甘氨酰胺促进纳米复合物的形成,并与骨形态发生蛋白 2 起协同作用,促进体外成骨细胞分化和小鼠髑髅缺损模型中的骨再生。

IF 4.4 4区 医学 Q2 CELL & TISSUE ENGINEERING Tissue engineering and regenerative medicine Pub Date : 2024-10-01 Epub Date: 2024-07-02 DOI:10.1007/s13770-024-00657-x
Sang-Hyeon Nam, Ju Ang Kim, Soomin Lim, Su Jeong Lee, Chun-Ho Kim, Jong-Sup Bae, Yong Chool Boo, Young-Jin Kim, Eui Kyun Park
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引用次数: 0

摘要

背景:本研究旨在确定有利于形成细胞可吸收纳米复合物的甘氨酸类似物,它们与 BMP2 结合可促进胶原蛋白合成和随后的成骨过程,从而改善骨再生:方法:评估甘氨酸及其衍生物在成骨条件下或与 BMP2 结合对 MC3T3-E1 细胞和人骨髓间充质干细胞(BMSCs)成骨分化的影响。成骨分化通过碱性磷酸酶染色和实时定量聚合酶链反应(RT-qPCR)进行评估。纳米复合物的形成通过扫描电子显微镜、圆二色光谱和紫外可见光谱进行了检测。使用小鼠腓骨缺损模型验证了体内成骨效应,并通过微型计算机断层扫描和组织形态分析评估了骨再生效果:结果:结合成骨培养基(OSM),甘氨酸、甘氨酸甲酯和甘氨酰胺能显著促进胶原蛋白合成和 ALP 活性。GA 是成骨细胞分化标记基因最有效的诱导剂。将 GA 与 BMP2 结合使用可协同刺激两种细胞系的 ALP 活性和成骨细胞标记基因的表达。GA 很容易形成纳米复合物,通过强大的静电相互作用促进细胞吸收。在体内腓骨缺损小鼠模型中,与其他组合相比,GA 和 BMP2 组合显示出更强的骨量、骨量/组织体积比、骨小梁数量和成熟骨形成能力:结论:GA和BMP2通过纳米复合物的形成协同促进体外成骨细胞分化和体内骨再生。这种组合为骨缺损患者带来了治疗希望,展示了其临床干预的潜力。
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Glycinamide Facilitates Nanocomplex Formation and Functions Synergistically with Bone Morphogenetic Protein 2 to Promote Osteoblast Differentiation In Vitro and Bone Regeneration in a Mouse Calvarial Defect Model.

Background: This study aimed to identify glycine analogs conducive to the formation of cell-absorbable nanocomplexes, enhancing collagen synthesis and subsequent osteogenesis in combination with BMP2 for improved bone regeneration.

Methods: Glycine and its derivatives were assessed for their effects on osteogenic differentiation in MC3T3-E1 cells and human bone marrow mesenchymal stem cells (BMSCs) under osteogenic conditions or with BMP2. Osteogenic differentiation was assessed through alkaline phosphatase staining and real-time quantitative polymerase chain reaction (RT-qPCR). Nanocomplex formation was examined via scanning electron microscopy, circular dichroism, and ultraviolet-visible spectroscopy. In vivo osteogenic effects were validated using a mouse calvarial defect model, and bone regeneration was evaluated through micro-computed tomography and histomorphometric analysis.

Results: Glycine, glycine methyl ester, and glycinamide significantly enhanced collagen synthesis and ALP activity in conjunction with an osteogenic medium (OSM). GA emerged as the most effective inducer of osteoblast differentiation marker genes. Combining GA with BMP2 synergistically stimulated ALP activity and the expression of osteoblast markers in both cell lines. GA readily formed nanocomplexes, facilitating cellular uptake through strong electrostatic interactions. In an in vivo calvarial defect mouse model, the GA and BMP2 combination demonstrated enhanced bone volume, bone volume/tissue volume ratio, trabecular numbers, and mature bone formation compared to other combinations.

Conclusion: GA and BMP2 synergistically promoted in vitro osteoblast differentiation and in vivo bone regeneration through nanocomplex formation. This combination holds therapeutic promise for individuals with bone defects, showcasing its potential for clinical intervention.

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来源期刊
Tissue engineering and regenerative medicine
Tissue engineering and regenerative medicine CELL & TISSUE ENGINEERING-ENGINEERING, BIOMEDICAL
CiteScore
6.80
自引率
5.60%
发文量
83
审稿时长
6-12 weeks
期刊介绍: Tissue Engineering and Regenerative Medicine (Tissue Eng Regen Med, TERM), the official journal of the Korean Tissue Engineering and Regenerative Medicine Society, is a publication dedicated to providing research- based solutions to issues related to human diseases. This journal publishes articles that report substantial information and original findings on tissue engineering, medical biomaterials, cells therapy, stem cell biology and regenerative medicine.
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