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    https://sophisticatedspectra.com/article/drosia-serenity-a-modern-oasis-in-the-heart-of-larnaca.2521391.html

    DROSIA SERENITY
    A Premium Residential Project in the Heart of Drosia, Larnaca

    ONLY TWO FLATS REMAIN!

    Modern and impressive architectural design with high-quality finishes Spacious 2-bedroom apartments with two verandas and smart layouts Penthouse units with private rooftop gardens of up to 63 m² Private covered parking for each apartment Exceptionally quiet location just 5–8 minutes from the marina, Finikoudes Beach, Metropolis Mall, and city center Quick access to all major routes and the highway Boutique-style building with only 8 apartments High-spec technical features including A/C provisions, solar water heater, and photovoltaic system setup.
    Drosia Serenity is not only an architectural gem but also a highly attractive investment opportunity. Located in the desirable residential area of Drosia, Larnaca, this modern development offers 5–7% annual rental yield, making it an ideal choice for investors seeking stable and lucrative returns in Cyprus' dynamic real estate market. Feel free to check the location on Google Maps.
    Whether for living or investment, this is a rare opportunity in a strategic and desirable location.

    Aldo-Keto Reductases and Toxicant Metabolism

    Posted By: insetes
    Aldo-Keto Reductases and Toxicant Metabolism

    Aldo-Keto Reductases and Toxicant Metabolism By Trevor M. Penning and J. Mark Petrash (Eds.)
    2003 | 250 Pages | ISBN: 0841238464 | PDF | 25 MB


    Content: SECTION 1: GENERAL OVERVIEW ; 1. Introduction and Overview of the Aldo-Keto Reductase (AKR) Superfamily ; SECTION 2: AKRS AND ENDOGENOUS TOXICANTS ; 2. Aldo-Keto Reductase-Catalyzed Detoxication of Endogenous Aldehydes Associated With Diabetic Complications ; 3. Aldose Reductase Detoxifies Lipid Aldehydes and Their Glutathione Conjugates ; 4. Role of Aldose Reductase in the Detoxification of Oxidized Phospholipids ; SECTION 3: AKRS AND EXOGENOUS TOXICANTS: TOBACCO RELATED CARCINOGENS ; 5. Competing Roles of Reductases in the Detoxification of the Tobacco-Specific Nitrosamine Ketone NNK ; 6. Aldo-Keto Reductases and the Metabolic Activation of Polycyclic Aromatic Hydrocarbons ; 7. Molecular Cloning and Characterization of Dihydrodiol Dehydrogenase from Mouse ; 8 Efficient Synthesis of the Active Metabolites of Carcinogenic Polycyclic Aromatic Hydrocarbons ; 9. Chemistry of PAH o-Quinones Generated by the AKR Pathway of PAH Activation ; 10. Analysis of Etheno-2'-Deoxyguanosine Adducts as Dosimeters of AKR Mediated Oxidative Stress ; SECTION 4: AKRS AND EXOGENOUS TOXICANTS: MYCOTOXINS, ALDEHYDES AND KETONES ; 11. Aflatoxin Aldehyde Reductases ; 12. Competing Reactions of Aflatoxin B1-Dialdehyde: Enzymatic Reduction vs Adduction with Lysine ; 13. The use of mammalian cell lines to investigate the role of aldo-keto reductases in the detoxication of aldehydes and ketones ; SECTION 5: AKRS, THE STRESS RESPONSE AND CELL SIGNALING ; 14. Aldose Reductase and the Stress Response ; 15. Aldose Reductase Regulates Reactive Oxygen Species Mediated-Inflammatory Signals ; 16. Aldo-Keto Reductases in the Stress Response of the Budding Yeast Saccharomyces cerevisiae