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Non-Viral Vectors

Non-Viral Vectors

Non-viral vectors utilize the physicochemical properties of non-viral vector materials to mediate gene transfer. Shenzhen Cell Valley primarily provides its unique non-viral gene engineering technology (PiggyBac transposon modification), a core technology for CAR-T therapy development. PiggyBac can effectively deliver large amounts of genetic material to T cells, producing CAR-T products with a high percentage of stem memory cells. This includes various subtypes such as single-promoter single-gene, single-promoter multi-gene, and dual-promoter multi-gene.
Description

Highlights

1. Non- viral vectors have a large loading capacity, effectively delivering large gene fragments;
2. Low toxicity and low immune response;
3. High transfection efficiency and stable expression;
4. Higher production efficiency and lower production cost.

 


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400-800-1266

Working hours: Monday to Friday, 9:00-18:00

Contact:Ms. Lai

Email:laijiaqi@wfzydp.com

Address:No. 1, Rongtian Road, Jinsha Community, Kengzi Street, Pingshan District, Shenzhen, China (Hepure Biomedical Ecological Park)

Shenzhen Cell Valley Biopharmaceutical Co., Ltd. is a leading one-stop comprehensive outsourcing service provider for China’s cell and gene therapy industry. It is also among the first domestic CRO/CDMO enterprises to hold GMP-compliant industrial production capabilities for clinical-grade retroviral vectors. As a key project for the construction of Shenzhen’s public technical service platform for CRO/CDMO, the company has been listed in the city’s newly announced "20+8" strategic emerging industries initiative.
Shenzhen Cell Valley is equipped with the capacity to conduct standardized and industrialized production of GMP-grade cellular products including CAR-T cells. Its core production lines cover a full spectrum of cellular products such as CAR-T, CAR-NK, CAR-M, γδT, TIL and TCR-T. In addition, the company runs production lines for a diverse range of viral vectors (including RVV, LVV and AAV) and non-viral vectors, as well as for cellular raw materials for therapeutic development—such as exosomes, genetically engineered antibodies, cytokines, oncolytic viruses and vaccines.
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