Results 221 to 230 of about 1,956,272 (393)
Pvalb8, a Type of Oncomodulin, Regulates Neuromast Development and Auditory Function in Zebrafish. [PDF]
Zhang G +6 more
europepmc +1 more source
A Study of the Comparative Chemical Composition of the Hair of Different Races
T. A. Rutherford, P. B. Hawk
openalex +1 more source
THE ELIMINATION OF ARSENIC THROUGH THE HAIR AND ITS RELATION TO ARSENICAL POISONING. [PDF]
Edmund Knecht, W.F. Dearden
openalex +1 more source
Growth Hormone‐Loaded 3D Printed Silk Fibroin‐Cellulose Dressings for Ischemic Wounds
3D‐printed wound dressings combining carboxymethyl cellulose, silk fibroin, and growth hormone accelerate healing in diabetic ulcers. These bioactive, customizable dressings enhance angiogenesis, cellular proliferation, and immune modulation. Proteomic analysis reveals activation of regenerative pathways and reduced fibrosis, highlighting their ...
Maria Pita‐Vilar +7 more
wiley +1 more source
Environmental hazard ingredients in women's hair growth cosmeceuticals: a comprehensive analysis. [PDF]
Verma KK +4 more
europepmc +1 more source
THE SEPARATION OF CYSTINE FROM HISTIDINE: THE BASIC AMINO ACIDS OF HUMAN HAIR
Hubert Bradford Vickery +1 more
openalex +1 more source
Magnetic Bioprinting and Actuation of Stretchable Muscle Tissue
Human and murine myoblasts labeled with iron oxide nanoparticles are magnetically bioprinted into wrench‐shaped tissues, which are then anchored between two magnetic needles. Mechanical stretching of these tissues enhances both their maturation and functional performance. Abstract Engineering tissues with precise, long‐lasting shapes and the capability
Noam Demri +6 more
wiley +1 more source
Mutation of the GDP-Fucose Biosynthesis Gene <i>gmds</i> Increases Hair Cell Number and Neuromast Regenerative Capacity in Zebrafish. [PDF]
Ameen MT, Fowler G, French CR.
europepmc +1 more source
The therapeutic efficacy of lipid nanoparticle(LNP)‐based drugs depends on endosomal escape. However, few methods are available for quantifying the efficiency of endosomal escape in vivo. Herein, a novel method for quantifying the endosomal escape efficiency index using magnetic resonance imaging is introduced.
Somin Lee +5 more
wiley +1 more source

