Meningitis is inflammation of the protective membranes covering the brain and spinal cord. The inflammation may be caused by infection with viruses, bacteria, or other microorganisms, and less commonly by certain drugs. The most common symptoms of meningitis are headache, vomiting and neck stiffness associated with fever and altered consciousness. Children often exhibit only nonspecific symptoms, such as irritability and drowsiness. A lumbar puncture diagnoses or excludes meningitis. The first treatment in acute meningitis consists of promptly administered antibiotics and sometimes antiviral drugs. Corticosteroids can also be used to prevent complications from excessive inflammation. Meningitis can lead to serious long-term consequences such as deafness, epilepsy, hydrocephalus and cognitive deficits, especially if not treated quickly. Some forms of meningitis (such as those associated with meningococci,
Haemophilus influenza type B, pneumococci or mumps virus infections) may be prevented by immunization. Unfortunately, we could not detect microorganisms in patient cultures except for five cases (one bacterial and four mycobacterial). These negative results may be due to use of antibiotics before sampling, or limited number of bacteriological culture facilities and lack of BACTEC automated culture system. Thus, we had no positive cultures and treated all patients with acute meningitis using antibiotic such as ceftriaxone and vancomycin. Classic symptoms and signs of bacterial meningitis in culture-positive patients were fever, headache, vomiting and confusion. Due to limited microbiological culture and viral studies, we had no significant positive cultures. In an American study in 2014, they found that
S. pneumoniae was the leading identifiable cause of bacterial meningitis, and this is when there has been a significant decrease in the incidence and mortality from meningitis, associated with the introduction of conjugated vaccines. The incidence of
Neisseria meningitidis infection has decreased from 0.721 per 100000 people in 1997, to 0.123 per 100000 people in 2010 which has placed this pathogen close to common bacterial causes of nosocomial meningitis such as staphylococcus, Gram-negative bacteria and
Haemophilus influenza (
12). In Morrill’s study, the incidence of pneumococcal diseases decreased significantly by 3.5% per year in outpatients and increased non-significantly by 0.2% per year in inpatients. Among inpatients with serious infections, risk factors for pneumococcal infection included: respiratory disease, diabetes and renal failure. Invasive disease (37.4% versus 34.9%, P = 0.004) and mortality (14.0% versus 12.7%, P = 0.045) were higher in non-vaccinated patients compared to vaccinated patients (
13). Among our patients, only four cases had significant risk factors. Chiang’s study was a systematic review and meta-analysis, which evaluated the risk factors and clinical outcomes of 1636 children. Risk of death was 19.3% and probability of survival without neurological sequelae was 36.7%. Among survivors, risk of neurological sequelae was 53.9%. Diagnosis during the most advanced disease stage occurred in 47% of 657 patients in one study and was associated with worse outcomes than was earlier diagnosis. Fatality rate in our study was 7.5% and these patients had referred to the hospital late (
14). Namani’s study compared meningitis cases in 2000 with 2010 and showed a 35.5% decline in incidence and a decrease fatality rate from 10% to 5% (
15). They detected a lower mortality rate (5% versus 2%) and a lower incidence of neurological complications in children (13% versus 16%) as compared to adults (32% versus 10% and 16% versus 35%, respectively).
Neisseria meningitidis was the most common pathogen of bacterial meningitis during both study periods and bacterial meningitis was most common in the pediatric population (
15). In this study, during the year 2000, the mean age of pediatric cases was 3.2 years, while for adults it was 41 years. In 2010, the mean age of children with bacterial meningitis was 5.5 years while for adults it was 45 years. The median age for all bacterial meningitis cases was seven years (range: one month to 74 years). Most cases were male in both children and adult groups during both study periods, however, differences were not statistically significant (P > 0.05). The peak incidence in 2000 was in infants (40%), compared to increased incidence in children of 6–16 years (43%) in 2010. In our study 47% of patients were men and there was no significant difference between males and females (P < 0/05). In Mahmoudi et al. (
16) study from Iran, among the 31 patients with possible invasive bacterial infections, 20 cases had positive CSF cultures. The isolated bacteria included
S. pneumoniae (four cases),
H. influenzae (2),
N. meningitidis (1),
Klebsiella spp. (1),
Acinetobacter spp. (1),
Haemophilus spp (1),
Staphylococcus aureus (1), and the other cases had positive test results for
Mycobacterium tuberculosis. In this study, brain edema was identified in four patients, subdural effusion in four, microabscess in one, and ventriculomegaly hydrocephalus in one patient. All the pneumococcal isolates were resistant to trimethoprim/sulfamethoxazole (SXT), five were resistant to penicillin, and four were resistant to ampicillin and ceftriaxone. All the three
H. influenzae isolates were resistant to penicillin, and two were resistant to SXT. Among the meningococcal isolates, three were susceptible to ampicillin, ceftriaxone, cefotaxime, ceftizoxime and vancomycin. The
S. aureus and coagulase-negative staphylococci isolates were susceptible to all antibiotics except SXT. Unfortunately, in our study, only one patient in the acute meningitis group had a positive CSF culture and the infectious agent was susceptible to ceftriaxone and resistant to ampicillin.
Our study has one important limitation: etiology was confirmed only in 13.41% of patients and this result is due to limited laboratory tests and a specific culture medium. The other causes can be due to the practice of partial treatment due to administration of antibiotics at the time or before the time of specimen collection. In addition, the Department of Microbiology, which is the only unit that services our clinical center, is not open 24 hours and does not accept specimens after 8 p.m. The pathogens causing meningitis are fastidious and require immediate processing to optimize recovery and identification.
The findings of this study provide information regarding the epidemiology, clinical features, and outcomes of bacterial meningitis among hospitalized patients in Zahedan. However, according to the negative CSF cultures in acute meningitis, a CSF culture using the BACTEC automated system is recommended for detection of the etiological agents of bacterial meningitis, particularly in our population where patients use antibiotics without prescription.