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Laboao The Portable Gene Transfer Solution
Laboao The Portable Gene Transfer Solution
Origin of place China
Model LSJ-500
Supplier Zhengzhou Laboao Instrument Equipment Co., Ltd
Price $24500/ Set
Hits 947
Updated 4/16/2025
  • Product Detail
  • Company Profile
The handheld gene gun represents a portable device designed for on-the-go gene transfer directly to cells, facilitating both transient and stable transfection. With a compact firing area and even particle distribution, it efficiently transforms receptors of various sizes. Notably, it boasts low sample requirements, needing only a minimal amount of DNA and cells, without the necessity for vector DNA, and with no limitations on large DNA fragments. This portable gene gun is extensively utilized for gene transformation in both plant and animal samples due to its user-friendly and flexible operation.
Model LSJ-500
Experimental conditions In situ, in vitro, in vivo
Target area (Small) 2cm²
Pressure range 0.5-5MPa (12 times per rotation of the magazine compartment)
Target type animal cells, plant cells, living plant leaves, Living animal skin, muscle, living animal organs
Voltage 9V (can be fired 1000 times)
Gas source Helium or nitrogen gas
Metal particles Φ0.8-1.5μm; φ1.5-3.0μm
  1. Precision without Contamination: Our cutting-edge technology ensures precision in genetic transformations, guaranteeing that only the intended genetic material is introduced into your samples. This level of accuracy eliminates the risk of extraneous genes or proteins, preserving the purity and reliability of your research. With our system, you can conduct experiments with confidence, knowing that your results are free from unintended influences.
  2. On-the-Go Transformation: Designed with your convenience in mind, our portable gene transfer device revolutionizes the transformation process. Its portable design allows you to perform on-site transformations, providing you with the flexibility to adapt to the demands of your research environment. No longer confined to a laboratory setting, you can achieve your transformation goals wherever you need, ensuring a seamless and efficient workflow.
  3. Tailored Functional Transformation: Experience a new level of functionality in cell transformation that caters to the specific growth needs of your experiments. Unlike other methods, our technology excels in achieving transformations customized to the unique requirements of your cells. This adaptability ensures optimal conditions for growth, setting the stage for success in a wide range of applications, from basic research to advanced biotechnological processes.
  4. Efficiency Through Minimal Requirements: Streamline your workflow with our gene transfer system's minimal sample requirements. Only a small amount of DNA and cells are needed, and there's no need for vector DNA. The absence of restrictions on large DNA fragments adds a layer of flexibility to your experiments. By minimizing resource demands, our technology empowers you to achieve maximum efficiency without compromising the quality of your results.
  5. Optimized Conversion Rates: Unlock unparalleled conversion rates with our system's unique features. The combination of a small shot area and uniform particle distribution ensures high efficiency in transforming receptors of different sizes. This optimized conversion rate translates to reliable and consistent results, providing you with the confidence to push the boundaries of your research.





1. Q: Can you provide more details on the precision of the gene transfer process and how it ensures the absence of extraneous genes or proteins in my samples?
A: Absolutely. Our gene transfer technology is designed for precision, ensuring that only the specified genetic material is introduced into your samples. This accuracy is maintained through a small shot area and uniform particle distribution, minimizing the risk of extraneous genes or proteins. This guarantees the integrity of your samples, and you can be confident that your results are not influenced by unintended factors.

2. Q: How does the portability of the gene gun contribute to its convenience, and can you provide examples of on-site transformation scenarios?
A: The portability of our gene transfer device is a key advantage. It allows for on-site transformations, offering unparalleled convenience. For instance, researchers can perform transformations directly in the field, ensuring immediate processing of samples without the need for transportation to a laboratory. This flexibility is particularly valuable in time-sensitive situations and field research.

3. Q: You mentioned achieving cell transformations with specific growth needs; can you elaborate on how this system caters to diverse growth requirements?
A: Certainly. Our technology excels in achieving cell transformations tailored to specific growth needs. Unlike other methods, it allows for customization, ensuring optimal conditions for the growth and development of your cells. This adaptability is crucial for experiments with diverse cell types and ensures that the transformed cells thrive under conditions that suit their unique requirements.

4. Q: Could you clarify the low sample requirements and how the system manages to achieve efficiency with minimal amounts of DNA and cells?
A: Absolutely. Our system is designed for efficiency with minimal resource requirements. It demands only a small amount of DNA and cells for transformations. Furthermore, it eliminates the need for vector DNA, and there are no restrictions on using large DNA fragments. This minimizes the burden on resources while maximizing the efficiency of the transformation process.

5. Q: How do the small shot area and uniform particle distribution contribute to the high conversion rate, especially when dealing with receptors of different sizes?
A: Great question. The small shot area and uniform particle distribution play a crucial role in achieving a high conversion rate. This ensures that receptors of varying sizes receive an equal and efficient transformation. The technology's ability to uniformly distribute particles across the target area contributes to reliable and consistent results, making it a powerful tool for experiments with diverse cell types and sizes.

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