carcinogenesis. Full article
1 pages, 130 KB  
Abstract
Effect of a New Sapogenol Derivative (AG-07) on Cell Death via Necrosis
by Yalcin Erzurumlu, Ozgur Tag, Sinem Yılmaz, Petek Ballar and Erdal Bedir
Proceedings 2017, 1(10), 996; https://doi.org/10.3390/proceedings1100996 - 14 Nov 2017
Cited by 1 | Viewed by 2338
Abstract
Saponins, plant secondary metabolites with high molecular weight, carry sugar groups on the triterpenic or steroidal skeleton. They exhibit biological activities such as anti-HIV, immunoadjuvant, analgesic and anticancer. Saponins have been reported to induce apoptosis, autophagy, stress responses and also inhibit cell cycle [...] Read more.
Saponins, plant secondary metabolites with high molecular weight, carry sugar groups on the triterpenic or steroidal skeleton. They exhibit biological activities such as anti-HIV, immunoadjuvant, analgesic and anticancer. Saponins have been reported to induce apoptosis, autophagy, stress responses and also inhibit cell cycle and invasion-migration in cancer cells. As saponins have partially weaker anti-cancer properties, they are often used as starting compounds for semi-synthesis of biologically more active molecules. With the same aim, we have focused on cycloartane-type saponins from Astragalus species to prepare potent compounds with cytotoxic activity. Cycloastragenol, a major sapogenol encountered only in Astragalus genus, was used to synthesize astragenol (AG) and then AG-07, a novel compound. Herein, we report the anticancer activities of AG and AG-07 against HCC1937 and HeLa cells by WST-1 assay. Additionally, levels of proteins associated with cell death are examined by immunoblotting. Cell death was also evaluated using flow cytometry and AO/EB staining. In comparison to AG, our results show that AG-07 is more cytotoxic. Furthermore, it induces formation of necrosis-associated protein fragments and necrosis-mediated cell death. In conclusion, AG-07, has a lethal effect on cancer cells through non-apoptotic cell death mechanism. Full article
10 pages, 733 KB  
Communication
A New Cycloartane-Type Triterpenoid Saponin Xanthine Oxidase Inhibitor from Homonoia riparia Lour
by Fan Xu, Xueqian Zhao, Lingli Yang, Xiuhua Wang and Jing Zhao
Molecules 2014, 19(9), 13422-13431; https://doi.org/10.3390/molecules190913422 - 29 Aug 2014
Cited by 18 | Viewed by 7187
Abstract
A new cycloartane-type triterpenoid saponin named riparsaponin (1) was isolated from the stem of Homonoia riparia Lour together with six known compounds. The structure of riparsaponin was determined by using NMR and mass spectroscopy and X-ray crystallography techniques. Additionally, riparsaponin has [...] Read more.
A new cycloartane-type triterpenoid saponin named riparsaponin (1) was isolated from the stem of Homonoia riparia Lour together with six known compounds. The structure of riparsaponin was determined by using NMR and mass spectroscopy and X-ray crystallography techniques. Additionally, riparsaponin has a significant inhibitory effect on xanthine oxidase in vitro, and the IC50 was 11.16 nmol/mL. Full article
(This article belongs to the Section Natural Products Chemistry)
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8 pages, 297 KB  
Communication
Anti-Inflammatory Cycloartane-Type Saponins of Astragalus membranaceus
by Dae-Young Lee, Hyung-Jun Noh, Jehun Choi, Kyeong-Hee Lee, Min-Ho Lee, Ji-Hyun Lee, Yoonpyo Hong, Seung-Eun Lee, Seung-Yu Kim and Geum-Soog Kim
Molecules 2013, 18(4), 3725-3732; https://doi.org/10.3390/molecules18043725 - 25 Mar 2013
Cited by 75 | Viewed by 11480
Abstract
A new cycloartane-type triterpene glycoside, agroastragaloside V (1) was isolated from the roots of Astragalus membranaceus. The structure was identified as 3-O-β-(2'-O-acetyl)-D-xylopyranosyl-6-O-β-D-glucopyranosyl-(24S)-3β,6α,24α,25-tetrahydroxy- [...] Read more.
A new cycloartane-type triterpene glycoside, agroastragaloside V (1) was isolated from the roots of Astragalus membranaceus. The structure was identified as 3-O-β-(2'-O-acetyl)-D-xylopyranosyl-6-O-β-D-glucopyranosyl-(24S)-3β,6α,24α,25-tetrahydroxy- 9,19-cyclolanostane, by means of spectroscopic methods, including HR-FAB/MS, 1D NMR (1H, 13C, DEPT), 2D NMR (gCOSY, gHSQC, gHMBC, NOESY), and IR spectroscopy. Four known cycloartane glycosides, namely, agroastragaloside I (2), agroastragaloside II (3), isoastragaloside II (4) and astragaloside IV (5) were also isolated. All isolated compounds were tested for the ability to inhibit LPS-induced nitric oxide production in RAW264.7 macrophages. Full article
(This article belongs to the Special Issue Triterpenes and Triterpenoids 2013)
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