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Updated: Feb 13, 2026

Expansion of Human Peripheral Blood γδ T Cells using Zoledronate
Published on: September 9, 2011
Hesperetin modulates osteoprogenitor cells and macrophages under zoledronic acid and inflammatory stress
Igor Paulino Mendes Soares1, Owen Liepman2, Caroline Anselmi2
1Department of Cariology, Restorative Sciences, and Endodontics, School of Dentistry, University of Michigan, Ann Arbor, MI, USA; Department of Dental Materials and Prosthodontics, São Paulo State University (UNESP), School of Dentistry, Araraquara, Brazil.
Objectives:
To investigate the osteogenic and immunomodulatory effects of hesperetin (HT) on alveolar bone-derived mesenchymal stem cells (aBMSCs) and macrophages under zoledronic acid (ZA) and inflammatory stress.
Design:
aBMSCs were exposed to ZA (0-10 µM) for 3 days, followed by HT (0-1000 µM) for 3 days. Cell viability was assessed for 3 days of treatments, and osteogenic activity was evaluated by alizarin red quantification at 14 and 21 days. THP-1-derived macrophages were polarized to M1 using lipopolysaccharides (LPS, 1 µg/mL) and treated with HT (1-50 µM) to evaluate cell viability and synthesis of cytokines (ELISA). A co-culture system of aBMSCs and macrophages (1:1 ratio) was established under inflammatory stimulation (LPS ± 20 µM HT) to assess cell viability, cytokine release and mineralized matrix formation. Data were analyzed by ANOVA/post-hoc tests (α = 5 %).
Results:
ZA significantly reduced aBMSCs viability and mineralization in a dose-dependent manner. HT (5-50 µM) enhanced mineralization in healthy aBMSCs and partially restored it after ZA exposure. In M1 macrophages, HT (5-20 µM) decreased TNF-α, IL-1α, and IL-6 synthesis without affecting viability. In inflammatory co-cultures, HT (20 µM) preserved cell viability, increased mineralized matrix deposition, and reduced cytokine release compared to LPS-only controls.
Conclusions:
This study evidenced that HT can concurrently stimulate osteogenic differentiation and suppress inflammatory responses under ZA- and LPS-induced stress. HT emerges as a promising osteoimmunomodulatory adjuvant to enhance bone regeneration and mitigate bisphosphonate-related osteonecrosis.
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