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J Thorac Dis
J Thorac Dis
JTD
Journal of Thoracic Disease
2072-1439
2077-6624
AME Publishing Company

jtd-16-08-5484
10.21037/jtd-24-890
Letter to the Editor
Open questions between immune checkpoint inhibitors and tuberculosis incidence
Wen Ying https://orcid.org/0000-0002-9775-6351
1
Kang Jing https://orcid.org/0000-0002-6591-2401
2
1 Department of Infectious Diseases, The First Affiliated Hospital of China Medical University, Shenyang, China;
2 State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, NHC Key Laboratory of AIDS Immunology, National Clinical Research Center for Laboratory Medicine, The First Hospital of China Medical University, China Medical University, Shenyang, China
Correspondence to: Ying Wen, PhD. Department of Infectious Diseases, The First Affiliated Hospital of China Medical University, No. 155, Nanjing North Street, Heping District, Shenyang 110001, China. Email: wenying666466@163.com.
05 8 2024
31 8 2024
16 8 54845486
29 5 2024
09 7 2024
2024 Journal of Thoracic Disease. All rights reserved.
2024
Journal of Thoracic Disease.
https://creativecommons.org/licenses/by-nc-nd/4.0/ Open Access Statement: This is an Open Access article distributed in accordance with the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License (CC BY-NC-ND 4.0), which permits the non-commercial replication and distribution of the article with the strict proviso that no changes or edits are made and the original work is properly cited (including links to both the formal publication through the relevant DOI and the license). See: https://creativecommons.org/licenses/by-nc-nd/4.0.
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pmcWe read with great interest the recent publication “A narrative review of the controversy on the risk of mycobacterial infections with immune checkpoint inhibitor use: does Goldilocks have the answer?” (1). We agree with Vaddi et al. for their vital insight on the controversial association between mycobacterial infections and the use of immune checkpoint inhibitors (ICIs). We also have some concerns about the following issues.

Firstly, only dozens of tuberculosis (TB) cases have been reported during ICI usage until now, although ICIs are widely used for malignant tumor therapy and accidentally used for chronic infection therapy. In a recent publication, an increased TB incidence of 1.58% in the ICIs group was reported, which was higher than 0.68% in the tyrosine kinase inhibitors (TKIs) group (2). Importantly, as one of the high-risk populations for TB incidence, various cancer patients had increased TB occurrence, especially in cancer of the respiratory tract followed by hematology. There was a 1.86% pulmonary TB incidence among patients with lung cancer (3), and the incidence of TB among cancer patients receiving chemotherapy was 3.9% (4). Moreover, in TB endemic areas such as China, the TB incidence was significantly higher in hospitalized patients with latent tuberculosis infection (LTBI) than in the general population. Therefore, from the incidence perspective, the linkage between ICI usage and TB reactivation was still inconclusive, even with increasing case reports and retrospective case series.

Secondly, most ICI-treated patients had previous immunosuppressive therapy experience, which also might result in TB reactivation. Thus, it is important to differentiate immunosuppression-induced TB reactivation from unmasking TB due to dysregulated immunity (5). PD-1 expressions on conventional T cells and regulatory T cells may play opposite immunoregulatory functions in the course of TB development. Besides different levels of PD-1 expression on T cell subsets, other immunological markers should be further investigated to differentiate immune exhaustion (effector function loss) from immune activation-induced immune tolerance (a protective immunity). Patients in an immune exhaustion state may benefit from ICI application due to improved T-cell function (6), while patients in the immune activation-induced immune tolerance state might increase autoimmune risk and unmasking infectious diseases due to hyperinflammation after ICI usage (7). In the lesson from human immunodeficiency virus (HIV) infection, controlling opportunistic infections before antiretroviral therapy (ART) could reduce the occurrence of immune reconstitution inflammatory syndrome (IRIS) among patients with advanced immunodeficiency. Similarly and notably, treatment for reducing antigenic burden is recommended before ICI application.

Thirdly, changing morphological patterns of TB pathology were observed in different immune conditions, but the pathological manifestations of ICI-related TB have scarcely been described. Among previous case reports, both classical caseous necrosis and atypical granulomatous inflammation were observed, which were accompanied by high PD-L1 expression on macrophages (8). Surprisingly, the lung pathology of PD-1−/− mice was characterized by obvious bacterial proliferation and focal necrotic areas, infiltrated by apparent neutrophils and a smattering of T and B cells. The typical histological lesion of TB among immunocompetent individuals is the coexisting caseous necrotizing-granulomatous inflammation, multinuclear giant cell reaction, positive acid-fast staining, and high PD-1 expression on CD8+ T cells (8). Among cases with advanced HIV infection, the main presentation of TB is atypical granulomatous inflammation with less lymphocyte infiltration. However, large numbers of neutrophils, plasma cells, and lymphocytes are demonstrated in the pathology of TB-IRIS, partly with concurrent suppurative inflammation (9). Furthermore, organizing pneumonia filling with intraalveolar fibrous granulation tissue is also reported as a special manifestation of TB-IRIS (10).

In conclusion, the incidence of TB among patients using ICIs was still low. The pathogen’s load, immune status, and pathological manifestation should also be evaluated to differentiate TB reactivation from unmasking TB-IRIS. In the future, prospective case-control studies are urgently needed to identify the precise incidence data, real immune status, and characteristic biomarkers. Although a discrepant proof between infectious diseases guidelines and oncology guidelines, intensive TB screening and initiating TB preventive therapy should be recommended among severely immunocompromised individuals in high TB burden countries.

Supplementary

The article’s supplementary files as

10.21037/jtd-24-890

Acknowledgments

Funding: None.

Ethical Statement: The authors are accountable for all aspects of the work in ensuring that questions related to the accuracy or integrity of any part of the work are appropriately investigated and resolved.

Provenance and Peer Review: This article was a standard submission to the journal. The article did not undergo external peer review.

Conflicts of Interest: Both authors have completed the ICMJE uniform disclosure form (available at https://jtd.amegroups.com/article/view/10.21037/jtd-24-890/coif). The authors have no conflicts of interest to declare.
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References

1 Vaddi A Hulsebus HJ O'Neill EL A narrative review of the controversy on the risk of mycobacterial infections with immune checkpoint inhibitor use: does Goldilocks have the answer? J Thorac Dis 2024;16 :1601-24. 10.21037/jtd-23-1395 38505086
2 Chen HW Kuo YW Chen CY Increased Tuberculosis Reactivation Risk in Patients Receiving Immune Checkpoint Inhibitor-Based Therapy. Oncologist 2024;29 :e498-506. 10.1093/oncolo/oyad340 38227604
3 Liao KM Shu CC Liang FW Risk Factors for Pulmonary Tuberculosis in Patients with Lung Cancer: A Retrospective Cohort Study. J Cancer 2023;14 :657-64. 10.7150/jca.81616 37057286
4 Aldabbagh MA Abughasham A Alansari G The Prevalence of Mycobacterium tuberculosis Infection Among Cancer Patients Receiving Chemotherapy in a Tertiary Care Center. Cureus 2022;14 :e32068. 10.7759/cureus.32068 36600835
5 Morelli T Fujita K Redelman-Sidi G Infections due to dysregulated immunity: an emerging complication of cancer immunotherapy. Thorax 2022;77 :304-11. 10.1136/thoraxjnl-2021-217260 34607905
6 Liu L Song Z Xun J PD-1 Inhibitor for Disseminated Mycobacterium avium Infection in a Person With HIV. Open Forum Infect Dis 2023;10 :ofac700. 10.1093/ofid/ofac700 36686637
7 Lázár-Molnár E Chen B Sweeney KA Programmed death-1 (PD-1)-deficient mice are extraordinarily sensitive to tuberculosis. Proc Natl Acad Sci U S A 2010;107 :13402-7. 10.1073/pnas.1007394107 20624978
8 Elkington PT Bateman AC Thomas GJ Implications of Tuberculosis Reactivation after Immune Checkpoint Inhibition. Am J Respir Crit Care Med 2018;198 :1451-3. 10.1164/rccm.201807-1250LE 30141960
9 Barr DA Ramdial PK . Clinicopathological correlates in HIV seropositive tuberculosis cases presenting with jaundice after initiating antiretroviral therapy with a structured review of the literature. BMC Infect Dis 2012;12 :257. 10.1186/1471-2334-12-257 23061403
10 Wang Y Lin X Wen Y . Organizing pneumonia-presenting acute respiratory distress syndrome because of paradoxical tuberculosis-immune reconstitution disease? AIDS 2021;35 :351-4. 10.1097/QAD.0000000000002752 33394677
