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甲基丙烯酰化明胶裂解液(GelMA裂解液)

甲基丙烯酰化明胶裂解液(GelMA裂解液)

甲基丙烯酰化明胶裂解液(GelMA裂解液);GelMA Lysis Buffer;

EFL-GM-LS-001

 

本产品为GelMA裂解试剂,按需配制溶液。

应用于GelMA水凝胶的裂解,细胞回收。

本品仅限于科研用途,请勿用于人体。


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产品介绍

产品简介

本产品在有效裂解甲基丙烯酰化明胶(GelMA)类生物水凝胶材料的前提下,可较好的保持水凝胶内细胞的生物学活性,裂解所获细胞可继续培养或进一步做蛋白及核酸提取等检测分析。


型号规格

图片1.jpg


储存条件

未拆封 :2-8℃有效期1年;新配溶液:-20℃有效期6个月。


适用产品

图片2.jpg


说明

搭配EFL-TCP-0024低粘附细胞培养板使用,可避免裂解胶块过程中出现细胞贴壁的问题。


产品说明书

  • 【产品说明书】EFL-GM-LS-001-GelMA裂解液

答疑

用户论文

Stiffness-Activated Stellate Cells Drive Pancreatic Cancer Liver Colonization via GMFG-TNS4 Signaling.Advanced Science.2026

Bioactive Magnesium Silicate Activating Myocardial Energy Metabolism For Infarcted Myocardium Repair.Exploration.2026

Small extracellular vesicles produced by homeostatic phenotype BMSC promote bone regeneration by transferring anti senescent factor JMJD6.Journal of Nanobiotechnology.2026

Microfluidic Perfusable Pathological Vasculature for Atherosclerosis Drug Screening.Research.2025

Piezo1 activation mediates stiffness-induced aortic medial calcification: Pharmacological evidence from agonist and antagonist studies.European Journal of Pharmacology.2026

3D Bio‐Printing and Dynamic Maturation of Heart Valve Organoids Made of Human Induced Pluripotent Stem Cell‐Derived Valve Interstitial Cells.Advanced Functional Materials.2025

Three-dimensional bioprinted hiHeps hepatorganoids with enhanced hepatic functions for the treatment of liver failure and promotion of liver regeneration.Bioactive Materials.2026

Silicate biomaterials-based multicellular scaffolds with specific cellular spatial distribution for infarcted myocardium repair.Bioactive Materials.2026

Inorganic Biomaterials Inducing Scaffolds Pre‐Neuralization for Infarcted Myocardium Repair.Advanced Materials.2025

Mechano-Iontronic Hydrogels Generating Biomimetic Endogenous Bioelectricity for Promoting Cartilage Regeneration.Advanced Materials.2025

Biomimetic piezoelectric hydrogel system for energy metabolism reprogramming in spinal cord injury repair.Theranostics.2025

Injectable scaffolds with a hierarchically porous structure and augmented paracrine activity for minimally invasive precision medicine.Materials Horizons.2025

Topical delivery of cultivated limbal stem cells via porous photocurable hydrogel: A noninvasive, convenient, and efficient stem cells delivery strategy for limbal stem cell deficiency.Journal of Controlled Release.2025

3D-printed nano-Si3N4 composite scaffolds loaded with BMSCs microgels promote bone regeneration.Journal of Materials Science & Technology.2025

The crystallization properties of antifreeze GelMA hydrogel and its application in cryopreservation of tissue‐engineered skin constructs.Journal of Biomedical Materials Research Part B: Applied Biomaterials.2024

Functional cobalt-doped hydrogel scaffoldenhances concurrent vascularizationand neurogenesis.Journal of Nanobiotechnology .2025

One-step biofabrication of liquid core—GelMa shellmicrobeads for in situ hollow cell ball self-assembly.Regenerative Biomaterials.2024

Immunomodulatory multicellular scaffolds for tendon-to-bone regeneration.Science Advances.2024

Bioprinting of inorganic-biomaterial/neural-stem-cell constructs for multiple tissue regeneration and functional recovery.National Science Review.2024

Photo-crosslinked bioactive BG/BMSCs@GelMA hydrogels for bone-defect repairs.Materials Today Bio.2023

3D bioprinting of calcium molybdate nanoparticles-containing immunomodulatory bioinks for hair regrowth.Nano Today.2023

Multicellular Bioprinting of Biomimetic Inks for Tendon-to-Bone Regeneration.Advanced Science.2023

Three-in-one customized bioink for islet organoid: GelMA/ECM/PRP orchestrate pro-angiogenic and immunoregulatory function.Colloids and Surfaces B: Biointerfaces.2023

Formation theory and printability of photocurable hydrogel for 3D bioprinting.Advanced Functional Materials.2023

3D bioprinted tumor model with extracellular matrix enhanced bioinks for nanoparticle evaluation.Biofabrication.2022

Bioprinting EphrinB2-Modified Dental Pulp Stem Cells with Enhanced Osteogenic Capacity for Alveolar Bone Engineering.Tissue Engineering Part A.2023

Analysis of the potential role of photocurable hydrogel in patient-derived glioblastoma organoid culture through RNA sequencing.Biomaterials Science.2022

Low-intensity pulsed ultrasound promotes cell viability and inhibits apoptosis of H9C2 cardiomyocytes in 3D bioprinting scaffolds via PI3K-Akt and ERK1/2 pathways.Journal of Biomaterials Applications.2022

One-Step Generation of Porous GelMA Microgels by Droplet-Based Chaotic Advection Effect.Advanced Materials Technologies.2022

Stiffness of photocrosslinkable gelatin hydrogel influences nucleus pulposus cell propertiesin vitro.Journal of Cellular and Molecular Medicine.2021

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