Imaging-guided bioreactor for de-epithelialization and long-term cultivation of ex vivo rat trachea.
Imaging-guided bioreactor for de-epithelialization and long-term cultivation of ex vivo rat trachea.
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DOI:
10.1039/d1lc01105g
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发表时间:
2022-03-01
期刊:
影响因子:
6.1
通讯作者:
Kim J
中科院分区:
文献类型:
--
作者:
Mir SM;Chen J;Pinezich MR;O'Neill JD;Huang SXL;Vunjak-Novakovic G;Kim J
Recent synergistic advances in organ-on-chip and tissue engineering technologies offer opportunities to create in vitro-grown tissue or organ constructs that can faithfully recapitulate their in vivo counterparts. Such in vitro tissue or organ constructs can be utilized in multiple applications, including rapid drug screening, high-fidelity disease modeling, and precision medicine. Here, we report an imaging-guided bioreactor that allows in situ monitoring of the lumen of ex vivo airway tissues during controlled in vitro tissue manipulation and cultivation of isolated rat trachea. Using this platform, we demonstrated partial removal of the rat tracheal epithelium (i.e., de-epithelialization) without disrupting the underlying subepithelial cells and extracellular matrix. Through different tissue evaluation assays, such as immunofluorescent staining, DNA/protein quantification, and electron beam microscopy, we showed that the epithelium of the tracheal lumen can be effectively removed with negligible disruption in the underlying tissue layers, such as cartilage and blood vessel. Notably, using a custom-built micro-optical imaging device integrated with the bioreactor, the trachea lumen was visualized at the cellular level, and removal of the endogenous epithelium and distribution of locally delivered exogenous cells were demonstrated in situ. Moreover, the de-epithelialized trachea supported on the bioreactor allowed attachment and growth of exogenous cells seeded topically on its denuded tissue surface. Collectively, the results suggest that our imaging-enabled rat trachea bioreactor and localized cell replacement method can facilitate creation of bioengineered in vitro airway tissue that can be used in different biomedical applications. An imaging-enabled rat trachea bioreactor is developed that can permit controllable in vitro epithelium replacement, in situ cell monitoring, and long-term tissue scaffold cultivation
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影响因子:
3.7
作者:
Godin LM;Sandri BJ;Wagner DE;Meyer CM;Price AP;Akinnola I;Weiss DJ;Panoskaltsis-Mortari A
通讯作者:
Panoskaltsis-Mortari A
影响因子:
8.9
作者:
Guenthart, Brandon A.;O'Neill, John D.;Bacchetta, Matthew
通讯作者:
Bacchetta, Matthew
DOI:
10.1165/rcmb.2018-0304oc
发表时间:
2020-01-01
影响因子:
6.4
作者:
Berkebile, Abigail R.;Bartlett, Jennifer A.;McCray, Paul B., Jr.
通讯作者:
McCray, Paul B., Jr.
影响因子:
7.5
作者:
Coraux, C.;Hajj, R.;Puchelle, E.
通讯作者:
Puchelle, E.
影响因子:
3.2
作者:
Haswell, Linsey E.;Hewitt, Katherine;Gaca, Marianna D.
通讯作者:
Gaca, Marianna D.