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<article xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" article-type="editorial"><?properties open_access?><front><journal-meta><journal-id journal-id-type="nlm-ta">Korean J Intern Med</journal-id><journal-id journal-id-type="iso-abbrev">Korean J. Intern. Med</journal-id><journal-id journal-id-type="publisher-id">KJIM</journal-id><journal-title-group><journal-title>The Korean Journal of Internal Medicine</journal-title></journal-title-group><issn pub-type="ppub">1226-3303</issn><issn pub-type="epub">2005-6648</issn><publisher><publisher-name>The Korean Association of Internal Medicine</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="pmid">22707886</article-id><article-id pub-id-type="pmc">3372798</article-id><article-id pub-id-type="doi">10.3904/kjim.2012.27.2.154</article-id><article-categories><subj-group subj-group-type="heading"><subject>Editorial</subject></subj-group></article-categories><title-group><article-title>Nosocomial Meningitis: Moving beyond Description to Prevention</article-title></title-group><contrib-group><contrib contrib-type="author" corresp="yes"><name><surname>Kim</surname><given-names>Hong Bin</given-names></name><xref ref-type="aff" rid="A1-kjim-27-154">1</xref><xref ref-type="aff" rid="A2-kjim-27-154">2</xref></contrib></contrib-group><aff id="A1-kjim-27-154"><label>1</label>Division of Infectious Diseases, Seoul National University Bundang Hospital, Seongnam, Korea.</aff><aff id="A2-kjim-27-154"><label>2</label>Department of Internal Medicine, Seoul National University College of Medicine, Seoul, Korea.</aff><author-notes><corresp>Correspondence to Hong Bin Kim, M.D. Division of Infectious Diseases, Seoul National University Bundang Hospital, 82 Gumi-ro 173beon-gil, Bundang-gu, Seongnam 463-707, Korea. Tel: 82-31-787-7021, Fax: 82-31-787-4052, <email>hbkimmd@snu.ac.kr</email></corresp></author-notes><pub-date pub-type="ppub"><month>6</month><year>2012</year></pub-date><pub-date pub-type="epub"><day>31</day><month>5</month><year>2012</year></pub-date><volume>27</volume><issue>2</issue><fpage>154</fpage><lpage>155</lpage><history><date date-type="received"><day>21</day><month>4</month><year>2012</year></date><date date-type="accepted"><day>23</day><month>4</month><year>2012</year></date></history><permissions><copyright-statement>Copyright &#xA9; 2012 The Korean Association of Internal Medicine</copyright-statement><copyright-year>2012</copyright-year><license license-type="open-access" xlink:href="http://creativecommons.org/licenses/by-nc/3.0"><license-p>This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (<ext-link ext-link-type="uri" xlink:href="http://creativecommons.org/licenses/by-nc/3.0/">http://creativecommons.org/licenses/by-nc/3.0/</ext-link>) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.</license-p></license></permissions></article-meta></front><body><p>See Article on Page <related-article related-article-type="commentary-article" id="d34e102-kjim-27-154" vol="27" page="171" ext-link-type="pmc">171-179</related-article></p><p>Nosocomial bacterial meningitis may result from invasive procedures (for examples, such as craniotomies, the placement of internal or external ventricular catheters, lumbar puncture, intrathecal infusions of medications, or spinal anesthesia), head trauma, or hospital-acquired bacteremia complicated by metastatic infection [<xref ref-type="bibr" rid="B1-kjim-27-154">1</xref>]. The specific bacteria that cause nosocomial meningitis vary according to the pathogenesis and timing of infection after the predisposing event, so the choice of empirical antimicrobial therapy depends on the pathogenesis of the infection. In particular, the antimicrobial susceptibility profiles for locally common gram negative bacilli must be considered in the approach to empirical therapy [<xref ref-type="bibr" rid="B2-kjim-27-154">2</xref>]. However, there has been no report of nosocomial meningitis in Korea, apart from a number of case series.</p><p>In this issue of the Korean J Intern Med, Kim et al. [<xref ref-type="bibr" rid="B3-kjim-27-154">3</xref>] described the epidemiology of nosocomial meningitis and its outcomes. They reported that the most common organisms by rank were coagulase-negative staphylococci, <italic>Acinetobacter</italic> species, and <italic>Staphylococcus aureus</italic>. Most (78/91, 86%) of the infections were related to the placement of an external ventricular drain (EVD).</p><p>In the recent literature, the incidence of EVD-related infections ranges from 2% to 27% [<xref ref-type="bibr" rid="B4-kjim-27-154">4</xref>]. In Korea, the reported rate of surgical site infection (SSI) was 3.09-3.68 per 100 operations in nationwide prospective multicenter studies of craniotomy in 2008 and 2009 [<xref ref-type="bibr" rid="B5-kjim-27-154">5</xref>,<xref ref-type="bibr" rid="B6-kjim-27-154">6</xref>]. While the incidence of EVD-related infections and the SSI rates after craniotomy in Kim et al. [<xref ref-type="bibr" rid="B3-kjim-27-154">3</xref>]. were not given, the prevention of EVD-related ventriculomeningitis is of paramount importance because it is a significant cause of morbidity and mortality in critically ill neurological patients. Relevant risk factors have been identified as the duration of catheterization, frequency of EVD manipulation, intraventricular hemorrhage, and insertion techniques [<xref ref-type="bibr" rid="B4-kjim-27-154">4</xref>]. Therefore, the avoidance of modifiable risk factors should be emphasized.</p><p><italic>Acinetobacter</italic> species are nosocomial pathogens of increasing importance, even in post-neurosurgical meningitis, with mortality from this infection exceeding 15% [<xref ref-type="bibr" rid="B7-kjim-27-154">7</xref>]. Alarmingly, <italic>Acinetobacter</italic> was the second most common cause of nosocomial meningitis in this study. In fact, <italic>Acinetobacter</italic> can survive in a wide range of environments and persist for extended periods of time on surfaces, which m ake it a frequent cause of outbreaks of infection and an endemic, healthcare-associated pathogen [<xref ref-type="bibr" rid="B8-kjim-27-154">8</xref>]. <italic>Acinetobacter</italic> is easily transmitted via direct contact with colonized patients or the hands of hospital staff, and even by respiratory droplets. Furthermore, antimicrobial therapy for these pathogens has become problematic, as they are frequently resistant to expanded-spectrum cephalosporins and carbapenems. Given the emergence of carbapenem-resistant <italic>Acinetobacter</italic> species, the therapeutic options are limited and no optimal treatment has been established [<xref ref-type="bibr" rid="B9-kjim-27-154">9</xref>]. Consistent with these findings, Kim et al. [<xref ref-type="bibr" rid="B3-kjim-27-154">3</xref>] reported that 26% of <italic>Acinetobacter</italic> species were resistant to imipenem and 27% of the patients infected with them died. Therefore, infection-control measures should be enforced vigorously to prevent person-to-person spread and cross-infection from the environment.</p><p>In conclusion, nosocomial bacterial meningitis poses a substantial challenge because of the emergence of disease caused by multidrug resistant organisms (MDROs) and severely limited treatment options. Encouraged by recent progress in reducing the incidence of infections associated with invasive devices, we should now turn our attention to preventing and controlling infection due to MDROs. 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