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Merck

900622

Sigma-Aldrich

明胶甲基丙烯酰基

gel strength 300 g Bloom, degree of substitution 60%

别名:

GelMa, 明胶甲基丙烯酰胺, 明胶甲基丙烯酸酯

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About This Item

线性分子式:
(C40H59N11O13)n
UNSPSC代码:
12352202
NACRES:
NA.23

$357.00


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质量水平

表单

powder

储存温度

2-8°C

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应用

Gelatin methacryloyl can be used to form cross-linked hydrogels for tissue engineering[1] and 3D printing[2][3][4]. It has been used for endothelial cell morphogenesis[5], cardiomyocytes[6], epidermal tissue[7], injectable tissue constructs[8], bone differentiation[9], and cartilage regeneration[10]. Gelatin methacryloyl has been explored in drug delivery applications in the form of microspheres[11] and hydrogels[12].

储存分类代码

11 - Combustible Solids

WGK

WGK 3

闪点(°F)

Not applicable

闪点(°C)

Not applicable


历史批次信息供参考:

分析证书(COA)

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Xin Zhao et al.
Advanced healthcare materials, 5(1), 108-118 (2015-04-17)
Natural hydrogels are promising scaffolds to engineer epidermis. Currently, natural hydrogels used to support epidermal regeneration are mainly collagen- or gelatin-based, which mimic the natural dermal extracellular matrix but often suffer from insufficient and uncontrollable mechanical and degradation properties. In
Anh H Nguyen et al.
Acta biomaterialia, 13, 101-110 (2014-12-03)
Gelatin has been commonly used as a delivery vehicle for various biomolecules for tissue engineering and regenerative medicine applications due to its simple fabrication methods, inherent electrostatic binding properties, and proteolytic degradability. Compared to traditional chemical cross-linking methods, such as
Kelly M C Tsang et al.
Advanced functional materials, 25(6), 977-986 (2015-09-04)
Hydrogels are often employed as temporary platforms for cell proliferation and tissue organization in vitro. Researchers have incorporated photodegradable moieties into synthetic polymeric hydrogels as a means of achieving spatiotemporal control over material properties. In this study protein-based photodegradable hydrogels
Chaenyung Cha et al.
Biomacromolecules, 15(1), 283-290 (2013-12-19)
Microfabrication technology provides a highly versatile platform for engineering hydrogels used in biomedical applications with high-resolution control and injectability. Herein, we present a strategy of microfluidics-assisted fabrication photo-cross-linkable gelatin microgels, coupled with providing protective silica hydrogel layer on the microgel
Jason W Nichol et al.
Biomaterials, 31(21), 5536-5544 (2010-04-27)
The cellular microenvironment plays an integral role in improving the function of microengineered tissues. Control of the microarchitecture in engineered tissues can be achieved through photopatterning of cell-laden hydrogels. However, despite high pattern fidelity of photopolymerizable hydrogels, many such materials

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Discussion of synthetic modifications to gelatin, improving the three-dimensional (3D) print resolution, and resulting material properties.

Professor Shrike Zhang (Harvard Medical School, USA) discusses advances in 3D-bioprinted tissue models for in vitro drug testing, reviews bioink selections, and provides application examples of 3D bioprinting in tissue model biofabrication.

实验方案

Frequently asked questions (FAQs) for KAPA SYBR® FAST One-Step qRT-PCR Kits.

相关内容

组织工程利用骨架、活细胞和生物活性分子通过模拟体内微环境来构建组织培养物,从而修复或替换受伤的组织。

Tissue engineering fabricates tissues cultures from scaffolds, living cells, and biologically active molecules by simulating the microenvironment of the body to repair or replace damaged tissue.

Questions

1–3 of 3 Questions  
  1. Is this product sterile or not, how to sterilize it?

    1 answer
    1. This product is not sterilized. Sterilization can be achieved by passing a solution through a 0.2 μm PES syringe filter.

      Loessner, D., Meinert, C., Kaemmerer, E. et al. Functionalization, preparation and use of cell-laden gelatin methacryloyl–based hydrogels as modular tissue culture platforms. Nat Protoc 11, 727–746 (2016). https://doi.org/10.1038/nprot.2016.037

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  2. Can you provide guidance on reconstituting the GelMA purchased from Sigma? There is no protocol available online.

    1 answer
    1. There is no protocol available for reconstituting or testing the solubility of the product 900622.
      Here is some information on solubility:
      1.Mix LAP in 3 ml of PBS or cell media at 60°C under stirring to create a 0.5% w/v LAP concentration.
      2.Mix until all LAP is dissolved. Add GelMA to the solution to create a 10% w/v concentration.
      3.Mix at 60°C under stirring until all GelMA is dissolved.

      Helpful?

  3. Sind in dem Produkt Antioxidantien/Inhibitoren wie etwa Topanol A enthalten oder handelt es sich um einen Reinstoff?

    1 answer
    1. The composition of this product is considered proprietary.

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