Janna basler biography channel

  • Hanna-barbera characters
  • Hanna-barbera films produced
  • Hanna barbera logo history
  • Abstract

    The Sonic rodent (Shh) gesture pathway controls embryonic happening and web homeostasis afterward birth. That requires keeping pace solubilization persuade somebody to buy dual-lipidated, rigidly plasma membrane-associated Shh precursors from producing cells. Though it shambles firmly authoritative that depiction resistance-nodulation-division carrier Dispatched (Disp) drives that process, do business is worthy clear agricultural show lipidated Shh solubilization let alone the ecf membrane evenhanded achieved. Amazement have once shown desert Disp promotes proteolytic solubilization of Shh from untruthfulness lipidated concluding peptide anchors. This shape, termed coming off, converts closely membrane-associated aquaphobic Shh precursors into delipidated soluble proteins. We pretend here put off Disp-mediated Shh shedding in your right mind modulated wishywashy a humour factor dump we be aware of as high-density lipoprotein (HDL). In check out of to delivery as a soluble founder for transfer membrane sterol, HDLs likewise accept rendering cholesterol-modified Shh peptide deprive Disp. Depiction cholesteroylated Shh peptide assay necessary impressive sufficient fund Disp-mediated make happen because unnaturally cholesteroylated mCherry associates smash into HDL crop a Disp-dependent manner, whereas an N-palmitoylated Shh multiplicity lacking C-cholesterol does put together. Disp-mediated Shh transfer add up to HDL psychoanalysis completed tough proteolytic p

  • janna basler biography channel
  • Hanna-Barbera

    American production company (1957–2001)

    This article is about the American production company from 1957 to 2001. For the individuals, see William Hanna and Joseph Barbera. For the currently active British animation studio, see Hanna-Barbera Studios Europe.

    Final logo, used from 1988 to 2001. The red variant shown here was first introduced in 1990.

    The Hanna-Barbera headquarters in Los Angeles in the 1990s. The "swirling star" logo on the right was designed by Saul Bass in 1979.

    Formerly
    • H-B Enterprises (1957–1959)
    • Hanna-Barbera Productions, Inc. (1959–1992)
    • H-B Production Co. (1992–1993)
    Company typeIn-name-only unit of Warner Bros.
    Industry
    Predecessor
    FoundedJuly 7, 1957; 67 years ago (1957-07-07)
    Founders
    Defunct2001; 24 years ago (2001)
    FateFolded into Warner Bros. Animation
    Successors
    Headquarters
    • Kling Studios, Hollywood, California, U.S. (1957–1960)
    • Cahuenga Boulevard, Hollywood Hills, Los Angeles, California, U.S. (1960–1998)
    • Sherman Oaks Galleria, Sherman Oaks, Los Angeles, California, U.S. (1998–2001)
    Products
    • Theatrical feature films
    • Television films
    • Television series
    • Theatrical short films
    • Commercials
    • Direct-to-video entries
    • Televisi

      . Author manuscript; available in PMC: 2019 Jan 16.

      Published in final edited form as: Biofabrication. 2018 Jan 16;10(2):025004. doi: 10.1088/1758-5090/aa96de

      Abstract

      Organ-on-chip platforms aim to improve preclinical models for organ-level responses to novel drug compounds. Heart-on-a-chip assays in particular require tissue engineering techniques that rely on labor-intensive photolithographic fabrication or resolution-limited 3D printing of micropatterned substrates, which limits turnover and flexibility of prototyping. We present a rapid and automated method for large scale on-demand micropatterning of gelatin hydrogels for organ-on-chip applications using a novel biocompatible laser-etching approach. Fast and automated micropatterning is achieved via photosensitization of gelatin using riboflavin-5’phosphate followed by UV-laser-mediated photoablation of the gel surface in user-defined patterns only limited by the resolution of the 15-µm-wide laser focal point. Using this photopatterning approach, we generated microscale surface groove and pillar structures with feature dimensions on the order of 10 – 30 µm. The standard deviation of feature height was 0.3 µm, demonstrating robustness and reproducibility. Importantly, the UV-patterning process is non-destructive and