Clinical Usefulness of Immune Profiling for Differential Diagnosis between Crohn’s Disease, Intestinal Tuberculosis, and Behcet’s Disease
Abstract
:1. Introduction
2. Methods
2.1. Study Population
2.2. Multiplex Immunofluorescence Staining
2.3. Multispectral Scanning and Analysis
2.4. Statistical Analysis
3. Results
3.1. Baseline Characteristics of the Study Population
3.2. Comparison of Immune Cell Densities in Panel 1
3.3. Comparison of Immune Cell Densities in Panel 2
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Park, S.H.; Kim, Y.J.; Rhee, K.H.; Kim, Y.H.; Hong, S.N.; Kim, K.H.; Seo, S.I.; Cha, J.M.; Park, S.Y.; Jeong, S.K.; et al. A 30-year Trend Analysis in the Epidemiology of Inflammatory Bowel Disease in the Songpa-Kangdong District of Seoul, Korea in 1986–2015. J. Crohn’s Colitis 2019, 13, 1410–1417. [Google Scholar] [CrossRef] [PubMed]
- Seo, H.; Lee, S.; So, H.; Kim, D.; Kim, S.O.; Soh, J.S.; Bae, J.H.; Lee, S.H.; Hwang, S.W.; Park, S.H.; et al. Temporal trends in the misdiagnosis rates between Crohn’s disease and intestinal tuberculosis. World J. Gastroenterol. 2017, 23, 6306–6314. [Google Scholar] [CrossRef] [PubMed]
- Bae, J.H.; Park, S.H.; Ye, B.D.; Kim, S.O.; Cho, Y.K.; Youn, E.J.; Lee, H.S.; Hwang, S.W.; Yang, D.H.; Kim, K.J.; et al. Development and Validation of a Novel Prediction Model for Differential Diagnosis Between Crohn’s Disease and Intestinal Tuberculosis. Inflamm. Bowel Dis. 2017, 23, 1614–1623. [Google Scholar] [CrossRef]
- Massimino, L.; Lamparelli, L.A.; Houshyar, Y.; D’Alessio, S.; Peyrin-Biroulet, L.; Vetrano, S.; Danese, S.; Ungaro, F. The inflammatory bowel disease transcriptome and metatranscriptome meta-analysis (IBD TaMMA) framework. Nat. Comput. Sci. 2021, 1, 511–515. [Google Scholar] [CrossRef]
- de Souza, H.S.; Fiocchi, C. Immunopathogenesis of IBD: Current state of the art. Nat. Rev. Gastroenterol. Hepatol. 2016, 13, 13–27. [Google Scholar] [CrossRef] [PubMed]
- Lee, S.H.; Kwon, J.E.; Cho, M.L. Immunological pathogenesis of inflammatory bowel disease. Intest. Res. 2018, 16, 26–42. [Google Scholar] [CrossRef]
- Tiwari, V.; Kedia, S.; Garg, S.K.; Rampal, R.; Mouli, V.P.; Purwar, A.; Mitra, D.K.; Das, P.; Dattagupta, S.; Makharia, G.; et al. CD4+ CD25+ FOXP3+ T cell frequency in the peripheral blood is a biomarker that distinguishes intestinal tuberculosis from Crohn’s disease. PLoS ONE 2018, 13, e0193433. [Google Scholar] [CrossRef]
- Das, P.; Rampal, R.; Udinia, S.; Kumar, T.; Pilli, S.; Wari, N.; Ahmed, I.K.; Kedia, S.; Gupta, S.D.; Kumar, D.; et al. Selective M1 macrophage polarization in granuloma-positive and granuloma-negative Crohn’s disease, in comparison to intestinal tuberculosis. Intest. Res. 2018, 16, 426–435. [Google Scholar] [CrossRef]
- Soh, J.S.; Jo, S.I.; Lee, H.; Do, E.J.; Hwang, S.W.; Park, S.H.; Ye, B.D.; Byeon, J.S.; Yang, S.K.; Kim, J.H.; et al. Immunoprofiling of Colitis-associated and Sporadic Colorectal Cancer and its Clinical Significance. Sci. Rep. 2019, 9, 6833. [Google Scholar] [CrossRef]
- Limsrivilai, J.; Shreiner, A.B.; Pongpaibul, A.; Laohapand, C.; Boonanuwat, R.; Pausawasdi, N.; Pongprasobchai, S.; Manatsathit, S.; Higgins, P.D. Meta-Analytic Bayesian Model For Differentiating Intestinal Tuberculosis from Crohn’s Disease. Am. J. Gastroenterol. 2017, 112, 415–427. [Google Scholar] [CrossRef]
- Bayraktar, Y.; Ozaslan, E.; Van Thiel, D.H. Gastrointestinal manifestations of Behcet’s disease. J. Clin. Gastroenterol. 2000, 30, 144–154. [Google Scholar] [CrossRef] [PubMed]
- Kirsch, R.; Pentecost, M.; Hall Pde, M.; Epstein, D.P.; Watermeyer, G.; Friederich, P.W. Role of colonoscopic biopsy in distinguishing between Crohn’s disease and intestinal tuberculosis. J. Clin. Pathol. 2006, 59, 840–844. [Google Scholar] [CrossRef] [PubMed]
- Kedia, S.; Das, P.; Madhusudhan, K.S.; Dattagupta, S.; Sharma, R.; Sahni, P.; Makharia, G.; Ahuja, V. Differentiating Crohn’s disease from intestinal tuberculosis. World J. Gastroenterol. 2019, 25, 418–432. [Google Scholar] [CrossRef] [PubMed]
- Jin, X.J.; Kim, J.M.; Kim, H.K.; Kim, L.; Choi, S.J.; Park, I.S.; Han, J.Y.; Chu, Y.C.; Song, J.Y.; Kwon, K.S.; et al. Histopathology and TB-PCR kit analysis in differentiating the diagnosis of intestinal tuberculosis and Crohn’s disease. World J. Gastroenterol. 2010, 16, 2496–2503. [Google Scholar] [CrossRef] [PubMed]
- Yamada, A.; Arakaki, R.; Saito, M.; Tsunematsu, T.; Kudo, Y.; Ishimaru, N. Role of regulatory T cell in the pathogenesis of inflammatory bowel disease. World J. Gastroenterol. 2016, 22, 2195–2205. [Google Scholar] [CrossRef]
- Ahuja, V.; Subodh, S.; Tuteja, A.; Mishra, V.; Garg, S.K.; Gupta, N.; Makharia, G.; Acharya, S.K. Genome-wide gene expression analysis for target genes to differentiate patients with intestinal tuberculosis and Crohn’s disease and discriminative value of FOXP3 mRNA expression. Gastroenterol. Rep. 2016, 4, 59–67. [Google Scholar] [CrossRef]
- Casalegno Garduño, R.; Däbritz, J. New Insights on CD8(+) T Cells in Inflammatory Bowel Disease and Therapeutic Approaches. Front. Immunol. 2021, 12, 738762. [Google Scholar] [CrossRef]
- Hirahara, L.; Takase-Minegishi, K.; Kirino, Y.; Iizuka-Iribe, Y.; Soejima, Y.; Yoshimi, R.; Nakajima, H. The Roles of Monocytes and Macrophages in Behçet’s Disease With Focus on M1 and M2 Polarization. Front. Immunol. 2022, 13, 852297. [Google Scholar] [CrossRef]
- Wu, X.; Wang, Z.; Shi, J.; Yu, X.; Li, C.; Liu, J.; Zhang, F.; Chen, H.; Zheng, W. Macrophage polarization toward M1 phenotype through NF-κB signaling in patients with Behçet’s disease. Arthritis Res. Ther. 2022, 24, 249. [Google Scholar] [CrossRef]
- Shapouri-Moghaddam, A.; Mohammadian, S.; Vazini, H.; Taghadosi, M.; Esmaeili, S.-A.; Mardani, F.; Seifi, B.; Mohammadi, A.; Afshari, J.T.; Sahebkar, A. Macrophage plasticity, polarization, and function in health and disease. J. Cell. Physiol. 2018, 233, 6425–6440. [Google Scholar] [CrossRef]
- Mihret, A. The role of dendritic cells in Mycobacterium tuberculosis infection. Virulence 2012, 3, 654–659. [Google Scholar] [CrossRef]
- Bethmann, D.; Feng, Z.; Fox, B.A. Immunoprofiling as a predictor of patient’s response to cancer therapy-promises and challenges. Curr. Opin. Immunol. 2017, 45, 60–72. [Google Scholar] [CrossRef]
- Khalil, B.A.; Shakartalla, S.B.; Goel, S.; Madkhana, B.; Halwani, R.; Maghazachi, A.A.; AlSafar, H.; Al-Omari, B.; Al Bataineh, M.T. Immune Profiling of COVID-19 in Correlation with SARS and MERS. Viruses 2022, 14, 164. [Google Scholar] [CrossRef]
- Bai, X.; Liu, W.; Chen, H.; Zuo, T.; Wu, X. Immune Cell Landscaping Reveals Distinct Immune Signatures of Inflammatory Bowel Disease. Front. Immunol. 2022, 13, 861790. [Google Scholar] [CrossRef]
- Garrido-Trigo, A.; Corraliza, A.M.; Veny, M.; Dotti, I.; Melon-Ardanaz, E.; Rill, A.; Crowell, H.L.; Corbi, A.; Gudino, V.; Esteller, M.; et al. Macrophage and neutrophil heterogeneity at single-cell spatial resolution in human inflammatory bowel disease. Nat. Commun. 2023, 14, 4506. [Google Scholar] [CrossRef] [PubMed]
- Francisco-Cruz, A.; Parra, E.R.; Tetzlaff, M.T.; Wistuba, I.I. Multiplex Immunofluorescence Assays. Methods Mol. Biol. 2020, 2055, 467–495. [Google Scholar] [CrossRef] [PubMed]
- Lu, S.; Stein, J.E.; Rimm, D.L.; Wang, D.W.; Bell, J.M.; Johnson, D.B.; Sosman, J.A.; Schalper, K.A.; Anders, R.A.; Wang, H.; et al. Comparison of Biomarker Modalities for Predicting Response to PD-1/PD-L1 Checkpoint Blockade: A Systematic Review and Meta-analysis. JAMA Oncol. 2019, 5, 1195–1204. [Google Scholar] [CrossRef] [PubMed]
Variables | Crohn’s Disease (n = 5) | Intestinal BD (n = 5) | Intestinal TB (n = 5) |
---|---|---|---|
Male, n (%) | 3 (60) | 3 (60) | 2 (40) |
Age at diagnosis, median year (range) | 32 (16–40) | 34 (30–57) | 49 (35–72) |
Duration from symptom onset to diagnosis, median month (range) | 5 (0–5) | 3 (2–10) | 0 (0–3) |
Initial median CRP, mg/dL (range) | 0.6 (0.2–2) | 0.4 (0.1–6) | 0.2 (0.1–0.2) |
Initial median calprotectin, µg/g (range) | 388 (43.1–566) | 412 (202–457) | N/A |
Severity (CDAI) | 52 (34–66) |
Crohn’s Disease | Intestinal BD | Intestinal TB | p-Value | |
---|---|---|---|---|
CD4+, median cells/mm2 (range) | 2115 (510–3085) | 783 (375–2019) | 1358 (587–1682) | 0.620 |
CD8+, median cells/mm2 (range) | 503 (330–1125) | 503 (390–959) | 481 (339–694) | 0.690 |
Foxp3+, median cells/mm2 (range) | 339 (131–552) | 439 (99–755) | 245 (120–526) | 0.725 |
CD20+, median cells/mm2 (range) | 3176 (129–4971) | 1281 (437–1724) | 1938 (122–2652) | 0.650 |
PD-1+, median cells/mm2 (range) | 189 (12–317) | 40 (20–101) | 108 (12–197) | 0.392 |
Granzyme B+, median cells/mm2 (range) | 120 (98–222) | 250 (28–411) | 214 (80–467) | 0.365 |
Crohn’s Disease | Intestinal BD | Intestinal TB | p-Value | |
---|---|---|---|---|
CD56+, median cells/mm2 (range) | 199 (63–263) | 75 (44–335) | 160 (14–602) | 0.582 |
CD68+, median cells/mm2 (range) | 530 (508–840) | 1828 (1648–3366) | 1224 (508–1404) | <0.001 |
CD163+, median cells/mm2 (range) | 63 (17–228) | 154 (89–408) | 114 (69–167) | 0.165 |
CD11c+, median cells/mm2 (range) | 362 (20–1160) | 19 (0–616) | 304 (36–649) | 0.252 |
HLA-DR+, median cells/mm2 (range) | 258 (193–451) | 152 (3–640) | 890 (168–1147) | 0.208 |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Yoo, J.W.; Jo, S.I.; Shin, D.W.; Park, J.W.; Kim, S.-E.; Lim, H.; Kang, H.S.; Moon, S.-H.; Kim, M.K.; Kim, S.-Y.; et al. Clinical Usefulness of Immune Profiling for Differential Diagnosis between Crohn’s Disease, Intestinal Tuberculosis, and Behcet’s Disease. Diagnostics 2023, 13, 2904. https://doi.org/10.3390/diagnostics13182904
Yoo JW, Jo SI, Shin DW, Park JW, Kim S-E, Lim H, Kang HS, Moon S-H, Kim MK, Kim S-Y, et al. Clinical Usefulness of Immune Profiling for Differential Diagnosis between Crohn’s Disease, Intestinal Tuberculosis, and Behcet’s Disease. Diagnostics. 2023; 13(18):2904. https://doi.org/10.3390/diagnostics13182904
Chicago/Turabian StyleYoo, Ji Won, Su In Jo, Dong Woo Shin, Ji Won Park, Sung-Eun Kim, Hyun Lim, Ho Suk Kang, Sung-Hoon Moon, Min Kyu Kim, Sang-Yeob Kim, and et al. 2023. "Clinical Usefulness of Immune Profiling for Differential Diagnosis between Crohn’s Disease, Intestinal Tuberculosis, and Behcet’s Disease" Diagnostics 13, no. 18: 2904. https://doi.org/10.3390/diagnostics13182904
APA StyleYoo, J. W., Jo, S. I., Shin, D. W., Park, J. W., Kim, S.-E., Lim, H., Kang, H. S., Moon, S.-H., Kim, M. K., Kim, S.-Y., Hwang, S. W., & Soh, J. S. (2023). Clinical Usefulness of Immune Profiling for Differential Diagnosis between Crohn’s Disease, Intestinal Tuberculosis, and Behcet’s Disease. Diagnostics, 13(18), 2904. https://doi.org/10.3390/diagnostics13182904