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Muscle Tissue Development Service

Muscle Tissue Development Service

Skeletal muscle tissue engineering is a relatively new field that uses knowledge from histology, cell biology, medicine, chemistry, and engineering to regenerate, reconstruct, and replace damaged or lost muscle. Tissue engineering approaches offer a promising avenue for repairing damaged skeletal muscle. With the support of tissue engineering technology, CD BioSciences has launched a muscle tissue development service.

Introduction to Muscle Tissue Engineering

Muscle tissue engineering is the process of muscle tissue engineering through in vitro culture of cells, which are expanded and planted on scaffold materials, and then implanted in vivo for tissue repair after a certain period of in vitro culture. Among them, the scaffold can maintain the natural structure of the muscle and the structure of the innervated nerve to facilitate the reinnervation of the muscle. It can maintain the vascular structure to facilitate the growth of recellularized blood vessels into it and help maintain the natural morphology and size of muscle tissue.

Fig 1. Muscle Tissue Engineering

Applications of Muscle Tissue Engineering

Skeletal muscle tissue represents the most abundant tissue type in the human body, and it is a metabolically active tissue. Skeletal muscle tissue engineering aims to replicate the structure and function of skeletal muscle tissue in vitro and in vivo in order to obtain effective models and functional constructs for therapeutic device implantation into damaged sites.

Fig 2. Muscle Injury Repair
Muscle Injury Repair

Muscle tissue engineering offers a new therapeutic idea for muscle injury. The engineering can be used for muscle repair and regeneration in clinical settings. For example, volumetric muscle loss caused by ablative tumor treatment, trauma or infectious diseases can be treated with the help of tissue engineering.

Fig 3. Biochemical Analysis
Biochemical Analysis

Skeletal muscle tissue engineering can be used for cell analysis-based bio-robotic manufacturing. Artificial muscle tissue can also be used for a wide range of applications in biosensing, energy harvesting and drug screening.

Challenges in Muscle Tissue Engineering

Fig 4. Challenges in Muscle Tissue Engineering

Thanks to the growing understanding of the processes behind tissue regeneration and the concomitant formation of vascular networks, there has been a rapid development of tissue-engineered muscle. However, the construction of muscle tissue has been hampered by the lack of reliable cell sources and the challenges of engineering suitable tissue scaffolds. Currently, the only successful tissue-engineered constructs are not functionally active. Multiple obstacles still need to be overcome before muscle tissue engineering is ready for true clinical application

Our Services

CD BioSciences offers muscle tissue development services. we have a dedicated laboratory team that can assist you with a variety of services such as seed cell culture, growth factor delivery and scaffold material screening. Based on our wide range of artificial muscle materials, we can save time and manpower for your research.

  • Seed Cell Isolation & Culture
    We provide experiments for in vitro isolation, culture and identification of seed cells. Multiple growth factors are randomly combined to find the optimal combination of efficacy.
  • Muscle Tissue Engineering Scaffold Customization
    Scaffolds made with different raw materials can lead to different tissue growth results.

As a pioneer in biotechnology, CD BioSciences has grown into one of the largest independent biotechnology companies in the world. CD BioSciences is committed to providing professional and efficient service to our customers around the world. If you are interested in our service, please contact us.

For research use only, not for clinical use.