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research Maternal androgen excess inhibits fetal cardiomyocytes proliferation through RB-mediated cell cycle arrest and induces cardiac hypertrophy in adulthood
Excess maternal androgens can cause heart problems in offspring.
research Conditioned media from human pluripotent stem cell‐derived cardiomyocytes inhibit the growth and migration of lung cancer cells
Cardiomyocyte-derived media can inhibit lung cancer cell growth and movement.
research P6590Androgenic effects on ventricular repolarization: a translational study from pharmacovigilance databases to iPSC-cardiomyocytes
Androgen-deprivation therapies increase the risk of certain heart conditions, but testosterone treatment may help.
research Cardiomyocyte psychology
Creating a supportive environment is crucial for repairing heart tissue without using actual heart cells.
research Induction of cardiomyocyte‑like cells from hair follicle cells in mice
Mouse hair follicle cells can become heart-like cells without genetic changes.
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5 / 1000+ resultscommunity Hair growth stimulated by allogenic adipose-derived stem cells supplemented with ATP in a mouse model of dihydrotestosterone-induced androgenetic alopecia
Adipose-derived stem cells with ATP improved hair regrowth in male and female mice with androgenetic alopecia. The most effective treatments were low dose stem cells with ATP for males and medium dose stem cells with non-liposomal ATP for females.
community The dose dependent nature of the cardiac effects RU58841
Reducing the dose of RU58841 from 25mg to 7.5mg topically helped minimize heart palpitations. Users discussed the cardiac effects of RU58841 and minoxidil, noting that no treatment is completely free of side effects.
community Taking Potassium Chloride and Magnesium made minoxidil-induced palpitations 0
community Adipose tissue layer and stem cells.
Adipose fat cells and stem cells may help treat hair loss by restoring the scalp's thickness. Treatments like NanoFat injections and Botox are discussed for their potential to promote hair growth.
community REVOLUTION in AUGUST: New possibilities according to Dr. Muñoz (pinacidil, cromakalim, diazoxide and nicorandil)
Dr. Muñoz's discovery suggests that targeting potassium channels in fibroblasts could reactivate hair growth, offering new treatment possibilities for alopecia. Potential strategies include using minoxidil, diazoxide, and other potassium channel openers, as well as bioelectric devices and direct growth factor applications.