Human Induced Neural Stem Cells (HiNSC-DLK)

Cat. No.
T0441
Unit
1x106 cells / 1.0 ml
Price
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Cat. No. T0441
Name Human Induced Neural Stem Cells (HiNSC-DLK)
Description

A key feature of these Human Induced Neural Stem Cells (HiNSC-DLK) is their robust differentiation into TUJ1-positive neurons within just four days, irrespective of the media composition. This rapid differentiation makes them ideal for use in innervated co-cultures. Furthemore, cells demonstrate the ability to migrate, engraft, and contribute to both the central and peripheral nervous systems thereby making them a useful 3D human brain model.

Organism Human (H. sapiens)
Tissue Brain
Growth Properties Adherent, spherical clumps that attach to feeder layer
Unit 1x106 cells / 1.0 ml
Storage Condition Vapor phase of liquid nitrogen, or below -130°C.
Shipping Conditions Ship with dry ice.
Product Format Frozen
Intended Use This product is intended for laboratory research use only. It is not intended for any animal or human therapeutic use, any human or animal consumption, or any diagnostic use.
BioSafety II
Certificate of Analysis For batch-specific test results, refer to the applicable certificate of analysis that can be found at www.abmgood.com.
Growth Conditions

hiNSC cultures should be grown on a feeder layer of mouse embryonic fibroblasts (MEFs) inactivated by Mitomycin C for three hours. PriCoat™ T25 Flasks (G299) or Applied Cell Extracellular Matrix (G422) are recommended for optimal cell culture. PriGrow X Series Medium for T0441 (TM0441) + 20% TM0441-S + 1% Glutamax + 0.1 mM β-mercaptoethanol + 1% Penicillin/Streptomycin Solution (G255) + 20ng/mL Basic Fibroblast Growth Factor (spike 50mL aliquots day of/day before use),  37.0°C, 5% CO₂.

Note: Allow feeder layer to become 90-100% confluent prior to inactivation; attachment of cells improves with a more confluent feeder layer. The population doubling time for this cell line is 4-7 days which can extend to 14 days in certain cases. As long colony formation and adherence is noted in the cell line, cells are viable. After 14 days, MEFs will detach from surface. 

Unpacking and Storage Instructions

1. Visually examine the packaging containers for signs of leakage or breakage.

2. Immediately transfer frozen cells from dry ice packaging to a temperature below -130°C, preferably in liquid nitrogen vapor phase storage, until ready for use.

To ensure the highest level of viability, thaw the vial and initiate culture as soon as possible upon receipt. If continued storage is desired, the vial should only be stored below -130°C or in liquid nitrogen vapor phase. Do not store at -70°C, as it will result in loss of viability.


Thawing Protocol

1. Thaw cells quickly in a 37°C water bath while agitating gently (maximum 2 minutes). The vial cap should be kept above the water level to minimize the risk of contamination.

2. Decontaminate the vial by spraying and wiping the exterior of the vial with 70% ethanol. From this point onwards, all operations should be strictly carried out inside a biological safety cabinet using aseptic conditions.

3. Transfer the cell suspension into a 15ml sterile conical tube containing 5ml of pre-warmed, complete growth media. Centrifuge cells at 250xg (~1500rpm) for 2 minutes.

4. Aspirate the supernatant without disturbing the cell pellet. Re-suspend the cell pellet in the recommended pre-warmed, complete growth media and dispense into a T25 culture flask.

5. Incubate the cells at the recommended conditions.

Subculture Protocol

Cells are sensitive to trypsin; TrypLE Express is recommended for all subculture procedures. Cell scraper may be required. 

Volumes given below are for a T75 flask; proportionally increase or decrease the volume as required per culture vessel size. Subculture cells once the culture vessel is 80% confluent.

1. Aspirate the culture media, and add 2-3ml of pre-warmed TrypLE Express to the culture vessel.

2. Observe the cells under a microscope to confirm detachment (typically within 1-1.5 minutes). Cells that are difficult to detach can be put in 37°C, for several minutes to facilitate detachment.

3. Neutralize TrypLE Express by adding an equal volume of the complete growth media into the culture vessel.

4. Transfer the culture suspension into a sterile centrifuge tube, and centrifuge at 125xg for 5 minutes. The actual centrifuge duration and speed may vary depending on the cell type.

5. Aspirate the supernatant, and re-suspend the pellet with pre-warmed fresh complete growth media. Add appropriate aliquots of the cell suspension to new culture vessels, as desired.

6. Incubate the cells at the recommended conditions.

Cryopreservation

50% complete growth media with FGF + 45% HI-FBS + 5% DMSO


Population Doubling Time (h) 4-7 days (up to 14 days; past 14 days MEFs will detach from plate)
Expression

OCT4, SOX2, NANOG, SSEA4, TRA-1-81, PAX6, SOX1, NESTIN, CD133, βIII-tubulin (TUJ1), glial fibrillary acidic protein (GFAP), GEPHYRIN, VGAT, PSD95, VGLUT1, SYNAPTOPHYSIN, PAN-NAV, S100β, O4, MBP.

Warranty abm warrants that cell lines shall be viable upon initiation of culture for a period of thirty (30) days after shipment and that they shall meet the specifications on the applicable abm Material Product Information sheet, certificate of analysis, and/or catalog description. Such thirty (30) day period is referred to herein as the "Warranty Period”.
Disclaimer

1. Sale of this item is subjected to the completion of a Material Transfer Agreement (MTA) by the purchasing individual/institution for each order. If you have any questions regarding this, please contact us at licensing@abmgood.com.

2. All test parameters provided in the CoA are conducted using abm's standardized culture system and procedures. The stated values may vary under the end-user's culture conditions. Please verify that the product is suitable for your studies by referencing published papers or ordering RNA (0.5 μg, Cat.# C207, $450.00) or cell lysate (100 μg, Cat.# C206, $600.00) to perform preliminary experiments, or alternatively use our Gene Expression Assay Service (Cat# C138). All sales are final.

3. We recommend live cell shipments for ease of cell transfer and this option can be requested at the time of ordering. Please note that the end-user will need to evaluate the feasibility of live cell shipment by taking into account the final destination's temperature variation and its geographical location. In addition, we thoroughly test our cell lines for freeze-thaw recovery. If frozen cells were received and not recovered in your lab under the exact, specified conditions (using recommended culture vessel, media, additional supplements, and atmospheric conditions), a live cell replacement is possible at a cost (plus shipping).

4. All of abm's cell biology products are for research use ONLY and NOT for therapeutic/diagnostic applications. abm is not liable for any repercussions arising from the use of its cell biology product(s) in therapeutic/diagnostic application(s). Please contact a technical service representative for more information.

5. abm makes no warranties or representations as to the accuracy of the information on this site. Citations from literature and provided for informational purposes only. abm does not warrant that such information has been shown to be accurate.

6. abm warrants that cell lines shall be viable upon initiation of culture for a period of thirty (30) days after shipment and that they shall meet the specifications on the applicable abm Material Product Information sheet, certificate of analysis, and/or catalog description. Such thirty (30) day period is referred to herein as the "Warranty Period."

Depositor Tufts University
Application Research Use Only.
Material Citation If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. T0441
Print/Download Datasheet
  • Cairns, D. M., Chwalek, K., Moore, Y. E., Kelley, M. R., Abbott, R. D., Moss, S., & Kaplan, D. L. (2016). Expandable and Rapidly Differentiating Human Induced Neural Stem Cell Lines for Multiple Tissue Engineering Applications. Stem cell reports, 7(3), 557–570. https://doi.org/10.1016/j.stemcr.2016.07.017 

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