Direct Stimulation of Gastric Smooth Muscle Cells via Gq Proteins With Light.

IF 2.9 3区 医学 Q1 CLINICAL NEUROLOGY Neurogastroenterology and Motility Pub Date : 2025-06-01 Epub Date: 2025-03-31 DOI:10.1111/nmo.70028
David Zipf, Markus Vogt, Udhayabhaskar Sathyanarayanan, Ahmed Wagdi, Johannes Riebeling, Robert Patejdl, Tobias Bruegmann
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Abstract

Background: Optogenetics is a cutting-edge approach that can enable direct stimulation of gastric smooth muscle cells (SMC) by combining cell-specific overexpression of light-sensitive proteins with light stimulation. We previously demonstrated that direct optogenetic stimulation of gastric SMC via depolarization can restore contractility and food propulsion and could become a new treatment strategy for gastroparesis. The human receptor Neuropsin (hOPN5) enables activation of Gq signaling with UV light. Herein, we explore this new strategy for direct optogenetic stimulation of gastric SMC.

Methods: We used a transgenic mouse model expressing hOPN5 in fusion with eYFP. Antral longitudinal smooth muscle strips were used for isometric force measurements and whole stomachs for intragastric pressure measurements, comparing light stimulation to other stimuli. Adeno-associated virus (AAV) serotypes were screened for efficiency in transducing cultured gastric SMC, and transduced cells were tested by Ca2+ imaging.

Results: hOPN5 expression was restricted to and found in ~1/3 of SMC in the stomach. UV light induced isometric force and increased intragastric pressure only in transgenic mice similarly to electrical field stimulation and reached approximately 1/3 of the force induced by global depolarization and muscarinic receptor activation. Importantly, optical stimulation remained effective in an ex vivo gastroparesis model. AAV 2.5 was by far the most effective serotype for SMC transduction, and UV light triggered Ca2+ transients in SMC expressing hOPN5.

Conclusion: hOPN5 is a new and effective tool to directly stimulate gastric SMC to control contractility with light. Thus, it is an additional and complementary approach to light-induced membrane depolarization to restore gastric motility.

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Gq蛋白光直接刺激胃平滑肌细胞。
背景:光遗传学是一种通过结合细胞特异性过表达光敏蛋白和光刺激直接刺激胃平滑肌细胞(SMC)的前沿方法。我们之前已经证明,通过去极化直接光遗传刺激胃SMC可以恢复收缩力和食物推进力,可能成为胃轻瘫的新治疗策略。人类受体Neuropsin (hOPN5)能够在紫外线下激活Gq信号。在此,我们探索这种直接光遗传刺激胃SMC的新策略。方法:采用表达hOPN5与eYFP融合的转基因小鼠模型。采用正中纵向平滑肌条进行等距力测量,全胃进行胃内压测量,比较光刺激与其他刺激。筛选腺相关病毒(AAV)血清型对培养胃SMC的转导效率,并通过Ca2+成像检测转导细胞。结果:hOPN5的表达仅限于胃SMC的1/3。紫外光仅在转基因小鼠中引起与电场刺激相似的等距力和胃内压力的增加,并且达到了全球去极化和毒蕈碱受体激活所引起的力的大约1/3。重要的是,光刺激在离体胃轻瘫模型中仍然有效。到目前为止,AAV 2.5是最有效的SMC转导血清型,紫外光在表达hOPN5的SMC中触发Ca2+瞬态。结论:hOPN5是光直接刺激胃SMC控制收缩力的有效新工具。因此,它是光诱导膜去极化恢复胃运动的补充途径。
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来源期刊
Neurogastroenterology and Motility
Neurogastroenterology and Motility 医学-临床神经学
CiteScore
7.80
自引率
8.60%
发文量
178
审稿时长
3-6 weeks
期刊介绍: Neurogastroenterology & Motility (NMO) is the official Journal of the European Society of Neurogastroenterology & Motility (ESNM) and the American Neurogastroenterology and Motility Society (ANMS). It is edited by James Galligan, Albert Bredenoord, and Stephen Vanner. The editorial and peer review process is independent of the societies affiliated to the journal and publisher: Neither the ANMS, the ESNM or the Publisher have editorial decision-making power. Whenever these are relevant to the content being considered or published, the editors, journal management committee and editorial board declare their interests and affiliations.
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