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The invention relates to pyrridinobenzodiazepines (PDDs) comprising three fused 6-7- 6?membered rings and to benzopyrridodiazecines (BPDs) comprising three fused 6-8- 6?membered rings and, in particular, to PDD or BPD dimers linked together or PDD and BPD monomers linked to aromatic groups, and pharmaceutically acceptable salts thereof, which are useful as medicaments, such as anti-proliferative agents. PDDs and BPDs may be represented by formula (I): and salts or solvates thereof, wherein R2, R4-R6 and R8 are independently selected substituent groups; and either: (i) R9 and R10 together form a double bond; (ii) R9 is H and R10 is OH; or (iii) R9 is H and R10 is ORA and RA is C1-6 alkyl; wherein each of m, n, u and w may be 0 or 1; where (a) the compound is a dimer with each monomer being the same or different and being of formula (I) where one of R1, R2, R3 and R7 of the first monomer and one of R’1, R’2, R3 and R’7 of the second monomer form together a bridge having the formula ?X-L-X’- linking the monomers and m + n + u + w = 1; or (b) a dimer and one of R1, R2 and R3 of the first monomer and one of R’1, R’2 and R3 of the second monomer form together a bridge having the formula ?X-L-X’- linking the monomers and m = n = u = w = o; or (c) one of R1, R2, R3 and R7 has the formula: ?X- L-X’-D or -(CH2)f-O-R14 and m + n + u + w = o or 1; or (d) R7 has the formula: ?X-L-X’- D or -(CH2)g-O -15 and m + n + u + w = 1; and X-L-X’- is a linker group and D has the formula (II) or (III):

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Benzothiophene – Wikipedia,
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New Advances in Chemical Research in 2021. Catalysts allow a reaction to proceed that has a lower activation energy than the uncatalyzed reaction. In heterogeneous catalysis, catalysts provide a surface to which reactants bind in a process of adsorption. Recommanded Product: Methyl 5-aminobenzo[b]thiophene-2-carboxylate. Introducing a new discovery about 20699-85-8, Name is Methyl 5-aminobenzo[b]thiophene-2-carboxylate

The development of a solution-phase synthesis of distamycin A and its extension to the preparation of 2640 analogues are described. Thus, solution-phase synthesis techniques with reaction workup and purification employing acid/base liquid – liquid extractions were used in the multistep preparation of distamycin A (8 steps, 40% overall yield) and a prototypical library of 2640 analogues providing intermediates and final products that are ?95% pure on conventional reaction scales. The complementary development of a simple, rapid, and high-throughput screen for DNA binding affinity based on the loss of fluorescence derived from displacement of prebound ethidium bromide is disclosed which is applicable for assessing relative or absolute binding affinity to DNA homopolymers or specific sequences (hairpin oligonucleotides). Using hairpin oligonucleotides, this method permits the screening of a library of compounds against a single predefined sequence to identify high affinity binders, or the screening of a single compound against a full library of individual hairpin oligionucleotides to define its sequence selectivity. The combination permits the establishment of the complete DNA binding profile of each member of a library of compounds. Screening the prototypical library provided compounds that are 1000 times more potent than distamycin A in cytotoxic assays (67, IC50 = 29 nM, L1210), that bind to poly[dA]-poly[dT] with comparable affinity, and that exhibit an altered DNA binding sequence selectivity. Several candidates were identified which bound the five-base-pair AT-rich site of the PSA-ARE-3 sequence, and one (128, K = 3.2 x 106 M-1) maintained the high affinity binding (K = 4.5 x 106 M-1) to the ARE-consensus sequence containing a GC base-pair interrupted five-base-pair AT-rich site suitable for inhibition of gene transcription initiated by hormone insensitive androgen receptor dimerization and DNA binding characteristic of therapeutic resistant prostate cancer.

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Benzothiophene – Wikipedia,
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In heterogeneous catalysis, catalysts provide a surface to which reactants bind in a process of adsorption. The reactant in an enzyme-catalyzed reaction is called a substrate. Recommanded Product: 20699-85-8, C10H9NO2S. A document type is Article, introducing its new discovery., Recommanded Product: 20699-85-8

The solution-phase synthesis of two 1000-membered positional scanning libraries of distamycin A analogues is described enlisting acid/base liquid-liquid extractions for isolation and purification of all intermediates and final products. The results of their screening for functional activity (L1210 cytotoxic potency) and DNA binding affinity were compared with those derived from libraries containing the same compound members but prepared in a smaller 10-compound mixture format. The positional scanning libraries, which are substantially less demanding to prepare, allowed the accurate detection of the global observations and the clearly more potent activities, but more subtle discoveries and less distinguishable activities were not detected. This is a natural consequence of testing the larger 100-compound mixtures and the relative insensitivity of the assays to the contribution of any single, uniquely acting compound in the mixture. Thus, the disadvantages associated with the loss of some information contained within the library must be balanced against the advantages of the ease of library synthesis and judged in light of the library screening objectives. Copyright (C) 2000 Elsevier Science Ltd.

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Reference of 20699-85-8, Chemical Research Letters, May 2021. Chemo-enzymatic cascade processes are invaluable due to their ability to rapidly construct high-value products from available feedstock chemicals in a one-pot relay manner. In a article, 20699-85-8, molcular formula is C10H9NO2S, introducing its new discovery.

There is provided a compound having Formula (I) R1-Z-R2 Formula (I) wherein R1 is an optionally substituted phenyl ring; R2 is or comprises an optionally substituted aromatic ring; and Z is -X-Y-L- or -Y-X-L- wherein either X is selected from -S(=O)(=O)- and -C(=O)-, and Y is -NR3-; or X is selected from -S(=O)(=O)- and -S-, and Y is -C(R4)(R5)-; L is an optional linker; and R3, R4 and R5 are each independently selected from H and hydrocarbyl; and wherein when R2 comprises the following structural moiety, Formula (II) wherein Q is an atom selected from the group consisting of S, O, N and C; the compound is selected from compounds of the formulae R1-C(=O)-NR3-L-R2; R1-S(=O)(=O)-C(R4)(R5)-L-R2; R1-S-C(R4)(R5)-L-R2; R1-NR3-S(=O)(=O)-L-R2; R1-NR3-C(=O)-L-R2; R1-C(R4)(R5)-S(=O)(=O)-L-R2; and R1-C(R4)(R5)-S-L-R2. These compounds are useful as 11beta-hydroxysteriod dehydrogenase inhibitors in the treatment of i.a. diabetes.

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Dysregulated usage of pre-mRNA splicing sites contributes to the progression of cancer, neurodegenerative diseases, and viral infections. Serine/arginine-rich (SR) proteins play major roles in the splice site recognition and are largely regulated by phosphorylation. This provides an option for the pharmacological correction of aberrant splicing by inhibiting the relevant kinases. Cdc2-like kinases (Clks) and dual specificity tyrosine phosphorylation-regulated kinases (Dyrks) were both reported to phosphorylate numerous SR proteins in vitro and in vivo. In this study, we describe the discovery of new selective dual Clk/Dyrk1A/1B inhibitors, which are able to modulate alternative pre-mRNA splicing of model gene transcripts in cells with submicromolar potencies. The optimization process yielded a dual Clk and Dyrk inhibitor with exceptionally high ligand efficiency. Our results suggested that dual inhibition of both Clk1 and Dyrk1A increased the efficacy of pre-mRNA splicing modulation.

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The invention relates to pyrridinobenzodiazepines (PDDs) comprising three fused 6-7-6-membered rings linked to aromatic groups, and pharmaceutically acceptable salts thereof, which are useful as medicaments, such as anti-proliferative agents. PDDs may be represented by formula (I): and salts and solvates thereof, wherein the dotted lines indicates the optional presence of a double bond between one or more of Ci and C2, C2and C3, and C3and C4; R1 and R2 are substituent groups; R3 is selected from H, C1-12 alkyl and CH2Ph; R4is selected from phenyl and C5-9heteroaryl groups optionally substituted, with the proviso that the optionally substituted C5-9heteroaryl is not indolyl; R19is selected from H and (CH2)t-NR20R21; Yiis N or CH; Y2 is N or CH; and wherein at least one of Y1and Y2 is CH; p is o or1; X1 is a connecting group; L is a linker group; X2 is a connecting group or is absent; q is selected from o,1, 2, 3,4,5and 6; A is selected from: for each Ai group one of Y3and Y4is selected from N-R17,S and O; and the other of Y3and Y4is CH; and Y5is selected from CH, N, S and COH; for each A2group one of Y6and Y7is independently selected from N and CH; and the other of Y6and Y7is CH; R13, R14, R17, R2oand R2iare independently selected from H and C1-6alkyl; and either: (i) R5and R6together form a double bond; (ii) R5is H and R6is OH; or (iii) R5is H and R6is OC1-6alkyl; with the proviso that when p is o and A is Ai, then: (a) for at least one Ai group one of Y3and Y4is selected from S and O; or (b) for at least one Ai group Y5is S; or (c) R4is not pyrrolyl, imidazolyl, optionally substituted pyrrolyl or optionally substituted imidazolyl.

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A compound represented by formula (1) (in the formula: ring-D represents a three- to eight-membered hydrocarbon ring; Ra represents an optionally substituted amino C1-6 alkyl group or the like; Rb1 and Rb2 each independently represent a hydrogen atom, a halogen atom, or the like; Rc represents an optionally substituted C6-10 aryl group or the like; Rd represents a hydrogen atom or the like; and ring-Q represents a (hetero)aryl group or the like which may be substituted with a carboxyl group or the like) or a pharmaceutically acceptable salt thereof exhibits an excellent FXIa inhibitory activity, and is useful as a therapeutic agent against thrombosis or the like.

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The present invention relates to a novel class of benzothiophene amide derivatives. The hydroxamic acid compounds can be used to treat cancer. The benzothiophene amide compounds can also inhibit histone deacetylase and are suitable for use in selectively inducing terminal differentiation, and arresting cell growth and/or apoptosis of neoplastic cells, thereby inhibiting proliferation of such cells. Thus, the compounds of the present invention are useful in treating a patient having a tumor characterized by proliferation of neoplastic cells. The compounds of the invention may also be useful in the prevention and treatment of TRX-mediated diseases, such as autoimmune, allergic and inflammatory diseases, and in the prevention and/or treatment of diseases of the central nervous system (CNS), such as neurodegenerative diseases. The present invention further provides pharmaceutical compositions comprising the hydroxamic acid derivatives and safe dosing regimens of these pharmaceutical compositions, which are easy to follow, and which result in a therapeutically effective amount of the hydroxamic acid derivatives in vivo.

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A series of benzoyl and cinnamoyl nitrogen mustards tethered to different benzoheterocycles and to oligopyrroles structurally related to netropsin consisting of two pyrrole-amide units and terminating with an amidine moiety have been synthesised and a structure-activity relationship determined. Derivatives 3-10 have been evaluated for their sequence selective alkylating properties and cytotoxicity against human K562 leukaemia cells. They are 2- to 50-fold less cytotoxic than tallimustine, with compound 8 being the most potent member of this series. Among tallimustine isosters, the compounds with an indole 3 or benzothiophene 6 are 4-fold less cytotoxic than tallimustine, while the compounds with an N-methyl indole or benzofuran showed a 7- and 14-fold reduced cytotoxic potency, respectively. Our preliminary results indicate that these derivatives preferentially bind to AT-rich sequence with a sequence selectivity similar to tallimustine.

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The invention relates to novel benzodiazepine derivatives with antiproliferative activity and more specifically to novel benzodiazepine compounds of formulae (I), (II) and (III). The invention also provides conjugates of the benzodiazepine compounds linked to a cell-binding agent. The invention further provides compositions and methods useful for inhibiting abnormal cell growth or treating a proliferative disorder in a mammal using the compounds or conjugates of the invention.

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Benzothiophene – Wikipedia,
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