Diagnosis and treatment of cancer: i
Abstract
A method of diagnosing cancer comprising the steps of (i) obtaining a sample containing nucleic acid and/or protein from the patient; and (ii) determining whether the sample contains a level of SCN5A (and optionally also SCN9A) voltage-gated Na+ channel nucleic acid or protein associated with cancer. A method of diagnosing breast cancer comprising the steps of (i) obtaining a sample containing nucleic acid and/or protein from the patient; and (ii) determining whether the sample contains a level of voltage-gated Na+ channel nucleic acid or protein, preferably SCN5A or SCN9A, associated with cancer. A method of treating cancer comprising the step of administering to the patient an agent which selectively prevents the function of SCN5A (and optionally also SCN9A) voltage-gated Na+ channel. A method of treating breast cancer comprising the step of administering to the patient an agent which selectively prevents the function of a voltage-gated Na+ channel, preferably SCN5A or SCN9A. Genetic constructs and molecules useful in such methods. The methods and compositions are particularly suited to breast cancer.
Claims
exact text as granted — not AI-modified1 - 69 . (canceled)
70 . A method of treating cancer including breast cancer comprising administering to the patient an agent which selectively prevents the function of a voltage-gated Na + channel.
71 . A method as in claim 70 wherein the voltage-gated Na + channel is SCN5A.
72 . A method as in claim 70 wherein the agent performs a function selected from the group consisting of preventing the expression of and inhibiting the activity of the said voltage-gated Na + channel.
73 . A method as in claim 71 wherein the agent performs a function selected from the group consisting of preventing the expression of and inhibiting the activity of the said voltage-gated Na + channel.
74 . A method as in claim 72 wherein the agent prevents the expression of the said voltage-gated Na + channel, and wherein the agent is selected from the group consisting of antisense molecules and ribozymes.
75 . A method as in claim 70 wherein the agent is contained in a medicament for treating cancer.
76 . A method as in claim 75 wherein the voltage-gated Na + channel is SCN5A and wherein the agent is contained in a medicament for treating cancer.
77 . A method of treating cancer, including breast cancer, the method comprising administering to the human patient an effective amount of a compound comprising a moiety which selectively binds a voltage-gated Na + channel protein and a further moiety, wherein the further moiety of the compound is one which either directly or indirectly is of therapeutic benefit to the patient.
78 . A compound comprising a moiety which selectively binds SCN5A voltage-gated Na+ channel protein and a further moiety.
79 . A compound as in claim 78 wherein the further moiety is selected from the group consisting of readily detectable moieties, directly or indirectly cytotoxic moieties and combinations thereof.
80 . A compound as in claim 78 wherein the moiety which selectively binds the voltage-gated Na+ channel protein and the further moiety are polypeptides which are fused.
81 . A compound as in claim 80 encoded by a nucleic acid molecule.
82 . A compound as in claim 78 wherein the compound is a medicament component.
83 . A kit of parts selected from the group consisting of:
(a) a kit comprising:
(1) a compound as in claim 84 wherein the further moiety is a cytotoxic moiety which is able to convert a relatively non-toxic prodrug into a cytotoxic drug,
(2) a relatively non-toxic prodrug; and
(b) a kit comprising:
(1) a compound comprising a moiety which selectively binds SCN5A voltage-gated Na+ channel protein and a further moiety wherein the further moiety is able to bind selectively to a directly or indirectly cytotoxic moiety or to a readily detectable moiety; and
(2) any one of a directly or indirectly cytotoxic moiety or a readily detectable moiety to which the further moiety of the compound is able to bind.
84 . A method of imaging cancer, including breast cancer in a human patient, comprising administering to the patient an effective amount of a compound comprising a moiety which selectively binds a voltage-gated Na+ channel protein and a further moiety, wherein the further moiety of the compound is one which comprises a readily detectable moiety.Join the waitlist — get patent alerts
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