PREDICTING TUMOR RESPONSES TO ANTIBODIES AGAINST HEPATOCYTE GROWTH FACTOR (HGF) AND/OR ITS COGNATE RECEPTOR, C-MET
The present invention provides methods for selecting a therapy for, or for providing a treatment to, a patient having a cancer. The methods of the present invention comprise detecting the protein biomarkers c-Met, HGF, and EpCAM in cancer cells or cancerous tissues of a subject, and predicting the subject's responsiveness to treatment with a c-Met-targeted or other HGF-inhibitory treatment, thereby enabling the selection and administration of an effective therapeutic.
1 . A method for selecting therapy for, or for providing treatment to, a patient having a cancer, the method comprising:
(a) obtaining at least one biomarker score from at least one cancer cell sample from the patient, wherein the at least one biomarker score comprises a score for one of c-Met and HGF; and
(b) if each score meets a threshold, then
1) selecting the patient for treatment with, or
2) administering to the patient,
an effective amount of a bispecific anti-EpCAM/anti-c-Met antibody,
wherein the threshold comprises only one of:
i. an immunohistochemistry (IHC) score for c-Met of 2+ or higher; or
ii. a c-Met IHC score of 3+;
iii. an HGF RNA in situ hybridization (ISH) score of 1+ or higher;
iv. an HGF RNA ISH score of 2+ or higher;
v. an HGF RNA ISH score of 3+ or higher;
vi. an HGF RNA ISH score of 4+
vii. an HGF IHC score of 1+ or higher;
viii. an HGF IHC score of 2+ or higher;
ix. an HGF IHC score of 3+ or higher; or
x. an HGF IHC score of 4+.
2 . A method for selecting therapy for, or for providing treatment to, a patient having a cancer, the method comprising:
(a) obtaining at least two biomarker scores from at least one cancer cell sample from the patient, wherein the scored biomarkers comprise c-Met and HGF; and
(b) if the scores meet a threshold, then
1) selecting the patient for treatment with, or
2) administering to the patient,
an effective amount of a bispecific anti-EpCAM/anti-c-Met antibody,
wherein the threshold comprises only one of:
i. an HGF (by RNA ISH or IHC) score of 1+ or higher and a c-Met IHC score of 1+ or higher;
ii. an HGF (by RNA ISH or IHC) score of 1+ or higher and a c-Met IHC score of 2+ or higher;
iii. an HGF (by RNA ISH or IHC) score of 1+ or higher and a c-Met IHC score of 3+;
iv. an HGF (by RNA ISH or IHC) score of 2+ or higher and a c-Met IHC score of 1+ or higher;
v. an HGF (by RNA ISH or IHC) score of 2+ or higher and a c-Met IHC score of 2+ or higher;
vi. an HGF (by RNA ISH or IHC) score of 2+ or higher and a c-Met IHC score of 3+;
vii. an HGF (by RNA ISH or IHC) score of 3+ or higher and a c-Met IHC score of 1+ or higher;
viii. an HGF (by RNA ISH or IHC) score of 3+ or higher and a c-Met IHC score of 2+ or higher;
ix. an HGF (by RNA ISH or IHC) score of 3+ or higher and a c-Met IHC score of 3+;
x. an HGF (by RNA ISH or IHC) score of 4+ and a c-Met IHC score of 1+ or higher;
xi. an HGF (by RNA ISH or IHC) score of 4+ and a c-Met IHC score of 2+ or higher;
xii. an HGF (by RNA ISH or IHC) score of 4+ and a c-Met IHC score of 3+;
xiii. an HGF (by RNA ISH or IHC) score of 0 and a c-Met IHC score of 2+; or
xiv. an HGF (by RNA ISH or IHC) score of 0 and a c-Met IHC score of 3+.
3 . The method of claim 1 or claim 2 , further comprising obtaining an EpCAM IHC biomarker score from the cancer cell sample (i.e., from cancer cells within the sample), wherein the threshold further comprises an EpCAM IHC score of 1+ or higher or 2+ or higher, or 3+.
4 . The method of claim 1 , wherein the threshold is a c-Met IHC score of 2+ or higher or a c-MET IHC score of 3+.
5 . The method of claim 1 , wherein the threshold is an HGF (by RNA ISH or IHC) score of 1+ or higher.
6 . The method of claim 2 , wherein the threshold is a c-Met IHC score of 2+ or higher and an HGF RNA-ISH score of 1+ or higher.
7 . The method of any of the preceding claims, wherein the bispecific antibody is Ab#5, Ab#7, or Ab#13.
8 . The method of any of the preceding claims, wherein the HGF RNA-ISH or IHC score is obtained using one or more nucleic acid ISH probes that hybridize specifically to a nucleic acid that comprises the sequence of nucleotides 346-1806 of the nucleotide sequence set forth in GenBank accession number NM_000601.4.
9 . The method of any of the preceding claims, wherein the c-Met IHC scores are obtained using at least one anti-c-Met antibody selected from clone SP44, Clone Met4, and Clone Met (D1C2) XP
10 . The method of any of the preceding claims, wherein the cancer is bladder, breast, cervical, colorectal, gastric, gastroesophageal, esophageal, head and neck, liver, lung, ovarian, pancreatic, prostrate, renal or thyroid cancer.
11 . The method of any of claims 3 and 7 - 10 , wherein the EpCAM IHC scores are obtained using at least one anti-EpCAM antibody selected from clone VU1D9 and Clone MOC-31.
12 . The method of any of the preceding claims, wherein if each score does not meet the threshold, then the patient receives therapy with an anti-cancer therapeutic that does not comprise a bispecific anti-EpCAM/anti-c-Met antibody.
13 . The method of any of the preceding claims, wherein the treatment, when administered to a plurality of the selected patients, produces an increase in the frequency in the treated patients of at least one therapeutic effect selected from the group consisting of reduction in size of a tumor, reduction in number of metastatic lesions over time, complete response, partial response, stable disease, increase in overall response rate, or a pathologic complete response, compared to a comparator population of patients who receive the treatment without the selection.
14 . The method of any of the preceding claims, wherein the treatment, when administered to a plurality of the selected patients, results in an increase in rates in the treated patients of progression-free survival or overall survival compared to a comparator population of patients who receive the treatment without the selection.
15 . The method of any of the preceding claims, wherein the treatment, when administered to a plurality of the selected patients, results in an improved quality of life for the selected patients compared to a comparator population of patients who receive the treatment without the selection.