A pro‐reparative bioelectronic device for controlled delivery of ions and biomolecules.

Wound healing is a complex physiological process that requires precise control and modulation of many parameters. Therapeutic ion and biomolecule delivery has the capability to regulate the wound healing process beneficially. However, achieving controlled delivery through a compact device with the a...

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Publicado en:Wound Repair & Regeneration Vol. 32; no. 5; pp. 709 - 720
Autores principales: Asefifeyzabadi, Narges, Nguyen, Tiffany, Li, Houpu, Zhu, Kan, Yang, Hsin‐ya, Baniya, Prabhat, Medina Lopez, Andrea, Gallegos, Anthony, Hsieh, Hao‐Chieh, Dechiraju, Harika, Hernandez, Cristian, Schorger, Kaelan, Recendez, Cynthia, Tebyani, Maryam, Selberg, John, Luo, Le, Muzzy, Elana, Hsieh, Cathleen, Barbee, Alexie, Orozco, Jonathan
Formato: pictorial research tables/charts Journal Article
Publicado: Wiley-Blackwell Sep2024
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Sep2024
      vid: 32
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      pub: Wiley-Blackwell
      place: Malden, Massachusetts
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        10.1111/wrr.13191
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        atl: A pro‐reparative bioelectronic device for controlled delivery of ions and biomolecules.
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        au:
          Asefifeyzabadi, Narges
          Nguyen, Tiffany
          Li, Houpu
          Zhu, Kan
          Yang, Hsin‐ya
          Baniya, Prabhat
          Medina Lopez, Andrea
          Gallegos, Anthony
          Hsieh, Hao‐Chieh
          Dechiraju, Harika
          Hernandez, Cristian
          Schorger, Kaelan
          Recendez, Cynthia
          Tebyani, Maryam
          Selberg, John
          Luo, Le
          Muzzy, Elana
          Hsieh, Cathleen
          Barbee, Alexie
          Orozco, Jonathan
        affil: Department of Electrical and Computer Engineering, University of California Santa Cruz, Santa Cruz California,, USA
      sug:
        subj:
          Electric Stimulation Equipment and Supplies
          Drug Delivery Systems Methods
          Ions Administration and Dosage
          Biological Products Administration and Dosage
          Wound Healing
          Animal Studies
          Funding Source
          Mice
          Zolmitriptan
          In Vivo Studies
          Macrophages
          Ion Pumps
          Models, Biological
      ab: Wound healing is a complex physiological process that requires precise control and modulation of many parameters. Therapeutic ion and biomolecule delivery has the capability to regulate the wound healing process beneficially. However, achieving controlled delivery through a compact device with the ability to deliver multiple therapeutic species can be a challenge. Bioelectronic devices have emerged as a promising approach for therapeutic delivery. Here, we present a pro‐reparative bioelectronic device designed to deliver ions and biomolecules for wound healing applications. The device incorporates ion pumps for the targeted delivery of H+ and zolmitriptan to the wound site. In vivo studies using a mouse model further validated the device's potential for modulating the wound environment via H+ delivery that decreased M1/M2 macrophage ratios. Overall, this bioelectronic ion pump demonstrates potential for accelerating wound healing via targeted and controlled delivery of therapeutic agents to wounds. Continued optimization and development of this device could not only lead to significant advancements in tissue repair and wound healing strategies but also reveal new physiological information about the dynamic wound environment.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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