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Keywords = berberine (BB)

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12 pages, 2734 KB  
Article
Synergistic Effect of the Mucosa-Friendly Agents Berberine and Tea Tree Oil on Mucosal Protection Against Neisseria gonorrhoeae in an In Vitro T84 Cell Mucosa Model
by Mon-Der Cho, Shang-Yu Chou, Jung-Sheng Chen, Yu-Ming Hsu, Chi-Ying Li, Yi-Hong Tsai and Fang-Rong Chang
Antibiotics 2026, 15(4), 392; https://doi.org/10.3390/antibiotics15040392 - 12 Apr 2026
Viewed by 895
Abstract
Introduction: Neisseria gonorrhoeae, a bacterium responsible for gonorrhea, can spread through oral sex, causing pharyngeal gonorrhea, which is also a leading cause of urethritis in outpatient clinics. This study investigated whether tea tree oil (TTO) alone or in combination with other [...] Read more.
Introduction: Neisseria gonorrhoeae, a bacterium responsible for gonorrhea, can spread through oral sex, causing pharyngeal gonorrhea, which is also a leading cause of urethritis in outpatient clinics. This study investigated whether tea tree oil (TTO) alone or in combination with other natural products could serve as an effective alternative to chlorhexidine in preventing the spread of oral gonorrhea. Methods: An in vitro model was developed using T84 epithelial cells as a mucosal layer and Neisseria gonorrhoeae strain MS11. The study assessed the minimal inhibitory concentration (MIC), bacterial adherence, invasion, and transmigration across the mucosal barrier. Berberine (BB), a major and bioactive alkaloid derived from Coptis chinensis, was tested with and without TTO in MIC assays and epithelial cell viability tests. Ceftriaxone was used as a positive control. Results: The MIC values for TTO, BB, and ceftriaxone against the MS11 strain were determined to be 0.2%, 5 μg/mL, and 0.0125 μg/mL, respectively. Notably, the combination of TTO with BB demonstrated a synergistic effect, reducing the MIC to 0.000625% TTO + 1.25 μg/mL BB. This combination provided the strongest protective effect. No cytotoxicity was observed in the epithelial cell viability tests for 0.2% diluted TTO, 5 μg/mL BB, or the combination of 0.000625% TTO + 1.25 μg/mL BB. Conclusions: BB, when combined with TTO, exhibited a synergistic antimicrobial effect against Neisseria gonorrhoeae strain MS11 in the T84 mucosal model. These findings highlight the potential of this combination as a natural alternative to chlorhexidine gluconate for managing oral gonorrhea. Full article
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27 pages, 8522 KB  
Article
Delivery Capacity and Anticancer Ability of the Berberine-Loaded Gold Nanoparticles to Promote the Apoptosis Effect in Breast Cancer
by Chen-Feng Chiu, Ru-Huei Fu, Shan-hui Hsu, Yang-Hao (Alex) Yu, Shun-Fa Yang, Thomas Chang-Yao Tsao, Kai-Bo Chang, Chun-An Yeh, Cheng-Ming Tang, Sheng-Chu Huang and Huey-Shan Hung
Cancers 2021, 13(21), 5317; https://doi.org/10.3390/cancers13215317 - 22 Oct 2021
Cited by 45 | Viewed by 5514
Abstract
Gold nanoparticles (AuNPs) were fabricated with biocompatible collagen (Col) and then conjugated with berberine (BB), denoted as Au-Col-BB, to investigate the endocytic mechanisms in Her-2 breast cancer cell line and in bovine aortic endothelial cells (BAEC). Owing to the superior biocompatibility, tunable physicochemical [...] Read more.
Gold nanoparticles (AuNPs) were fabricated with biocompatible collagen (Col) and then conjugated with berberine (BB), denoted as Au-Col-BB, to investigate the endocytic mechanisms in Her-2 breast cancer cell line and in bovine aortic endothelial cells (BAEC). Owing to the superior biocompatibility, tunable physicochemical properties, and potential functionalization with biomolecules, AuNPs have been well studied as carriers of biomolecules for diseases and cancer therapeutics. Composites of AuNPs with biopolymer, such as fibronectin or Col, have been revealed to increase cell proliferation, migration, and differentiation. BB is a natural compound with impressive health benefits, such as lowering blood sugar and reducing weight. In addition, BB can inhibit cell proliferation by modulating cell cycle progress and autophagy, and induce cell apoptosis in vivo and in vitro. In the current research, BB was conjugated on the Col-AuNP composite (“Au-Col”). The UV-Visible spectroscopy and infrared spectroscopy confirmed the conjugation of BB on Au-Col. The particle size of the Au-Col-BB conjugate was about 227 nm, determined by dynamic light scattering. Furthermore, Au-Col-BB was less cytotoxic to BAEC vs. Her-2 cell line in terms of MTT assay and cell cycle behavior. Au-Col-BB, compared to Au-Col, showed greater cell uptake capacity and potential cellular transportation by BAEC and Her-2 using the fluorescence-conjugated Au-Col-BB. In addition, the clathrin-mediated endocytosis and cell autophagy seemed to be the favorite endocytic mechanism for the internalization of Au-Col-BB by BAEC and Her-2. Au-Col-BB significantly inhibited cell migration in Her-2, but not in BAEC. Moreover, apoptotic cascade proteins, such as Bax and p21, were expressed in Her-2 after the treatment of Au-Col-BB. The tumor suppression was examined in a model of xenograft mice treated with Au-Col-BB nanovehicles. Results demonstrated that the tumor weight was remarkably reduced by the treatment of Au-Col-BB. Altogether, the promising findings of Au-Col-BB nanocarrier on Her-2 breast cancer cell line suggest that Au-Col-BB may be a good candidate of anticancer drug for the treatment of human breast cancer. Full article
(This article belongs to the Section Cancer Therapy)
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14 pages, 2661 KB  
Article
Green Synthesis of Nickel Oxide Nanoparticles from Berberis balochistanica Stem for Investigating Bioactivities
by Siraj Uddin, Luqman Bin Safdar, Saeed Anwar, Javed Iqbal, Sabiha Laila, Banzeer Ahsan Abbasi, Muhammad Saqib Saif, Musrat Ali, Abdul Rehman, Abdul Basit, Yong Wang and Umar Masood Quraishi
Molecules 2021, 26(6), 1548; https://doi.org/10.3390/molecules26061548 - 11 Mar 2021
Cited by 132 | Viewed by 10200
Abstract
Green synthesis of nanomaterials is advancing due to its ease of synthesis, inexpensiveness, nontoxicity and renewability. In the present study, an eco-friendly biogenic method was developed for the green synthesis of nickel oxide nanoparticles (NiONPs) using phytochemically rich Berberis balochistanica stem (BBS) extract. [...] Read more.
Green synthesis of nanomaterials is advancing due to its ease of synthesis, inexpensiveness, nontoxicity and renewability. In the present study, an eco-friendly biogenic method was developed for the green synthesis of nickel oxide nanoparticles (NiONPs) using phytochemically rich Berberis balochistanica stem (BBS) extract. The BBS extract was rich in phenolics, flavonoids and berberine. These phytochemicals successfully reduced and stabilised the NiNO3 (green) into NiONPs (greenish-gray). BBS-NiONPs were confirmed by using UV-visible spectroscopy (peak at 305 nm), X-ray diffraction (size of 31.44 nm), Fourier transform infrared spectroscopy (identified -OH group and Ni-O formation), energy dispersive spectroscopy (showed specified elemental nature) and scanning electron microscopy (showed rhombohedral agglomerated shape). BBS-NiONPs were exposed to multiple in vitro bioactivities to ascertain their beneficial biological applications. They exhibited strong antioxidant activities: total antioxidant capacity (64.77%) and 2, 2-diphenyl-1-picrylhydrazyl (71.48%); and cytotoxic potential: Brine shrimp cytotoxicity assay with IC50 (10.40 µg/mL). BBS-NiONPs restricted the bacterial and fungal pathogenic growths at 1000, 500 and 100 µg/mL. Additionally, BBS-NiONPs showed stimulatory efficacy by enhancing seed germination rate and seedling growth at 31.25 and 62.5 µg/mL. In aggregate, BBS extract has a potent antioxidant activity which makes the green biosynthesis of NiONPs easy, economical and safe. The biochemical potential of BBS-NiONPs can be useful in various biomedical and agricultural fields. Full article
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17 pages, 3718 KB  
Article
Enhancement of Berberine Hypoglycemic Activity by Oligomeric Proanthocyanidins
by Haoyue Zhang, Xueping Wang, Ting Wang, Kaixian Chen, Heyao Wang, Qi Jia and Yiming Li
Molecules 2018, 23(12), 3318; https://doi.org/10.3390/molecules23123318 - 14 Dec 2018
Cited by 14 | Viewed by 6143
Abstract
This study investigated the possible enhancement of berberine’s (BB) hypoglycemic activity by oligomeric proanthocyanidins (OPCs) and its underlying mechanism. The hypoglycemic activity of the studied compounds was evaluated in diabetic db/db mice. The cellular uptake and efflux of BB with or [...] Read more.
This study investigated the possible enhancement of berberine’s (BB) hypoglycemic activity by oligomeric proanthocyanidins (OPCs) and its underlying mechanism. The hypoglycemic activity of the studied compounds was evaluated in diabetic db/db mice. The cellular uptake and efflux of BB with or without OPCs were investigated using Caco-2 intestinal cells. A pharmacokinetic study of BB and OPCs was performed in Sprague Dawley (SD) mice by oral administration of the study compounds. Liquid chromatography–tandem mass spectrometry (LC–MS/MS) was employed to determine the cellular efflux, retention, and the serum concentrations of the compounds. The results revealed that OPCs considerably potentiated the hypoglycemic efficacy of BB in diabetic db/db mice. In the in vitro experiments, OPCs significantly inhibited the efflux and increased the uptake of the P-glycoprotein (P-gp) substrate rhodamine-123 (R123) and BB in Caco-2 intestinal cells. Moreover, OPCs substantially reduced the expression of P-gp in Caco-2 cells. The inhibition of BB efflux by OPCs was translated into the improved pharmacokinetics in vivo. When co-administered, OPCs obviously increased the average maximum concentration of BB in mice. In summary, this study demonstrated that combination of BB with OPCs could significantly improve the pharmacokinetics and hypoglycemic efficacy of BB, which is valuable for future exploration of the combination of BB and OPCs as oral hypoglycemic agents. Full article
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