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Role of extrinsic mechanical force in the development of the RA-I tactile mechanoreceptor.


ABSTRACT: Rapidly adapting type I (RA-I) mechanoreceptors play an important role in sensing the low-frequency vibration aspects of touch. The structure of the RA-I mechanoreceptor is extremely complex regardless of its small size, limiting our understanding of its mechanotransduction. As a result of the emergence of bioengineering, we previously proposed an in vitro bioengineering approach for RA-I receptors to overcome this limitation. Currently, the in vitro bioengineering approach for the RA-I receptor is not realizable given the lack of knowledge of its morphogenesis. This paper demonstrates our first attempt to interpret the cellular morphogenesis of the RA-I receptor. We found indications of extrinsic mechanical force nearby the RA-I receptor in the developing fingertip. Using a mechanical compression device, the axon of dorsal root ganglion (DRG) neurons buckled in vitro into a profile that resembled the morphology of the RA-I receptor. This work encourages further implementation of this bioengineering approach in tactile receptor-related research.

SUBMITTER: Pham TQ 

PROVIDER: S-EPMC6056429 | biostudies-literature | 2018 Jul

REPOSITORIES: biostudies-literature

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Role of extrinsic mechanical force in the development of the RA-I tactile mechanoreceptor.

Pham Trung Quang TQ   Kawaue Takumi T   Hoshi Takayuki T   Tanaka Yoshihiro Y   Miyata Takaki T   Sano Akihito A  

Scientific reports 20180723 1


Rapidly adapting type I (RA-I) mechanoreceptors play an important role in sensing the low-frequency vibration aspects of touch. The structure of the RA-I mechanoreceptor is extremely complex regardless of its small size, limiting our understanding of its mechanotransduction. As a result of the emergence of bioengineering, we previously proposed an in vitro bioengineering approach for RA-I receptors to overcome this limitation. Currently, the in vitro bioengineering approach for the RA-I receptor  ...[more]

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