The aim of this study was to analyse the clinical features, microbiology results, management and outcomes of patients with endogenous endophthalmitis caused by Klebsiella pneumoniae in western China. Methods: A retrospective review of medical records of 10 eyes in 10 subjects diagnosed with endogenous K. pneumoniae endophthalmitis from January 2008 to December 2018 was undertaken. Results: The top 3 predisposing medical conditions included diabetes mellitus (50%), malignancy (20%) and cardiac stent implantation (10%). Extraocular infective foci were mainly found in the liver (40%), lungs (20%) and kidneys (10%). The positive culture rate was 85.71% (6/7) in vitreous samples, 83.33% (5/6) in blood samples and 100% (4/4) in body fluid samples. Only 20% of the patients, who had good initial visual acuity (VA) better than hand movement (HM), achieved a final VA better than 1.0 (log MAR). The mortality rate was 10%. Conclusions: Though the prognosis of endogenous K. pneumoniae endophthalmitis is often poor, patients with an initial VA better than HM may have a good prognosis under comprehensive treatments, including vitrectomy, systemic sensitive antibiotic injection and drainage of the primary infection loci.
Sleep accounts for a third of one's lifetime, partial or complete deprivation of sleep could elicit sever disorders of body function. Previous studies have reported the higher prevalence of sleep disorders in glaucoma patients, but the definite mechanism for this phenomenon is unknown. On the other hand, it is well known by us that the intrinsically photosensitive retinal ganglion cells (ipRGCs) serve additional ocular functions, called non-image-forming (NIF) functions, in the regulation of circadian rhythm, melatonin secretion, sleep, mood and others. Specifically, ipRGCs can directly or indirectly innervate the central areas such as suprachiasmatic nucleus (SCN), downstream pineal gland (the origin of melatonin), sleep and wake-inducing centers and mood regulation areas, making NIF functions of ipRGCs relate to sleep. The more interesting thing is that previous research showed glaucoma not only affected visual functions such as the degeneration of classical retinal ganglion cells (RGCs), but also affected ipRGCs. Therefore, we hypothesize that higher prevalence of sleep disorders in glaucoma patients maybe result from the underlying glaucomatous injuries of ipRGCs leading to the abnormalities of diverse NIF functions corresponding to sleep.
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