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If you decide to place an order during this period, we reserve the right to adjust the price based on the evolving situation. We understand that market changes may cause inconvenience. We will negotiate with you if there’s a significant price fluctuation due to tariff policy changes before the order’s actual delivery, and in such cases we may adjust or cancel the order as necessary.

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主要文件

安全信息

901960

Sigma-Aldrich

Cellulose-Alginate bioink

suitable for 3D bioprinting applications

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100 μG
¥4,409.51

¥4,409.51


预计发货时间2025年8月27日详情



选择尺寸

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100 μG
¥4,409.51

About This Item

UNSPSC代码:
12352201
NACRES:
NA.23

¥4,409.51


预计发货时间2025年8月27日详情


表单

viscous liquid

杂质

<25 EU/mL Endotoxin

颜色

white

pH值(酸碱度)

6.5-7

密度

1.050 g/mL

应用

3D bioprinting

储存温度

2-8°C

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manufacturer/tradename

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description

2 polished windows

description

2 polished windows

description

2 polished windows

description

2 polished windows

parameter

200-2,500 nm spectral range

parameter

200-2,500 nm spectral range

parameter

200-2500 nm spectral range

parameter

260-2,500 nm spectral range

technique(s)

UV/Vis spectroscopy: suitable

technique(s)

UV/Vis spectroscopy: suitable, photometry: suitable

technique(s)

UV/Vis spectroscopy: suitable, photometry: suitable

technique(s)

UV/Vis spectroscopy: suitable, photometry: suitable

H × W × D

45 mm × 12.5 mm × 12.5 mm

H × W × D

45 mm × 12.5 mm × 12.5 mm

H × W × D

45 mm × 12.5 mm × 12.5 mm

H × W × D

45 mm × 12.5 mm × 12.5 mm

一般描述

3D bioprinting is the printing of biocompatible materials, cells, growth factors, and the other supporting materials necessary to yield functional complex living tissues. 3D bioprinting has been used to generate several different types of tissue such as skin, bone, vascular grafts, and cartilage structures. Based upon the desired properties, different materials and formulations can be used to generate both hard and soft tissues. While several 3D printing methods exist, due to the sensitivity of the materials used, extrusion-based methods with bioinks are most commonly employed.

Material comes prepackaged in syringe with 5ml of product.

应用

Cellulose-Alginate bioink, a biocompatible polymer, can be used as a hydrogel for 3D printing in tissue engineering applications. It can be used in the fabrication of nanofibrillar suture coatings due to its cell viability and suturing performance.[1][2][3][4]
Due to its low cost, biocompatibility, and facile gelation, alginate is one of the most common components of commercial bioinks.[5] Alginate is a naturally-occurring polysaccharide, obtained from the cell walls of brown algae, that is composed of guluronic and mannuronic acid. While alginate forms hydrogels under mild conditions, nanocellulose is added in this formulation to improve printability and final structure properties.[6] Cellulose-Alginate acellular bioink is provided as a ready-to-print, low endotoxin, and aseptic formulation in 5 mL syringes.

法律信息

Product of Cellink

储存分类代码

12 - Non Combustible Liquids

WGK

WGK 1

闪点(°F)

Not applicable

闪点(°C)

Not applicable

法规信息

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    Nanofibrillar cellulose-alginate hydrogel coated surgical sutures as cell-carrier systems
    Lauren P, et al.
    PLoS ONE, 12(8), e0183487-e0183487 (2017)
    Rheological studies on nanocrystalline cellulose/alginate suspensions
    Junior EAP, et al.
    Journal of Molecular Liquids, 277(8), 418-423 (2019)
    Nanocellulosic materials as bioinks for 3D bioprinting
    Piras CC, et al.
    Biomaterials Science, 5(10), 1988-1992 (2017)
    A 3D-printable TEMPO-oxidized bacterial cellulose/alginate hydrogel with enhanced stability via nanoclay incorporation
    Wei J, et al.
    Carbohydrate Polymers, 238, 116207-116207 (2020)
    Carmen C Piras et al.
    Biomaterials science, 5(10), 1988-1992 (2017-08-23)
    3D bioprinting is a new developing technology with lots of promise in tissue engineering and regenerative medicine. Being biocompatible, biodegradable, renewable and cost-effective, cellulosic nanomaterials have recently captured the attention of researchers due to their applicability as inks for 3D

    商品

    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.

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

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