June 2008 in “Wound Repair and Regeneration” In this study, Msx-2 knockout mice showed enhanced re-epithelialization and faster wound closure compared to wild-type controls, suggesting Msx-2 may influence skin morphogenesis during wound repair.
694 citations
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April 2000 in “Nature genetics” This study found that Msx2-deficient mice exhibit skull and bone formation defects similar to those seen in human MSX2-related conditions, highlighting the gene's importance in skeletal and organ development.
67 citations
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December 2008 in “Developmental Biology” This study found that the transcription factors Msx2 and Foxn1 are crucial for maintaining Notch1 expression in the hair follicle matrix, which is necessary for proper hair differentiation.
22 citations
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April 2012 in “The American journal of pathology” This study found that the loss of Msx2 in knockout mice led to phenotypes similar to Peters anomaly and microphthalmia, suggesting that MSX2 plays a critical role in anterior segment development of the eye.
19 citations
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March 2018 in “Journal of Investigative Dermatology” This study indicates that transient Msx2 expression is critical for wound-induced hair follicle neogenesis, with distinct phases in the healing process essential for epidermal competence and hair regeneration.