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  1. Oct 14, 2021 · 1-Phenylcyclohexylamine | C12H17N | CID 31862 - structure, chemical names, physical and chemical properties, classification, patents, literature, biological activities, safety/hazards/toxicity information, supplier lists, and more.

  2. Feb 6, 2010 · N-Phenylcyclohexylamine. Formula: C 12 H 17 N. Molecular weight: 175.2701. IUPAC Standard InChI: InChI=1S/C12H17N/c1-3-7-11 (8-4-1)13-12-9-5-2-6-10-12/h1,3-4,7-8,12-13H,2,5-6,9-10H2. Copy Sheet of paper on top of another sheet.

    • Identification
    • Pharmacology
    • Interactions
    • Chemical Identifiers
    • Clinical Trials
    • Pharmacoeconomics
    • Properties

    Generic Name

    1. 1-Phenylcyclohexylamine

    DrugBank Accession Number

    1. DB01506

    Background

    1. Not Available

    Indication

    1. Not AvailableReduce drug development failure ratesBuild, train, & validate machine-learning models with evidence-based and structured datasets.See howsee_moreBuild, train, & validate predictive machine-learning models with structured datasets.See how

    Contraindications & Blackbox Warnings

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    Pharmacodynamics

    1. Not Available

    Drug Interactions information

    1. This information should not be interpreted without the help of a healthcare provider. If you believe you are experiencing an interaction, contact a healthcare provider immediately. The absence of an interaction does not necessarily mean no interactions exist. Not Available

    Food Interactions

    1. Not Available

    UNII

    1. HBO2D49I2S

    CAS number

    1. 2201-24-3

    InChI Key

    1. RGZGRPPQZUQUCR-UHFFFAOYSA-N

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    Manufacturers

    1. Not Available

    Packagers

    1. Not Available

    Dosage Forms

    1. Not Available

    State

    1. Solid

    Experimental Properties

    1. Not Available

  3. Jul 30, 2022 · The mechanism by which cells turn the DNA code into a protein product is a two-step process, with an RNA molecule as the intermediate. Figure 1. The Genetic Code. DNA holds all of the genetic information necessary to build a cell’s proteins.

  4. Messenger RNA (mRNA) molecules carry the coding sequences for protein synthesis and are called transcripts; ribosomal RNA (rRNA) molecules form the core of a cell's ribosomes (the structures...

  5. Peptidoglycan synthesis is vital at several stages of the bacterial cell cycle: for expansion of the scaffold during cell elongation and for formation of a septum during cell division.

  6. People also ask

  7. Transcription and RNA processing are followed by translation, the synthesis of proteins as directed by mRNA templates. Proteins are the active players in most cell processes, implementing the myriad tasks that are directed by the information encoded in genomic DNA.

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