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Updated: Jan 19, 2026

Isolation of Primary Mouse Trophoblast Cells and Trophoblast Invasion Assay
Published on: January 8, 2012
CRY2 suppresses trophoblast migration and invasion in recurrent spontaneous abortion
Lianzhi Wu1, Biheng Cheng1, Qian Liu1
1Department of Obstetric, Renmin Hospital of Wuhan University, No. 99 Zhangzhidong Road, Wuchang District, Wuhan, Hubei Province, China.
Abstract:
Disruption of circadian rhythms is associated with aberrant trophoblast migration and invasion in recurrent spontaneous abortion (RSA). This study aims to explore the functional role and the mechanisms of cryptochrome 2 (CRY2), a fundamental component of the circadian clock, in regulating trophoblast migration and invasion. Human extravillous trophoblast cell line HTR-8/SVneo was used as a cell model. Cell migration and invasion were examined using wound healing assay and Transwell assay, respectively. The mRNA and protein levels were determined using quantitative real-time polymerase chain reaction and western blot, respectively. Luciferase reporter assay and chromatin immunoprecipitation assay were performed to explore the interaction between c-Myc to the brain and muscle ARNT-like protein 1 (BMAL1) promoter. CRY2 was highly expressed in human villous specimens of RSA. Furthermore, CRY2 overexpression impaired migration and invasion in HTR-8/SVneo cells, whereas CRY2 knockdown yielded the opposite results. Mechanistically, c-Myc bound to the BMAL1 promoter and induced BMAL1 transcription, both of which further activated matrix metalloproteinase 2/9 (MMP2/9) and facilitated migration and invasion in HTR-8/SVneo cells. CRY2 inhibited c-Myc-BMAL1 pathway and impaired migration and invasion of HTR-8/SVneo cells. Collectively, these findings demonstrate that CRY2 suppresses trophoblast migration and invasion via inhibiting c-Myc-BMAL1-MMP2/9 pathway.
Insights
Cryptochrome 2 (CRY2) disrupts trophoblast cell migration and invasion, key processes in recurrent spontaneous abortion (RSA). CRY2 inhibits the c-Myc-BMAL1 pathway, offering potential therapeutic targets for RSA.
Area of Science:
- Reproductive biology
- Chronobiology
- Cellular and molecular mechanisms
Background:
- Disrupted circadian rhythms are linked to abnormal trophoblast function in recurrent spontaneous abortion (RSA).
- Cryptochrome 2 (CRY2), a core circadian clock component, is investigated for its role in trophoblast migration and invasion.
Purpose of the Study:
- To elucidate the functional role of CRY2 in regulating human trophoblast cell migration and invasion.
- To uncover the underlying molecular mechanisms by which CRY2 influences these processes.
Main Methods:
- Utilized HTR-8/SVneo human extravillous trophoblast cells.
- Assessed cell migration and invasion via wound healing and Transwell assays.
- Quantified gene and protein expression using qRT-PCR and Western blot.
- Investigated protein-DNA interactions with luciferase reporter and ChIP assays.
Main Results:
- CRY2 exhibited high expression in RSA villous specimens.
- CRY2 overexpression inhibited, while knockdown enhanced, trophoblast migration and invasion.
- CRY2 suppressed the c-Myc-BMAL1 pathway, which normally activates MMP2/9 to promote migration and invasion.
Conclusions:
- CRY2 acts as a suppressor of trophoblast migration and invasion.
- The mechanism involves the inhibition of the c-Myc-BMAL1-MMP2/9 signaling pathway.
- CRY2 represents a potential therapeutic target for managing recurrent spontaneous abortion.
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