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

Molecular Characterization of Two Known SRD5A2 Gene Variants in Mexican Patients With Disorder of Sexual Development

墨西哥性发育障碍患者中两种已知SRD5A2基因变异的分子特征分析

María Guadalupe, Ortiz-López; Katy, Sánchez-Pozos; Charmina, Aguirre-Alvarado; Vihko, Pirkko; Marta, Menjivar

Loss of prostatic acid phosphatase and α-synuclein cause motor circuit degeneration without altering cerebellar patterning

前列腺酸性磷酸酶和 α-突触核蛋白的缺失会导致运动回路退化,而不会改变小脑模式

Maryam Rahimi-Balaei, Matthew Buchok, Pirkko Vihko, Fiona E Parkinson, Hassan Marzban

Brainstem hypoxia contributes to the development of hypertension in the spontaneously hypertensive rat

脑干缺氧是自发性高血压大鼠高血压发生发展的重要因素。

Marina, Nephtali; Ang, Richard; Machhada, Asif; Kasymov, Vitaliy; Karagiannis, Anastassios; Hosford, Patrick S; Mosienko, Valentina; Teschemacher, Anja G; Vihko, Pirkko; Paton, Julian F R; Kasparov, Sergey; Gourine, Alexander V

Mice deficient in transmembrane prostatic acid phosphatase display increased GABAergic transmission and neurological alterations

跨膜前列腺酸性磷酸酶缺陷的小鼠表现出 GABA 能传递增加和神经系统改变

Heidi O Nousiainen, Ileana B Quintero, Timo T Myöhänen, Vootele Voikar, Jelena Mijatovic, Mikael Segerstråle, Annakaisa M Herrala, Natalia Kulesskaya, Anitta E Pulkka, Tanja Kivinummi, Usama Abo-Ramadan, Tomi Taira, T Petteri Piepponen, Heikki Rauvala, Pirkko Vihko

Transmembrane prostatic acid phosphatase (TMPAP) interacts with snapin and deficient mice develop prostate adenocarcinoma

跨膜前列腺酸性磷酸酶 (TMPAP) 与 snapin 相互作用,缺陷小鼠会发生前列腺腺癌。

Quintero, Ileana B; Herrala, Annakaisa M; Araujo, César L; Pulkka, Anitta E; Hautaniemi, Sampsa; Ovaska, Kristian; Pryazhnikov, Evgeny; Kulesskiy, Evgeny; Ruuth, Maija K; Soini, Ylermi; Sormunen, Raija T; Khirug, Leonard; Vihko, Pirkko T

Rab13 is upregulated during osteoclast differentiation and associates with small vesicles revealing polarized distribution in resorbing cells

Rab13 在破骨细胞分化过程中上调,并与吸收细胞中呈现极化分布的小囊泡相关

Mirkka J Hirvonen, Mika T K Mulari, Kálmán G Büki, Pirkko Vihko, Pirkko L Härkönen, H Kalervo Väänänen

PAP and NT5E inhibit nociceptive neurotransmission by rapidly hydrolyzing nucleotides to adenosine.

PAP 和 NT5E 通过快速水解核苷酸生成腺苷来抑制伤害性神经传递

Street Sarah E, Walsh Paul L, Sowa Nathaniel A, Taylor-Blake Bonnie, Guillot Thomas S, Vihko Pirkko, Wightman R Mark, Zylka Mark J

Prostatic acid phosphatase reduces thermal sensitivity and chronic pain sensitization by depleting phosphatidylinositol 4,5-bisphosphate

前列腺酸性磷酸酶通过消耗磷脂酰肌醇 4,5-二磷酸来降低热敏感性和慢性疼痛致敏性

Nathaniel A Sowa, Sarah E Street, Pirkko Vihko, Mark J Zylka

Prostatic acid phosphatase is an ectonucleotidase and suppresses pain by generating adenosine.

前列腺酸性磷酸酶是一种外核苷酸酶,它通过产生腺苷来抑制疼痛

Zylka Mark J, Sowa Nathaniel A, Taylor-Blake Bonnie, Twomey Margaret A, Herrala Annakaisa, Voikar Vootele, Vihko Pirkko

Exercise-induced expression of angiogenic growth factors in skeletal muscle and in capillaries of healthy and diabetic mice

运动诱导健康小鼠和糖尿病小鼠骨骼肌及毛细血管中血管生成生长因子的表达

Kivelä, Riikka; Silvennoinen, Mika; Lehti, Maarit; Jalava, Sanni; Vihko, Veikko; Kainulainen, Heikki