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  4. Royal jelly extracellular vesicles promote wound healing by modulating underlying cellular responses
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Royal jelly extracellular vesicles promote wound healing by modulating underlying cellular responses

Journal
Molecular Therapy - Nucleic Acids
ISSN
2162-2531
Date Issued
2023
Author(s)
Simón Álvarez
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Pamina Contreras-Kallens
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Sebastian Aguayo
Ramírez Prada, Orlando
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Catalina Vallejos
Jorge Ruiz
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Eva Carrasco-Gallardo
Stefanie Troncoso-Vera
Bernardo Morales
SCHUH, CHRISTINA  
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Type
Resource Types::text::journal::journal article
Scopus ID
2-s2.0-85148770964
WoS ID
WOS:001054255600001
DOI
10.1016/j.omtn.2023.02.008
URL
https://investigadores.udd.cl/handle/123456789/6119
URL Institutional Repository
https://hdl.handle.net/11447/9000
Cite this document
Álvarez, S., Contreras-Kallens, P., Aguayo, S., Ramírez, O., Vallejos, C., Ruiz, J., Carrasco-Gallardo, E., Troncoso-Vera, S., Morales, B., & Schuh, C. M. A. P. (2023). Royal jelly extracellular vesicles promote wound healing by modulating underlying cellular responses. Molecular Therapy - Nucleic Acids, 31, 541-552. https://doi.org/10.1016/j.omtn.2023.02.008
Project(s)
Analysis of antimicrobial and pro-regenerative properties of exosomes derived from Apis mellifera Royel Jelly  
"Combining mechanobiology and nanomedicine to elucidate the anti-inflammatory effect of Apis mellifera derived Royal Jelly extracellular vesicles in neuroinflammation "  
"Effect of methylglyoxal-derived advanced glycation end-products on Streptococcus mutans dysbiotic colonization in root caries "  
Subjects
anti-inflammatory extracellular vesicles

; 

apis mellifera

; 

defensin-1

; 

extracellular vesicle delivery

; 

honeybee

; 

interkingdom communication

; 

mt: special issue - exploiting extracellular vesicles as therapeutic agents

; 

nano-therapy

; 

regenerative medicine

; 

therapeutic extracellular vesicles

; 

cd63 antigen

; 

defensin

; 

lipopolysaccharide

; 

mitogen activated protein kinase

; 

royal jelly

; 

syntenin

; 

acceleration

; 

animal cell

; 

animal experiment

; 

animal model

; 

animal tissue

; 

antibacterial activity

; 

article

; 

cell differentiation

; 

controlled study

; 

exosome

; 

female

; 

macrophage

; 

male

; 

mapk signaling

; 

mesenchymal stem cell

; 

mouse

; 

mouse model

; 

nonhuman

; 

raw 264.7 cell line

; 

secretome

; 

wound healing
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