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Stem cell-derived brain organoids for controlled studies of transcranial neuromodulation.

Authors: Kubanek J, Wilson M, Rabbitt RD, Armstrong CJ, Farley AJ, Ullah HMA, Shcheglovitov A

Transcranial neuromodulation methods have the potential to diagnose and treat brain disorders at their neural source in a personalized manner. However, it has been difficult to investigate the direct effects of transcranial neuromodulation on neurons in human brain tissue. Here, we show that human brain organoids provide a detailed and artifact-free window into neuromodulation-evoked electrophysiological effects. We derived human cortical organoids from induced pluripotent stem cells and implanted 32-channel electrode arrays. Each organoid was positioned in the center of the human skull and subjected to low-intensity transcranial focused ultrasound. We found that ultrasonic stimuli modulated network activity in the gamma and delta ranges of the frequency spectrum. The effects on the neural networks were a function of the ultrasound stimulation frequency. High gamma activity remained elevated for at least 20 minutes following stimulation offset. This approach is expected to provide controlled studies of the effects of ultrasound and other transcranial neuromodulation modalities on human brain tissue.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To investigate how transcranial focused ultrasound modulates neural network activity in human cortical (telencephalic) organoids using implanted multi-electrode recordings.
Animal model / Human subject Human (Homo sapiens), iPSC-derived cortical organoids; strain: N/A; age: None; sex: None
Disease model Healthy
Targeted brain region(s) Human Cortical Organoids

Outcomes and Safety

Summary of Outcomes Transcranial focused ultrasound modulated network activity in human cortical organoids in a frequency-dependent manner: 885 kHz stimulation increased gamma and high‑gamma (and decreased delta) while 270 kHz stimulation increased delta, alpha and beta, with high‑gamma and delta effects persisting for ~20 minutes after a 15‑minute, 0.65 MPa, 5% duty, 60 Hz PRF stimulation. Successful parameters: 885 kHz (high‑frequency) for gamma/high‑gamma modulation and 270 kHz (low‑frequency) for delta/alpha/beta modulation.
Duration of biological effect 20 minutes
Safety-related matter Ultrasound was pulsed at 5% duty and 60 Hz to prevent heating, and electrode displacements were minimal (~113±46 nm), arguing against vibration artifacts; no adverse effects or tissue damage were reported and sham (off-target) stimulation produced no effects.

Brain Region

Ultrasound Parameters

Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency single

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