[{"data":1,"prerenderedAt":23},["ShallowReactive",2],{"notifications-general-de":3,"compound-TLINO-de":4},"Wegen der Sommerferien arbeitet das Labor vom 22. Juli bis 9. August 2026 nach einem geänderten Zeitplan. Analyseergebnisse sind 7 bis 10 Tage nach Proben­eingang verfügbar. Vielen Dank für Ihr Verständnis.",{"name":5,"shortname":6,"synonyms":7,"cas":8,"molMass":9,"pubchemLink":10,"structure":11,"important":12,"synthetic":13,"compoundClass":14,"asociationImage":17,"summarySet":18,"compoundEffectSet":22},"trans-Linalool oxide","TLINO","t-Linaloloxide","50727-94-1",170.25,"https:\u002F\u002Fpubchem.ncbi.nlm.nih.gov\u002Fcompound\u002F530403","science\u002Fstructures\u002FTLINO.png",true,false,{"id":15,"description":16},"1","Terpenoids","",[19],{"summaryText":20,"language":21},"\u003Cp>Linalool oxide is a chemical compound that belongs to a class of compounds known as terpenoids, which are naturally occurring organic compounds found in various plants. This particular compound is derived from linalool, a common terpene found in many essential oils, such as lavender, coriander, and basil. It has a chemical structure that consists of a cyclic ether ring. It is classified as a monoterpenoid oxide and can exist in two main stereoisomeric forms: cis-linalool oxide and trans-linalool oxide. These two isomers have slightly different chemical properties and aromas, with the cis-isomer often having a more floral scent, while the trans-isomer has a more herbal or woody aroma.\u003C\u002Fp>\u003Cp>Linalool oxide has shown potential pharmacological effects, including anti-inflammatory, analgesic, and antioxidant properties. These properties make it an interesting candidate for pharmaceutical applications. Research has suggested that linalool oxide may help reduce inflammation and pain, making it valuable in the development of analgesic and anti-inflammatory drugs.\u003Cbr>\u003C\u002Fp>",null,[],1785925846553]