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Natural Nanoskin Advanced Cell Therapy (ACT) and Nanoskin ACT Soft towards the Definitive Solution for Acute and Chronic Wounds
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作者 Saqer Al Mualla Noura Salim Salman +4 位作者 Nasreen Abdelatif Salma Al Ketbi Pierre Basmaji mohamed kanjou Mirvan Ahmad 《Journal of Biomaterials and Nanobiotechnology》 CAS 2023年第2期35-45,共11页
Natural Nanoskin Advance cell therapy (ACT) and Nanoskin ACT Soft have been established to be remarkably versatile biomaterials and can be used in a wide variety of applied scientific endeavors, especially for medical... Natural Nanoskin Advance cell therapy (ACT) and Nanoskin ACT Soft have been established to be remarkably versatile biomaterials and can be used in a wide variety of applied scientific endeavors, especially for medical devices. In fact, the structure of Nanoskin materials can be adapted over length scales ranging from nano to macro by controlling the bio-fabrication process. The present paper describes Natural Nanoskin Advanced cell therapy (ACT) and Nanoskin ACT Soft production for wound care applications. ACT is produced from the bio-nanotechnology process. ACT is a highly hydrated pellicle with shaped fibers less than 2 nm wide. Nanoskin ACT Soft, like a paste, is designed to fill irregularities or recesses in the wound bed, and to absorb excess exudate from lesions by prolonging the used dressing's residence time and reducing the frequency of change. 展开更多
关键词 Wound Care Diabetic Ulcer Natural Fibers
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Bacterial Cellulose for Several Medicine Areas: Future Insights
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作者 Pierre Basmaji Gabriel Molina De Olyveira +1 位作者 mohamed kanjou Helena Reichert 《Journal of Biomaterials and Nanobiotechnology》 2022年第1期1-23,共23页
Bacterial cellulose (BC)-Nanoskin<span style="white-space:nowrap;"><sup><span style="white-space:nowrap;">&#174;</span></sup></span> has become established a... Bacterial cellulose (BC)-Nanoskin<span style="white-space:nowrap;"><sup><span style="white-space:nowrap;">&#174;</span></sup></span> has become established as a new biomaterial and can be used in several medicine areas, especially for medical devices mainly in dental and orthopedics applications. In addition, biomaterials have rise because of the increased interest in tissue engineering and regeneratine medicine materials for wound care and skin cancer treatment. The BC process production can be changed by different fermentation process. It has particular properties that make it an ideal candidate as a medical material: high mechanical properties, biocompatibility to the host tissue, and production in various shapes and sizes. This review describes a behavior investigation of this biomaterial in human medicine with bacterial cellulose, skin cancer, covid-19 and 3-D print for medical area. 展开更多
关键词 Bacterial Cellulose Biomaterial NANOTECHNOLOGIES
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