Visualization of a Mammalian Mitochondrion by Coherent X-ray Diffractive Imaging

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作者
Yoonhee Kim
Chan Kim
Ou Young Kwon
Daewoong Nam
Sang Soo Kim
Jae Hyun Park
Sunam Kim
Marcus Gallagher-Jones
Yoshiki Kohmura
Tetsuya Ishikawa
Changyong Song
Giyoong Tae
Do Young Noh
机构
[1] Gwangju Institute of Science and Technology,Department of Physics and Photon Science & School of Materials Science and Engineering
[2] European XFEL,Department of Physics
[3] Pohang University of Science and Technology,Pohang Accelerator Laboratory
[4] Pohang University of Science and Technology,Department of Physics and Astronomy and California NanoSystems Institute
[5] RIKEN SPring-8 Center,undefined
[6] University of California Los Angeles,undefined
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We report a three dimensional (3D) quantitative visualization of a mammalian mitochondrion by coherent x-ray diffractive imaging (CXDI) using synchrotron radiation. The internal structures of a mitochondrion from a mouse embryonic fibroblast cell line (NIH3T3) were visualized by tomographic imaging at approximately 60 nm resolution without the need for sectioning or staining. The overall structure consisted of a high electron density region, composed of the outer and inner membranes and the cristae cluster, which enclosed the lower density mitochondrial matrix. The average mass density of the mitochondrion was about 1.36 g/cm3. Sectioned images of the cristae reveal that they have neither a baffle nor septa shape but were instead irregular. In addition, a high resolution, about 14 nm, 2D projection image was captured of a similar mitochondrion with the aid of strongly scattering Au reference objects. Obtaining 3D images at this improved resolution will allow CXDI to be an effective and nondestructive method for investigating the innate structure of mitochondria and other important life supporting organelles.
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