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K L Seley

Publications and source records attributed to K L Seley.

13 recordsLinked to original sources

Selective transport of a new class of purine antimetabolites by the protozoan parasite Trypanosoma brucei.

Purine antimetabolites have been very successful therapeutic agents against a host of infectious diseases and malignancies. Success of the treatment relies as much on the efficient accumulation by the target cell or organism as it does on selective action on a vital biochemical pathway of the target cell. Here we compare the ability of a new class of tricyclic purine antimetabolites to interact with transporters from human erythrocytes or Trypanosoma brucei. We show that these compounds display a remarkable selectivity for the parasite's transporters. The adenine analogue showed greater trypanocidal activity than the hypoxanthine or guanine analogues in vitro.

Allopurinol↗

"Fleximers". Design and synthesis of two novel split nucleosides.

[structure: see text] A new class of shape-modified nucleosides is introduced. The purine heterobases of adenosine and guanosine have been split into their imidazole and pyrimidine components, thereby introducing flexibility while retaining the elements necessary for recognition. As a consequence, these novel "fleximers" should find use as bioprobes for investigating enzyme-coenzyme binding sites as well as nucleic acid and protein interactions. Their design and synthesis is described.

Adenosine↗

Inhibition of measles virus replication by 5'-nor carbocyclic adenosine analogues.

Despite intense efforts to increase vaccine coverage, measles virus (MV) still causes significant morbidity and mortality in the world, sometimes as the result of severe, chronic, lethal disease. In an effort to develop therapies to supplement immunization strategies, a number of 5'-nor carbocyclic adenosine analogues were evaluated for anti-MV activity in CV-1 monkey kidney cells. Of those compounds tested, those either unsubstituted at C4 or possessing a hydroxyl, azido or amino substituent at that position were the most active, with particularly significant inhibition of MV, strain Chicago-1. The EC50 values against this strain ranged from <0.1 to 1 mg/ml, as determined by cytopathic effect reduction assay, and confirmed by neutral red uptake. By virus yield reduction assay (+)-(1S,25,3R,4S)-4-(6'-amino-9'H-purin-9'-yl)cyclopentane-1,2,3-triol (2) (-)-(1R,2S,3R)-1-(6'-amino-9'H-purin-9'-yl)-2,3-dihydoxycyclopent-4-ene (3) (-)-(1R,2S,3R)-1-(6'-amino-9'H-purin-9'-yl)cyclopentane-2,3-dihydoxycyclopentane (5) and (-)-(1R,2R,3R,4S)-4-amino-1-(6'-amino-9'H-purin-9'-yl)cyclopentane-2,3-diol (8) were the most potent compounds tested, all with EC90 values of < or =0.4 mg/ml. Compounds 3 and 5 were also tested against other MV strains, and similarly inhibited those strains except for four designated as Bil, Edmonston, SA and X-1108. Compound 8 did not potently inhibit these other MV strains. In addition, 3, 5 and 8 demonstrated synergistic (additive) inhibition of MV replication in combination with ribavirin at several concentrations. Compounds 3, 5 and 8 were also potent MV inhibitors even when added to infected cells 24 h after virus exposure. None of these three compounds was virucidal at concentrations that inhibited viral replication as determined by virus yield reduction assay. Most compounds tested were also not toxic at concentrations >100 mg/ml in actively growing and stationary-phase cells. Results suggest that these compounds may be clinically useful anti-MV virus agents.

Adenosine↗

CoFactor (Biokeys Pharmaceuticals).

BioKeys is developing CoFactor (methylenetetrahydrofolate), a thymidylate synthase inhibitor and modulator of 5-fluorouracil (5-FU), for the potential enhancement of cancer treatments using 5-FU [357795]. By March 2000, phase I/II trials had been completed and phase III trials were in preparation for the US and Scandinavia [357806,357795]. In November 2000, the company initiated a pharmacogenomic study of CoFactor [389157]. The company believes that genomic screening will be very useful for determining the most likely candidates for successful 5-FU/CoFactor therapy, therefore, Biokeys is undertaking a study on tissue samples from 62 patients who were previously treated in phase I/II trials. Analyses will be based upon a RT-PCR from paraffin-embedded tissues. This improved technology, which permits retrospective analyses from paraffin-fixed tissues, will enable BioKeys' scientists to better understand previous responses by the patients treated in the phase I/II trials [389157]. In phase I/II trials, CoFactor was administered to 62 cancer patients receiving 5-FU therapy and resulted in partial responses of 21 to 55% in colorectal, pancreas, stomach, gallbladder and breast cancer patients. Toxicity was milder than expected for 5-FU or 5-FU/leucovorin [357806,357795]. CoFactor has been shown to be 100-fold stronger than leucovorin in the promotion of thymidylate synthase inhibition [357795].

Journal Article↗

Synthesis and antitumor activity of thieno-separated tricyclic purines.

The purine ring system is undoubtedly one of the most ubiquitous heterocyclic ring systems in nature as it has the distinction of being the parent ring in countless derivatives of biological relevance. It is not surprising then that modified purines possess the potential to impact several areas, including a better understanding of the biological effects of DNA damaging agents, enzyme/substrate interactions, and in the development of more potent medicinal agents. One focus for our research at Georgia Tech has centered around the design and synthesis of a series of extended purine analogues containing a heterocyclic spacer ring, with sites set on investigations into their use as (i) potential anticancer and antiviral agents, (ii) dimensional probes for enzyme and coenzyme binding sites, and (iii) structural probes of the minor groove of DNA. The synthesis and preliminary antitumor activity of two thieno-separated purine analogues are described herein. Tricyclic 1 was synthesized in 12 steps from tribromoimidazole and with an overall yield of 7%. Tricyclic 2 was synthesized in 9 steps with an overall yield of 13%. Both 1 and 2 exhibited growth inhibitory effects on HCT116 colorectal cancer cells in vitro.

Antineoplastic Agents↗

Tezacitabine Hoechst Marion Roussel.

Tezacitabine (MDL-101731, KW-2331, FMdC), an antimetabolite deoxycytidine analog, is an irreversible ribonucleotide reductase inhibitor and DNA chain terminator discovered by Hoechst Marion Roussel, now Aventis Pharma, and under development by Matrix and Kyowa as a potential treatment for solid tumors [117987,153697]. It is in phase II trials for colorectal and hematological cancer [333949,343071,353481] and was evaluated in a phase II trial for non-small cell lung cancer, for which enrollment was reported to have stopped [342009]; however, tezacitabine continues to be explored for this indication [378351]. In February 1999, the first phase II trial patient was treated with tezacitabine. A total of 30 patients with non-small cell lung cancer were expected to be enrolled by Matrix [316463]; however, in October 1999, Matrix closed enrollment in this trial (after 28 patients were enrolled); preliminary analysis of the evaluable patients did not show meaningful clinical activity with tezacitabine as a stand-alone therapy in this indication at the dose and regimen tested [342009]. In May 1999, Matrix announced it would enroll up to 30 colorectal cancer patients for treatment in a phase II study [326017]. Despite closing enrollment for the NSCLC trial, as of October 1999, the phase II trial of tezacitabine in colorectal cancer was continuing to accrue patients [342009]. In March 2000, a clinical trial was initiated at the University of Pennsylvania to study tezacitabine administered intravenously in combination with cisplatin; a phase I trial studying the drug in combination with 5-FU at the Dana Farber Cancer Institute also commenced at that time [360590]. In May 1999, the results of four phase I trials were presented at the 35th Annual Meeting of the American Society of Clinical Oncology (ASCO). The studies enrolled 70 patients, 97% of whom had had previous chemotherapy and 46% of whom had failed three or more prior regimens. Groups of patients were given i.v. infusions of tezacitabine in schedules ranging from once every 3 weeks to twice a week for 3 weeks at doses ranging from 16 to 630 mg/m2. The dose-escalation studies showed the compound to be well tolerated and indications of efficacy were observed in patients with various advanced solid tumors [325070,327102]. In September 1998, Matrix Pharmaceutical acquired worldwide rights to tezacitabine except in Japan [299373]. Kyowa Hakko Kogyo has a license from HMR to develop tezacitabine in Japan [195494]; in 1995, the company began phase I clinical trials in Japan for tezacitabine administered orally [195494]. In 1996, this product was designated one of HMR's nine top priority products, serving an unmet medical need and addressing a potential market in excess of US $500 million per year [221118].

Animals↗

Does the anti-hepatitis B virus activity of (+)-5'-noraristeromycin exist in its 4'-epimer and 4'-deoxygenated derivatives?

To begin an exploration of the structural parameters responsible for the activity of (+)-5'-noraristeromycin toward hepatitis B virus (HBV), three derivatives varied at the C-4' position have been prepared and evaluated. The syntheses began with a Mitsunobu coupling reaction of an appropriate cyclopentanol with 6-chloropurine. The products of these reactions were synthetically altered by standard ammonolysis and deprotection procedures to give the desired products. Evaluation of the new derivatives indicated that removal of the C-4' hydroxyl of (+)-5'-noraristeromycin increased its potency toward HBV by approximately 10-fold.

Adenosine↗

The importance of the 4'-hydroxyl hydrogen for the anti-trypanosomal and antiviral properties of (+)-5'-noraristeromycin and two 7-deaza analogues.

(+)-5'-Noraristeromycin (1) has shown significant antiviral activity while its 7-deaza analogue 2 is an antitrypanosomal candidate. To determine the relevance of the 4'-hydroxyl hydrogen in these activities, a derivative of 1 (that is, 3) where the C-4' hydroxyl hydrogen has been replaced by a methyl group has been prepared beginning with palladium (0) mediated coupling of the sodium salt of N6-benzoyladenine (9) and (1S,4R)-4-methoxy-2-cyclopenten-1-yl acetate (5). The synthesis of compound 5 is described from (1S,4R)-1-[(tert-butyldimethylsilyl)oxy]-4-hydroxycyclopent-2-ene (6) in three steps. Analogous preparations of the 7-deaza and 8-aza-7-deaza derivatives of 3 related to 2 (that is, 4 and 12) are also reported. The new derivatives (3, 4, and 12) failed to show improved antiviral activity. Compound 12 was the only derivative with some anti-trypanosomal activity, giving 40% inhibition of growth at 100 microM against bloodstream forms of a Typanosoma brucei brucei isolate in a standard in vitro screen. This study indicated that the C-4'-hydroxyl hydrogen plays a role in the medicinal properties of 1 and 2.

Adenosine↗

Carbocyclic oxetanocins lacking the C-3' methylene.

Using the observation that the side effects of aristeromycin (carbocyclic adenosine) were reduced by removing the methylene at the center in aristeromycin where phosphorylation occurs, derivatives of carbocyclic oxetanocin A (4a), oxetanocin G (4b), and 2-aminooxetanocin A (16) lacking the 3'-methylene have been prepared in racemic form. The only viruses for which an appreciable inhibitory effect of the compounds (minimum inhibitory concentration ranging from 1 to 40 microg/mL) was noted were herpes simplex virus type 1 (HSV-1) and varicella-zoster virus (VZV). However, when directly compared for their antiviral potency against HSV-1 with their parents oxetanocin A and oxetanocin G, compounds 4a and 4b proved clearly less active.

Adenine↗

(+)-7-Deaza-5'-noraristeromycin as an anti-trypanosomal agent.

The (+)-enantiomer of 7-deaza-5'-noraristeromycin (4) has been found to show IC50 values ranging from 0.16 to 5.3 microM against four strains of African trypanosomes, one Trypanosoma brucei brucei isolate, and several clinical isolates of Trypanosoma brucei rhodesiense (agent of east African sleeping sickness), including a multidrug resistant clone of one isolate. While this compound was originally designed to inhibit S-adenosyl-L-homocysteine hydrolase, it has been found to have no effect on this enzyme.

Adenosine↗

Synthesis and anti-trypanosomal activity of various 8-aza-7-deaza-5'noraristeromycin derivatives.

A recent observation that (+)-7-deaza-5'-noraristeromycin (1), as an L-like analogue of aristeromycin, possessed meaningful anti-trypanosomal properties has prompted a search of other 7-deazapurines with similar or improved anti-trypanosomal responses. In that direction a series of pyrazolo[3,4-d]pyrimidines (that is, 8-aza-7-deaza-5'-noraristeromycin derivatives, 2-11) related to 1 have been prepared. These derivatives were evaluated against bloodstream forms of Trypanosoma brucei brucei and Trypanosoma brucei rhodesiense grown in vitro. Of these compounds, the parent L-like derivative 2 was less potent (IC50 40-70 microM) than 1 (IC50 0.165-5.3 microM) whereas the D-like analogue 3 was inactive, which is the same trend observed previously with 7-deaza-5'-noraristeromycin. Interestingly, some moderate activity (IC50 12.2-16.8 microM) was seen in the D-like 4'-methyl derivative 7 while its L-like partner was inactive.

Adenosine↗

Synthesis and antitrypanosomal activities of a series of 7-deaza-5'-noraristeromycin derivatives with variations in the cyclopentyl ring substituents.

Previous work in our laboratories has suggested that (+)-5'-nor-7-deazaaristeromycin (compound 1) may represent a prototype structure for a series of compounds with significant antitrypanosomal activities. To test this possibility, a series of derivatives of compound 1 with changes in the cyclopentyl substituents (compounds 3 to 10) have been studied. Although some growth activity was obtained with the L-like compound 5, related compounds 3 and 7 had little or no activity below 100 microM. D-like compounds 4 and 6 showed some activity at or below 100 microM, but the most interesting finding was that both the D- and L-like compounds having a methyl substituent on the 4' position were most active.

Adenosine↗

Carbocyclic 5'-noruridine.

A convenient preparation of (1'R,2'S,3'R,4'S)-1-(2',3',4'-trihydroxycyclopent-1'-yl)-1H-uracil (carbocyclic 5'-noruridine, 1) is described in 2 steps from the palladium complex of (+)-(1R,4S)-4-hydroxy-2-cyclopenten-1-yl acetate (3) and the sodium salt of uracil (2). Compound 1 was sought as a previously unknown member of the series of carbocyclic 5'-nor nucleosides needed as moieties for new oligomers. With 1 available, its antiviral properties and those of its enantiomer (5) are reported with 5 showing promising activity towards Epstein-Barr virus.

Antiviral Agents↗