日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Using Spatial Transcriptomics to Identify a Diagnostic Molecular Signature Associated with Reversible Dental Pulpitis

利用空间转录组学鉴定与可逆性牙髓炎相关的诊断分子特征

Zaky, Samer Helal; Rajasundaram, Dhivyaa; Lee, Alyssa Lu; Summersgill, Kurt; Levine, Steven; Boulos, Osama; Intini, Giuseppe; Sfeir, Charles; Silva, Renato Menezes

Age-associated declining of the regeneration potential of skeletal stem/progenitor cells

骨骼干/祖细胞再生潜能随年龄增长而下降

Mancinelli, Luigi; Intini, Giuseppe

Avenues of research in dietary interventions to target tumor metabolism in osteosarcoma

以饮食干预为靶点调控骨肉瘤肿瘤代谢的研究方向

Leite, Taiana Campos; Watters, Rebecca Jean; Weiss, Kurt Richard; Intini, Giuseppe

Activation of creER recombinase in the mouse calvaria induces local recombination without effects on distant skeletal segments.

小鼠颅骨中 creER 重组酶的激活可诱导局部重组,而不会对远端骨骼节段产生影响

Hou Jue, Lin Charles P, Intini Giuseppe

Outcome of early dental implant placement versus other dental implant placement protocols: A systematic review and meta-analysis

早期种植牙与其他种植牙方案疗效比较:系统评价和荟萃分析

Bassir, Seyed Hossein; El Kholy, Karim; Chen, Chia-Yu; Lee, Kyu Ha; Intini, Giuseppe

Prx1 Expressing Cells Are Required for Periodontal Regeneration of the Mouse Incisor

Prx1表达细胞是小鼠门牙牙周组织再生所必需的

Bassir, Seyed Hossein; Garakani, Sasan; Wilk, Katarzyna; Aldawood, Zahra A; Hou, Jue; Yeh, Shu-Chi A; Sfeir, Charles; Lin, Charles P; Intini, Giuseppe

In Vivo 3D Histomorphometry Quantifies Bone Apposition and Skeletal Progenitor Cell Differentiation.

体内三维组织形态计量学量化骨沉积和骨骼祖细胞分化

Yeh Shu-Chi A, Wilk Katarzyna, Lin Charles P, Intini Giuseppe

In vivo identification of Bmp2-correlation networks during fracture healing by means of a limb-specific conditional inactivation of Bmp2

通过肢体特异性条件性Bmp2失活,在体内鉴定骨折愈合过程中Bmp2相关网络

Yu, Yau-Hua; Wilk, Katarzyna; Waldon, PhiAnh L; Intini, Giuseppe

Potential for Stem Cell-Based Periodontal Therapy

干细胞牙周治疗的潜力

Bassir, Seyed Hossein; Wisitrasameewong, Wichaya; Raanan, Justin; Ghaffarigarakani, Sasan; Chung, Jamie; Freire, Marcelo; Andrada, Luciano C; Intini, Giuseppe

Loss of BMPR2 leads to high bone mass due to increased osteoblast activity

BMPR2 的缺失会导致成骨细胞活性增强,从而导致骨量增加。

Lowery, Jonathan W; Intini, Giuseppe; Gamer, Laura; Lotinun, Sutada; Salazar, Valerie S; Ote, Satoshi; Cox, Karen; Baron, Roland; Rosen, Vicki