Azacitidine

15 clinical trials involving this therapy/drug

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Descriptions are automatically translated with AI assistance. Always verify details in the original on ClinicalTrials.gov and consult your treating physician.

RecruitingPhase ILeukemia

This phase 1 trial tests safety, side effects, and best dose of AOH1996 for the treatment of patients with acute myeloid leukemia (AML) that has come back after a period of improvement (relapsed) or AML that has not responded to previous treatment (refractory). AOH1996 is in a class of medications called PCNA inhibitors. It inhibits cancer growth and induces deoxyribonucleic acid (DNA) damage. This may help keep cancer cells from growing and damage cancer cell DNA. Giving AOH1996 may be safe, tolerable and/or effective in treating patients with AML.

RecruitingPhase IILeukemia

The researchers are doing this study to find out whether a 3-drug combination of ivosidenib, azacitidine, and venetoclax followed by maintenance therapy with ivosidenib alone is an effective treatment approach for people with newly diagnosed acute myeloid leukemia (AML) that has an IDH mutation. Maintenance therapy is additional treatment given to help keep cancer from coming back after it has disappeared following the first course of treatment. The researchers will also look at the safety of the treatment approach and what kind of a time commitment it involves for participants.

RecruitingPhase ILeukemia

This phase I trial tests the safety, side effects and best dose of FH-WT1-E50 TCR T cells with azacitidine for the treatment of minimal residual disease (MRD) positive acute myeloid leukemia (AML). T cells are infection fighting blood cells that can kill tumor cells. The T cells given in this study will come from the patient and will have a new gene put in them that makes them able to recognize WT1, a protein on the surface of cancer cells. These WT1-specific T cells may help the body's immune system identify and kill WT1 cancer cells. Azacitidine is in a class of medications called antimetabolites. It works by stopping or slowing the growth of cancer cells. Giving FH-WT1-E50 TCR T Cells with azacitidine may be safe and/or effective for the treatment of MRD positive AML.

RecruitingPhase ILeukemia

This phase Ib trial tests the safety, side effects, best dose and effectiveness of tagraxofusp in combination with azacitidine as maintenance therapy in treating patients with CD123 positive acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS) after a donor (allogeneic) hematopoietic cell transplant. An allogeneic hematopoietic cell transplant (HCT) is a type of transplant where the cancer patient receives cells from another person. Maintenance therapy is given after the transplant to prevent the cancer from coming back. Tagraxofusp is a drug that targets cells that have CD123 on their surface in order to kill the cancer cells to help prevent the cancer from coming back. Azacitidine is in a class of medications called demethylation agents. It works by helping the bone marrow to produce normal blood cells and by killing abnormal cells. Giving tagraxofusp in combination with azacitidine may be safe, tolerable and/or effective maintenance therapy in patients with CD123 positive AML and MDS after an allogeneic HCT.

RecruitingPhase IILeukemia

A treatment cycle is 28 days. Tagraxofusp will be administered at 9 mcg/kg IV over 15 minutes (-5 or +15 minutes) daily for 3 consecutive days (or 3 doses over a period not to exceed 10 days if postponement is required to allow for toxicity resolution), followed by azacitidine administered at 75 mg/m2 SQ or IV daily on Day 4 through Day 10. Venetoclax will begin on Day 4 and continue through Day 24 (21 consecutive days). A bone marrow biopsy (BM Bx) will be performed on Day 24 (+3 days) of Cycle 1. Subjects who do not achieve a CRm will proceed with the next cycle of Induction Phase study treatment, irrespective of hematologic laboratory values. Cycle 2+ will consist of tagraxofusp 9 mcg/kg IV over 15 minutes daily for 3 consecutive days (Day 1-3 or 3 doses over a period not to exceed 10 days if postponement is required to allow for toxicity resolution), azacitidine 75 mg/m2 SQ or IV on Day 1 through Day 7 or Days 1-7 or 1-5, 8-9 and venetoclax 400 mg daily Day 1 through Day 21. A bone marrow biopsy (BM Bx) will be performed on Day 21 (+3 days) of Cycle 2. If a CRm is obtained or maintained, the subject will move to or remain on the Continuation Phase. Subjects who do not achieve a marrow CR (CRm) after Cycle 2 will proceed with the next cycle of Induction Phase study treatment as described above, irrespective of hematologic laboratory values. If a CRm is obtained after Cycle 3 or 4, the subject will move to the Continuation Phase . If a CRm is not obtained after Cycle 4, study treatment will be discontinued and the subject will move to follow up. If per the investigator, the subject is receiving clinical benefit, study treatment may continue until toxicity or completion of 12 total cycles. A BM Bx will be performed at least every 3 cycles for these subjects.

RecruitingPhase ILeukemia

This phase I trial studies the side effects and best dose of ruxolitinib (Rux) therapy alone (monotherapy) followed by Rux plus azacitidine (AZA) maintenance therapy and to see how well it works in treating patients with acute myeloid leukemia (AML) who are undergoing reduced intensity allogeneic hematopoietic stem cell transplantation (alloHSCT). AlloHSCT provides the only chance for cure for many patients with AML. AlloHSCT is a procedure in which a person receives blood-forming stem cells (cells from which all blood cells develop) from a genetically similar, but not identical, donor. This is often a sister or brother, but could be an unrelated donor. One of the common reasons for death after an alloHSCT is graft versus host disease (GVHD), which occurs when the transplanted cells from the donor attacks the recipient's normal cells. Ruxolitinib is in a class of medications called kinase inhibitors. It works to treat GVHD by blocking the signals of the cells that cause GVHD. Azacitidine is in a class of medications called demethylation agents. It works by helping the bone marrow to produce normal blood cells and by killing abnormal cells in the bone marrow. Giving Rux after the transplant may stop GVHD from occurring. Maintenance therapy with AZA, may help prevent or delay cancer from coming back. Giving Rux monotherapy followed by Rux plus AZA maintenance therapy may be safe, tolerable, and/or effective in treating patients with AML who are undergoing alloHSCT.

RecruitingPhase IILeukemia

This MyeloMATCH Master Screening and Reassessment Protocol (MSRP) evaluates the use of a screening tool and specific laboratory tests to help improve participants' ability to register to clinical trials throughout the course of their myeloid cancer (acute myeloid leukemia or myelodysplastic syndrome) treatment. This study involves testing patients' bone marrow and blood for certain biomarkers. A biomarker (sometimes called a marker) is any molecule in the body that can be measured. Doctors look at markers to learn what is happening in the body. Knowing about certain markers can give doctors more information about what is driving the cancer and how to treat it. Testing patients' bone marrow and blood will show doctors if patients have markers that specific drugs can target. The marker testing in this study will let doctors know if they can match patients with a treatment study (myeloMATCH clinical trial) that tests treatment for the type of cancer they have or continue standard of care treatment with their doctor on the Tier Advancement Pathway (TAP).

RecruitingPhase ILeukemia

This phase I trial studies the side effects and best dose of ruxolitinib when given together with venetoclax and compares the effect of ruxolitinib in combination with venetoclax to venetoclax and azacitidine in treating patients with acute myeloid leukemia (AML) that has come back (relapsed) or has not responded to treatment (refractory). Ruxolitinib may stop the growth of cancer cells by blocking some of the enzymes needed for cell growth. Azacitidine stops cells from making deoxyribonucleic acid and may kill cancer cells. It is a type of antimetabolite. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Giving ruxolitinib in combination with venetoclax and azacitidine may be safe, tolerable, and/or effective compared to ruxolitinib with venetoclax in treating patients with relapsed or refractory AML.

RecruitingPhase ILeukemia

This phase I trial tests the safety, side effects, and best dose of iadademstat when given together with azacitidine and venetoclax in treating patients with newly diagnosed acute myeloid leukemia (AML). Iadademstat inhibits the LSD1 protein and may lead to inhibition of cell growth in LSD1-overexpressing cancer cells. Chemotherapy drugs, such as azacitidine, work in different ways to stop the growth of cancer cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Venetoclax is in a class of medications called B-cell lymphoma-2 (Bcl-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Giving iadademstat with azacitidine and venetoclax may be safe, tolerable and/or effective in treating patients with newly diagnosed AML who cannot undergo intensive chemotherapy.

RecruitingPhase IILeukemia

This phase II MyeloMATCH treatment trial compares the usual treatment of azacitidine and venetoclax to the combination treatment of azacitidine, venetoclax and gilteritinib in treating older and unfit patients with acute myeloid leukemia and FLT3 mutations. Azacitidine is a drug that is absorbed into DNA and leads to the activation of cancer suppressor genes, which are genes that help control cell growth. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Gilteritinib is in a class of medications called kinase inhibitors. It works by blocking the action of a certain naturally occurring substance that may be needed to help cancer cells multiply. This study may help doctors find out if these different approaches are better than the usual approaches. To decide if they are better, the study doctors are looking to see if the study drugs lead to a higher percentage of patients achieving a deeper remission compared to the usual approach.

RecruitingPhase IILeukemia

This phase II MyeloMATCH treatment trial compares cytarabine with daunorubicin versus cytarabine with daunorubicin and venetoclax versus venetoclax with azacitidine for the treatment of younger patients with intermediate risk acute myeloid leukemia (AML). Cytarabine is a drug that inhibits some of the enzymes needed for deoxyribonucleic acid (DNA) replication and repair and can slow or stop the growth of cancer cells. Daunorubicin is a drug that blocks a certain enzyme needed for cell division and DNA repair, and it may kill cancer cells. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. Azacitidine is a drug that interacts with DNA to activate tumor-suppressing genes, resulting in an anti-tumor effect. Adding venetoclax to cytarabine and daunorubicin, and adding venetoclax to azacitidine, may work better than the usual treatment of cytarabine with daunorubicin alone. To decide if they are better, the study doctors are looking to see if venetoclax increases the rate of elimination of AML in participants by 20% or more compared to the usual approach.

RecruitingPhase IILeukemia

This phase II MyeloMATCH treatment trial tests whether the standard approach of cytarabine and daunorubicin in comparison to the following experimental regimens works to shrink cancer in patients with high risk acute myeloid leukemia (AML): 1) daunorubicin and cytarabine liposome alone; 2) cytarabine and daunorubicin with venetoclax; 3) azacitidine and venetoclax; 4) daunorubicin and cytarabine liposome and venetoclax. "High-risk" refers to traits that have been known to make the AML harder to treat. Cytarabine is in a class of medications called antimetabolites. It works by slowing or stopping the growth of cancer cells in the body. Daunorubicin is in a class of medications called anthracyclines. It also works by slowing or stopping the growth of cancer cells in the body. Azacitidine is in a class of medications called demethylation agents. It works by helping the bone marrow to produce normal blood cells and by killing abnormal cells. Venetoclax is in a class of medications called B-cell lymphoma-2 (BCL-2) inhibitors. It may stop the growth of cancer cells by blocking Bcl-2, a protein needed for cancer cell survival. There is evidence that these newer experimental treatment regimens may work better in getting rid of more AML compared to the standard approach of cytarabine and daunorubicin.

RecruitingPhase IILeukemia

This phase II trial studies how well giving olutasidenib with azacitidine, followed by olutasidenib maintenance, works in treating patients with IDH1-mutated acute myeloid leukemia (AML) who have received prior treatment with venetoclax plus a hypomethylating agent (HMA-Ven). Olutasidenib and azacitidine may inhibit the growth of cancer cells by blocking certain enzymes required for cell growth. Maintenance therapy can help prevent or delay cancer from coming back. Olutasidenib with azacitidine followed by olutasidenib maintenance may be effective in treating patients with IDH1-mutated AML who have received prior HMA-Ven.

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