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- 文献和实验
- 技术资料
- 库存:
1箱
- 供应商:
康宁生命科学 (吴江) 有限公司
- 现货状态:
现货
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1箱
Corning® 384孔底透黑色球型底低吸附微孔板(无菌,袋装,含盖, 10块/包, 50块/箱)的超低吸附表面有效抑制细胞附着,最大限度地减少蛋白质吸收,酶的活化和细胞活化。孔板表面没有细胞毒性和生物学惰性。总体积为90µL,建议工作体积为 20-90µL。用γ射线灭菌。可在同一块板中进行细胞培养和检测,适用于高通量3D细胞培养。
- 超低吸附微孔板具有共价结合的水凝胶层,可有效抑制细胞粘附
- 表面可最大限度降低蛋白吸附、酶活化和细胞激活
- 表面具有无细胞毒性、生物学惰性、不可降解等特点
- 经过γ-辐照灭菌
- 黑色微孔板具有低背景荧光及最小的光散射,有助于减少干扰
- 不透明板壁可避免孔间干扰
- 可用于顶读和底读酶标仪
- 大包装,10/袋
- 新颖的孔形状有助于在孔中央形成多细胞球
- 光学透明圆底,黑色不透明板壁
| 产品编号 | 3830 |
| 数量/包 | 10 /包 |
| 数量/箱 | 50 /箱 |
| 品牌 | Corning® |
| 平板规格 | 384孔 |
| 平板特性 | 标准 |
| 平板颜色 | 透明底黑色 |
| 孔底 | 圆形 |
| 孔底颜色 | 透明 |
| 孔容积 | 90 µL |
| 细胞生长面积 | 0.06 cm² (近似值) |
| 建议中等孔容积 | 20 - 90 µL |
| 建议工作容积 | 20-80 µL |
| 表面处理 | 超低吸附 |
| 无菌 | 是 |
| 含盖 | 是 |
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文献和实验该产品被引用文献
[1] Stock K, Estrada M F, Vidic S, et al. Capturing tumor complexity in vitro: Comparative analysis of 2D and 3D tumor models for drug discovery[J]. Scientific reports, 2016, 6(1): 28951.
[2] Sirenko O, Hancock M K, Hesley J, et al. Phenotypic characterization of toxic compound effects on liver spheroids derived from iPSC using confocal imaging and three-dimensional image analysis[J]. Assay and drug development technologies, 2016, 14(7): 381-394.
[3] Strong C E, Kundu S, Boutin M, et al. Functional brain region-specific neural spheroids for modeling neurological diseases and therapeutics screening[J]. bioRxiv, 2022: 2022.05. 04.490442.
[4] Basharat A, Rollison H E, Williams D P, et al. HepG2 (C3A) spheroids show higher sensitivity compared to HepaRG spheroids for drug-induced liver injury (DILI)[J]. Toxicology and Applied Pharmacology, 2020, 408: 115279.
[5] Sirenko O, Mitlo T, Hesley J, et al. High-content assays for characterizing the viability and morphology of 3D cancer spheroid cultures[J]. Assay and drug development technologies, 2015, 13(7): 402-414.
[2] Sirenko O, Hancock M K, Hesley J, et al. Phenotypic characterization of toxic compound effects on liver spheroids derived from iPSC using confocal imaging and three-dimensional image analysis[J]. Assay and drug development technologies, 2016, 14(7): 381-394.
[3] Strong C E, Kundu S, Boutin M, et al. Functional brain region-specific neural spheroids for modeling neurological diseases and therapeutics screening[J]. bioRxiv, 2022: 2022.05. 04.490442.
[4] Basharat A, Rollison H E, Williams D P, et al. HepG2 (C3A) spheroids show higher sensitivity compared to HepaRG spheroids for drug-induced liver injury (DILI)[J]. Toxicology and Applied Pharmacology, 2020, 408: 115279.
[5] Sirenko O, Mitlo T, Hesley J, et al. High-content assays for characterizing the viability and morphology of 3D cancer spheroid cultures[J]. Assay and drug development technologies, 2015, 13(7): 402-414.
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Corning® 384孔黑色/透明圆底超低吸附球形微孔板,大包装,10/袋,带盖,无菌
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