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1 macological potential of novel chemotypes by diversity-oriented synthesis.
2 e approach compatible with the philosophy of diversity-oriented synthesis.
3 xity and is well aligned with methodology of Diversity-Oriented Synthesis.
4 ttractive target for medicinal chemistry and diversity-oriented synthesis.
5 nucleosides can be conveniently utilized for diversity-oriented synthesis.
6 multifunctionalized pyrimidine template for diversity-oriented synthesis.
7 also a highly attractive branching point for diversity-oriented synthesis.
8 in medicinal chemistry, organocatalysis, and diversity-oriented synthesis.
9 skeletons for use in medicinal chemistry and diversity-oriented synthesis.
10 estigated a series of compounds derived from diversity-oriented synthesis.
12 -molecule probe BRD5631 that is derived from diversity-oriented synthesis and enhances autophagy thro
15 Several synthetic planning principles for diversity-oriented synthesis and their role in the drug
16 n library synthesis, termed multidimensional diversity-oriented synthesis, and its application toward
17 Herein, we present a biosynthesis-inspired, diversity-oriented synthesis approach for rapid construc
19 tivity of this transformation may facilitate diversity-oriented synthesis, as demonstrated for deriva
20 rall reaction can potentially be utilized in diversity-oriented synthesis, as it allows for three or
21 c cores is being developed in the context of diversity-oriented synthesis, as the modular design allo
22 y of 39 distinctive scaffolds generated by a diversity-oriented synthesis based on the nucleophilic p
29 a natural product core framework by means of diversity-oriented synthesis (DOS) is a valuable approac
32 edicinal chemistry that was accelerated by a diversity-oriented synthesis (DOS) pathway, and in vivo
33 st pursued objectives in drug discovery, and diversity-oriented synthesis (DOS) perfectly responds to
40 ngle oral dose, highlighting the strength of diversity-oriented synthesis in revealing promising ther
42 In conjunction with the construction of a diversity-oriented synthesis library of 10-membered ring
43 athways, and therefore we sought to screen a diversity-oriented synthesis library to identify GPR27-s
44 Here we report a novel small molecule from a diversity-oriented synthesis library, BRD1732, that is d
46 lding block from the chiral pool enabled the diversity-oriented synthesis of an array of cyclic and b
48 engender on drug-compounds, methods for the diversity-oriented synthesis of azetidine-based structur
50 g with 1,3-dinitrobenzene, and was used in a diversity-oriented synthesis of biaryl-containing medium
51 te-stage C-C amination of complex molecules, diversity-oriented synthesis of isomeric amines from a s
52 r hybrid strategy has been developed for the diversity-oriented synthesis of lamellarins/azalamellari
53 rts over the past 10 years in the design and diversity-oriented synthesis of low molecular weight acy
59 )-C(sp(2)) cross-coupling is enabled for the diversity-oriented synthesis of vinyl sulfone-tethered b
62 f BRD0476 (1), a small molecule generated by diversity-oriented synthesis that suppresses cytokine-in
63 ward analysis of synthetic pathways, used in diversity-oriented synthesis, that leads to structurally
64 ses, including click chemistry applications, diversity-oriented synthesis, the preparation of peptide
65 ator of lysosomal acidification derived from diversity-oriented synthesis through high-content screen
68 e regarded as intriguing starting points for diversity-oriented synthesis, wherein stereochemically r
69 ted in the years since the implementation of diversity-oriented synthesis, which has emerged in paral
70 id access to new libraries in the context of diversity-oriented synthesis, which intends to generate
71 y microarray of small molecules generated by diversity-oriented synthesis with fluorescently labelled
72 stituted [3]dendralenes could be deployed in diversity-oriented synthesis with high selectivities.