Nattapon Panupinthu
Overview
Explore the profile of Nattapon Panupinthu including associated specialties, affiliations and a list of published articles.
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Articles
26
Citations
1768
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Recent Articles
1.
Thonapan N, Wongdee K, Aksornthong S, Teerapornpuntakit J, Tiyasatkulkovit W, Panupinthu N, et al.
PLoS One
. 2025 Jan;
20(1):e0317415.
PMID: 39820616
Although long-term high dietary sodium consumption often aggravates hypertension and bone loss, sodium in the intestinal lumen has been known to promote absorption of nutrients and other ions, e.g., glucose...
2.
Tanadchangsaeng N, Pasanaphong K, Tawonsawatruk T, Rattanapinyopituk K, Tangketsarawan B, Rawiwet V, et al.
Sci Rep
. 2024 Oct;
14(1):23240.
PMID: 39369014
Gelatin methacryloyl (GelMA), typically derived from mammalian sources, has recently emerged as an ideal bio-ink for three-dimensional (3D) bioprinting. Herein, we developed a fish skin-based GelMA bio-ink for the fabrication...
3.
Chankamngoen W, Thammayon N, Suntornsaratoon P, Nammultriputtar K, Kitiyanant N, Donpromma N, et al.
Biochem Biophys Res Commun
. 2024 Jul;
733:150429.
PMID: 39053106
Fibroblast growth factor (FGF)-21 is a salient liver-derived endocrine regulator for metabolism of glucose and triglyceride as well as bone remodeling. Previously, certain peptides in the FGF family have been...
4.
Yu F, Zhao B, Panupinthu N, Jewell J, Lian I, Wang L, et al.
Cell
. 2024 Mar;
187(6):1563-1564.
PMID: 38490182
No abstract available.
5.
Chankamngoen W, Krungchanuchat S, Thongbunchoo J, Sirinonthanawech N, Teerapornpuntakit J, Panupinthu N, et al.
Sci Rep
. 2023 Dec;
13(1):21173.
PMID: 38040893
Iron overload negatively affects bone mass and strength. However, the impact of iron excess on osteocytes-important bone cells for mechanotransduction and remodeling-is poorly understood. Herein, we examined the effects of...
6.
Somsura R, Kamkajon K, Chaimongkolnukul K, Chantip S, Teerapornpuntakit J, Wongdee K, et al.
PeerJ
. 2023 Oct;
11:e16300.
PMID: 37872946
Background: Cellular senescence is an age-related physiological process that contributes to tissue dysfunction and accelerated onset of chronic metabolic diseases including hypertension. Indeed, elevation of blood pressure in hypertension coincides...
7.
Phummisutthigoon S, Lertsuwan K, Panupinthu N, Aeimlapa R, Teerapornpuntakit J, Chankamngoen W, et al.
PLoS One
. 2022 Aug;
17(8):e0273267.
PMID: 36040915
Although iron is an essential element for hemoglobin and cytochrome synthesis, excessive intestinal iron absorption-as seen in dietary iron supplementation and hereditary disease called thalassemia-could interfere with transepithelial transport of...
8.
Charoenphandhu N, Sooksawanwit S, Aeimlapa R, Thonapan N, Upanan P, Adulyaritthikul P, et al.
Sci Rep
. 2022 Apr;
12(1):5959.
PMID: 35396390
Thalassemia causes anemia, ineffective erythropoiesis, bone loss and iron accumulation in several tissues, e.g., liver, bone and heart, the last of which leads to lethal cardiomyopathy and arrhythmia. Although exercise...
9.
Chaimana R, Teerapornpuntakit J, Jantarajit W, Lertsuwan K, Krungchanuchat S, Panupinthu N, et al.
Biochem Biophys Rep
. 2021 Jun;
27:101054.
PMID: 34189282
Parathyroid hormone (PTH) has previously been shown to enhance the transepithelial secretion of Cl and HCO across the intestinal epithelia including Caco-2 monolayer, but the underlying cellular mechanisms are not...
10.
Tiyasatkulkovit W, Aksornthong S, Adulyaritthikul P, Upanan P, Wongdee K, Aeimlapa R, et al.
Sci Rep
. 2021 Jan;
11(1):1850.
PMID: 33473159
Excessive salt intake has been associated with the development of non-communicable diseases, including hypertension with several cardiovascular consequences. Although the detrimental effects of high salt on the skeleton have been...