Related Experiment Video
Updated: May 17, 2025

A 3D Human Lung Tissue Model for Functional Studies on Mycobacterium tuberculosis Infection
Published on: October 5, 2015
Targeting CCRL2 enhances therapeutic outcomes in a tuberculosis mouse model
Tianyin Wang1,2, Darla Quijada1,2, Taha Ahmedna3
1Division of Infectious Diseases, Department of Medicine, The Johns Hopkins Hospital, Baltimore, MD, United States.
Abstract:
Tuberculosis (TB) remains among the leading infectious causes of death. Due to the limited number of antimicrobials in the TB drug discovery pipeline, interest has developed in host-directed approaches to improve TB treatment outcomes. C-C motif chemokine-like receptor 2 (CCRL2) is a unique seven-transmembrane domain receptor that is upregulated by inflammatory signals and mediates leucocyte migration. However, little is known about its role in TB infection. Here, we show that Mycobacterium tuberculosis (Mtb) infection increases CCRL2 protein expression in macrophages in vitro and alveolar macrophages (AMs), dendritic cells (DCs) and neutrophils in mouse lungs. To target selectively CCRL2-expressing cells in vivo, we developed a novel mouse anti-CCRL2 antibody-drug conjugate (ADC) linked with the cytotoxic drug SG3249. We tested its adjunctive therapeutic efficacy against TB when combined with the first-line regimen for drug-susceptible TB (isoniazid, rifampin, pyrazinamide, ethambutol; RHZE). The anti-CCRL2 ADC treatment potentiated RHZE efficacy in Mtb-infected mice and decreased gross lung inflammation. CCRL2 expression in lung DCs and AMs was lower in mice receiving anti-CCRL2 ADC treatment+RHZE compared to those receiving RHZE alone or the control group, although the total innate cell populations did not differ across treatment groups. Interestingly, neutrophils were completely absent in the anti-CCRL2 ADC treatment + RHZE group, unlike in the other treatment groups. IFN-γ+-and IL17-α+-T-cell responses, which are associated with optimal TB control, were also elevated in the anti-CCRL2 ADC treatment + RHZE group. Our findings suggest that CCRL2-targeting approaches may improve TB treatment outcomes, possibly through selective killing of Mtb-infected innate immune cells.
Insights
New host-directed therapies targeting C-C motif chemokine-like receptor 2 (CCRL2) show promise for tuberculosis (TB) treatment. An anti-CCRL2 antibody-drug conjugate enhanced standard TB drug efficacy and reduced lung inflammation in mice.
Area of Science:
- Immunology
- Infectious Diseases
- Pharmacology
Background:
- Tuberculosis (TB) is a leading cause of death, with limited new antimicrobial drugs.
- Host-directed therapies are being explored to improve TB treatment outcomes.
- C-C motif chemokine-like receptor 2 (CCRL2) is involved in leukocyte migration but its role in TB is unclear.
Purpose of the Study:
- To investigate the role of CCRL2 in Mycobacterium tuberculosis (Mtb) infection.
- To develop and test a novel anti-CCRL2 antibody-drug conjugate (ADC) as an adjunctive therapy for TB.
Main Methods:
- Assessed CCRL2 expression in macrophages, alveolar macrophages (AMs), dendritic cells (DCs), and neutrophils during Mtb infection in vitro and in vivo.
- Developed an anti-CCRL2 ADC using the cytotoxic drug SG3249.
- Evaluated the adjunctive therapeutic efficacy of the anti-CCRL2 ADC combined with the standard first-line TB regimen (RHZE) in Mtb-infected mice.
Main Results:
- Mtb infection increased CCRL2 expression in various immune cells in the lungs.
- Anti-CCRL2 ADC treatment potentiated RHZE efficacy, reducing lung inflammation.
- CCRL2 expression decreased in lung DCs and AMs with combined treatment.
- Neutrophils were eliminated, and IFN-γ/IL-17α T-cell responses were elevated in the anti-CCRL2 ADC + RHZE group.
Conclusions:
- CCRL2 targeting may enhance TB treatment outcomes.
- The anti-CCRL2 ADC potentially improves TB therapy by selectively eliminating infected innate immune cells.
- This approach offers a novel strategy for adjunctive TB treatment.

