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research Novel and Established Potassium Channel Openers Stimulate Hair Growth In Vitro: Implications for their Modes of Action in Hair Follicles
Potassium channel openers like minoxidil help hair grow by acting on hair follicles.
research Potassium Channel Openers Stimulate DNA Synthesis in Mouse Epidermal Keratinocyte and Whole Hair Follicle Cultures
Potassium channel openers can boost hair growth by stimulating DNA in hair follicles.
research Potassium Channel Conductance as a Control Mechanism in Hair Follicles.
research Potassium Channel Openers Increase Aortic Elastic Fiber Formation and Reverse the Genetically Determined Elastin Deficit in the BN Rat
Potassium channel openers help form elastic fibers in arteries and can treat elastin deficiency and hypertension.
research Potassium channel openers: therapeutic potential in cardiology and medicine
Potassium channel openers show promise for treating heart disease and other conditions, but more research is needed to fully understand their effects and safety.
research EFFECT OF POTASSIUM ON BLOOD-SUGAR AND PLASMA-INSULIN LEVELS IN PATIENTS UNDERGOING PERITONEAL DIALYSIS AND HÆMODIALYSIS
Potassium levels affect blood sugar and insulin during dialysis, and malnutrition changes children's hair roots.
research KCNQ Potassium Channels Modulate Sensitivity of Skin Down-hair (D-hair) Mechanoreceptors
KCNQ potassium channels help control the sensitivity of touch receptors in the skin.
research Effect of minoxidil sulfate and pinacidil on single potassium channel current in cultured human outer root sheath cells and dermal papilla cells
Minoxidil sulfate and pinacidil may promote hair growth through increased blood flow, not by activating potassium channels.
research The Utility of Monitoring Potassium in Transgender, Gender Diverse, and Nonbinary Individuals on Spironolactone
Young transgender, gender diverse, and nonbinary people on spironolactone have a low risk of high potassium, so frequent monitoring may not be needed.
research Crosslinking structure of keratin. V. Number and type of crosslinks in microstructures of untreated and potassium cyanide treated human hair
Potassium cyanide treatment changes hair's disulfide bonds, making it more elastic.
research Some Effects Related to the Potassium and Lysine Intake of Rats
Higher potassium intake may protect against hair loss and liver fat in lysine-deficient rats.
research Crosslinking structure of keratin. V. Number and type of crosslinks in microstructures of untreated and potassium cyanide treated human hair
Potassium cyanide changes hair's disulfide bonds to monosulfide, affecting high-sulfur proteins more.
research Targeting Solid Tumours With Potassium Channel Activators. A Return to Fundamentals?
Potassium channel activators like nicotinamide and minoxidil might help treat solid tumors.
research Potassium channels: new targets for drug treatment.
Potassium channels are important drug targets for treating conditions like hypertension, hair loss, and diabetes.
research Antagonistic Effect of Potassium Iodide in Baldness due to Thallium Acetate
Potassium iodide prevents hair loss and reduces toxicity from thallium acetate.
research Analysis of Isotretinoin-Induced Alterations in the Levels of Plasma Trace Elements: Investigation of the Relationship Between Magnesium, Phosphorus, Potassium, Zinc, and Treatment-Related Side Effects
Isotretinoin affects trace element levels and requires monitoring of liver and kidney functions.
research Synthesis and Performance of Potassium Monoester Maleate: A Multifunctional Surfactant Towards Hair Repair
Potassium monoester maleates can effectively repair damaged hair and improve haircare products.
research Embryo‐Fetal Developmental Toxicity and Toxicokinetics Studies of YWS1903 , a Novel Potassium‐Competitive Acid Blocker, in Pregnant Rats
YWS1903 is safe for pregnant rats at moderate doses but causes fetal issues at high doses.
research Effects of Potassium Channel Modulators on the Responses of Mammalian Slowly Adapting Mechanoreceptors
Potassium channel modulators mostly increase the activity of rat whisker mechanoreceptors.
research Minoxidil suppressed mitochondrial depolarization and subsequent neuronal cell death by decreasing intracellular potassium level
Minoxidil may protect the brain from damage by preventing cell death and energy loss.
research Novel and established potassium channel openers stimulate hair growth in vitromodes of action in hair follicles.: implications for their
Potassium channel openers like minoxidil boost hair growth.
research Blocking Potassium Channels (Kv1.3): A New Treatment Option for Alopecia Areata?
Kv1.3 blockers may help treat alopecia areata and promote hair regrowth.
research Sex differences in and hormonal regulation of Kv1 potassium channel gene expression in the electric organ: Molecular control of a social signal
Hormones and sex affect potassium channel gene expression in electric fish, influencing their communication signals.
research Dynamics of Actin Filaments Play an Important Role in Root Hair Growth under Low Potassium Stress in Arabidopsis thaliana
Actin filaments help root hairs grow faster and longer under low potassium stress.
research Human hair follicles contain two forms of ATP‐ sensitive potassium channels, only one of which is sensitive to minoxidil
One minoxidil-sensitive potassium channel exists in human hair follicles.
research Minoxidil prevents 3,4-methylenedioxymethamphetamine-induced serotonin depletions: role of mitochondrial ATP-sensitive potassium channels, Akt and ERK
Minoxidil prevents serotonin loss from MDMA by affecting potassium channels and increasing Akt phosphorylation.
research A Study of the Expression of Small Conductance Calcium-Activated Potassium Channels (SK1-3) in Sensory Endings of Muscle Spindles and Lanceolate Endings of Hair Follicles in the Rat
SK2 channels help control sensory signals in rat muscle spindles and hair follicles.
research The ATP sensitive potassium channel (KATP) is a novel target for migraine drug development
Blocking the KATP channel may help treat migraines.
research Pharmacological evidence for the involvement of adenosine triphosphate sensitive potassium channels in chloroquine-induced itch in mice
ATP-sensitive potassium channels play a role in chloroquine-induced itch in mice.