Drug Pipeline

28 drugs associated with Beta-thalassemia

DrugPhaseSponsor
Blood component A
ApprovedUniversità degli Studi di Ferrara
Blood component B
ApprovedUniversità degli Studi di Ferrara
Busulfan

Busulfan is an alkylating agent that contains 2 labile methanesulfonate groups attached to opposite ends of a 4-carbon alkyl chain. Once busulfan is hydrolyzed, the methanesulfonate groups are released and carbonium ions are produced. These carbonium ions alkylate DNA, which results in the interference of DNA replication and RNA transcription, ultimately leading to the disruption of nucleic acid function. Specifically, its mechanism of action through alkylation produces guanine-adenine intrastra

ApprovedFirst Affiliated Hospital of Guangxi Medical University
Cyclophosphamide

Alkylating agents work by three different mechanisms: 1) attachment of alkyl groups to DNA bases, resulting in the DNA being fragmented by repair enzymes in their attempts to replace the alkylated bases, preventing DNA synthesis and RNA transcription from the affected DNA, 2) DNA damage via the formation of cross-links (bonds between atoms in the DNA) which prevents DNA from being separated for synthesis or transcription, and 3) the induction of mispairing of the nucleotides leading to mutations

ApprovedFirst Affiliated Hospital of Guangxi Medical University
Fludarabine

Fludarabine phosphate is rapidly dephosphorylated to 2-fluoro-ara-A and then phosphorylated intracellularly by deoxycytidine kinase to the active triphosphate, 2-fluoro-ara-ATP. This metabolite appears to act by inhibiting DNA polymerase alpha, ribonucleotide reductase and DNA primase, thus inhibiting DNA synthesis. The mechanism of action of this antimetabolite is not completely characterized and may be multi-faceted.

ApprovedFirst Affiliated Hospital of Guangxi Medical University
Methotrexate

Methotrexate enters tissues and is converted to a methotrexate polyglutamate by folylpolyglutamate. Methotrexate's mechanism of action is due to its inhibition of enzymes responsible for nucleotide synthesis including dihydrofolate reductase, thymidylate synthase, aminoimidazole caboxamide ribonucleotide transformylase (AICART), and amido phosphoribosyltransferase. Inhibtion of nucleotide synthesis prevents cell division. In rheumatoid arthritis, methotrexate polyglutamates inhibit AICART mor

ApprovedFirst Affiliated Hospital of Guangxi Medical University
Mycophenolate mofetil

The active metabolite of mycophenolate, mycophenolic acid, prevents T-cell and B-cell proliferation and the production of cytotoxic T-cells and antibodies. Lymphocyte and monocyte adhesion to endothelial cells of blood vessels that normally part of inflammation is prevented via the glycosylation of cell adhesion molecules by MPA. MPA inhibits de novo purine biosynthesis (that promotes immune cell proliferation) by inhibiting inosine 5’-monophosphate dehydrogenase enzyme (IMPDH), with a preferent

ApprovedFirst Affiliated Hospital of Guangxi Medical University
Tacrolimus

The mechanism of action of tacrolimus in atopic dermatitis is not known. While the following have been observed, the clinical significance of these observations in atopic dermatitis is not known. It has been demonstrated that tacrolimus inhibits T-lymphocyte activation by first binding to an intracellular protein, FKBP-12. A complex of tacrolimus-FKBP-12, calcium, calmodulin, and calcineurin is then formed and the phosphatase activity of calcineurin is inhibited. This prevents the dephosphorylat

ApprovedFirst Affiliated Hospital of Guangxi Medical University
Thymoglobulin

The mechanism of action by which polyclonal antilymphocyte preparations suppress immune responses is not fully understood. Possible mechanisms by which THYMOGLOBULIN may induce immunosuppression in vivo include: T-cell clearance from the circulation and modulation of T-cell activation, homing, and cytotoxic activities. THYMOGLOBULIN includes antibodies against T-cell markers such as CD2, CD3, CD4, CD8, CD11a, CD18, CD25, CD44, CD45, HLA-DR, HLA Class I heavy chains, and ß2 micro-globulin. In vit

ApprovedFirst Affiliated Hospital of Guangxi Medical University
SLN124
Phase 1Silence Therapeutics plc
β-globin restored autologous hematopoietic stem cells

Somatic cell supplemental therapy

Phase 1Shenzhen Hemogen
Alemtuzumab

CAMPATH binds to CD52, an antigen present on the surface of B and T lymphocytes, a majority of monocytes, macrophages, NK cells, and a subpopulation of granulocytes. A proportion of bone marrow cells, including some CD34+ cells, express variable levels of CD52. The proposed mechanism of action is antibody-dependent cellular-mediated lysis following cell surface binding of CAMPATH to the leukemic cells.

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
briquilimab

Stem cell growth factor receptor inhibitor

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
BRL-101
Phase 2Bioray Laboratories
Denosumab

Denosumab products bind to RANKL, a transmembrane or soluble protein essential for the formation, function, and survival of osteoclasts, the cells responsible for bone resorption. Denosumab products prevent RANKL from activating its receptor, RANK, on the surface of osteoclasts and their precursors. Prevention of the RANKL/RANK interaction inhibits osteoclast formation, function, and survival, thereby decreasing bone resorption and increasing bone mass and strength in both cortical and trabecula

Phase 2Ersi Voskaridou
Filgrastim (G-CSF)

Granulocyte colony stimulating factor receptor agonist

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
Hydroxyurea

The precise mechanism by which hydroxyurea produces its antineoplastic effects cannot, at present, be described. However, the reports of various studies in rat and human tissue cultures lend support to the hypothesis that hydroxyurea causes an immediate inhibition of DNA synthesis, by acting as a ribonucleotide reductase inhibitor, without interfering with the synthesis of ribonucleic acid or of protein. Hydroxyurea probably acts by decreasing the rate of conversion of ribonucleotides and deoxyr

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
Pentostatin

Pentostatin is a potent transition state inhibitor of adenosine deaminase (ADA), the greatest activity of which is found in cells of the lymphoid system. T-cells have higher ADA activity than B-cells, and T-cell malignancies have higher activity than B-cell malignancies. The cytotoxicity that results from prevention of catabolism of adenosine or deoxyadenosine is thought to be due to elevated intracellular levels of dATP, which can block DNA synthesis through inhibition of ribonucleotide reducta

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
Plerixafor

Plerixafor inhibits the C-X-C chemokine receptor type 4 (CXCR4) on CD34+ cells and reversibly blocks the binding of its ligand, stromal cell-derived factor-1-alpha (SDF-1α). SDF-1α and CXCR4 play a role in the trafficking and homing of human hematopoietic stem cells (HSCs) to the marrow compartment. In the marrow, stem cell CXCR4 can help anchor HSCs to the marrow matrix, either directly via SDF-1α or through the induction of other adhesion molecules. By blocking the interaction between SDF-1α a

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
Sirolimus

Sirolimus works by inhibiting T-lymphocyte activation and proliferation stimulated by antigens and cytokines such as interleukin (IL)-2, IL-4, and IL-15. In target cells, sirolimus binds to the cytoplasmic receptor FK506-binding protein-12 (FKBP12), an immunophilin, to form an immunosuppressive complex. FKBP12-sirolimus complex binds to and inhibits the activation of the mammalian target of rapamycin (mTOR), which is a serine/threonine-specific protein kinase that regulates cell growth, prolifer

Phase 2National Heart, Lung, and Blood Institute (NHLBI)
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