Methods of detecting prostate cancer
The invention described herein provides biological markers for the diagnosis, prognosis, and monitoring of prostate cancer.
1. A method for identifying the efficacy of a treatment for prostate cancer in a subject diagnosed with prostate cancer, wherein said treatment is administered to said subject, comprising:
a) measuring the levels of gene expression of ten or more markers comprising OAS3, RPL13L, RDH5, SOX6, OSBPL1A, GPS, GPR89A, TMEM80, PPPDE2, RYR3 in a population of the subject's macrophage cells and/or neutrophil cells at a first time point;
b) measuring the levels of gene expression of the ten or more markers in a population of the subject's non-phagocytic cells at the same first time point;
c) identifying a first difference between the measured levels of gene expression of the ten or more markers in steps a) and b);
d) measuring the levels of gene expression of the ten or more markers in a population of the subject's macrophage cells and/or neutrophil cells at a second time point;
e) measuring the levels of gene expression of the ten or more markers in a population of the subject's non-phagocytic cells at the same second time point;
f) identifying a second difference between the measured levels of gene expression of the ten or more markers in steps d) and e); and
g) identifying the presence of a third difference, wherein said third difference is a difference between the first difference and the second difference.
2. The method of claim 1 , wherein the first time point is before the treatment commences.
3. The method of claim 1 , wherein the second time point is after the treatment commences.
4. The method of claim 1 , wherein the second time point is after the treatment ends.
5. The method of claim 1 , further comprising measuring at least one standard parameter associated with said prostate cancer.
6. The method of claim 5 , wherein the standard parameter is selected from the group consisting of tumor stage, tumor grade, tumor size, tumor visual characteristics, tumor growth, tumor thickness, tumor progression, tumor metastasis tumor distribution within the body, odor, molecular pathology, genomics, or tumor angiograms.
7. A method for identifying the progression or regression of a prostate cancer in a subject, comprising:
a) measuring the levels of gene expression of ten or more markers comprising OAS3, RPL13L, RDH5, SOX6, OSBPL1A, GPS, GPR89A, TMEM80, PPPDE2, RYR3 in a population of the subject's macrophage cells and/or neutrophil cells at a first time point;
b) measuring the levels of gene expression of the ten or more markers in a population of the subject's non-phagocytic cells at the same first time point;
c) identifying a first difference between the measured levels of gene expression of the ten or more markers in steps a) and b);
d) measuring the levels of gene expression of the ten or more markers in a population of the subject's macrophage cells and/or neutrophil cells at a second time point;
e) measuring the levels of gene expression of the ten or more markers in a population of the subject's non-phagocytic cells at the same second time point;
f) identifying a second difference between the measured levels of gene expression of the ten or more markers in steps d) and e); and
g) identifying the presence of a third difference, wherein said third difference is a difference between the first difference and the second difference.
8. The method of claim 7 , further comprising measuring at least one standard parameter associated with said prostate cancer.
9. The method of claim 8 , wherein the standard parameter is selected from the group consisting of tumor stage, tumor grade, tumor size, tumor visual characteristics, tumor growth, tumor thickness, tumor progression, tumor metastasis tumor distribution within the body, odor, molecular pathology, genomics, or tumor angiograms.