Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.4.24.55 (PTR)
433 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A 42-year-old male was admitted with a one year and two months history of hypesthesia below the epigastric region and gait disturbance. On examination, increased ATR and PTR were bilaterally noticed with sensory disturbance below about Th.5 dermatome level. No cutaneous manifestations were detected on his back. Plain x-ray films showed no spina bifida. Metrizamide myelography showed a space-occupying mass at the Th.5 level. At operation, an extradural tumor, severely adhesived to the dura matter, was totally removed. Histologically, the tumor was composed of fatty tissues, thin-walled vessel spaces and small vessels, diagnosed as spinal hemangiolipoma. Seventeen reported cases of spinal epidural hemangiolipoma were reviewed. Spinal epidural hemangiolipomas occur in the middle aged patients with high incidence and at the mid-thoracic level. There are two types of hemangiolipoma, namely non-infiltrating and infiltrating. In the latter case, a wide excision should be performed to include normal surrounding tissue. In women's cases, particularly during the pregnancy, the fluctuation of the symptoms occurs. The effectiveness of CT and myelography in diagnosing of spinal lipomas was discussed.
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PMID:[Spinal epidural hemangiolipoma - a case report (author's transl)]. 709 74

We report on experiments that probe photosensitized chemistry at the air/water interface, a region that does not just connect the two phases but displays its own specific chemistry. Here, we follow reactions of octanol, a proxy for environmentally relevant soluble surfactants, initiated by an attack by triplet-state carbonyl compounds, which are themselves concentrated at the interface by the presence of this surfactant. Gas-phase products are determined using PTR-ToF-MS, and those remaining in the organic layer are determined by ATR-FTIR spectroscopy and HPLC-HRMS. We observe the photosensitized production of carboxylic acids as well as unsaturated and branched-chain oxygenated products, compounds that act as organic aerosol precursors and had been thought to be produced solely by biological activity. A mechanism that is consistent with the observations is detailed here, and the energetics of several key reactions are calculated using quantum chemical methods. The results suggest that the concentrating nature of the interface leads to its being a favorable venue for radical reactions yielding complex and functionalized products that themselves could initiate further secondary chemistry and new particle formation in the atmospheric environment.
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PMID:Photosensitized Production of Atmospherically Reactive Organic Compounds at the Air/Aqueous Interface. 2606 88