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Mai Haraguchi-Kitakamae

Explore the profile of Mai Haraguchi-Kitakamae including associated specialties, affiliations and a list of published articles. Areas
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Articles 14
Citations 31
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Recent Articles
1.
Sakakibara M, Hasegawa T, Haraguchi-Kitakamae M, Shi Y, Li W, Cui J, et al.
J Oral Biosci . 2025 Jan; 100612. PMID: 39805401
Objectives: Hydroxyapatite (HAp)/collagen (Col) cylinders with laminated collagen layers were implanted into the tibial diaphysis of rats and examined histochemically to clarify how the orientation of HAp and Col bone-like...
2.
Yao Q, Tsuboi K, Hongo H, Sakakibara M, Yamamoto T, Haraguchi-Kitakamae M, et al.
J Oral Biosci . 2024 Dec; :100602. PMID: 39706476
Objective: To elucidate the mechanisms underlying diabetic osteoporosis, we conducted a comprehensive histological examination of the femora of Spontaneously Diabetic Torii-Lepr (SDT-fa/fa) rats, an established model of obesity-related type 2...
3.
Hasegawa T, Yamamoto T, Haraguchi-Kitakamae M, Hongo H, Shi Y, Cui J, et al.
J Bone Miner Metab . 2024 Dec; PMID: 39630261
Parathyroid hormone (PTH) is thought to induce remodeling-based bone formation by promoting osteoclastic activity, a process known as cellular coupling. Our research has shown that the frequency of PTH administration...
4.
Haraguchi-Kitakamae M, Nakajima Y, Yamamoto T, Hongo H, Cui J, Shi Y, et al.
J Oral Biosci . 2024 Jun; 66(3):554-566. PMID: 38942193
Objectives: This study aimed to elucidate whether the administration of parathyroid hormone (PTH) results in remodeling- or modeling-based bone formation in different regions of the murine femora, and whether the...
5.
Abe M, Hasegawa T, Hongo H, Yamamoto T, Shi Y, Cui J, et al.
J Histochem Cytochem . 2024 May; 72(5):309-327. PMID: 38725403
To clarify the cellular mechanism of cortical porosity induced by intermittent parathyroid hormone (PTH) administration, we examined the femoral cortical bone of mice that received 40 µg/kg/day (four times a...
6.
Hasegawa T, Yamamoto T, Hongo H, Yamamoto T, Haraguchi-Kitakamae M, Ishizu H, et al.
Int J Mol Sci . 2024 Apr; 25(8). PMID: 38673844
This study aimed to examine minimodeling-based bone formation between the epiphyses and metaphyses of the long bones of eldecalcitol (ELD)-administered ovariectomized rats. Sixteen-week-old female rats were divided into four groups:...
7.
Morimoto Y, Hasegawa T, Hongo H, Yamamoto T, Maruoka H, Haraguchi-Kitakamae M, et al.
Front Bioeng Biotechnol . 2023 Oct; 11:1243951. PMID: 37885453
The current study aimed to evaluate bone tissue regeneration using a combination of β-tricalcium phosphate (βTCP) and phosphorylated pullulan (PPL, a phosphate-rich polysaccharide polymer consisting of maltotriose units). Round defects...
8.
Yamamoto T, Abe M, Hongo H, Maruoka H, Yoshino H, Haraguchi-Kitakamae M, et al.
J Oral Biosci . 2023 Aug; 65(4):265-272. PMID: 37595744
Objectives: It has been highlighted that osteoblastic activities in remodeling-based bone formation are coupled with osteoclastic bone resorption while those in modeling-based bone formation are independent of osteoclasts. This study...
9.
Yamamoto T, Maruoka H, Hongo H, Yoshino H, Haraguchi-Kitakamae M, Liu X, et al.
J Oral Biosci . 2023 Aug; 65(4):395-400. PMID: 37595743
The current study examined the gene expression profiles of anabolic and catabolic molecules after a single parathyroid hormone (PTH) injection in mice. No significant changes were observed in alkaline phosphatase...
10.
Muneyama T, Hasegawa T, Yimin , Yamamoto T, Hongo H, Haraguchi-Kitakamae M, et al.
J Oral Biosci . 2023 Apr; 65(2):163-174. PMID: 37088152
Objective: Toll-like receptor 2 (TLR2), recognizes a wide variety of pathogen-associated molecular patterns such as lipopolysaccharides, peptidoglycans, and lipopeptides, and is generally believed to be present in monocytes, macrophages, dendritic...