Cargando…

Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases

Extracellular vesicles (EVs) are essential mediators in intercellular communication that have emerged as natural therapeutic nanomedicines for the treatment of intractable diseases. Their therapeutic applications, however, have been limited by unpredictable in vivo biodistribution after systemic adm...

Descripción completa

Detalles Bibliográficos
Autores principales: Lim, Gyeong Taek, You, Dong Gil, Han, Hwa Seung, Lee, Hansang, Shin, Sol, Oh, Byeong Hoon, Kumar, E. K. Pramod, Um, Wooram, Kim, Chan Ho, Han, Seungsu, Lee, Sangho, Lim, Seungho, Yoon, Hong Yeol, Kim, Kwangmeyung, Kwon, Ick Chan, Jo, Dong‐Gyu, Cho, Yong Woo, Park, Jae Hyung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7953464/
https://www.ncbi.nlm.nih.gov/pubmed/33738083
http://dx.doi.org/10.1002/jev2.12077
_version_ 1783663921308106752
author Lim, Gyeong Taek
You, Dong Gil
Han, Hwa Seung
Lee, Hansang
Shin, Sol
Oh, Byeong Hoon
Kumar, E. K. Pramod
Um, Wooram
Kim, Chan Ho
Han, Seungsu
Lee, Sangho
Lim, Seungho
Yoon, Hong Yeol
Kim, Kwangmeyung
Kwon, Ick Chan
Jo, Dong‐Gyu
Cho, Yong Woo
Park, Jae Hyung
author_facet Lim, Gyeong Taek
You, Dong Gil
Han, Hwa Seung
Lee, Hansang
Shin, Sol
Oh, Byeong Hoon
Kumar, E. K. Pramod
Um, Wooram
Kim, Chan Ho
Han, Seungsu
Lee, Sangho
Lim, Seungho
Yoon, Hong Yeol
Kim, Kwangmeyung
Kwon, Ick Chan
Jo, Dong‐Gyu
Cho, Yong Woo
Park, Jae Hyung
author_sort Lim, Gyeong Taek
collection PubMed
description Extracellular vesicles (EVs) are essential mediators in intercellular communication that have emerged as natural therapeutic nanomedicines for the treatment of intractable diseases. Their therapeutic applications, however, have been limited by unpredictable in vivo biodistribution after systemic administration. To control the in vivo fate of EVs, their surfaces should be properly edited, depending on the target site of action. Herein, based on bioorthogonal copper‐free click chemistry (BCC), surface‐edited EVs were prepared by using metabolically glycoengineered cells. First, the exogenous azide group was generated on the cellular surface through metabolic glycoengineering (MGE) using the precursor. Next, PEGylated hyaluronic acid, capable of binding specifically to the CD44‐expressing cells, was labelled as the representative targeting moiety onto the cell surface by BCC. The surface‐edited EVs effectively accumulated into the target tissues of the animal models with rheumatoid arthritis and tumour, primarily owing to prolonged circulation in the bloodstream and the active targeting mechanism. Overall, these results suggest that BCC combined with MGE is highly useful as a simple and safe approach for the surface modification of EVs to modulate their in vivo fate.
format Online
Article
Text
id pubmed-7953464
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-79534642021-03-17 Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases Lim, Gyeong Taek You, Dong Gil Han, Hwa Seung Lee, Hansang Shin, Sol Oh, Byeong Hoon Kumar, E. K. Pramod Um, Wooram Kim, Chan Ho Han, Seungsu Lee, Sangho Lim, Seungho Yoon, Hong Yeol Kim, Kwangmeyung Kwon, Ick Chan Jo, Dong‐Gyu Cho, Yong Woo Park, Jae Hyung J Extracell Vesicles Research Articles Extracellular vesicles (EVs) are essential mediators in intercellular communication that have emerged as natural therapeutic nanomedicines for the treatment of intractable diseases. Their therapeutic applications, however, have been limited by unpredictable in vivo biodistribution after systemic administration. To control the in vivo fate of EVs, their surfaces should be properly edited, depending on the target site of action. Herein, based on bioorthogonal copper‐free click chemistry (BCC), surface‐edited EVs were prepared by using metabolically glycoengineered cells. First, the exogenous azide group was generated on the cellular surface through metabolic glycoengineering (MGE) using the precursor. Next, PEGylated hyaluronic acid, capable of binding specifically to the CD44‐expressing cells, was labelled as the representative targeting moiety onto the cell surface by BCC. The surface‐edited EVs effectively accumulated into the target tissues of the animal models with rheumatoid arthritis and tumour, primarily owing to prolonged circulation in the bloodstream and the active targeting mechanism. Overall, these results suggest that BCC combined with MGE is highly useful as a simple and safe approach for the surface modification of EVs to modulate their in vivo fate. John Wiley and Sons Inc. 2021-03-12 2021-03 /pmc/articles/PMC7953464/ /pubmed/33738083 http://dx.doi.org/10.1002/jev2.12077 Text en © 2021 The Authors. Journal of Extracellular Vesicles published by Wiley Periodicals, LLC on behalf of the International Society for Extracellular Vesicles https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Lim, Gyeong Taek
You, Dong Gil
Han, Hwa Seung
Lee, Hansang
Shin, Sol
Oh, Byeong Hoon
Kumar, E. K. Pramod
Um, Wooram
Kim, Chan Ho
Han, Seungsu
Lee, Sangho
Lim, Seungho
Yoon, Hong Yeol
Kim, Kwangmeyung
Kwon, Ick Chan
Jo, Dong‐Gyu
Cho, Yong Woo
Park, Jae Hyung
Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases
title Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases
title_full Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases
title_fullStr Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases
title_full_unstemmed Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases
title_short Bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for CD44‐mediated targeting of inflammatory diseases
title_sort bioorthogonally surface‐edited extracellular vesicles based on metabolic glycoengineering for cd44‐mediated targeting of inflammatory diseases
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7953464/
https://www.ncbi.nlm.nih.gov/pubmed/33738083
http://dx.doi.org/10.1002/jev2.12077
work_keys_str_mv AT limgyeongtaek bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT youdonggil bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT hanhwaseung bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT leehansang bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT shinsol bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT ohbyeonghoon bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT kumarekpramod bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT umwooram bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT kimchanho bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT hanseungsu bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT leesangho bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT limseungho bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT yoonhongyeol bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT kimkwangmeyung bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT kwonickchan bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT jodonggyu bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT choyongwoo bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases
AT parkjaehyung bioorthogonallysurfaceeditedextracellularvesiclesbasedonmetabolicglycoengineeringforcd44mediatedtargetingofinflammatorydiseases