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Taizhou nikon medical materials co., ltd

Giving full play to the advantages of new material adaptation and strengthening quality standardization management


Release time:

2024-07-29

With the development of social industrialization and the intensification of population aging, the treatment and rehabilitation of diseased tissues has become an important demand for public health, especially in the fields of bone, cartilage, oral cavity, cardiovascular and so on.

With the development of social industrialization and the intensification of population aging, the treatment and rehabilitation of diseased tissues has become an important public health demand, especially in bone, cartilage, oral cavity, cardiovascular and other fields. At present, the clinical application of high-end implant interventional medical devices are mainly composed of medical ceramics, medical metals, medical polymer materials and various composite materials. Because the interaction between the material and the human body will produce a variety of complex biological, physical and chemical reactions, and the human body has different tolerance to these reactions, the implant material must have good biocompatibility, that is, the material will not cause incompatible reactions to human tissues after being implanted in the human body, which is also an important prerequisite for its clinical efficacy.

Based on the concept of biological adaptation put forward by Wang Yingjun, academician of the Chinese Academy of Engineering, the research team of the Key Laboratory of Research and Evaluation of Innovative Biomaterials Medical Devices of South China University of Technology (hereinafter referred to as the research team) has developed bone regeneration and repair materials similar to the composition and structure of human bone tissue, realizing the accurate adaptation and repair of complex bone defects and upgrading the clinical treatment technology of orthopedics to a new level. At present, the quality control of bone regeneration and repair materials is one of the key areas of scientific research in the supervision of new materials for medical devices. With the continuous improvement of relevant standards and methods, bone regeneration and repair materials and related innovative medical devices will better meet the needs of clinical and patients.

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