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Selective blockade of latent TGF-β1 activation suppresses tissue fibrosis with good safety
Masakazu Kanamori1, Izumi Sato1, Christine Xing'er Koo2,3
1Research Division, Chugai Pharmaceutical Co. Ltd., Yokohama, Kanagawa, Japan.
Background:
Fibrosis is a hallmark of organ failure observed after chronic epithelial injury and inflammation. The transforming growth factor beta (TGF-β) is the master regulator of fibrogenesis, so blockade of the TGF-β pathway is a potential treatment strategy for fibrosis; however, the therapeutic potential of pan-TGF-β blockade is limited by side effects.
Methods:
We generated SOF10, a humanized antibody that targets latent TGF-β1 and selectively blocks protease- and integrin αvβ8-mediated latent TGF-β1 activation. We conducted gene expression and histological analyses in nonalcoholic steatohepatitis (NASH)/liver fibrosis and renal interstitial fibrosis models. We also evaluated the combination effect of SOF10 with an immune checkpoint inhibitor in a syngeneic mouse model and performed safety studies in mice and monkeys.
Results:
Here we show that SOF10 reduces fibrosis in NASH/liver fibrosis and renal interstitial fibrosis models and improves renal function in a chronic kidney disease model. Furthermore, the combination of SOF10 with an anti-PD-L1 antibody decreases tumor growth in a syngeneic mouse model. SOF10 demonstrates safety in both mice and monkeys.
Conclusions:
Selective blockade of latent TGF-β1 activation represents a promising approach for treating a broad range of fibrotic diseases and cancers. By specifically targeting TGF-β1, SOF10 may offer a safer and more effective therapeutic option compared to non-selective TGF-β inhibitors. This strategy has the potential to transform the treatment paradigm for fibrosis-related conditions.
Insights
A novel antibody, SOF10, selectively targets latent transforming growth factor beta 1 (TGF-β1) to reduce fibrosis in liver and kidney disease models. This approach shows promise for treating fibrotic conditions and cancers with improved safety.
Area of Science:
- Immunology
- Oncology
- Nephrology
- Hepatology
Background:
- Fibrosis is a key factor in organ failure following chronic inflammation and injury.
- Transforming growth factor beta (TGF-β) is central to fibrogenesis, making its pathway a therapeutic target.
- Broad TGF-β pathway inhibition is limited by adverse effects.
Purpose of the Study:
- To develop a novel therapeutic agent for fibrotic diseases.
- To investigate the efficacy and safety of SOF10, a selective latent TGF-β1 inhibitor.
- To evaluate SOF10's potential in combination therapy for cancer.
Main Methods:
- Generation of SOF10, a humanized antibody targeting latent TGF-β1 activation.
- Assessment of SOF10 in nonalcoholic steatohepatitis (NASH)/liver fibrosis and renal interstitial fibrosis models.
- Evaluation of SOF10 combined with an anti-PD-L1 antibody in a syngeneic mouse model.
- Safety assessments in mice and non-human primates.
Main Results:
- SOF10 significantly reduced fibrosis in NASH/liver and renal interstitial fibrosis models.
- SOF10 improved renal function in a chronic kidney disease model.
- Combination therapy with SOF10 and anti-PD-L1 decreased tumor growth.
- SOF10 demonstrated a favorable safety profile in preclinical studies.
Conclusions:
- Selective blockade of latent TGF-β1 activation is a promising strategy for fibrotic diseases and cancers.
- SOF10 offers a potentially safer and more effective alternative to non-selective TGF-β inhibitors.
- This targeted approach could revolutionize the treatment of fibrosis-related conditions and certain cancers.
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