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Lymphoma clinical trials

View clinical trials related to Lymphoma.

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NCT ID: NCT04439318 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Trametinib as a Potential Targeted Treatment in Cancers With NF1 Genetic Changes (MATCH-Subprotocol S1)

Start date: February 25, 2016
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of trametinib in patients whose cancer has a has a genetic change called NF1 mutation. Trametinib blocks proteins called MEK1 and MEK2, which may be needed for cancer cell growth when an NF1 mutation is present. Researchers hope to learn if trametinib will shrink this type of cancer or stop its growth.

NCT ID: NCT04439305 Withdrawn - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Dasatinib as a Potential Targeted Treatment in Cancers With DDR2 Genetic Changes (MATCH-Subprotocol X)

Start date: February 25, 2016
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of dasatinib in patients whose cancer has a genetic change called DDR2 mutation. Dasatinib may block proteins called tyrosine kinases, which may be needed for cancer cell growth. Researchers hope to learn if dasatinib will shrink this type of cancer or stop its growth.

NCT ID: NCT04439292 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Trametinib and Dabrafenib as a Potential Targeted Treatment in Cancers With BRAF Genetic Changes (MATCH-Subprotocol H)

Start date: August 12, 2015
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of trametinib and dabrafenib in patients whose cancer has genetic changes called BRAF V600 mutations. Dabrafenib may stop the growth of cancer by blocking BRAF proteins which may be needed for cell growth. Trametinib may stop the growth of cancer cells by blocking MEK proteins which, in addition to BRAF proteins, may also be needed for cell growth. Researchers hope to learn if giving trametinib with dabrafenib will shrink this type of cancer or stop its growth.

NCT ID: NCT04439279 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Trametinib as a Potential Targeted Treatment in Cancers With BRAF Genetic Changes (MATCH-Subprotocol R)

Start date: August 12, 2015
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of trametinib in patients with cancer having genetic changes called BRAF mutations and fusions. Trametinib may block proteins called MEK1 and MEK2, which may be needed for growth of cancer cells that express BRAF mutations. Researchers hope to learn if giving trametinib will shrink this type of cancer or stop its growth.

NCT ID: NCT04439266 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Crizotinib as a Potential Targeted Treatment in Cancers With ALK Genetic Changes (MATCH-Subprotocol F)

Start date: August 12, 2015
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of crizotinib in patients whose cancer has a genetic change called ALK rearrangement. Crizotinib may stop the growth of cancer cells by blocking the ALK protein which may be needed for cell growth. Researchers hope to learn if crizotinib will shrink this type of cancer or stop its growth.

NCT ID: NCT04439253 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Crizotinib as a Potential Targeted Treatment in Cancers With ROS1 Genetic Changes (MATCH-Subprotocol G)

Start date: August 12, 2015
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of crizotinib in patients whose cancer has a genetic change called ROS1 translocation. Crizotinib may block a protein called ROS1, which may be needed for cancer cell growth. Researchers hope to learn if crizotinib will shrink this type of cancer or stop its growth.

NCT ID: NCT04439240 Completed - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing AZD4547 as a Potential Targeted Treatment in Cancers With FGFR Genetic Changes (MATCH-Subprotocol W)

Start date: May 31, 2016
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of AZD4547 in patients whose cancer has genetic changes called FGFR gene alterations. AZD4547 may stop the growth of cancer cells by blocking FGFR proteins which may be needed for cell growth. Researchers hope to learn if AZD4547 will shrink this type of cancer or stop its growth.

NCT ID: NCT04439227 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing AZD1775 as a Potential Targeted Treatment in Cancers With BRCA Genetic Changes (MATCH-Subprotocol Z1I)

Start date: March 13, 2017
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifiesay block the protein tyrosine kinase WEE1 the effects of AZD1775 in patients whose cancer has a genetic change called BRCA mutation. AZD1775 may block a protein called WEE1, which may be needed for growth of cancer cells that express BRCA mutations. Researchers hope to learn if AZD1775 will shrink this type of cancer or stop its growth.

NCT ID: NCT04439214 Completed - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Nivolumab as a Potential Targeted Treatment in Cancers With Mismatch Repair Deficiency (MATCH-Subprotocol Z1D)

Start date: May 31, 2016
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of nivolumab in patients whose cancer has a genetic change called mismatch repair deficiency. Mismatch repair deficiency refers to cells that have mutations (changes) in certain genes that are involved in correcting mistakes made when DNA is copied in a cell. Immunotherapy with monoclonal antibodies, such as nivolumab, may help the body's immune system attack the cancer, and may interfere with the ability of cancer cells with mismatch repair deficiency to grow and spread. Researchers hope to learn if nivolumab will shrink this type of cancer or stop its growth.

NCT ID: NCT04439201 Active, not recruiting - Clinical trials for Hematopoietic and Lymphoid Cell Neoplasm

Testing Palbociclib (PD-0332991) as a Potential Targeted Treatment in Cancers With CCND1, 2, 3 Amplification (MATCH-Subprotocol Z1B)

Start date: May 31, 2016
Phase: Phase 2
Study type: Interventional

This phase II MATCH treatment trial identifies the effects of palbociclib in patients whose cancer has genetic changes called CCND1, 2, or 3 amplification. Palbociclib blocks proteins called CDK4 and CDK6, which may stop cancer cell growth when CCND1, 2, or 3 amplifications are present. Researchers hope to learn if palbociclib will shrink this type of cancer or stop its growth.