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间充质干细胞归巢对骨组织再生的促进作用。

The Promotional Effect of Mesenchymal Stem Cell Homing on Bone Tissue Regeneration.

作者信息

Zhou Qi, Yang Chengzhe, Yang Pishan

机构信息

Department of Periodontology, School of Stomatology, Shandong University, Jinan, Shandong. China.

Shandong Provincial Key Laboratory of Oral Biomedicine, Jinan, Shandong, China.

出版信息

Curr Stem Cell Res Ther. 2017;12(5):365-376. doi: 10.2174/1574888X10666150211160604.


DOI:10.2174/1574888X10666150211160604
PMID:25670062
Abstract

UNLABELLED: Background & Objective: Bone defects caused by bone fractures, malformations, postoperation on tumor and even periodontitis have became serious clinical problems. Although the exact origin of osteoblast precursors is still obscure, mesenchymal stem cells (MSCs) that originate from local bone marrow, periosteum, endosteum, mineralized bone or systemic circulation play key roles in osteoblastic differentiation and secretion of multiple factors during spontaneous healing of bone trauma or defect. Substantial evidences have shown that systemically infused MSCs can home and participate in bone tissue repair or regeneration. Applying pharmacological molecules to promote MSC homing or to mobilize MSCs in bone marrow niche to increase the amount of MSCs in the peripheral blood has been demonstrated to be important strategies to enhance MSC homing. However, there are some systemic conditions which influence MSC homing. SUMMARY: In this paper, we review both systemic and local homing of MSCs during bone regeneration, and discuss strategies for enhancing the recruitment of MSCs to the injured bone tissues. Systemic influences of MSC homing are also discussed.

摘要

未标注:背景与目的:由骨折、畸形、肿瘤术后甚至牙周炎引起的骨缺损已成为严重的临床问题。尽管成骨细胞前体的确切来源仍不清楚,但源自局部骨髓、骨膜、骨内膜、矿化骨或全身循环的间充质干细胞(MSC)在骨创伤或缺损的自然愈合过程中,在成骨细胞分化和多种因子分泌中起关键作用。大量证据表明,全身输注的MSC可以归巢并参与骨组织修复或再生。应用药理学分子促进MSC归巢或动员骨髓微环境中的MSC以增加外周血中MSC的数量已被证明是增强MSC归巢的重要策略。然而,存在一些影响MSC归巢的全身状况。 总结:在本文中,我们综述了骨再生过程中MSC的全身和局部归巢,并讨论了增强MSC向损伤骨组织募集的策略。还讨论了MSC归巢的全身影响。

相似文献

[1]
The Promotional Effect of Mesenchymal Stem Cell Homing on Bone Tissue Regeneration.

Curr Stem Cell Res Ther. 2017

[2]
Bone Tissue Regeneration - Application of Mesenchymal Stem Cells and Cellular and Molecular Mechanisms.

Curr Stem Cell Res Ther. 2017

[3]
Role of mesenchymal stem cells in bone regeneration and fracture repair: a review.

Int Orthop. 2013-8-15

[4]
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[5]
Effects of Hyperlipidemia and Cardiovascular Diseases on Proliferation, Differentiation and Homing of Mesenchymal Stem Cells.

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[6]
Systemic and Local Administration of Allogeneic Bone Marrow-Derived Mesenchymal Stem Cells Promotes Fracture Healing in Rats.

Cell Transplant. 2015

[7]
Characterization of human ethmoid sinus mucosa derived mesenchymal stem cells (hESMSCs) and the application of hESMSCs cell sheets in bone regeneration.

Biomaterials. 2015-7-14

[8]
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Arch Oral Biol. 2014-11

[9]
Endothelial progenitors enhanced the osteogenic capacities of mesenchymal stem cells in vitro and in a rat alveolar bone defect model.

Arch Oral Biol. 2016-8

[10]
Mesenchymal stem cells: Identification, phenotypic characterization, biological properties and potential for regenerative medicine through biomaterial micro-engineering of their niche.

Methods. 2016-4-15

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J Pers Med. 2024-9-9

[3]
Role of mesenchymal stem cells in sepsis and their therapeutic potential in sepsis‑associated myopathy (Review).

Int J Mol Med. 2024-11

[4]
Single-Cell Microgel Encapsulation Improves the Therapeutic Efficacy of Mesenchymal Stem Cells in Treating Intervertebral Disc Degeneration via Inhibiting Pyroptosis.

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[5]
Advancements in the pathogenesis of hepatic osteodystrophy and the potential therapeutic of mesenchymal stromal cells.

Stem Cell Res Ther. 2023-12-12

[6]
Hydrogel viscoelasticity modulates migration and fusion of mesenchymal stem cell spheroids.

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[7]
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[8]
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[9]
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[10]
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