Details of the Researcher

PHOTO

Haruka Sasaki
Section
Graduate School of Dentistry
Job title
Assistant Professor
Degree
  • Dentistry (Tohoku University)

e-Rad No.
10980914

Research History 2

  • 2020/04 - 2023/03
    Japan Society for the Promotion of Science

  • 2023/04 -
    東北大学 大学院歯学研究科 助教

Education 2

  • Tohoku University Graduate School of Dentistry

    2019/04 - 2023/03

  • Tohoku University Faculty of Dentistry

    2012/04 - 2018/03

Professional Memberships 3

  • 日本アレルギー学会

  • 歯科基礎医学会

  • 日本歯科麻酔学会

Research Interests 6

  • Idiopathic pulmonary fibrosis

  • Circadian rhythm

  • うま味

  • メラトニン

  • 気管平滑筋

  • 喘息

Awards 9

  1. Forbes 30 under 30 Asia 2024

    2024/05

  2. Inoue Foundation for Science

    2024/02 40th Inoue Research Award for Young Scientists

  3. 歯科基礎医学会 学会奨励賞

    2023/09 歯科基礎医学会

  4. The Asian Scientist 100

    2023/07 Asian Scientist Magazine

  5. Respiration Section Research Recognition Award

    2023/04 American Physiological Society

  6. 東北大学総長賞

    2023/03

  7. 第17回「ロレアルーユネスコ女性科学者 日本奨励賞」

    2022/09

  8. 第49回 日本歯科麻酔学会最優秀発表賞

    2021/10

  9. 第47回 日本歯科麻酔学会最優秀発表賞

    2019/10

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Papers 6

  1. Diurnal variation in asthma symptoms: Exploring the role of melatonin. International-journal

    Haruka Sasaki, Kentaro Mizuta

    Journal of oral biosciences 66 (3) 519-524 2024/09

    DOI: 10.1016/j.job.2024.06.008  

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    BACKGROUND: Asthma is a common chronic inflammatory disease affecting more than 260 million people worldwide. Nocturnal exacerbations of asthma symptoms significantly affect sleep quality and contribute to the most serious asthma exacerbations, which can lead to respiratory failure or death. Although β2-adrenoceptor agonists are the standard of care for asthma, their bronchodilatory effect for nocturnal asthma is limited, and medications that specifically target symptoms of nocturnal asthma are lacking. HIGHLIGHT: Melatonin, which is secreted by the pineal gland, plays a crucial role in regulating circadian rhythms. Peak serum melatonin concentrations, which are inversely correlated with diurnal changes in pulmonary function, are higher in patients with nocturnal asthma than in healthy individuals. Melatonin potentiates bronchoconstriction through the melatonin MT2 receptor expressed in the smooth muscles of the airway and attenuates the bronchodilatory effects of β2-adrenoceptor agonists, thereby exacerbating asthma symptoms. Melatonin inhibits mucus secretion and airway inflammation, potentially ameliorating asthma symptoms. CONCLUSION: Melatonin may exacerbate or ameliorate various pathophysiological conditions associated with asthma. As a potential therapeutic agent for asthma, the balance between its detrimental effects on airway smooth muscles and its beneficial effects on mucus production and inflammation remains unclear. Further studies are needed to elucidate whether melatonin worsens or improves asthma symptoms.

  2. Severe Bleeding During Orthognathic Surgery for a Noonan Syndrome Patient. International-journal

    Haruka Sasaki, Kentaro Mizuta

    Anesthesia progress 69 (4) 22-25 2022/12/01

    DOI: 10.2344/anpr-69-02-02  

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    Noonan syndrome (NS) is a genetic disorder characterized by craniofacial dysmorphism, chest deformities, congenital heart defects, and bleeding disorders. Although patients with NS have a high prevalence of orofacial deformity, few reports are available on their anesthetic management during orthognathic surgery. This case report describes a 31-year-old female with NS, anemia, hypertrophic cardiomyopathy, and mild mitral valve regurgitation who experienced severe bleeding during orthognathic surgery. After treating her anemia with oral iron therapy and subcutaneous epoetin β, 4 units of autologous blood was deposited prior to surgery. General anesthesia was induced with remifentanil and propofol and maintained with sevoflurane, remifentanil, and fentanyl. Despite mild hypotensive anesthesia (targeted mean arterial pressure of 65 mm Hg) with nitroglycerine and intravenous tranexamic acid for bleeding, adequate hemostasis was difficult to achieve and led to severe blood loss (1442 mL). Therefore, the 4 units of autologous blood and 2 units of packed red blood cells were transfused. Her postoperative course proceeded uneventfully without abnormal postoperative bleeding. Because patients with NS can have difficulty with hemostasis, vascular malformations, and fragile blood vessels, extensive hematologic evaluation and thorough preparation for unexpected bleeding are crucial to accomplish orthognathic surgery.

  3. Melatonin MT2 receptor is expressed and potentiates contraction in human airway smooth muscle. International-journal

    Haruka Sasaki, Yi Zhang, Charles W Emala Sr, Kentaro Mizuta

    American journal of physiology. Lung cellular and molecular physiology 321 (6) L991-L1005 2021/12/01

    DOI: 10.1152/ajplung.00273.2021  

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    Nocturnal asthma is characterized by heightened bronchial reactivity at night, and plasma melatonin concentrations are higher in patients with nocturnal asthma symptoms. Numerous physiological effects of melatonin are mediated via its specific G protein-coupled receptors (GPCRs) named the MT1 receptor, which couples to both Gq and Gi proteins, and the MT2 receptor, which couples to Gi. We investigated whether melatonin receptors are expressed on airway smooth muscle; whether they regulate intracellular cyclic AMP (cAMP) and calcium concentrations ([Ca2+]i), which modulate airway smooth muscle tone; and whether they promote airway smooth muscle cell proliferation. We detected the mRNA and protein expression of the melatonin MT2 but not the MT1 receptor in native human and guinea pig airway smooth muscle and cultured human airway smooth muscle (HASM) cells by RT-PCR, immunoblotting, and immunohistochemistry. Activation of melatonin MT2 receptors with either pharmacological concentrations of melatonin (10-100 µM) or the nonselective MT1/MT2 agonist ramelteon (10 µM) significantly inhibited forskolin-stimulated cAMP accumulation in HASM cells, which was reversed by the Gαi protein inhibitor pertussis toxin or knockdown of the MT2 receptor by its specific siRNA. Although melatonin by itself did not induce an initial [Ca2+]i increase and airway contraction, melatonin significantly potentiated acetylcholine-stimulated [Ca2+]i increases, stress fiber formation through the MT2 receptor in HASM cells, and attenuated the relaxant effect of isoproterenol in guinea pig trachea. These findings suggest that the melatonin MT2 receptor is expressed in ASM, and modulates airway smooth muscle tone via reduced cAMP production and increased [Ca2+]i.

  4. Anesthetic Management of a Patient With Ring 18 Syndrome. International-journal

    Midori Maekawa, Makoto Yasuda, Haruka Sasaki, Yasuharu Tachinami, Kentaro Mizuta

    Anesthesia progress 68 (3) 178-179 2021/10/01

    DOI: 10.2344/anpr-68-03-01  

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    Ring 18 syndrome or ring chromosome 18 is an extremely rare genetic disorder involving the fusion of the 18th chromosomal ends to form a ring, often with genetic material loss of varying degrees. Although clinical presentation can be extremely variable, characteristic features usually include craniofacial malformations, delayed development, hypotonia, and other skeletal and congenital heart defects. We report the management of a 20-year-old male with ring chromosome 18 who underwent general anesthesia for dental treatment. Clinical manifestations for this patient included intellectual disability, short stature, hypertelorism, flat nasal bridge, micrognathia, a "carp-shaped" mouth, and aortic and pulmonary valve regurgitation. Although mask ventilation and oral intubation were easily performed, nasal intubation was difficult because of rhinostenosis. When providing general anesthesia for a patient with ring chromosome 18, anesthesiologists should evaluate the patient preoperatively for congenital heart defects and prepare for a potential difficult airway.

  5. Ringer's acetate solution-induced precipitation of remimazolam. International-journal

    Haruka Sasaki, Hiroshi Hoshijima, Kentaro Mizuta

    British journal of anaesthesia 126 (3) e87-e89 2021/03

    DOI: 10.1016/j.bja.2020.11.021  

  6. The short-chain free fatty acid receptor FFAR3 is expressed and potentiates contraction in human airway smooth muscle. International-journal

    Kentaro Mizuta, Haruka Sasaki, Yi Zhang, Atsuko Matoba, Charles W Emala Sr

    American journal of physiology. Lung cellular and molecular physiology 318 (6) L1248-L1260 2020/06/01

    DOI: 10.1152/ajplung.00357.2019  

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    Emerging evidence suggests that gut microbiota-derived short-chain fatty acids (SCFAs; acetate, propionate, and butyrate) are important modulators of the inflammatory state in diseases such as asthma. However, the functional expression of the Gi protein-coupled free fatty acid receptors (FFAR2/GPR43 and FFAR3/GPR41) has not been identified on airway smooth muscle (ASM). Classically, acute activation of Gi-coupled receptors inhibits cyclic AMP (cAMP) synthesis, which impairs ASM relaxation and can also induce crosstalk between Gi- and Gq-signaling pathways, potentiating increases in intracellular Ca2+ concentration ([Ca2+]i), favoring ASM contraction. In contrast, chronic activation of Gi-coupled receptors can sensitize adenylyl cyclase resulting in increased cAMP synthesis favoring relaxation. We questioned whether the Gi-coupled FFAR2 or FFAR3 is expressed in human ASM, whether they modulate cAMP and [Ca2+]i, and whether SCFAs modulate human ASM tone. We detected the protein expression of FFAR3 but not FFAR2 in native human ASM and primary cultured human airway smooth muscle (HASM) cells. In HASM cells, acute activation of FFAR3 with SCFAs inhibited forskolin-stimulated cAMP accumulation, but chronic activation did not sensitize cAMP synthesis. SCFAs induced [Ca2+]i increases that were attenuated by pertussis toxin, gallein, U73122, or xestospongin C. Acute treatment with SCFAs potentiated acetylcholine-stimulated [Ca2+]i increases and stress fiber formation in cells and contraction of ex vivo human airway tissues. In contrast, chronic pretreatment of human ASM with propionate did not potentiate airway relaxation. Together, these findings demonstrate that FFAR3 is expressed in human ASM and contributes to ASM contraction via reduced cAMP and increased [Ca2+]i.

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Presentations 1

  1. 気管支喘息の病態形成におけるGPCRの役割と治療薬への応用 Invited

    佐々木 晴香

    第64回日本呼吸器学会学術講演会 2024/04/05

Research Projects 7

  1. 老化による神経障害性疼痛増悪機構の解明とミトコンドリア標的治療

    水田 健太郎, 小山内 実, 阿部 高明, 篠田 雅路, 佐々木 晴香

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 基盤研究(B)

    Institution: 東北大学

    2024/04/01 - 2028/03/31

  2. うま味受容体が制御する気道リモデリングの新規抑制機構

    佐々木 晴香

    Offer Organization: うま味研究会

    System: 第32回うま味研究会研究助成

    2026/01 - 2027/12

  3. うま味受容体を標的とした肺線維症進行抑制メカニズムの解明と新規治療戦略の創出

    佐々木 晴香

    Offer Organization: 武田科学振興財団

    System: 医学系研究助成

    Institution: 東北大学大学院歯学研究科

    2025/06 - 2027/03

  4. 夜間喘息における気道粘液分泌機構の解明と特異的治療法の開発

    佐々木 晴香

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 若手研究

    Institution: 東北大学

    2024/04 - 2027/03

  5. Development of novel asthma therapy based on the pathophysiology of airway hyperresponsiveness

    2025/04 - 2026/03

  6. うま味受容体を介した気管支喘息症状修飾機構の解明

    佐々木 晴香

    Offer Organization: 公益財団法人 三島海雲記念財団

    2023/07 - 2024/06

  7. 睡眠時における気管支喘息急性増悪機構の解明

    佐々木 晴香

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 特別研究員奨励費

    Category: 特別研究員奨励費

    Institution: 東北大学

    2020/04/24 - 2023/03/31

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    本研究は、気管支喘息の臨床症状が悪化する深夜帯に一致して血中濃度が最大になるホルモンであるメラトニンに注目し、メラトニンと喘息病態の関連性を解明することを目的としている。これまでに、気管平滑筋におけるメラトニン受容体の発現探索とメラトニンによる気管支収縮機構について検討を行った。 メラトニン受容体はMT1とMT2の2種に分類される。ヒト気管平滑筋におけるメラトニン受容体MT2の発現をRT-PCR法、Immunoblot法、及び免疫組織化学染色により確認した。一方、メラトニン受容体MT1の発現は確認されなかった。 気管平滑筋のGi/o蛋白共役型受容体は、細胞内cAMP産生抑制シグナルを介して気管平滑筋を収縮させる。そこで、メラトニン投与によるヒト気管平滑筋細胞(HASM)におけるcAMP産生の変化をELISA法で測定した。その結果、メラトニン投与によりcAMP産生量は有意にかつ用量依存性に抑制されることが明らかとなった。またこれらの作用はGi/o蛋白阻害薬である百日咳毒素の前処置、メラトニン受容体MT2のノックダウンにより有意に遮断された。以上より、メラトニンによるcAMP産生抑制作用はGi/o蛋白共役型受容体であるメラトニン受容体MT2を介して生じることが示唆された。 また、気管平滑筋収縮は細胞内Ca2+ストアからのCa2+放出によりF-アクチンが活性化されることで生じる。そこで、HASMにメラトニンを投与した際の細胞内Ca2+濃度の変化を、蛍光Ca2+イメージング法で測定した。その結果、メラトニンはアセチルコリン誘発性の細胞内Ca2+濃度上昇作用を用量依存性に増強させた。さらに、メラトニンによるアセチルコリン誘発性細胞内カルシウム濃度上昇作用は、Gi/o蛋白阻害薬である百日咳毒素の前処置により有意に抑制された。以上より、この反応はGi/o蛋白を介していることが示唆された。

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Media Coverage 1

  1. Haruka Sasaki, uncovering the link between melatonin and asthma

    Advanced Science News

    2024/12

    Type: Newspaper, magazine