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Hiroko Segawa

Showing results (91-100 of 98) with videos related to

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Clinical and Experimental Nephrology|March 22, 2019
Role of the putative PKC phosphorylation sites of the type IIc sodium-dependent phosphate transporter in parathyroid hormone regulationToru Fujii, Hiroko Segawa, Ai Hanazaki, et al.
The Journal of Medical Investigation : JMI|March 28, 2012
Identification and functional analysis of a splice variant of mouse sodium-dependent phosphate transporter Npt2cShoji Kuwahara, Fumito Aranami, Hiroko Segawa, et al.
Scientific Reports|April 16, 2022
Tmem174, a regulator of phosphate transporter prevents hyperphosphatemiaSumire Sasaki, Yuji Shiozaki, Ai Hanazaki, et al.
Clinical and Experimental Nephrology|October 15, 2018
Analysis of opossum kidney NaPi-IIc sodium-dependent phosphate transporter to understand Pi handling in human kidneyToru Fujii, Yuji Shiozaki, Hiroko Segawa, et al.
American Journal of Physiology. Renal Physiology|June 5, 2009
Differential regulation of the renal sodium-phosphate cotransporters NaPi-IIa, NaPi-IIc, and PiT-2 in dietary potassium deficiencySophia Y Breusegem, Hideaki Takahashi, Hector Giral-Arnal, et al.
Kidney & Blood Pressure Research|September 14, 2018
A Role of Intestinal Alkaline Phosphatase 3 (Akp3) in Inorganic Phosphate HomeostasisShohei Sasaki, Hiroko Segawa, Ai Hanazaki, et al.
Clinical and Experimental Nephrology|November 13, 2017
Effect of Npt2b deletion on intestinal and renal inorganic phosphate (Pi) handlingKayo Ikuta, Hiroko Segawa, Shohei Sasaki, et al.
American Journal of Physiology. Renal Physiology|August 6, 2011
Inorganic phosphate homeostasis in sodium-dependent phosphate cotransporter Npt2b⁺/⁻ miceAkiko Ohi, Etsuyo Hanabusa, Otoya Ueda, et al.
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Showing results (91-100 of 98) with videos related to

Sort By:
Pageof 10
You have reached the last page of results.This site can display upto 98 results.
Clinical and Experimental Nephrology|March 22, 2019
Role of the putative PKC phosphorylation sites of the type IIc sodium-dependent phosphate transporter in parathyroid hormone regulationToru Fujii, Hiroko Segawa, Ai Hanazaki, et al.
The Journal of Medical Investigation : JMI|March 28, 2012
Identification and functional analysis of a splice variant of mouse sodium-dependent phosphate transporter Npt2cShoji Kuwahara, Fumito Aranami, Hiroko Segawa, et al.
Scientific Reports|April 16, 2022
Tmem174, a regulator of phosphate transporter prevents hyperphosphatemiaSumire Sasaki, Yuji Shiozaki, Ai Hanazaki, et al.
Clinical and Experimental Nephrology|October 15, 2018
Analysis of opossum kidney NaPi-IIc sodium-dependent phosphate transporter to understand Pi handling in human kidneyToru Fujii, Yuji Shiozaki, Hiroko Segawa, et al.
American Journal of Physiology. Renal Physiology|June 5, 2009
Differential regulation of the renal sodium-phosphate cotransporters NaPi-IIa, NaPi-IIc, and PiT-2 in dietary potassium deficiencySophia Y Breusegem, Hideaki Takahashi, Hector Giral-Arnal, et al.
Kidney & Blood Pressure Research|September 14, 2018
A Role of Intestinal Alkaline Phosphatase 3 (Akp3) in Inorganic Phosphate HomeostasisShohei Sasaki, Hiroko Segawa, Ai Hanazaki, et al.
Clinical and Experimental Nephrology|November 13, 2017
Effect of Npt2b deletion on intestinal and renal inorganic phosphate (Pi) handlingKayo Ikuta, Hiroko Segawa, Shohei Sasaki, et al.
American Journal of Physiology. Renal Physiology|August 6, 2011
Inorganic phosphate homeostasis in sodium-dependent phosphate cotransporter Npt2b⁺/⁻ miceAkiko Ohi, Etsuyo Hanabusa, Otoya Ueda, et al.
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