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Tongpai (Shanghai) Biotechnology Co., Ltd

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    2645393381@qq.com

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    18817874195 18817753126

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    Room 111, Building 6, No. 1088 Fugang Road, Fengxian District, Shanghai

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SNU-1 cells (liver cancer cell SNU-1 passage cells)

NegotiableUpdate on 02/20
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SNU-1 cells (liver cancer cell SNU-1 passage cells) undergo strict aseptic operation, identification, and can be passaged for a good number of times. Attached are culture operation instructions and precautions. $r $n (Source of liver cancer cells, instruction manual for SNU-1 cells, culture conditions for SNU-1 cells, precautions, as well as teacher's questions and solutions to customer feedback on difficult issues during the cultivation process to help you maintain good cells. Free after-sales service can be applied for during the after-sales period)
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SNU-1 cells (liver cancer cell SNU-1 passage cells)

Professional cell biology technicians provide high-quality cell products with professional technical support; On the premise of high quality, pollution-free, and good condition, we offer discounted prices to the vast number of researchers;

If there are any unclear or uncertain issues with SNU-1 cells, please send a message or leave feedback, and you will receive professional and accurate advice, guidance, and responses;

Mouse TM3 cells, mouse stromal cells

Human WPMY-1 cells, human normal prostate stromal immortalized cells

Mouse MC3T3-E1 Subclone 14 Cells Subclonial Cells of Mouse Craniocerebral Bone Cells

Mouse 3T3-L1 cells Mouse embryonic fibroblasts

MG-63 cell line: adherent cell culture medium, serum: 90% McCoy's 5A, 10% FBS

MFC cell line: adherent cell culture medium, serum: 90% RPMI-1640, 10% FBS

[MLFC cell line: adherent cell culture medium, serum: 90% DMEM high glucose, 10% FBS]


SNU-1 cells (liver cancer cell SNU-1 passage cells)

Provided by Tongpai Biotechnology (Bone Deficiency Model):

We provide the following bone defect models for customers to conduct preclinical drug research:

Skull defect model, long (such as femur) bone defect model, maxillofacial bone defect model.

Detection methods: biomechanical testing, physiological bone turnover marker detection、 X-ray photography analysis, bone density detection, tissue morphology analysis, and histopathological analysis.

Although no animal model can accurately reproduce the physiology, biology, structure, and biomechanics of human bones

However, researchers have developed various animal models to study the effects of bone substitutes, scaffolds, biologics, or cellular products on bone regeneration. Rodent models have been widely used and have made significant contributions to related research.


SNU-1 cells (liver cancer cells SNU-1 cells)

Online publication of articles related to SNU-1 cell culture technology is not related to the product. Please consult the administrator for specific questions regarding the corresponding sources, instructions, and information requests for the required cells;

Serum free media refers to a medium that does not require the addition of serum in cell culture, but may require the addition of growth factors or cytokines in certain applications. The serum-free medium contains the main components of serum, such as adhesion factors, growth factors, essential nutrients, and hormones, which can reduce the adverse factors caused by serum and make the conditions for cell culture more stable.

MLE 12 cell line: adherent cell culture medium, serum: 90% RPMI-1640, 10% FBS

MLFC cell line: adherent cell culture medium, serum: 90% DMEM high glucose, 10% FBS

Common issues in cell culture:

1. How many stable passages can 661w cell lines be passaged?

2. How often do JEG3 cells divide?

3. Is C2C12 mouse cardiomyocytes easy to maintain?

4. Do SH-SY5Y cells grow slowly?

5. During the cryopreservation process of NK92MI cells, centrifugation is also involved, and it is not advisable to blow and scatter them too much. Is the entire cell mass frozen?

Human REH cells and acute non-B non-T lymphocytic leukemia cells

Mouse SV40 MES 13 cells Mouse glomerular mesangial cells

H1299 human non-small cell lung cancer cells

Human SW579 cells and human thyroid squamous cell carcinoma cells

Mouse CHO-K1 cells, hamster ovary cells

Human MV522 cells and human lung cancer cells

Human ARO cells and human thyroid cancer cells

Rat RIN-m5F cells, rat insulinoma epithelial cells

Human BT474 cell Human breast cancer cell

H1975 human non-small cell lung adenocarcinoma cells

Mouse OP9 cells, mouse cranial fibroblasts

Mouse mMSC cells Mouse bone marrow mesenchymal stem cells

Human HT29 cells, human colorectal adenocarcinoma cells

Human WiDr cells and colorectal cancer cells

Human SW982 cells and human synovial sarcoma cells

Human Caco-2 cells and human colorectal adenocarcinoma cells

Human hFOB 1.19 cells transfected with human SV40 into osteoblasts

Human 293FT cells and human embryonic kidney cells

Human HUH7 cells and human liver cancer cells

Human MDA-MB-453 cells Human breast cancer cells