IL-6 signaling and breast cancer
The disclosure provides, inter alia, methods of detecting IL-6 signaling activity in T cells in breast cancer patients, such as breast cancer patients in remission.
1. A method of predicting an increased probability of breast cancer relapse in a breast cancer patient in need thereof, the method comprising:
(i) obtaining a peripheral blood sample comprising T cells from the patient;
(ii) contacting the peripheral blood sample with either:
(a) an IL-6 pathway detection agent capable of binding an IL-6 pathway protein, wherein the IL-6 pathway protein is phosphorylated STAT1, phosphorylated STAT3, IL-6Rα, or ADAM17, thereby forming a detectable complex; or
(b) an IL-6 pathway probe capable of hybridizing an IL-6 pathway mRNA expression sequence, wherein the IL-6 pathway mRNA expression sequence is gp130, thereby forming a hybridization complex;
(iii) detecting and/or quantifying: (a) the detectable complex, or (b) the hybridization complex, respectively;
(iv) predicting an increased probability of breast cancer relapse in the breast cancer patient when:
(1) the T cells from the breast cancer patient are less responsive to IL-6 relative to a standard control;
(2) the breast cancer patient has a lower level of IL-6Rα relative to a standard control;
(3) the breast cancer patient has a higher level of ADAM17 relative to a standard control; or
(4) the breast cancer patient has a lower level of gp130 relative to a standard control; and
(v) administering to the breast cancer patient having an increased probability of breast cancer relapse an effective amount of an anti-cancer agent.
2. The method of claim 1 , further comprising monitoring the patient for breast cancer relapse.
3. The method of claim 1 , wherein the anti-cancer agent is hormone replacement therapy, a chemotherapeutic agent, radiation therapy, or a combination of two or more thereof.
4. The method of claim 1 , further comprising monitoring the patient for breast cancer relapse and administering to the patient an anti-cancer agent.
5. The method of claim 1 , further comprising classifying the patient as having increased risk for relapse when the patient has a different IL-6 activity relative to a standard control.
6. The method of claim 1 , further comprising classifying the patient as having decreased risk for relapse when the patient has a similar IL-6 activity relative to a standard control.
7. The method of claim 1 , wherein the T cells are CD4 + T cells.
8. The method of claim 7 , wherein the CD4 + T cells are naïve CD4 + T cells.
9. A method of treating breast cancer in a patient having an increased risk for breast cancer relapse, the method comprising:
(i) determining IL-6 activity in the patient, and identifying the patient as having an increased risk for breast cancer relapse when:
(a) the T cells from the patient are less responsive to IL-6 relative to a standard control;
(b) the patient has a lower level of IL-6Rα relative to a standard control;
(c) the patient has a higher level of ADAM17 relative to a standard control; or
(d) the patient has a lower level of gp130 relative to a standard control; and
(ii) administering to the patient an effective amount of an anti-cancer agent.
10. The method of claim 9 , further comprising monitoring the patient for breast cancer relapse.
11. The method of claim 9 , wherein determining the IL-6 activity in the patient comprises:
(i) obtaining a peripheral blood sample comprising T cells from the patient;
(ii) contacting the peripheral blood sample with either:
(a) an IL-6 pathway detection agent capable of binding an IL-6 pathway protein, wherein the IL-6 pathway protein is phosphorylated STAT1, phosphorylated STAT3, IL-6Rα, or ADAM17; thereby forming a detectable complex; or
(b) an IL-6 pathway probe capable of hybridizing an IL-6 pathway mRNA expression sequence, wherein the IL-6 pathway mRNA expression sequence is gp130; thereby forming a hybridization complex;
(iii) detecting and/or quantifying: (a) the detectable complex, or (b) the hybridization complex, respectively.
12. The method of claim 9 , wherein the anti-cancer agent comprises hormone replacement therapy, a chemotherapeutic agent, radiation therapy, or a combination of two or more thereof.