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Adjunctive Molecular Hydrogen Capsule Therapy in Empyema Complicated by Chronic Inflammatory Demyelinating
Guan-Long Li1,2, Jeng-Wei Lu3,4,5, Yi-Jung Ho6,7
1Department of Psychiatry, Tri-Service General Hospital, Beitou Branch, National Defense Medical University, Taipei, Taiwan, R.O.C.
Background/Aim:
The management of Stage II empyema complicated by chronic inflammatory demyelinating polyneuropathy (CIDP) presents a formidable clinical challenge due to the precarious balance required between aggressive infection control and the modulation of immune-mediated neurological frailty. We report a complex case of comorbid empyema and CIDP successfully managed with a multidisciplinary approach and adjuvant molecular hydrogen (H2) therapy.
Case Report:
A 76-year-old male with CIDP presented with acute respiratory failure secondary to Stage II empyema. Following video-assisted thoracoscopic surgery (VATS) decortication, the patient exhibited systemic hyperinflammation and immune exhaustion. Adjuvant oral molecular hydrogen therapy was initiated during the critical phase. Longitudinal immunophenotyping was performed to monitor the therapeutic response. Clinical recovery coincided with profound immunological remodeling. We observed a cell-specific up-regulation of fas cell surface death receptor (Fas) expression in hyper-activated naïve and effector cytotoxic T cells (Tc), suggesting a H2-facilitated apoptotic clearance of pro-inflammatory lineages. Conversely, the helper T-cell (Th) reservoir was preserved. Recovery was further characterized by the consistent restoration of intermediate and post-germinal center memory B-cell populations, coupled with a substantial augmentation of suppressive T and B-cell subsets (Tregs and Bregs). This shift toward immune homeostasis prevented secondary autoimmune flares and facilitated successful discharge.
Conclusion:
Molecular hydrogen may act as a systemic bioregulator that fosters immune homeostasis by selectively targeting hyper-activated effector cells while promoting regulatory cell recovery. This dual antioxidant and immunomodulatory capacity positions H2 as a promising adjuvant therapy for complex infectious and neuroinflammatory conditions.
Insights
This case study shows molecular hydrogen (H2) therapy successfully managed a patient with Stage II empyema and chronic inflammatory demyelinating polyneuropathy (CIDP). H2 therapy helped restore immune homeostasis, preventing further complications.
Area of Science:
- Immunology
- Neurology
- Pulmonology
Background:
- Stage II empyema with chronic inflammatory demyelinating polyneuropathy (CIDP) poses significant management challenges.
- Balancing infection control with immune modulation in neuroinflammatory conditions is critical.
Purpose of the Study:
- To report a successful multidisciplinary management of comorbid empyema and CIDP.
- To investigate the role of adjuvant molecular hydrogen (H2) therapy in immune recovery.
Main Methods:
- A 76-year-old male with CIDP and Stage II empyema underwent video-assisted thoracoscopic surgery (VATS) decortication.
- Adjuvant oral molecular hydrogen (H2) therapy was administered during the critical phase.
- Longitudinal immunophenotyping monitored the patient's immune response.
Main Results:
- Clinical recovery correlated with significant immunological remodeling.
- Molecular hydrogen (H2) therapy promoted the apoptotic clearance of hyper-activated T cells while preserving helper T cells.
- Restoration of memory B cells and augmentation of regulatory T and B cells (Tregs and Bregs) were observed, indicating a shift towards immune homeostasis.
Conclusions:
- Molecular hydrogen (H2) may function as a systemic bioregulator, enhancing immune homeostasis.
- Its antioxidant and immunomodulatory properties suggest potential as an adjuvant therapy for complex infectious and neuroinflammatory diseases.
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