Multiple preclinical and clinical studies, including the investigators' published work and the ongoing SOLUTION series, have consistently demonstrated that intracalvariosseous (ICO) injection can markedly increase drug exposure within the central nervous system with acceptable safety. This trial is designed to further evaluate the efficacy and safety of antibiotic delivery via the ICO route in the treatment of bacterial meningitis, particularly in patients with moderate-to-severe disease who have shown an inadequate response to standard therapy.
Bacterial meningitis remains a major cause of death and neurological disability despite advances in antimicrobial therapy, vaccination, and critical care. Moderate-to-severe disease, particularly healthcare-associated infection and cases caused by multidrug-resistant pathogens, continues to pose substantial therapeutic challenges because intravenous antibiotic therapy alone may not achieve sufficiently rapid or sustained drug exposure in cerebrospinal fluid and at the meningeal surface. Although intrathecal and intraventricular administration can increase local drug concentrations, these approaches are invasive and have limited diffusion. Anatomical and physiological studies have demonstrated communication among calvarial bone marrow, dura, cerebrospinal fluid spaces, and glymphatic pathways, supporting the rationale for intracalvariosseous (ICO) injection as a regional route for drug delivery to the central nervous system. Preclinical and clinical studies, including the investigators' published work and the ongoing SOLUTION series, suggest that ICO injection can enhance local central nervous system drug exposure with an acceptable safety profile. In addition, an exploratory study conducted by the investigators, using vancomycin administered via ICO injection in an experimental animal model of bacterial meningitis, further supported the potential of this route to improve anti-infective efficacy. This trial is a multicenter, prospective, randomized, open-label, blinded-endpoint study comparing ICO injection plus intravenous antibiotic therapy with intravenous antibiotic therapy alone. The study aims to evaluate differences in efficacy and safety between combined treatment with ICO injection and intravenous antibiotics versus intravenous antibiotics alone in participants with moderate-to-severe bacterial meningitis who have shown a suboptimal response to treatment. Participants with moderate-to-severe bacterial meningitis and inadequate improvement after 48-72 hours of initial intravenous treatment will be randomized in a 1:1 ratio. In the intervention group, bilateral parietal ICO access devices will be placed, and the selected antibiotic will be continuously administered through the calvarial bone marrow route for 7 days while the same antibiotic is also given intravenously. In the control group, treatment will consist of intravenous antibiotic therapy alone. Guideline-based supportive care, including intracranial pressure management, seizure control, organ support, and other standard measures, will be provided in both groups. Face-to-face visits will be conducted at randomization (baseline), 48-72 hours, Day 5, Day 8, Day 10, Day 14, Day 30 (±3 days), or on the day of discharge. A telephone follow-up visit will be conducted at Month 3 (±7 days). A Data and Safety Monitoring Board (DSMB) will regularly monitor safety throughout the study. The trial has been approved by the Institutional Review Board (IRB) and Ethics Committee (EC) of Beijing Tiantan Hospital, Capital Medical University.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
86
Continuous intracalvariosseous infusion of polymyxin B (12.5 mg/day), tigecycline (12.5 mg/day), and vancomycin (125 mg/day).
Intravenous infusion of polymyxin B (100 mg/day), tigecycline (100 mg/day), and vancomycin (2000 mg/day).
Standard treatment and management according to related guidelines during the entire treatment period
Beijing Tiantan Hospital
Beijing, Beijing Municipality, China
Kaifeng Central Hospital
Kaifeng, Henan, China
The First Affiliated Hospital of Xinxiang Medical University
Xinxiang, Henan, China
Henan Provincial People's Hospital
Zhengzhou, Henan, China
Linyi City People Hospital
Linyi, Shandong, China
Tianjin Huanhu Hospital
Tianjin, Tianjin Municipality, China
Overall effective rate after 7 days of randomization
Overall effective rate = \[(Cure + Improvement) / Total Number of Case\] \* 100% Cure: Cerebrospinal fluid (CSF) white blood cell count, CSF protein concentration, CSF/serum glucose ratio, and CSF bacterial culture are all normal in three consecutive tests. Improvement: At least one of the following three CSF white blood cell counts, CSF protein concentration, CSF/serum glucose ratio, and CSF bacterial culture is normal. Ineffective: All three of the following CSF white blood cell counts, CSF protein concentration, CSF/serum glucose ratio, and CSF bacterial culture are abnormal. Normal Reference Values for CSF Indicators: white blood cell count \< 100 × 10⁶/L, protein concentration \< 50 mg/dL, CSF/serum glucose ratio \> 0.5.
Time frame: 8,10 and 14 days after randomization
Cure rate after 7 days of randomization
Cure: Cerebrospinal fluid (CSF) white blood cell count, CSF protein concentration, CSF/serum glucose ratio, and CSF bacterial culture are all normal in three consecutive tests. Reference Values for CSF Indicators: white blood cell count \< 100 × 10⁶/L, protein concentration \< 50 mg/dL, CSF/serum glucose ratio \> 0.5.
Time frame: 8,10 and 14 days after randomization
Improvement rate after 7 days of randomization
Improvement: At least one of the following three CSF white blood cell counts, CSF protein concentration, CSF/serum glucose ratio, and CSF bacterial culture is normal. Reference Values for CSF Indicators: white blood cell count \< 100 × 10⁶/L, protein concentration \< 50 mg/dL, CSF/serum glucose ratio \> 0.5.
Time frame: 8,10 and 14 days after randomization
Cerebrospinal fluid white blood cell count at 48-72 hours and Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid white blood cell count
Time frame: 48-72 hours after randomization, Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid protein concentration at 48-72 hours and Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid protein concentration
Time frame: 48-72 hours after randomization, Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid-to-serum glucose concentration ratio at 48-72 hours and Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid-to-serum glucose concentration ratio
Time frame: 48-72 hours after randomization, Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid bacteriological culture results at 48-72 hours and Days 5, 8, 10, and 14 after randomization
Cerebrospinal fluid bacteriological culture results
Time frame: 48-72 hours after randomization, Days 5, 8, 10, and 14 after randomization
Glasgow Coma Scale (GCS) scores at 48-72 hours and Days 5, 8, 10, and 14 after randomization
Glasgow Coma Scale (GCS) is a neurological scale that assesses level of consciousness using 3 components: eye opening, verbal response, and motor response. The total score ranges from 3 to 15, with higher scores indicating a better neurological outcome / level of consciousness and lower scores indicating a worse outcome / deeper impairment of consciousness.
Time frame: 48-72 hours after randomization, Days 5, 8, 10, and 14 after randomization
Proportion of participants who require conversion to intrathecal or intraventricular antibiotic therapy during the 48-72 hour period after randomization
This proportion is defined as the number of participants who are evaluated during the 48-72-hour period after randomization and are judged to have an unsatisfactory treatment response requiring conversion to intrathecal or intraventricular antibiotic therapy, divided by the total number of participants in the corresponding treatment group. An unsatisfactory treatment response is defined as the absence of an improving trend, compared with baseline, in cerebrospinal fluid white blood cell count, protein concentration, and cerebrospinal fluid-to-serum glucose concentration ratio.
Time frame: During the 48-72 hour period after randomization
All-cause mortality from baseline to 14-day
All-cause mortality
Time frame: Baseline to Day 14
Mortality due to meningitis from baseline to 14-day
Mortality due to meningitis. The diagnostic criteria are the absence of a downward trend in the cerebrospinal fluid leukocyte count, protein concentration, and the ratio of cerebrospinal fluid glucose concentration to serum glucose concentration prior to death.
Time frame: Baseline to Day 14
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