Follicular Activation Modulation

Follicular activation modulation is the controlled adjustment of signals that regulate whether dormant ovarian follicles remain quiescent or begin growth, an important goal in reproductive bioengineering and fertility preservation. In engineered ovarian tissue systems, altering tissue mechanics can disrupt Hippo pathway signaling, while biochemical cues such as PI3K-Akt pathway stimulation influence follicle activation, survival, and development. These strategies support the study of follicle biology, the design of artificial ovary platforms, and the development of approaches for rescuing or maturing follicles from cryopreserved ovarian tissue. Improved control may enable more consistent in vitro growth and expand options for fertility preservation.

Follicular Activation Modulation - Related Videos

Research

JoVE Journal - Biology

Xenopus Oocytes: Optimized Methods for Microinjection, Removal of Follicular Cell Layers, and Fast Solution Changes in Electrophysiological Experiments

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Cited by 5 •

2016

Optimized procedures for the isolation of single follicles, cytoplasmic RNA microinjections, the removal of surrounding cell layers, and protein expression in Xenopus oocytes are described. In addition, a simple method for fast solution changes in electrophysiological experiments with ligand-gated ion channels is presented.

Collection of Human Follicular Fluid, Follicle Somatic Cells, and Immature Oocytes from Individuals Undergoing In Vitro Fertilization

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2025

This protocol outlines standardized methods to isolate and process follicular fluid, somatic cells, and immature oocytes from IVF procedures, enabling high-quality molecular and cellular analyses. These approaches support translational research into fertility, reproductive aging, and ovarian dysfunction using materials typically discarded in clinical care.

Research

JoVE Journal - Medicine
Free Sample

Electromechanical Assessment of Optogenetically Modulated Cardiomyocyte Activity

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Cited by 7 •

2020

We present a protocol for evaluating the electromechanical effects of GtACR1 activation in rabbit cardiomyocytes. We provide detailed information on cell isolation, culturing and adenoviral transduction, and on functional experiments with the patch-clamp and carbon-fiber techniques.

Quantifying the Modulation of Elastase Enzyme Activity Through Colorimetric Analysis

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Cited by 1 •

2025

This protocol describes the development of a colorimetric assay method for determining the ability of compounds to inhibit or activate elastase activity.

Non-Invasive Electrical Brain Stimulation for Modulating Human Motor Neuron Activity

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2025

Source: Curado, M. et. al., Non-Invasive Electrical Brain Stimulation Montages for Modulation of Human Motor Function. J. Vis. Exp. (2016)This video demonstrates the setup and mechanism of transcranial direct current stimulation (tDCS) for modulating human motor function. By placing the anode over the primary motor cortex and the cathode over the contralateral supraorbital area, the targeted electrical stimulation increases cortical excitability, enhancing motor neuron activity and improving...

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