医学部

浦久保 秀俊

ウラクボ ヒデトシ  (Hidetoshi Urakubo)

基本情報

所属
藤田医科大学 医学部・医用データ科学講座 准教授
学位
博士(工学)(2003年3月 東京大学)

研究者番号
40512140
J-GLOBAL ID
201101036451836391
researchmap会員ID
B000004615

外部リンク

脳は、記憶により駆動されるシステムです。私たちは、過去の記憶・経験に基づいて思考し、より良い未来を目指して行動します。人工ニューラルネットワークがトレーニングに基づいて神経結合を形成して機能を決定するように、記憶(経験)がその人のありようを決定するのです。

 私は、記憶がどのように入力されるかについて、分子神経科学の実験的知見をコンピュータシミュレーションにより統合して動作を検証する研究を行ってきました。記憶は「シナプス」と呼ばれる素子を単位として生じます。ただし、シナプスへの記憶の入力方法は極めて多様で、ある時は各々独立に、時には共同して生じますし、発達・情動・精神疾患により大きく影響を受けます。

 私は、多様な記憶入力について数学的ルールを抽出し、脳がどのように記憶・学習を形づくるかについて明らかにします。物質としての脳から機能的実体が生じる初めの一歩に注目して研究を進める予定です。詳しくは「研究紹介」をご覧ください。


委員歴

 1

受賞

 1

論文

 31
  • Carlos Enrique Gutierrez, Jean Lienard, Benoit Girard, Hidetoshi Urakubo, Kenji Doya
    2025年11月12日  
    ABSTRACT The basal ganglia (BG) are central to action selection and reinforcement learning, yet how the topological organization of the BG circuit with dopamine (DA) D1- and D2-receptors shape learning remains unclear. We present a topologically organized spiking model of macaque BG with cortico-striatal inputs organized into competing channels, D1/D2 medium spiny neurons (MSNs), three-factor DA-modulated STDP for cortical synapses, asymmetric intra-striatal collaterals, and partially overlapping direct/indirect pathways. We validate resting activity and action selection, then study conditioning and generalization–discrimination learning using DA bursts (CS+) and dips (CS). Two structural determinants emerged. First, pathway overlap ( λ ) trades off selection efficiency and learning speed: higher overlap degrades GPi-based selection efficiency during conditioning, yet accelerates convergence during discrimination by strengthening D2 influence on GPi. Second, lateral inhibition from MSN-D2 to MSNs ( κ ) helps constrain competing actions but is not sufficient alone; robust discrimination requires DA-dip–dependent up-modulation of D2 collateral efficacy ( η ), which speeds and, at low overlap, enables convergence. Simulations under Parkinsonian and schizophrenia-like settings showed different deficits. A hypodopaminergic “Parkinsonian” STDP regime (D1 LTP loss, D2 LTD loss) impaired conditioning and failed to enhance discrimination. In contrast, attenuated D2 plasticity during DA dips (modeling methamphetamine-induced changes/schizophrenia-related dysregulation) selectively disrupted discrimination while sparing conditioning. Finally, we demonstrate efficient scaling on the Fugaku supercomputer to rodent and non-human primate–relevant sizes, supporting large-scale, biologically grounded BG simulations. Together, the results highlight how pathway overlap and D2 collateral dynamics jointly regulate the speed and reliability of discrimination learning, and how specific DA perturbations map to distinct learning impairments.
  • Takashi Miyata, Daisuke Hagiwara, Ryosei Ashida, Satoshi Naito, Yohei Kawaguchi, Tomoko Handa, Tomoko Kobayashi, Mariko Sugiyama, Takeshi Onoue, Shintaro Iwama, Hidetaka Suga, Ryoichi Banno, Mami Matsumoto, Hidetoshi Urakubo, Nobuhiko Ohno, Hiroshi Arima
    Cell and Tissue Research 2025年10月4日  査読有り
    Abstract Familial neurohypophysial diabetes insipidus (FNDI) is an autosomal dominant disorder caused by mutations in the arginine vasopressin (AVP) gene. In AVP neurons in a mouse model of FNDI, aggregates of mutant AVP precursors accumulate within a specific compartment of the endoplasmic reticulum (ER). However, as FNDI mice aged, or were exposed to repeated water deprivation, the ER lumen dilated and mutant aggregates dispersed throughout the ER. Meanwhile, autophagic isolation membranes, known as phagophores, emerged to envelop ER containing these aggregates, indicating induction of ER-phagy. Previous in vitro studies showed that phagophores originate from ER membranes, but the structural relationship between phagophores and the ER membrane in vivo remains unknown. In this study, we used serial block-face scanning electron microscopy to investigate the structural relationship between phagophores, ER membranes, and protein aggregates within dilated ER of AVP neurons from FNDI mice subjected to intermittent water deprivation for 4 weeks. Three-dimensional analysis revealed that phagophores enveloped aggregates located within the dilated ER. Serial imaging further demonstrated a physical connection between these phagophores and intact ER membranes. This study provides the first in vivo evidence of the structural continuity between phagophores and the ER membrane in AVP neurons in a mouse model of FNDI.
  • Hidetoshi Urakubo
    Microscopy 74(3) 223-232 2025年6月  査読有り招待有り筆頭著者最終著者責任著者
  • Vikas Pandey, Tomohisa Hosokawa, Yasunori Hayashi, Hidetoshi Urakubo
    Cell Reports 44(4) 115504 2025年4月8日  査読有り最終著者責任著者
  • Tomonobu Ezure, Kyoichi Matsuzaki, Hidetoshi Urakubo, Nobuhiko Ohno
    Scientific reports 15(1) 4195-4195 2025年2月4日  
    This study developed a three-dimensional ultrastructural analysis application using serial block-face scanning electron microscopy (SBF-SEM) to investigate surgically acquired human skin tissues containing the arrector pili muscle. We utilized the en bloc staining, including reduced osmium, thiocarbohydrazide, and lead aspartate, as well as the embedding using a carbon-based conductive resin. Next, we obtained serial images with SBF-SEM. The results revealed dense nerve fiber networks branching from nearby nerve fiber bundles outside the muscle and running among muscle fibers. Additionally, the dense nerve network running through and along arrector pili muscle fibers rarely penetrates the connective tissues between smooth muscle fibers and epithelial cells. Furthermore, in the observation area, no individual smooth muscle fibers formed adhesion structures with the epithelial cells of the hair follicle, ending in the dermal extracellular matrix near the epithelial cells. These results indicate the usefulness of this approach for three-dimensional ultrastructural analyses of human skin tissues comprising follicular units and revealing structural changes in skin tissues, especially the arrector pili muscle and nerve fibers with hair follicular epithelium, in aging and diseased conditions.

MISC

 25

書籍等出版物

 2

担当経験のある科目(授業)

 6

共同研究・競争的資金等の研究課題

 12