EP1978986A2

Microrna-based methods for the diagnosis and prognosis of lung cancer

Abstract

This record has no abstract on file.

Term

0.3 yearsto projected expiry

Projected expiry 3 January 2027, counted from filing; an application has no term until it is granted.

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35 claims: 10 independent, 25 dependent

  1. 1
    Claims of equivalent WO 2007081720 A2 CLAIMS What is claimed is:1. A method of diagnosing whether a subj ect has, or is at risk for developing, lung cancer, comprising measuring the level of at least one miR gene product in a test sample from said subject, wherein an alteration in the level of the miR gene product in the test sample, relative to the level of a corresponding miR gene product in a control sample, is indicative of the subject either having, or being at risk for developing, lung cancer.
  2. 2
    The method of Claim 1, wherein the at least one miR gene product is selected from the group consisting of miR-21, miR-191, miR-126*, miR-210, miR-155, miR-143, miR-205, miR-192-prec, miR-224, miR-126, miR-24-2, miR-30a-5p, miR- 212, miR-140, miR-9, miR-214, miR-17-3p, miR-124a-l, miR-218-2, miR-95, miR- 145, miR-198, miR-216-ρrec, miR-219-1, miR-106a, miR-197, miR-192, miR-125a- prec, miR-26a-l-prec, miR-146, miR-203, miR-199b-prec, let-7a-2-prec, miR-27b, miR-32, miR-29b-2, miR-220, miR-33, miR-181c-prec, miR-150, miR-101-1, miR- 124a-3, miR- 125a and let-7f-l.
  3. 3
    The method of Claim 1, wherein the at least one miR gene product is selected from the group consisting of miR-21, miR-205 and miR-216.
  4. 4
    The method of Claim 1, wherein the at least one miR gene product is selected from the group consisting of miR-21, miR-191, miR-155, miR-210, miR-126* and miR-224.
  5. 5
    The method of Claim 1 , wherein the lung cancer is a lung adenocarcinoma and the at least one miR gene product is selected from the group consisting of miR-21, miR-191, miR-155, miR-210, miR-126*, miR-126, miR-24-2, miR-219-1, miR-95, miR- 192-prec, miR-220, miR-216-ρrec, miR-204-prec, miR-188, miR-198, miR-145 and miR-224.
  6. 6
    The method of Claim 1, wherein the lung cancer is a lung squamous cell carcinoma and the at least one miR gene product is selected from the group consisting of miR-205, miR-224, miR-191, miR-126*, miR-140, miR-210. miR-17-3p, miR-29b, miR- 143, miR-203, miR- 155, miR-21, miR-214, miR-212, miR-30a-5p and miR- 197.
  7. 7
    The method of Claim 1, wherein the level of the at least one miR gene product in the test sample is less than the level of the corresponding miR gene product in the control sample.
  8. 8
    The method of Claim 1 , wherein the level of the at least one miR gene product in the test sample is greater than the level of the corresponding miR gene product in the control sample.
  9. 9
    A method of determining the prognosis of a subject with lung cancer, comprising measuring the level of at least one miR gene product in a test sample from said subject, wherein:the miR gene product is associated with an adverse prognosis in lung cancer;and an alteration in the level of the at least one miR gene product in the lung test sample, relative to the level of a corresponding miR gene product in a control sample, is indicative of an adverse prognosis.
  10. 10
    The method of Claim 9, wherein the at least one miR gene product is selected from the group consisting of miR-155, miR-17-3p, miR-106a, miR-93, let-7a- 2, miR-145, let-7b, miR-20 and miR-21.
  11. 11
    The method of Claim 9, wherein the lung cancer is a lung adenocarcinoma and the at least one miR gene product is selected from the group consisting of miR-155 and let-7a-2.
  12. 12
    A method of diagnosing whether a subject has, or is at risk for developing, lung cancer, comprising:(1) reverse transcribing RNA from a test sample obtained from the subject to provide a set of target oligodeoxynucleotides;(2) hybridizing the target oligodeoxynucleotides to a microarray comprising miRNA-specific probe oligonucleotides to provide a hybridization profile for the test sample;and (3) comparing the test sample hybridization profile to a hybridization profile generated from a control sample, wherein an alteration in the signal of at least one miRNA is indicative of the subject either having, or being at risk for developing, lung cancer.
  13. 13
    The method of Claim 13 wherein the signal of at least one miRNA, relative to the signal generated from the control sample, is down-regulated.
  14. 14
    The method of Claim 13 wherein the signal of at least one miRNA, relative to the signal generated from the control sample, is up-regulated.
  15. 15
    The method of Claim 13 wherein the microarray comprises miRNA- specific probe oligonucleotides for one or more miRNAs selected from the group consisting of miR-21, miR-191, miR-126*, miR-210, miR-155, miR-143, miR-205, miR-192-prec, miR-224, miR-126, miR-24-2, miR-3Oa-5p, miR-212, miR-140, miR-9, miR-214, miR-17-3p, miR-124a-l, miR-218-2, miR-95, miR-145, miR-198, miR-216- prec, miR-219-1, miR-106a, miR-197, miR-192, miR-125a-prec, miR-26a-l-prec, miR- 146, miR-203, miR-199b-prec, let-7a-2-prec, miR-27b, miR-32, miR-29b-2, miR-220, miR-33, miR-181c-prec, miR-150, miR-101-1, miR-124a-3, miR-125a, let-7f-l and a combination thereof.
  16. 16
    A method of diagnosing whether a subject has, or is at risk for developing, a lung cancer with an adverse prognosis in a subject, comprising:(1) reverse transcribing RNA from a test sample obtained from the subject to provide a set of target oligodeoxynucleotides;(2) hybridizing the target oligodeoxynucleotides to a microarray comprising miRNA-specific probe oligonucleotides to provide a hybridization profile for said test sample;and (3) comparing the test sample hybridization profile to a hybridization profile generated from a control sample, wherein an alteration in the signal is indicative of the subject either having, or being at risk for developing, a lung cancer with an adverse prognosis.
  17. 17
    The method of Claim 16, wherein an alteration in the signal of at least one miR gene product selected from the group consisting of miR-155, miR-17-3p, miR- 106a, miR-93, let-7a-2, miR-145, let-7b, miR-20 and miR-21 is indicative of the subject either having, or being at risk for developing, a lung cancer with an adverse prognosis.
  18. 18
    The method of Claim 16, wherein the lung cancer is a lung adenocarcinoma and an alteration in the signal of at least one miR gene product selected from the group consisting of miR-155 and let-7a-2 is indicative of the subject either having, or being at risk for developing, a lung cancer with an adverse prognosis.
  19. 19
    The method of Claim 16, wherein the microarray comprises at least one miRNA-specific probe oligonucleotide for a miRNA selected from the group consisting of miR-21, miR-191, miR-126*, miR-210, miR-155, miR-143, miR-205, miR-192- prec, miR-224, miR-126, miR-24-2, miR-30a-5p, miR-212, miR-140, miR-9, miR-214, miR-17-3p, miR-124a-l, miR-218-2, mϊR-95, miR-145, miR-198, miR-216-prec, miR- 219-1, miR- 106a, miR-197, miR-192, miR-125a-prec, miR-26a-l -prec, miR-146, miR- 203, miR-199b-prec, let-7a-2-prec, miR-27b, miR-32, miR-29b-2, miR-220, miR-33, miR-181c-prec, miR-150, miR-101-1, miR-124a-3, miR-125a, let-7f-l and a combination thereof.
  20. 20
    A method of treating lung cancer in a subject who has a lung cancer in which at least one miR gene product is down-regulated or up-regulated in the cancer cells of the subject relative to control cells, comprising:(1) when the at least one miR gene product is down-regulated in the cancer cells, administering to the subject an effective amount of at least one isolated miR gene product, or an isolated variant or biologically-active fragment thereof, provided that the miR gene product is not miR- 15a or miR- 16-1, such that proliferation of cancer cells in the subject is inhibited;or (2) when the at least one miR gene product is up-regulated in the cancer cells, administering to the subject an effective amount of at least one compound for inhibiting expression of the at least one miR gene product, such that proliferation of cancer cells in the subject is inhibited.
  21. 21
    The method of Claim 20, wherein the at least one isolated miR gene product in step (1) is selected from the group consisting of miR-126*, miR-143, miR- 192, miR-224, miR-126, miR-30a-5p, miR-140, miR-9, miR-124a-l, miR-218-2, miR- 95, miR-145, miR-198, miR-216, miR-219-1, miR-125a, miR-26a-l, miR-199b, let-7a- 2, miR-27b, miR-32, miR-29b-2, miR-220, miR-33, miR-18 Ic, miR-101-1, miR-124a- 3, let-7f-l and a combination thereof.
  22. 22
    The method of Claim 20, wherein the at least one miR gene product in step (2) is selected from the group consisting of miR-21, miR- 191, miR-210, miR-155, miR-205, miR-24-2, miR-212, miR-214, miR-17-3p, miR-106a, miR-197, miR-192, miR- 146, miR-203, miR-150 and a combination thereof.
  23. 23
    A method of treating lung cancer in a subject, comprising:(1) determining the amount of at least one miR gene product in lung cancer cells, relative to control cells;and (2) altering the amount of miR gene product expressed in the lung cancer cells by: (i) administering to the subject an effective amount of at least one isolated miR gene product, or an isolated variant or biologically-active fragment thereof, provided that the miR gene product is not miR- 15a or miR- 16- 1 , if the amount of the miR gene product expressed in the cancer cells is less than the amount of the miR gene product expressed in control cells;or (ii) administering to the subject an effective amount of at least one compound for inhibiting expression of the at least one miR gene product, if the amount of the miR gene product expressed in the cancer cells is greater than the amount of the miR gene product expressed in control cells.
  24. 24
    The method of Claim 23, wherein the at least one isolated miR gene product in step (i) is selected from the group consisting of miR- 126*, miR- 143, miR- 192, miR-224, miR-126, miR-3Oa-5p, miR-140, miR-9, miR-124a-l, miR-218-2, miR- 95, miR-145, miR-198, miR-216, miR-219-1, miR-125a, miR-26a-l, miR-199b, let-7a- 2, miR-27b. miR-32, miR-29b-2, miR-220, miR-33, miR-181c, miR-101-1, miR-124a- 3, let-7f-l and a combination thereof.
  25. 25
    The method of Claim 23, wherein the at least one miR gene product in step (H) is selected from the group consisting of miR-21, miR-191, miR-210, miR-155, miR-205, miR-24-2, miR-212, miR-214, miR-17-3p, miR-106a, miR-197, miR-192, miR-146, miR-203, miR-150 and a combination thereof.
  26. 26
    A pharmaceutical composition for treating lung cancer, comprising at least one isolated miR gene product, or an isolated variant or biologically-active fragment thereof, and a pharmaceutically-acceptable carrier.
  27. 27
    The pharmaceutical composition of Claim 26, wherein the at least one isolated miR gene product corresponds to a miR gene product that is down-regulated in lung cancer cells relative to control cells.
  28. 28
    The pharmaceutical composition of Claim 26, wherein the isolated miR gene product is selected from the group consisting of miR-126*, miR-192, miR-224, miR-126, miR-30a-5p, miR-140, miR-9, miR-124a-l, miR-218-2, miR-95, miR-145, miR-198, miR-216, miR-219-1, miR-125a, miR-26a-l, miR-199b, let-7a-2, miR-27b, miR-32, miR-
  29. 29
    29b-2, mϊR-220, miR-33, miR-181c, miR-101-1, miR-124a-3, miR-125b- 1, let-7f-l and a combination thereof. ' 29. A pharmaceutical composition for treating lung cancer, comprising at least one miR expression-inhibitor compound and a pharmaceutically-acceptable carrier.
  30. 30
    The pharmaceutical composition of Claim 29, wherein the at least one miR expression-inhibitor compound is specific for a miR gene product that is up- regulated in lung cancer cells relative to control cells.
  31. 31
    The pharmaceutical composition of Claim 29, wherein the at least one miR expression-inhibitor compound is specific for a miR gene product selected from the group consisting of miR-21, miR-191, miR-210, miR-155, miR-205, miR-24-2, miR-212, miR-214, miR-17-3p, miR-106a, miR-197, miR-192, miR-146, miR-203, miR- 150 and a combination thereof.
  32. 32
    A method of identifying an anti- lung cancer agent, comprising providing a test agent to a cell and measuring the level of at least one miR gene product associated with decreased expression levels in lung cancer cells, wherein an increase in the level of the miR gene product in the cell, relative to a control cell, is indicative of the test agent being an anti-lung cancer agent.
  33. 33
    The method of Claim 32, wherein the miR gene product is selected from the group consisting of miR-126*, miR-143, miR-192, miR-224, miR-126, miR-30a- 5p, miR-140, miR-9, miR-124a-l, miR-218-2, miR-95. miR-145, miR-198, miR-216, miR-219-1, miR-125a, miR-26a-l, miR-199b, let-7a-2, miR-27b, miR-32, miR-29b-2, miR-220, miR-33, miR-181c, miR-101-1, miR-124a-3, let-7f-l and a combination thereof.
  34. 34
    A method of identifying an anti-lung cancer agent, comprising providing a test agent to a cell and measuring the level of at least one miR gene product associated with increased expression levels in lung cancer cells, wherein a decrease in the level of the miR gene product in the cell, relative to a control cell, is indicative of the test agent being an anti-lung cancer agent.
  35. 35
    The method of Claim 34, wherein the miR gene product is selected from the group consisting of miR-21, miR-191, miR-210, miR-155, miR-205, miR-24-2, miR-212, miR-214, miR-17-3ρ, miR-106a, miR-197, miR-192, miR-146, miR-203, miR- 150 and a combination thereof.
Independent claims35