Abstract Purpose Diagnostic bronchoscopy plays a critical role in management for immunocompromised patients hospitalized with new pulmonary infiltrations. Most existing data on bronchoscopy in immunocompromised patients are derived from ICU cohorts or mixed inpatient/outpatient populations. This study aimed to assess the relationship between specific immunosuppression types-classified per the 2025 IDSA guidelines-and bronchoscopy yield and its impact on hospital management among non-ICU patients with new pulmonary infiltrates compared to non-immunocompromised. Methods A retrospective review of 447 hospitalized (immunocompromised and non-immunocompromised) patients who underwent bronchoscopy for new pulmonary infiltrates was completed between January 2022 and December 2024 in a single center tertiary care center. Data collected included demographics, immunosuppression type, and bronchoscopy results (cell count, differential, cultures, biopsies). Post-bronchoscopy management changes were also recorded. Multivariate logistic regression was used to correlate immunosuppression subtypes to diagnostic yield and management impact. Results The overall positivity rate for significant findings was 46% (n = 205). 367 of 447 (82%) met criteria for immunosuppressed. The immunosuppressed positivity rate was 46% vs 45% for non-immunosuppressed (P=.43). Broken down by subtype, positivity rates were: Active immunotherapy 33%, active chemotherapy 45%, hematologic malignancy 45%, hematopoietic stem cell transplant 44%, solid organ transplant 43%, active HIV 66%, primary immunodeficiency 78%, autoimmune modulator therapy 45%, daily prednisone use 20 mg 45%. Only primary immunodeficiency was associated with a statistical higher likelihood of a positive bronchoscopy (Odds ratio 4.69; P = 0.025).The overall rate of a significant change in management as a direct result of the bronchoscopy was 26%. Immunosuppressed was 26% compared to 22% for non-immunosuppressed (p = 0.5). Broken down by subtype management change rates were: Active immunotherapy 66%, active chemotherapy 18%, hematologic malignancy 19%, hematopoietic stem cell transplant 26%, solid organ transplant 32%, active HIV 100%, primary immunodeficiency 78%, autoimmune modulator therapy 70%, and daily prednisone use 20 mg 23%. Active immunotherapy and active immunomodulator therapy were correlated with a significant change in management (OR 8.9; P = 0.02, OR 3.6; P = 0.02, respectively). Conclusions Bronchoscopy yield and management impact were similar between immunosuppressed and non-immunosuppressed hospitalized patients. However, bronchoscopy more frequently influenced management in patients receiving active immunotherapy or immunomodulators, supporting earlier diagnostic use in these populations. This abstract is funded by: None
Call et al. (Fri,) studied this question.