3D skin bioprinting as promising therapeutic strategy for radiation‐associated skin injuries.

Both cutaneous radiation injury and radiation combined injury (RCI) could have serious skin traumas, which are collectively referred to as radiation‐associated skin injuries in this paper. These two types of skin injuries require special managements of wounds, and the therapeutic effects still need...

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Publicado en:Wound Repair & Regeneration Vol. 32; no. 3; pp. 217 - 229
Autores principales: Lv, Xiaofan, Zhao, Na, Long, Shuang, Wang, Guojian, Ran, Xinze, Gao, Jining, Wang, Junping, Wang, Tao
Formato: pictorial review tables/charts Journal Article
Publicado: Wiley-Blackwell May2024
Acceso en línea:Ver este registro en EBSCOhost
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        atl: 3D skin bioprinting as promising therapeutic strategy for radiation‐associated skin injuries.
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        au:
          Lv, Xiaofan
          Zhao, Na
          Long, Shuang
          Wang, Guojian
          Ran, Xinze
          Gao, Jining
          Wang, Junping
          Wang, Tao
        affil: State Key Laboratory of Trauma and Chemical Poisoning, Institute of Combined Injury, School of Preventive Military Medicine, Army Medical University (Third Military Medical University), Chongqing, China
      sug:
        subj:
          Printing, Three-Dimensional
          Radiation Injuries
          Skin Injuries
          Wounds and Injuries Therapy
          Treatment Outcomes
          Necrosis
          Skin Ulcer
          Wounds and Injuries Diagnosis
          Wounds and Injuries Prognosis
          Public Health
          Radiation, Ionizing Adverse Effects
          Funding Source
      ab: Both cutaneous radiation injury and radiation combined injury (RCI) could have serious skin traumas, which are collectively referred to as radiation‐associated skin injuries in this paper. These two types of skin injuries require special managements of wounds, and the therapeutic effects still need to be further improved. Cutaneous radiation injuries are common in both radiotherapy patients and victims of radioactive source accidents, which could lead to skin necrosis and ulcers in serious conditions. At present, there are still many challenges in management of cutaneous radiation injuries including early diagnosis, lesion assessment, and treatment prognosis. Radiation combined injuries are special and important issues in severe nuclear accidents, which often accompanied by serious skin traumas. Mass victims of RCI would be the focus of public health concern. Three‐dimensional (3D) bioprinting, as a versatile and favourable technique, offers effective approaches to fabricate biomimetic architectures with bioactivity, which provides potentials for resolve the challenges in treating radiation‐associated skin injuries. Combining with the cutting‐edge advances in 3D skin bioprinting, the authors analyse the damage characteristics of skin wounds in both cutaneous radiation injury and RCI and look forward to the potential value of 3D skin bioprinting for the treatments of radiation‐associated skin injuries.
      pubtype: Academic Journal
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        review
        tables/charts
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      ougenre: Article
    language: English
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