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- 保存条件:
−20°C
- 保质期:
根据瓶身LOT号查询
- 英文名:
Collagenase from Clostridium histolyticum
- 库存:
有现货
- 供应商:
浙江羽翔生物科技有限公司
- CAS号:
9001-12-1
- 规格:
100MG
属性
生物来源
Clostridium histolyticum
等级
reagent grade
产品线
Vetec™
表单
powder
比活
≥160 CDU/mg solid
技术
cell culture | mammalian: suitable
single cell analysis: suitable
储存温度
−20°C
一般描述
应用
适用于制备用于测序的单细胞悬浮液。
生化/生理作用
质量
单位定义
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文献和实验Single-cell analysis reveals immune modulation and metabolic switch in tumor-draining lymph nodes.
Lymph-node metastasis is a prognosis factor for poor clinical outcome of breast cancer patients. Currently, how breast cancer cells establish pre-metastatic niche in the tumor-draining lymph nodes (TDLNs) is still unclear. To address this question, we isolated heterogeneous cells including immune and stromal cells from naive lymph nodes (LNs) of the FVB/NJ mice and TDLNs of the MMTV-PyMT mice. Single-cell RNA sequencing was performed to investigate the transcriptome of the cells and various bioinformatics analyses were used to identify the altered pathways. Our results revealed several significant changes between naïve LNs and TDLNs. First, according to immunologic signature and pathway analysis, CD4+ and CD8 + T cells showed upregulated angiogenesis pathway genes and higher regulatory T (Treg)-associated genes while they demonstrated downregulation of interferon response and inflammatory response gene signatures, concurrently suggesting an immunosuppressive microenvironment in the TDLNs. Second, profiling of B cells showed down-regulation of marginal zone B lymphocytes in the TDLNs, which was validated by flow cytometric analysis. Third, we found the enhancement of oxidative phosphorylation pathway in the fibroblastic reticular cells (FRCs) of the MMTV-PyMT mice and the elevation of related genes including Prdx3, Ndufa4 and Uqcrb, suggesting massive ATP consumption and TCA cycle metabolism in the FRCs. Collectively, our results reveal the reprogramming of TDLNs during breast cancer progression at single-cell level in a spontaneous breast cancer model and suggest the changes in immune modulation and metabolic switch are key alterations in the preparation of pre-metastatic niche by breast cancer cells.
消化PC12是个错误观点,其一针对悬浮PC12,胰酶消化的效果不好证实,其二,我养的PC12,性质贴壁,用100%胰酶消化1小时,愣是没动静,细胞甚至不变圆。最后用力拍打才可以,但代价是细胞损伤非常大,不好恢复。其三,ATCC上明确建议用细胞刮勺刮取PC12,目前我改用刮勺,细胞传代后状态要比用胰酶消化的好很多。 4.再者关于1640和DMEM的问题,我个人观点,二者的主要区别在于DMEM含糖量高,神经细胞都喜欢这,另外1640含一些离子,是防止培养的细胞贴壁。1640一开始主要应用于单克
PBS洗两遍以彻底去除H2O2及血清的影响,只是这样一来细胞会丢失很多,该如何解决?丁香园midas的观点: 1.增加PLL的浓度,50-100ug/mg 2.没有必要把培养液去掉,并用PBS洗!H2O2及血清对MTT的影响好像 还没有见到相关报道。 丁香园liandchu的问题: 我培养的细胞是pc12细胞,这种细胞不好贴壁,我用多聚赖氨酸包被,但我不知道多大分子量多聚赖氨酸及浓度去包被效果好?, 丁香园luopeng的观点: 用赖氨酸包被培养板和培养瓶时,应该选用多聚左旋赖氨酸
固定钢网一端,用几毫升100 U/ml胶原酶洗涤碎块,然后用无菌的5ml注射器活塞碾磨碎块。捣烂直到所有的红色物质从组织中去除。再用几毫升100 U/ml胶原酶洗涤钢网。 11. 将钢网从培养皿中拿开,丢弃无色的黏附的被膜碎块。猛烈地吹打培养皿中的液体,将其转移至步骤7的50ml离心管里。用几毫升100 U/ml胶原酶洗涤培养皿后一同加入到离心管中(约有0.5%为树突细胞或者更少)。 12. 如果需要,即可用高密度的BSA离心。 附录
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