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Selective evaluation of high density lipoprotein from mouse small intestine by an in situ perfusion technique
Authors:Satoshi Yamaguchi  Bo Zhang  Takeshi Tomonaga  Utako Seino  Akiko Kanagawa  Masaru Segawa  Hironori Nagasaka  Akira Suzuki  Takashi Miida  Sohsuke Yamada  Yasuyuki Sasaguri  Takefumi Doi  Keijiro Saku  Mitsuyo Okazaki  Yoshihiro Tochino  Ken-ichi Hirano
Affiliation:2. Department of Biochemistry, Fukuoka University School of Medicine, Fukuoka, Japan;4. Laboratory of Proteome Research, National Institute of Biomedical Innovation, Osaka, Japan;11. Central Laboratory for Pathology and Morphology, Fukuoka University School of Medicine, Fukuoka, Japan;8. Department of Pediatrics, Takarazuka City Hospital, Takarazuka, Japan;112. Department of Pathology and Cell Biology, School of Medicine, University of Occupational and Environmental Health, Kitakyushu, Japan;84. Graduate School of Pharmaceutical Sciences, Osaka University, Osaka, Japan;1111. Professor Emeritus of Tokyo Medical and Dental University, Skylight Biotech Inc., Akita, Japan;88. Department of Metabolic Medicine, Graduate School of Medicine, Osaka University, Osaka, Japan
Abstract:
The small intestine (SI) is the second-greatest source of HDL in mice. However, the selective evaluation of SI-derived HDL (SI-HDL) has been difficult because even the origin of HDL obtained in vivo from the intestinal lymph duct of anesthetized rodents is doubtful. To shed light on this question, we have developed a novel in situ perfusion technique using surgically isolated mouse SI, with which the possible filtration of plasma HDL into the SI lymph duct can be prevented. With the developed method, we studied the characteristics of and mechanism for the production and regulation of SI-HDL. Nascent HDL particles were detected in SI lymph perfusates in WT mice, but not in ABCA1 KO mice. SI-HDL had a high protein content and was smaller than plasma HDL. SI-HDL was rich in TG and apo AIV compared with HDL in liver perfusates. SI-HDL was increased by high-fat diets and reduced in apo E KO mice. In conclusion, with our in situ perfusion model that enables the selective evaluation of SI-HDL, we demonstrated that ABCA1 plays an important role in intestinal HDL production, and SI-HDL is small, dense, rich in apo AIV, and regulated by nutritional and genetic factors.
Keywords:atherosclerosis   regulation   lipoprotein   in situ perfusion   intestine
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