Breast cancer is still a significant cancer with over 1/2 million deaths per year, mainly due to metastatic disease. Triple negative breast cancers (TNBC) are responsible for around 20% of all breast cancers and are particularly aggressive and with high mortality rates. To date there are only few drugs in the market to treat TNBC, leaving patients with little treatment options other than surgery, radiotherapy and chemotherapy. Despite its sensitivity to chemotherapy, TNBC remains a clinical challenge due to high rate of relapse, a propensity to form visceral metastasis and limited targeted therapies.
RANK signaling pathway has emerged as a novel target for breast cancer prevention and treatment. The work of my lab and others evidenced that RANK protein over expression may be responsible for a number of these cancers and can also facilitate metastasis. Current antibodies targeting RANK ligand (RANKL) prevent tumor initiation but do not reduce tumor growth. In TargetRANK we aim to target the receptor RANK, instead of the ligand. This value proposition is based on: (1) RANKL expression is gradually lost during breast cancer progression, whereas RANK is expressed in a subset of luminal and TNBC human mammary adenocarcinomas. (2) RANK overexpression in breast cancer cells leads to constitutive activation of the pathway in a RANKL-independent manner, promoting stemness, tumorigenesis and metastasis
In addition, a worrying problem is identifying the RANK+ patients that could benefit from anti-RANK therapies. The monoclonal anti-human RANK antibodies available in the market are neither well characterized nor specific to detect RANK in breast tumor samples, whereas the best and widely accepted antibody developed to date from Amgen, is not sensitive enough and not commercialized. Thus, there is a need to identify novel targeted therapies for the treatment of TNBC and to develop diagnostic tools to identify RANK+ patients.
The general objective is to validate RANK as a new target in breast cancer therapy, develop molecules that bind and inhibit RANK signaling and diagnostic antibodies to identify patients who can benefit from the treatment. The outcomes of the present study can provide patients with triple-negative breast cancer with another, much-needed therapeutic option. Furthermore, the project also aims to develop a new diagnostic tool to identify RANK+ patients who will benefit from the treatment. This could result in both better treatments and improved diagnostic testing.