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Journal ArticleDOI

Synthesis, chromatographic resolution, and anti-human immunodeficiency virus activity of (±)-calanolide A and its enantiomers

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TLDR
The anti-HIV agent (+/-)-calanolide A (1) has been synthesized in a five-step approach starting with phloroglucinol, which includes Pechmann reaction, Friedel-Crafts acylation, chromenylation with 4,4-dimethoxy- 2-methylbutan-2-ol, cyclization, and Luche reduction.
Abstract
The anti-HIV agent (±)-calanolide A (1) has been synthesized in a five-step approach starting with phloroglucinol [→ 5 → 6 → 11 → 18 → (±)-1], which includes Pechmann reaction, Friedel−Crafts acylation, chromenylation with 4,4-dimethoxy-2-methylbutan-2-ol, cyclization, and Luche reduction. Cyclization of chromene 11 to chromanone 18 was achieved by employing either acetaldehyde diethyl acetal or paraldehyde in the presence of trifluoroacetic acid and pyridine or PPTS. Luche reduction of chromanone 18 at lower temperature preferably yielded (±)-1. Reduction of chromone 12, synthesized by Kostanecki−Robinson reaction from chromene 11, failed to afford (±)-1. The synthetic (±)-1 has been chromatographically resolved into its optically active forms, (+)- and (−)-1. The anti-HIV activities for synthetic (±)-1, as well as resultant (+)- and (−)-1, have been determined. Only (+)-1 accounted for anti-HIV activity, which was similar to the data reported for the natural product, and (−)-1 was inactive.

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Natural products to drugs: natural product derived compounds in clinical trials

TL;DR: Natural product and natural product-derived compounds that are being evaluated in clinical trials or are in registration (as at 31st December 2007) have been reviewed, as well as natural products for which clinical trials have been halted or discontinued since 2005.
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Natural product drug discovery in the next millennium.

TL;DR: By use of combinatorial chemical and biosynthetic technology, novel natural product leads will be optimized on the basis of their biological activities to yield effective chemotherapeutic and other bioactive agents.
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Recent progress in the development of coumarin derivatives as potent anti‐HIV agents

TL;DR: A dicamphanoyl‐khellactone analog, which was discovered and developed in the laboratory, and calanolide A are currently in preclinical studies and clinical trials, respectively.
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Twenty-Six Years of Anti-HIV Drug Discovery: Where Do We Stand and Where Do We Go?

TL;DR: It is apparent that new anti-HIV drugs with acceptable toxicity and resistance profiles and, more importantly, new anti -HIV agents with novel mechanisms of action are clearly needed.
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Anti-HIV coumarins from calophyllum seed oil

TL;DR: Calophyllum cerasiferum contained (-)-calanolide B as its major coumarin constituent in significant amount and thus constitute a renewable source of this compound.
References
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Reexamining AIDS research priorities

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Journal ArticleDOI

Selective conjugate reduction of α,β-unsaturated esters and amides via SmI2-promoted electron transfer process

TL;DR: In this paper, α,β-Unsaturated esters and amides were selectively reduced to corresponding saturated ones under mild conditions without affecting coexisting isolated double or triple bonds by using the reduction system, SmI2-N,N-dimethylacetamide (DMA)-proton source.
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Human immunodeficiency virus structure: implications for antiviral design.

TL;DR: This chapter describes the human immunodeficiency virus (HIV) structure as it relates to the development of antiviral strategies and finds that structures of the major components, in addition to the already determined structure of the HIV aspartyl protease, would be available within several years.
Journal ArticleDOI

Synthesis of the calophyllum coumarins

TL;DR: In this paper, synthetic routes leading to the synthesis of the natural 4-alkyl and 4-phenyl coumarins isolated from Calophyllum sp. are reported.
Journal ArticleDOI

Lipase YS-catalysed acylation of alcohols: a predictive active site model for lipase YS to identify which enantiomer of a primary or a secondary alcohol reacts faster in this acylation

TL;DR: In this article, a predictive cubic-spaced active site model for lipase YS is proposed for identifying which enantiomer of a primary or a secondary alcohol reacts faster in this acylation.
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