Three-dimensional Culture of Human Airway Epithelium in Matrigel for Evaluation of Human Rhinovirus C and Bocavirus Infections.
Biomed Environ Sci
; 31(2): 136-145, 2018 02.
Article
in En
| MEDLINE
| ID: mdl-29606192
OBJECTIVE: Newly identified human rhinovirus C (HRV-C) and human bocavirus (HBoV) cannot propagate in vitro in traditional cell culture models; thus obtaining knowledge about these viruses and developing related vaccines are difficult. Therefore, it is necessary to develop a novel platform for the propagation of these types of viruses. METHODS: A platform for culturing human airway epithelia in a three-dimensional (3D) pattern using Matrigel as scaffold was developed. The features of 3D culture were identified by immunochemical staining and transmission electron microscopy. Nucleic acid levels of HRV-C and HBoV in 3D cells at designated time points were quantitated by real-time polymerase chain reaction (PCR). Levels of cytokines, whose secretion was induced by the viruses, were measured by ELISA. RESULTS: Properties of bronchial-like tissues, such as the expression of biomarkers CK5, ZO-1, and PCK, and the development of cilium-like protuberances indicative of the human respiration tract, were observed in 3D-cultured human airway epithelial (HAE) cultures, but not in monolayer-cultured cells. Nucleic acid levels of HRV-C and HBoV and levels of virus-induced cytokines were also measured using the 3D culture system. CONCLUSION: Our data provide a preliminary indication that the 3D culture model of primary epithelia using a Matrigel scaffold in vitro can be used to propagate HRV-C and HBoV.
Key words
Full text:
1
Collection:
01-internacional
Database:
MEDLINE
Main subject:
Enterovirus
/
Parvoviridae Infections
/
Respiratory Mucosa
/
Enterovirus Infections
/
Human bocavirus
/
Primary Cell Culture
Limits:
Humans
Language:
En
Journal:
Biomed Environ Sci
Journal subject:
SAUDE AMBIENTAL
Year:
2018
Document type:
Article
Affiliation country:
China
Country of publication:
China