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Updated: Sep 22, 2025

Intravital Microscopy of Tumor-associated Vasculature Using Advanced Dorsal Skinfold Window Chambers on Transgenic Fluorescent Mice
Published on: January 19, 2018
LRG1 destabilizes tumor vessels and restricts immunotherapeutic potency
Marie N O'Connor1, David M Kallenberg1, Carlotta Camilli1
1Institute of Ophthalmology, University College London, London SE5 8BN, UK.
Background:
A poorly functioning tumor vasculature is pro-oncogenic and may impede the delivery of therapeutics. Normalizing the vasculature, therefore, may be beneficial. We previously reported that the secreted glycoprotein leucine-rich α-2-glycoprotein 1 (LRG1) contributes to pathogenic neovascularization. Here, we investigate whether LRG1 in tumors is vasculopathic and whether its inhibition has therapeutic utility.
Methods:
Tumor growth and vascular structure were analyzed in subcutaneous and genetically engineered mouse models in wild-type and Lrg1 knockout mice. The effects of LRG1 antibody blockade as monotherapy, or in combination with co-therapies, on vascular function, tumor growth, and infiltrated lymphocytes were investigated.
Findings:
In mouse models of cancer, Lrg1 expression was induced in tumor endothelial cells, consistent with an increase in protein expression in human cancers. The expression of LRG1 affected tumor progression as Lrg1 gene deletion, or treatment with a LRG1 function-blocking antibody, inhibited tumor growth and improved survival. Inhibition of LRG1 increased endothelial cell pericyte coverage and improved vascular function, resulting in enhanced efficacy of cisplatin chemotherapy, adoptive T cell therapy, and immune checkpoint inhibition (anti-PD1) therapy. With immunotherapy, LRG1 inhibition led to a significant shift in the tumor microenvironment from being predominantly immune silent to immune active.
Conclusions:
LRG1 drives vascular abnormalization, and its inhibition represents a novel and effective means of improving the efficacy of cancer therapeutics.
Funding:
Wellcome Trust (206413/B/17/Z), UKRI/MRC (G1000466, MR/N006410/1, MC/PC/14118, and MR/L008742/1), BHF (PG/16/50/32182), Health and Care Research Wales (CA05), CRUK (C42412/A24416 and A17196), ERC (ColonCan 311301 and AngioMature 787181), and DFG (CRC1366).
Insights
Inhibiting leucine-rich α-2-glycoprotein 1 (LRG1) normalizes tumor vasculature, enhancing cancer therapy efficacy. This approach improves treatment outcomes by targeting abnormal blood vessel growth in tumors.
Area of Science:
- Oncology
- Vascular Biology
- Immunotherapy
Background:
- Poorly functioning tumor vasculature promotes cancer growth and hinders therapeutic delivery.
- Leucine-rich α-2-glycoprotein 1 (LRG1) is implicated in pathogenic neovascularization.
- Investigating LRG1's role in tumor vasculopathy and its therapeutic potential is crucial.
Purpose of the Study:
- To determine if LRG1 contributes to tumor vasculopathy.
- To evaluate the therapeutic utility of inhibiting LRG1 in cancer models.
- To assess the impact of LRG1 inhibition on tumor vascular function and treatment efficacy.
Main Methods:
- Analysis of tumor growth and vascular structure in wild-type and Lrg1 knockout mouse models.
- Utilizing LRG1 function-blocking antibodies as monotherapy and in combination with other treatments.
- Investigating effects on vascular function, tumor growth, and immune cell infiltration.
Main Results:
- LRG1 expression is increased in tumor endothelial cells in mouse models and human cancers.
- LRG1 inhibition (gene deletion or antibody blockade) suppressed tumor growth and improved survival.
- LRG1 blockade enhanced chemotherapy, adoptive T cell therapy, and anti-PD1 immunotherapy efficacy by improving vascular function and promoting immune cell infiltration.
Conclusions:
- LRG1 drives tumor vascular abnormalization.
- Inhibiting LRG1 is a novel strategy to improve cancer therapeutic efficacy.
- Targeting LRG1 can overcome treatment resistance and enhance anti-tumor immunity.
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