BioLamina LN111-LN521/MX521/CT521 人重组层粘连蛋白Human recombinant laminin
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BioLamina LN111-LN521/MX521/CT

521 人重组层粘连蛋白Human recombinant laminin
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  • 2025年12月24日
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    • 详细信息
    • 用户评价
    • 文献和实验
    • 技术资料
    • 英文名

      Biolaminin, Human recombinant laminin

    • 保质期

      3年

    • 供应商

      上海曼博生物医药科技有限公司

    • 保存条件

      -20℃到-80℃

    Biolaminin——人重组层粘连蛋白

    Laminin是在天然干细胞环境中表达的关键蛋白,存在于人体众多组织与细胞环境。

    Biolaminin是由瑞典BioLamina公司开发的、全长的、人重组层粘连蛋白产品,可真实模拟重塑生物相关的培养环境,特别是LN521亚型,用于人类多能干细胞的干性维持及自我更新,临床级产品MX521及CT521,已正式发行,可用于干细胞临床研究。真实的细胞培养环境允许更一致和可靠的细胞反应,提高细胞功能。不同亚型的人重组层粘连蛋白Biolaminin产品可用于人类多能干细胞的干性维持扩增、向特定细胞类型分化及维持等各类研究。BioLamina开发了从科研级别(RUO)到细胞治疗级别(CTG)等不同等级产品,以满足科学家对基础科学研究、推进细胞疗法以及药物开发制造模型等多样需求。

    选购指南

    曼博生物-BioLamina选购清单

    Biolaminin产品特点

    1.天然的、人全长层粘连蛋白:

    • 为干细胞重建生物相关生长环境,细胞可快速增殖

    2.成分限定、无异种动物源:

    • 重组合成蛋白,批次间一致性强,可靠的重复性
    • 利于标准化多能基因表达谱,更大程度地提高遗传稳定性,并激活相关的细胞信号通路,确保均匀的细胞反应和提高细胞功能

    3. 简单可控的单细胞传代培养:

    • 无预涂层PLL/POL等,PSC培养不需要Rocki (Y-27632),无自发分化,减少工作量

    4. 无需周末换液(Weekend-free):

    • 减少工作量,降低培养成本

    5. 科研级到临床级的无缝连接:

    • 提供从早期研究使用的LN521,到临床使用的细胞治疗级CT521

    Biolaminin521科研级到临床治疗级

    Biolaminin产品特点

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      图标文献和实验
      该产品被引用文献

      1-A Chemically Defined Hydrogel for Human Liver Organoid Culture

      Shicheng Ye 1, Jochem W B Boeter 1, Marko Mihajlovic 2, Frank G van Steenbeek 1, Monique E van Wolferen 1, Loes A Oosterhoff 1, Ary Marsee 1, Massimiliano Caiazzo 3, Luc J W van der Laan 4, Louis C Penning 1, Tina Vermonden 5, Bart Spee 1, Kerstin Schneeberger 1

      BioLamina LN111-LN521/MX521/CTBioLamina LN111-LN521/MX521/CTBioLamina LN111-LN521/MX521/CT

       

      2-Protocol for automated production of human stem cell derived liver spheres

      Jose Meseguer-Ripolles 1, Alvile Kasarinaite 1, Baltasar Lucendo-Villarin 1, David C Hay 1

      BioLamina LN111-LN521/MX521/CTBioLamina LN111-LN521/MX521/CT

       

      3-Functional characterization of human pluripotent stem cell-derived cortical networks differentiated on laminin-521 substrate: comparison to rat cortical cultures

      Tanja Hyvärinen1, Anu Hyysalo1,2, Fikret Emre Kapucu3,4, LauraAarnos1, AndreyVinogradov1, Stephen J. Eglen5, LauraYlä-Outinen1 & Susanna Narkilahti 1*

      BioLamina LN111-LN521/MX521/CTBioLamina LN111-LN521/MX521/CT

       

      4-Culturing functional pancreatic islets on α5-laminins and curative transplantation to diabetic mice

      Kristmundur Sigmundsson 1, Juha R M Ojala 2, Miina K Öhman 1, Anne-May Österholm 3, Aida Moreno-Moral 1, Anna Domogatskaya 2, Li Yen Chong 1, Yang Sun 1, Xiaoran Chai 1, Joseph A M Steele 4, Benjamin George 1, Manuel Patarroyo 5, Ann-Sofie Nilsson 2, Sergey Rodin 2, Sujoy Ghosh 1, Molly M Stevens 6, Enrico Petretto 1, Karl Tryggvason

      BioLamina LN111-LN521/MX521/CTBioLamina LN111-LN521/MX521/CT

       

      5-Laminin 521 Stabilizes the Pluripotency Expression Pattern of Human Embryonic Stem Cells Initially Derived on Feeder Cells

      Halima Albalushi 1,2,3, Magdalena Kurek 1,2, Leif Karlsson 2, Luise Landreh 1,2, Kristín Rós Kjartansdóttir 2, Olle Söder 2, Outi Hovatta 4, Jan-Bernd Stukenborg 1,2

      BioLamina LN111-LN521/MX521/CTBioLamina LN111-LN521/MX521/CT

       

      人类胚胎干细胞hESC/诱导性多功能干细胞iPSC

      [1] Establishment of a human induced pluripotent stem cell line (TAUi008-A) derived from a multiple sclerosis patient. Lotila et al., Stem Cell Research, 2022

      [2] Multiple therapeutic effects of human neural stem cells derived from induced pluripotent stem cells in a rat model of post-traumatic syringomyelia. Xu et al., EBio Medicine. 2022

      [3] Generation of human induced pluripotent stem cell (iPSC) lines (UUMCBi001-A, UUMCBi002-A) from two healthy donors. Vasylovska et al., Stem Cell Research. 2021

      [4] Generation of a bank of clinical-grade, HLA-homozygous iPSC lines with high coverage of the Spanish population. Kuebler et al., Stem Cell Research & Therapy. 2023 

      动物干细胞Animal SC

      [1] Laminin-511 but Not -332, -111, or -411 Enables Mouse Embryonic Stem Cell Self-Renewal In Vitro. Domogatskaya et al., Stem Cells. 2008

      [2] The ability of inner-cell-mass cells to self-renew as embryonic stem cells is acquired following epiblast specification. Boroviak et al., Nat Cell Biol. 2014 

      [3] Enhanced reseeding of decellularized rodent lungs with mouse embryonic stem cells. Lecht et al., Biomaterials. 2013:

      神经细胞Neural cells

      [1] Single-cell transcriptomics reveals correct developmental dynamics and high-quality midbrain cell types by improved hESC differentiation. Nishimura et al., Stem Cell Reports. 2023

      [2] Niche-derived laminin-511 promotes midbrain dopaminergic neuron survival and differentiation through YAP. Zhang et al., Sci Signal. 2017

      [3] Predictive Markers Guide Differentiation to Improve Graft Outcome in Clinical Translation of hESC-Based Therapy for Parkinson’s Disease. Kirkeby et al., Cell Stem Cell. 2016

      [4] Preclinical quality, safety, and efficacy of a human embryonic stem cell-derived product for the treatment of Parkinson’s disease. Kirkeby et al., Clinical and Translational Report. 2023

      [5] A protocol for the differentiation of human embryonic stem cells into midbrain dopaminergic neurons. Nishimura et al., STAR Protocols. 2023

       

      内皮细胞、胰腺细胞、肝脏细胞、造血干细胞及血细胞、心肌细胞等更多领域应用文献请联系上海曼博生物!

      研选
      BioLamina LN111-LN521/MX521/CT521 人重组层粘连蛋白Human recombinant laminin
      ¥4000¥3000买5赠1