DocumentCode
2210715
Title
Oxygen Consumption of Mammalian Embryos and Oocytes Monitored by Scanning Electrochemical Microscopy
Author
Shiku, Hitoshi ; Yasukawa, Tomoyuki ; Matsue, Tomokazu ; Ito-Sasaki, Takahiro ; Yokoo, Masaki ; Abe, Hiroyuki ; Aoyagi, Shigeo
Author_Institution
Tohoku Univ., Sendai
fYear
2007
fDate
28-31 Oct. 2007
Firstpage
1408
Lastpage
1411
Abstract
Scanning electrochemical microscopy (SECM) has been used to noninvasively characterize oxygen consumption rate of single mammalian embryos and oocytes under physiological condition in culture medium at 37degC. Local oxygen concentration profile near the embryo sample was monitored by scanning with a Pt microelectrode probe, and then mass transfer rate for oxygen has been estimated based on spherical diffusion theory. A bovine embryo at two-cell stage was located in either a conventional culture dish or a cone-shaped microwell and compared the differences in concentration profile and diffusion behavior. We found that the cone-shaped microwell functions to amplify the oxygen concentration difference between the sample surface and the bulk. Further more, a measuring plate equipped with the cone-shaped six-microwells was developed to easily handle many embryos in a short time. The respiration activities significantly increased with the embryo development for both bovine and mouse.
Keywords
biomedical measurement; cellular biophysics; electrochemical sensors; microelectrodes; oxygen; scanning probe microscopy; Pt microelectrode probe; bovine embryo; cone-shaped six-microwells; mammalian embryos; oocytes monitoring; oxygen concentration profile; oxygen consumption; scanning electrochemical microscopy; spherical diffusion theory; Biomedical measurements; Bovine; Electrodes; Embryo; Microelectrodes; Microscopy; Monitoring; Oxygen; Probes; Protocols;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensors, 2007 IEEE
Conference_Location
Atlanta, GA
ISSN
1930-0395
Print_ISBN
978-1-4244-1261-7
Electronic_ISBN
1930-0395
Type
conf
DOI
10.1109/ICSENS.2007.4388676
Filename
4388676
Link To Document