Arthritic Bone

Your Professional Arthritic Bone Supplier!

 

Chengdu Jiuxin Xinde Medical Technology Co., Ltd. was established in 2022. It is a professional supplier of medical equipment, medical consumables and veterinary medical equipment, dedicated to providing high-quality solutions for the global market.

 

 
 
Why Choose Us
 

Quality Control
Our medical and veterinary products comply with international quality management systems such as ISO 13485. Production and quality control processes are implemented in accordance with applicable CE and FDA regulations, ensuring that products meet practical requirements for engineering precision, biocompatibility, and regulatory compliance.

 

Production Capacity
We operate 11 production lines with a total workshop area of approximately 7,100 square meters. Through structured production line layout and planning management, we are able to support the stable manufacture of multiple product categories and accommodate both continuous supply and customized order requirements.

 

Professional Team
The company employs over 215 production personnel and maintains long-term cooperation with partner factories that have established manufacturing capabilities. The team has hands-on experience in R&D coordination, production execution, and quality control, supporting smooth and controlled project implementation.

 

Customer Support
Our business serves multiple international markets. We provide pre-sales technical communication, regulatory documentation support, and post-sales assistance, helping medical partners maintain stable delivery and ongoing operations.

 

Specification
 

Material

Compressive Strength (MPa)

Elastic Modulus (GPa)

GK1028 (n-HA/PA66)

100–130

3–30

Cortical Bone

80–120

3–20

 

Advantages of Artificial Bone
 
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Compatibility With Biological Systems
Biocompatible substances, or those that the body can accept, make artificial bones unique. Speaking with a healthcare provider is crucial to ascertain compatibility since individual reactions could differ.


Fidelity and Reliability
Artificial bones offer a reliable and easily accessible supply of bone replacement, eliminating the necessity for an additional donor site or worries about the spread of disease. This can be especially helpful in cases where getting natural bone might be complex.


Decreased Morbidity After Surgery
Artificial bones eliminate the need for extra procedures at a donor location, unlike autografts, which take advantage of the bone. As a result, there may be less discomfort, a quicker recovery period, and fewer donor site issues.


Controllable Characteristics
Since manufactured artificial bone materials frequently have adjustable qualities, they can be customized to meet the specific requirements of the patient and their intended application. This flexibility can be helpful in a variety of dental and medical operations.


Assimilation
The capacity of the material to fuse with the adjacent bone and encourage the growth of new bone is essential to the outcome of any bone grafting operation. Many artificial bones are made to act as a framework supporting bone, encouraging a slow, natural healing procedure.

 

Artificial Bone Material

 

Artificial bone material refers to engineered substances designed to emulate natural bone tissue. These materials are typically composed of biocompatible substances like ceramics, polymers, or composites that support bone regeneration. They serve as scaffolds, allowing new bone cells to grow and integrate seamlessly with existing tissue. The primary goal is to restore structural integrity and function, especially in cases of trauma, disease, or congenital defects.


Unlike natural bone, which heals over time, artificial bone materials can accelerate recovery and reduce complications. They are used in various medical procedures, including spinal fusion, joint reconstruction, and dental implants. Advances in nanotechnology and biomaterials have enhanced their properties, making them more durable, bioactive, and compatible with the human body.

 

The Basic Principle Of Artificial Bone
 

Preparation of the Scaffold

The process begins with designing a scaffold that mimics the porous structure of natural bone. This scaffold provides a framework for new tissue growth.

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Biocompatibility Testing

The material undergoes testing to ensure it does not trigger adverse immune responses when implanted.

Implantation

The artificial bone material is surgically placed into the damaged area, often secured with screws or other fixation devices.

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Cell Integration and Growth

The scaffold encourages osteoblasts (bone-forming cells) to attach, proliferate, and produce new bone tissue.

Degradation and Replacement

Over time, the scaffold gradually degrades, replaced by natural bone tissue, restoring the original function.

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Healing and Reinforcement

The new bone strengthens the area, supporting normal movement and load-bearing functions.

 

 

Use-Cases of Artificial Bone

Orthopedic Repairs
Used in repairing fractures or defects caused by trauma. For example, in complex limb fractures, artificial bone scaffolds help restore bone continuity faster than natural healing alone.


Dental Implants
Facilitates jawbone regeneration around dental implants, ensuring stability and longevity of the prosthetic. This is especially crucial in cases of bone loss due to periodontal disease.


Spinal Fusion
Supports vertebral fusion procedures by providing a scaffold for new bone growth, reducing recovery time and improving outcomes for patients with degenerative disc disease.


Craniomaxillofacial Reconstruction
Used in reconstructing facial bones after trauma or tumor removal, restoring both function and aesthetics.

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Inquiry and Order
 

For detailed product specifications, operation manuals, or customized solutions, please contact us:

Submit Inquiry Form

Fill in your demand information, and we will provide a professional response within 24 hours.

Request Product Materials

Obtain complete product parameter sheets, clinical cases, and compliance certification documents.

Discuss Cooperation

Provide bulk purchasing support and technical training services for medical institutions and distributors.

 

Packaging and Shipping
 

Packaging

Cardboard box

Transportation methods

Road transport, rail transport, sea transport, air transport

 

 

Our Certificate

 

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FAQ

 

Q: What types of bone defects is GK1028 suitable for?

A: It is suitable for various bone defects in orthopedic, spinal, and joint scenarios, including fracture-related bone defects, spinal fusion bone grafting, and joint surgery bone supplementation. It is not recommended for defects with severe infection or poor soft tissue coverage (to be evaluated by clinicians).

Q: How does GK1028 solve the "stress shielding effect"?

A: Its mechanical properties (compressive strength, elastic modulus) are closely matched to natural cortical bone. This avoids excessive stress concentration on the material (or implants) and insufficient stress on the host bone, thus reducing the risk of bone resorption or implant loosening caused by stress shielding.

Q: How long does it take for GK1028 to integrate with host bone?

A: The integration process varies by individual and defect location: generally, initial interface osteogenesis can be observed 4–8 weeks after implantation, and complete bone integration (with material degradation and new bone formation) takes 6–12 months. Specific progress needs to be evaluated by clinical imaging (e.g., X-ray, CT)

We're well-known as one of the most reliable arthritic bone manufacturers and suppliers in China. Please rest assured to wholesale high quality arthritic bone made in China here from our factory. We also accept customized orders.

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