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        Guangxi cobra venom-derived NGF promotes the osteogenic and therapeutic effects of porous BCP ceramic

        Pan Jin,Fuqiang Yin,Li Huang,Li Zheng,Jinmin Zhao,XINGDONG ZHANG 생화학분자생물학회 2017 Experimental and molecular medicine Vol.49 No.-

        Neuro-osteological interactions have an important role in the regulation of bone metabolism and regeneration. Neuropeptides combined with porous biphasic calcium phosphates (BCP) using protein adsorption may contribute to the acceleration of bone formation. In the present study, we investigated the effect of BCP combined with nerve growth factor (NGF) on the growth of osteoblasts in vitro and the combinational therapeutic effect on the repair of calvarial defects in vivo. NGF was separated and purified from Chinese cobra venom using a simplified three-step chromatography method. BCP combined with NGF exerted a potent effect on osteoblast differentiation, as evidenced by enhanced cell proliferation, increased ALP activity and the upregulated expression of osteogenesis-related genes and proteins. Further, combinational therapy with BCP and NGF improved calvarial regeneration, which was superior to treatment with therapy alone, as observed using imageological and morphological examination and histological and immunohistochemical staining. The results confirmed the effect of neuro-osteological interactions through combinatorial treatment with NGF and BCP to promote osteogenesis and bone formation, which may provide an effective and economical strategy for clinical application.

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        Stimulating Effect of a Novel Synthesized Sulfonamido-Based Gallate ZXHA-TC on Primary Osteoblasts

        PAN JIN,Li Zheng,Liang Liao,Xiao Lin,Qinggong Guo,Cui-Wu Lin,Huayu Wu,Jinmin Zhao 연세대학교의과대학 2015 Yonsei medical journal Vol.56 No.3

        Purpose: This study is intended to investigate the effects of plants or plant-derived antioxidants on prevention of osteoporosis through the maintenance of reactive oxygenspecies (ROS) at a favorable level. Materials and Methods: In this study, a novel antioxidant, namely 3,4,5-Trihydroxy-N-[4-(5-hydroxy-6-methoxy-pyrimidin-4-ylsulfamoyl)-phenyl]-benzamide (ZXHA-TC) was synthesized from gallic acid and sulfadimoxine. Its effect on osteoblast metabolism was investigated via the detection of cell proliferation, cell viability, production of ROS, and expression of osteogenic-specific genes including runt-related transcription factor 2 (RUNX2), bone sialoprotein (BSP), osteocalcin (OCN), alpha-1 type I collagen (COL1A1), and osteogenic-related proteins after treatment for 2, 4, and 6 days respectively. Results: The results showed that ZXHA-TC has a stimulating effect on the proliferation and osteogenic differentiation of primary osteoblasts by promoting cell proliferation, cell viability, and the expression of genes BSP and OCN. Productions of bone matrix and mineralization were also increased by ZXHA-TC treatment as a result of up-regulationof COL1A1 and alkaline phosphatase (ALP) at the early stage and down-regulationof both genes subsequently. A range of 6.25×10-3 μg/mL to 6.25×10-1 μg/mL is the recommended dose for ZXHA-TC, within which 6.25×10-2 μg/mL showed the best performance. Conclusion: This study may hold promise for the development of a novel agent for the treatment of osteoporosis.

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