Targeting tumor micro-environment for design and development of novel anti-angiogenic agents arresting tumor growth

Rajesh N Gacche1, Rohan J Meshram

  • 1School of Life Sciences, Swami Ramanand Teerth Marathwada University, Vishnupuri, Nanded 431606, India.

Insights

Inhibiting tumor angiogenesis, the growth of new blood vessels, is a key strategy for developing novel anticancer agents. Understanding angiogenic factors offers structural targets for new cancer therapies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • Tumor growth and metastasis depend on angiogenesis, the formation of new blood vessels.
  • Inhibiting angiogenesis is a promising strategy for developing targeted antitumor therapies.
  • Angiogenesis is regulated by numerous pro-angiogenic and anti-angiogenic factors.

Purpose of the Study:

  • To provide an update on the structural and functional characteristics of angiogenic peptides.
  • To highlight structural opportunities for modulating angiogenic peptide function in cancer therapy.
  • To review current and emerging therapeutic agents targeting tumor angiogenesis.

Main Methods:

  • Review of scientific literature on angiogenesis and angiogenic peptides.
  • Analysis of structural and functional data of key angiogenic factors.
  • Discussion of therapeutic agents targeting angiogenesis.

Main Results:

  • Detailed update on the functional and structural peculiarities of various angiogenic peptides.
  • Identification of structural opportunities for developing therapeutic agents.
  • Overview of current and investigational anti-angiogenic therapies.

Conclusions:

  • Understanding angiogenic peptides' structure-function relationships is crucial for developing novel anticancer drugs.
  • Targeting neoplastic angiogenesis holds significant therapeutic potential.
  • Further research into therapeutic agents is ongoing and shows promise.
Keywords:
1,3,6-Naphthalenetrisulfonate55 kDa protein75 kDa proteinALAAMAM binding protein-1AMBP-1ATPAngAngiogenesisAngiogenic cytokines/peptidesAngiopoietin-1Angp-1Angp-2Antiangiogenic agentsCDRsCGRPCLRCMLCXC receptor1CXC receptor2CXC receptor4CXCR1CXCR2CXCR4DHLAECEGFEGFRFGFFIHFactor-inhibiting hypoxia-inducible factorG protein coupled receptorsGPCRHGFHIF-1IGFIGF-1RIGF-2RIGF-binding proteinsIGFBPsIL-1IL-3IL-6IL-6rIL1RIRJAKsMCPMIPNGFNTSNeuropilin1Neuropilin2Nrp 2Nrp1PAMPPDBPGDFPGDFRPGFPGFRPHDsRAMPRNase-ASCFSDF-1alphaSDF-1αTGF-αTGF-βTNF-receptorTNF-αTNFRTie2KTumor necrosis factor-alphaVEGFVEGF ReceptorVEGF homology domainVEGFRVHDadenosine triphosphatealpha linolenic acidandrenomedullinangiogeninangiopoietin-2calcitonin gene-related peptidecalcitonin receptor-like receptorchronic myelogenous leukemiacomplementarity-determining regionscytoplasmic kinase domain of Tie2dihomo gamma-linolenic acidendothelial cellsepidermal growth factorepidermal growth factor receptorfibroblast growth factorhepatocyte growth factorhypoxia inducible factor-1insulin receptorsinsulin-like growth factorinsulin-like growth factor receptor type1insulin-like growth factor receptor type2interleukin 6interleukin 6 receptorinterleukin-1interleukin-3janus kinasesmacrophage inflammatory proteinmonocyte chemotactic proteinnerve growth factorp55p75placenta growth factorplacenta growth factor receptorplatelet derived growth factorplatelet derived growth factor receptorproadrenomedullin N-terminal 20 peptideprolyl hydroxylasesprotein data bankreceptor activity modifying proteinribonuclease-Astem-cell factorstromal cell-derived factor-1αtransforming growth factor-alphatransforming growth factor-betatype I IL-1 receptorvascular endothelial growth factor

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