stilbenes and indole

stilbenes has been researched along with indole* in 3 studies

Reviews

1 review(s) available for stilbenes and indole

ArticleYear
Recent advances in trimethoxyphenyl (TMP) based tubulin inhibitors targeting the colchicine binding site.
    European journal of medicinal chemistry, 2018, May-10, Volume: 151

    Microtubules (composed of α- and β-tubulin heterodimers) play a pivotal role in mitosis and cell division, and are regarded as an excellent target for chemotherapeutic agents to treat cancer. There are four unique binding sites in tubulin to which taxanes, vinca alkaloids, laulimalide and colchicine bind respectively. While several tubulin inhibitors that bind to the taxane or vinca alkaloid binding sites have been approved by FDA, currently there are no FDA approved tubulin inhibitors targeting the colchicine binding site. Tubulin inhibitors that bind to the colchicine binding site have therapeutic advantages over taxanes and vinca alkaloids, for example, they can be administered orally, have less drug-drug interaction potential, and are less prone to develop multi-drug resistance. Typically, tubulin inhibitors that bind to the colchicine binding site bear the trimethoxyphenyl (TMP) moiety which is essential for interaction with tubulin. Over the last decade, a variety of molecules bearing the TMP moiety have been designed and synthesized as tubulin inhibitors for cancer treatment. In this review, we focus on the TMP analogs that are designed based on CA-4, indole, chalcone, colchicine and natural product scaffolds which are known to interact with the colchicine binding site in tubulin. The challenges and future direction of the TMP based tubulin inhibitors are also discussed in detail.

    Topics: Animals; Benzene Derivatives; Binding Sites; Biological Products; Chalcone; Clinical Trials as Topic; Colchicine; Drug Discovery; Humans; Indoles; Microtubules; Molecular Docking Simulation; Stilbenes; Tubulin; Tubulin Modulators

2018

Other Studies

2 other study(ies) available for stilbenes and indole

ArticleYear
Synthesis and structure activity relationships of schweinfurthin indoles.
    Bioorganic & medicinal chemistry, 2014, Apr-15, Volume: 22, Issue:8

    As part of a program to explore the biological activity of analogues of the natural schweinfurthins, a set of compounds has been prepared where an indole system can be viewed as a substitution for the resorcinol substructure of the schweinfurthin's D-ring. Twelve of these schweinfurthin indoles have been prepared and evaluated in the 60 cell line screen of the National Cancer Institute. While a range of activity has been observed, it is now clear that schweinfurthin indoles can demonstrate the intriguing pattern of activity associated with the natural stilbenes. In the best cases, these indole analogues display both potency and differential activity across the various cell lines comparable to the best resorcinol analogues.

    Topics: Antineoplastic Agents; Cell Line, Tumor; Cell Survival; Drug Screening Assays, Antitumor; Humans; Indoles; Stilbenes; Structure-Activity Relationship

2014
Synthesis and biological evaluation of novel heterocyclic derivatives of combretastatin A-4.
    Bioorganic & medicinal chemistry letters, 2012, Dec-01, Volume: 22, Issue:23

    A novel series of combretastatin A-4 heterocyclic analogues was prepared by replacement of the B ring with indole, benzofurane or benzothiophene, attached at the C2 position. These compounds were evaluated for their abilities to inhibit tubulin assembly: derivative cis3b, having a benzothiophene, showed an activity similar to those of colchicine or deoxypodophyllotoxine. The antiproliferative and antimitotic properties of cis3b against keratinocyte cancer cell lines were also evaluated and the intracellular organization of microtubules in the cells after treatment with both stereoisomers of 3b was also determined, using confocal microscopy.

    Topics: Antimitotic Agents; Benzofurans; Cell Cycle Checkpoints; Cell Line, Tumor; Cell Proliferation; Colchicine; Heterocyclic Compounds; Humans; Indoles; Microscopy, Confocal; Microtubules; Stereoisomerism; Stilbenes; Thiophenes

2012
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