MesenCult™ 间充质基质细胞培养系统
您的高性能MSC分离、培养与分化解决方案
MesenCult™ 产品线作为一套全面集成的产品组合开发,旨在帮助间充质基质细胞(MSC)研究者标准化其培养体系,解决细胞培养基差异性带来的问题。从专为人源和小鼠MSC设计的全方位产品中选择,满足科学家从基础研究到转化研究的全流程需求。
MesenCult™ MSC 衍生、培养与分化工作流程
使用 MesenCult™ 实现 MSC 的衍生、培养、扩增、分化及冻存。MesenCult™产品线提供无动物成分、含人血小板裂解物及血清的多种培养基,适用于MSC研究。
为何使用 MesenCult™ ?
- 经物种优化的培养基配方相较传统及竞品培养基具有卓越性能。
- 提供全面且集成的产品组合,用于人源和小鼠间充质基质细胞的富集、扩增、定量(CFU-F检测)及分化。
- 标准化的培养基和培养条件可最大限度地减少差异性,提高实验之间的可重复性。
- 采用无动物成分、无血清配方分离、培养、冻存及分化人源MSC。
无动物成分
间充质干细胞(MSC)在细胞治疗领域具有广泛应用潜力,涉及组织工程、再生医学及作为基因治疗载体。胎牛血清(FBS)的全球供应有限,加之对移植细胞免疫排斥或疾病传播的担忧,使得无动物成分培养基在治疗级细胞扩增中成为理想选择。
MesenCult™-ACF培养基系列可优化源自原代组织(骨髓与脂肪)的人源MSC的分离、克隆生长、冻存、长期扩增及分化。这是目前唯一完全不含血清及其他人/动物源材料的完整集成培养系统。无动物成分培养基能最大限度减少实验差异,同时解决转化研究中接触动物源材料的安全隐患。
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探索更多人源MSC相关 MesenCult™ 产品
获取更多人源MSC研究产品,包括用于MSC向成骨细胞分化的 MesenCult™ 成骨分化试剂盒、向脂肪细胞分化的 MesenCult™ 脂肪分化试剂盒 ,以及用于CFU-F检测的 MesenCult™ 扩增试剂盒。
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科学资源
Key Applications
Serum-Free Culture of Human Bone-Marrow Derived Mesenchymal Stem Cells
Miwa H et al. (2012) Xeno-free proliferation of human bone marrow mesenchymal stem cells. Cytotechnology 64(3): 301-8
Serum-Free Culture of Human Adipose-Derived Mesenchymal Stem Cells
García-Contreras M et al. Therapeutic potential of human adipose-derived stem cells (ADSCs) from cancer patients: a pilot study. PLoS One. 9(11):e113288
Other Uses
3D Bioreactor Culture Systems for Mesenchymal Stem Cells
Cunha B et al. (2015) Exploring continuous and integrated strategies for the up- and downstream processing of human mesenchymal stem cells. J Biotechnol doi:10.1016/j.jbiotec.2015.02.023
Tan KY et al. (2015) Serum-free media formulations are cell line-specific and require optimization for microcarrier culture. Cytotherapy 17(8): 1152-65
Hervy M et al. (2014) Long term expansion of bone marrow-derived hMSCs on novel synthetic microcarriers in xeno-free, defined conditions. PLoS One. 9(3):e92120
Tan KY et al. (2015) Serum-free media formulations are cell line-specific and require optimization for microcarrier culture. Cytotherapy 17(8): 1152-65
Hervy M et al. (2014) Long term expansion of bone marrow-derived hMSCs on novel synthetic microcarriers in xeno-free, defined conditions. PLoS One. 9(3):e92120
Serum-Free Culture of Human Umbilical Cord-Derived Mesenchymal Stem Cells
Swamynathan P et al. (2014) Are serum-free and xeno-free culture conditions ideal for large scale clinical grade expansion of Wharton's jelly derived mesenchymal stem cells? A comparative study. Stem Cell Res Ther 5(4): 88
Chen G et al. (2014) Human Umbilical Cord-Derived Mesenchymal Stem Cells Do Not Undergo Malignant Transformation during Long-Term Culturing in Serum-Free Medium. PLoS One 9(6):e98565
Chen GC et al. (2014) Monitoring the biology stability of human umbilical cord-derived mesenchymal stem cells during long-term culture in serum-free medium. Cell Tissue Bank 15(4): 513-21
Zhou P et al. (2013) Serum-free culture of umbilical cord-derived mesenchymal stem cells. Zhongquo Shi Yan Xue Ye Xue Za Zhi 21(5): 1256-60
Chen G et al. (2014) Human Umbilical Cord-Derived Mesenchymal Stem Cells Do Not Undergo Malignant Transformation during Long-Term Culturing in Serum-Free Medium. PLoS One 9(6):e98565
Chen GC et al. (2014) Monitoring the biology stability of human umbilical cord-derived mesenchymal stem cells during long-term culture in serum-free medium. Cell Tissue Bank 15(4): 513-21
Zhou P et al. (2013) Serum-free culture of umbilical cord-derived mesenchymal stem cells. Zhongquo Shi Yan Xue Ye Xue Za Zhi 21(5): 1256-60
Serum-Free Culture of Human Placenta-Derived Mesenchymal Stem Cells
Zhu Y et al. (2015) Alteration of Histone Acetylation Pattern during Long-Term Serum-Free Culture Conditions of Human Fetal Placental Mesenchymal Stem Cells PLoS One 10(2): e0117068