669068-10-4Relevant academic research and scientific papers
A nitrogen-containing heterocyclic phenyl piperidine compound and its preparation method and application
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Paragraph 0065-0068; 0074, (2017/09/01)
The invention discloses a nitrogen-containing heterocyclic phenyl piperidine compound or pharmaceutical salt thereof. The general structural formula a of the compound is as shown in specification, wherein R represents hydrogen, mono-substituted or poly-substituted halogen, methyl, methoxyl, tertiary butyl or trifluoromethyl; and R2 is hydrogen, chlorine, bromine, methyl or ethyl. The compound disclosed by the invention is novel in structure; and by introducing the active amino in the form of a piperidine ring, the configuration of the side-chain amino is reinforced and the rigidity of the compound is enhanced. Through the design transformation, the Akt1 kinase inhibitory activity and the PC-3 cell line growth inhibitory activity of the compound are significantly enhanced.
Structural optimization elaborates novel potent Akt inhibitors with promising anticancer activity
Liu, Yang,Yin, Yanzhen,Zhang, Zhen,Li, Carrie J.,Zhang, Hui,Zhang, Daoguang,Jiang, Changying,Nomie, Krystle,Zhang, Liang,Wang, Michael L.,Zhao, Guisen
, p. 543 - 551 (2017/07/12)
Targeting of Akt has been validated as a well rationalized approach to cancer treatment, and represents a promising therapeutic strategy for aggressive hematologic malignancies. We describe herein an exploration of novel Akt inhibitors for cancer therapy through structural optimization of previously described 4-(piperazin-1-yl)-7H-pyrrolo[2,3-d]pyrimidine derivatives. Our studies yielded a novel series of pyrrolopyrimidine based phenylpiperidine carboxamides capable of potent inhibition of Akt1. Notably, 10h exhibited robust antiproliferative effects in both mantle cell lymphoma cell lines and primary patient tumor cells. Low micromolar doses of 10h induced cell apoptosis and cell cycle arrest in G2/M phase, and significantly downregulated the phosphorylation of Akt downstream effectors GSK3β and S6 in Jeko-1 cells.
NOVEL TRPV3 MODULATORS
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Paragraph 1171, (2014/04/03)
Disclosed herein are modulators of TRPV3 of Formula (I) wherein p is 1, 2, 3, or 4, and G1, X1, X2, X3, X4, X5, G2, Z1, Ra, Rb, and u are as defined in the specification. Compositions comprising such compounds and methods for treating conditions and disorders using such compounds and compositions are also presented.
NOVEL TRPV3 MODULATORS
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Paragraph 1345; 1346, (2013/05/21)
Disclosed herein are modulators of TRPV3 of Formula (I) (I) wherein p is 1, 2, 3, or 4, and G1, X1, X2, X3, X 4, X5, G2, Z1, Ra, Rb, and u are as defined in the specification. Compositions comprising such compounds and methods for treating conditions and disorders using such compounds and compositions are also presented.
NOVEL TRPV3 MODULATORS
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Paragraph 1727; 1728, (2013/06/04)
Disclosed herein are modulators of TRPV3 of formula (II): wherein G1, X1, X2, X3, X4, X5, G2, Ra, Rb, and u are as defined in the specification. Composition
NOVEL TRPV3 MODULATORS
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Paragraph 254; 255, (2013/05/21)
Disclosed herein are modulators of TRPV3 of formula (II): wherein G1, X1, X2, X3, X4, X5, G2, Ra, Rb, and u are as defined in the specification. Composition
Discovery of bioavailable 4,4-disubstituted piperidines as potent ligands of the chemokine receptor 5 and inhibitors of the human immunodeficiency virus-1
Kazmierski, Wieslaw M.,Aquino, Christopher,Chauder, Brian A.,Deanda, Felix,Ferris, Robert,Jones-Hertzog, Deborah K.,Kenakin, Terrence,Koble, Cecilia S.,Watson, Christian,Wheelan, Pat,Yang, Hanbiao,Youngman, Michael
experimental part, p. 6538 - 6546 (2009/11/30)
We describe robust chemical approaches toward putative CCR5 scaffolds designed in our laboratories. Evaluation of analogues in the 125I-[MIP-1β] binding and Ba-L-HOS antiviral assays resulted in the discovery of 64 and 68 in the 4,4-disubstitited piperidine class H, both potent CCR5 ligands (pIC50 = 8.30 and 9.00, respectively) and HIV-1 inhibitors (pIC50 = 7.80 and 7.84, respectively, in Ba-L-HOS assay). In addition, 64 and 68 were bioavailable in rodents, establishing them as lead molecules for further optimization toward CCR5 clinical candidates.
