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Three Trends of Medical Textile Technology Development

  • Author:Junqian Nonwoven
  • Source:Original
  • Release on :2017-10-23
In the development trend of technology, medical and health textiles show three trends: a variety of further integration of technology, interdisciplinary field further integration, upstream and downstream industry chain technology tends to integrate innovation.

Surgical implants of textiles and in vitro filtering textiles are largely dependent on imports, and product development focuses on the development of special biomedical fibers, forming technology and product development, and the formation of significant results with independent intellectual property rights.

Medical protection, health care, health textiles and surgical non-implantable textiles, a wide range of wide, has been basically achieved and a large number of domestic exports, product development focus is devoted to the functional and differential product development, Improve product performance indicators.

Future research and development of medical care will focus more on materials, anti-leakage technology, adsorption odor technology, antibacterial, anti-blood infiltration, anti-static, comfort and other functions.

Biomedical materials, the future will continue to strengthen the basic technology research, combined with different races, humans, tissues, organs of the natural composition, structure and function of the in-depth study, macro and micro bionic design and manufacture of various organs and blood Substitutes for research. Biomaterials for tissue engineering in bio-medical field, and the textile industry is closely related to product technology, including the presence of fiber in the form of bio-medical materials, and the use of scaffolds made of textile technology, the future will be greatly developed. Artificial kidney, artificial liver and artificial lung, soft tissue and interstitial tissue replacement materials and heart valves and other biomedical materials is the focus of research products.

High-grade medical protection with textiles, comprehensive development to enhance the uniformity of medical protective materials and product stability, and continuously reduce costs, will be the development trend of such materials. SMS nonwovens will become the focus of development, spunbond layer to ensure high wear resistance, the middle meltblown layer to improve the product filtration efficiency, barrier properties, resistance to particle penetration, anti-hydrostatic pressure, shielding and uniform appearance Sex, so as to achieve a good filter, liquid resistance and opacity.

New medical dressings, high material efficiency, high performance products, high efficiency care represents the overall direction of the development of new medical dressings. Future products will focus more on bioactivity and intelligence. The development of new medical dressings include silver antibacterial dressings, bioactive dressings and other products require strong plasticity, good adhesion, breathable moisture permeability, antibacterial and healing, and a hemostatic, analgesic function. In addition, it also has the ability to promote epithelial cells, fibroblasts and endothelial cells and other cell division and extracellular matrix growth effect, the effective absorption of wound exudate, dry after blocking the formation of foreign bacteria invasion of the physical barrier for epithelial growth Create a good environment. Downstream applications include wound dressings, hemostatic sponge, medical absorbent cotton, medical skim gauze, gauze bandages, elastic bandages, plaster bandages, wound paste and so on.

New health materials, will be more use of biodegradable, antibacterial, super absorbent and other functional fiber raw materials, thereby enhancing the disposable baby and elderly diapers, sanitary napkins, functional wipes and industrial wipes and other products technology Performance. In the disposable health materials, focus on the development of surface materials and diversion layer materials, research and development of materials, the degradation of performance, improve the softness and functionality of the surface layer, and the fluffy layer of the fluffy and complex, Continuous differential diversion performance.