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Chemical syntheses of rationally-designed pyridine and pyrazine derivatives and boron-containing compounds for inhibition of Mycobacterium tuberculosis in vitro

机译:合理设计的吡啶和吡嗪衍生物及含硼化合物的化学合成体外抑制结核分枝杆菌

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摘要

Since tuberculosis incidence has been increasing world-wide due, in part, to infection from drug-resistant strains of Mycobacterium tuberculosis, there is a need for new, more effective drugs for treatment (Bloom and Murray 1992). To this end, the strategies of medicinal chemistry were applied this problem and a group of 22 small organic molecules were prepared as inhibitors of mycobacterial growth. The group is comprised of pyridines and pyrazines, boronic acids and esters, and diazaborines. The 10 pyridine and pyrazine compounds are composed of 5 pyridine derivatives (3PYSO, 4PYSO, 3PYS, 4PYS, 3PYA) including 3 unreported (3PYS, 4PYS, 3PYA), and 5 pyrazine derivatives (PZSO, PZS, POAH, PZUREA, PZCS) including 2 unreported (PZUREA, PZCS). These 10 compounds have a rationale for antimycobacterial activity that involves mycobacterial penetration, then bioactivation by enzyme systems known to exists in mycobacteria to metabolites expected to be toxic to the organism. The 6 boronic acids and esters are composed of 3 boronic acids (3PYB, 4PYB, NPBA) and 3 boronic acid esters (NPOB, DEPYB, BDPYB), with BDPYB unreported. The compounds were expected to have antimycobacterial activity due to the ability of boron to form charged, reversible tetrahedral complexes and compete for enzyme active-sites. Since diazaborines were shown to inhibit bacterial growth by a novel mechanism, 6 benzodiazaborines were also synthesized, composed of 2 [2,3,1] -benzo-e-diazaborines (SDZB, PDZB) and 4 new [2,4,1] -benzo-e-diazaborines (OBDZB, OPDZB, TPDZB, PZDZB; Baldock, Rafferty et al. 1996). In order to prepare aza-analogs of ASDZB and APDZB, a lesser-known synthetic strategy relying on a dilithiated intermediate was used in an attempt of their preparation as well its successful application for SDZB and PDZB (Sharp and Skinner 1986). All of the compounds were then evaluated in vitro for growth inhibition of wild-type M. tuberculosis H₃₇Rᵥ by Dr. Scott G. Franzblau at LSU. Of the compounds tested, the diazaborines were the most active, although much less than one of the best available drugs, isoniazid. The majority of the group had activities comparable to or better than another widely used drug, pyrazinamide.
机译:由于结核病的发病率在世界范围内一直在上升,部分原因是由于结核分枝杆菌耐药菌株的感染,因此需要一种新的,更有效的治疗药物(Bloom和Murray 1992)。为此,针对这一问题应用了药物化学策略,并制备了22种有机小分子作为分枝杆菌生长的抑制剂。该组包括吡啶和吡嗪,硼酸和酯,以及重氮aborine。 10种吡啶和吡嗪化合物由5种吡啶衍生物(3PYSO,4PYSO,3PYS,4PYS,3PYA)组成,其中3种未报告(3PYS,4PYS,3PYA),还有5种吡嗪衍生物(PZSO,PZS,POAH,PZUREA,PZCS)包括2个未报告(PZUREA,PZCS)。这10种化合物具有抗分枝杆菌活性的原理,涉及分枝杆菌的渗透,然后通过分枝杆菌中已知的酶系统将其生物活化为预期对生物体有毒的代谢物。这6种硼酸和酯由3种硼酸(3PYB,4PYB,NPBA)和3种硼酸酯(NPOB,DEPYB,BDPYB)组成,未报告BDPYB。由于硼形成带电荷的可逆四面体复合物并竞争酶活性位点的能力,预计该化合物具有抗分枝杆菌活性。由于显示出重氮茶碱可通过一种新的机制抑制细菌生长,因此还合成了6种苯并二氮杂硼烷,由2 [2,3,1]-苯并-e-二氮杂硼烷(SDZB,PDZB)和4种新的[2,4,1]组成-苯并-e-二氮杂硼烷(OBDZB,OPDZB,TPDZB,PZDZB; Baldock,Rafferty等人,1996)。为了制备ASDZB和APDZB的氮杂类似物,使用了一种鲜为人知的合成方法,该策略依赖于二片化中间体,并试图将其成功用于SDZB和PDZB(Sharp和Skinner 1986)。然后由LSU的Scott G. Franzblau博士在体外评估所有化合物对野生型结核分枝杆菌H₃₇R₃₇的生长抑制作用。在所测试的化合物中,重氮aborines的活性最高,尽管远少于目前可获得的最佳药物之一异烟肼。该组中大多数人的活性与另一种广泛使用的药物吡嗪酰胺相当或更好。

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