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[Comparative characteristics of cyclodextrin glycosyltransferases from various groups of microorganisms].

Cyclodextrin glycosyltransferases (CGT-ase, 1.4-alpha-glucanotransferase, cyclizing, EC 2.4.1.19) produced by some thermophilic, alkalophilic and mesophilic bacterial strains, were isolated and characterized. It was shown that thermophilic and mesophilic CGT-ases represent a mixture of alpha-, beta- and gamma-cyclodextrins (CD), alpha-cyclodextrin being the predominant component. Alkalophilic enzymes produce only beta-CD and are able to produce CD not only from starch but also from maltose, melibiose, maltotriose, amylose and amylopectin. The optimal conditions for the catalytic activity of the enzymes were determined. It was found that calcium, magnesium and zinc ions have a beneficial effect on the specific activity of these enzymes. The amino acid composition of the enzymes was studied.

Amino Acids↗

Development of a serum-free and heat-sterilizable medium and continuous high-density cell culture.

We tried to establish a new serum-free and heat-sterilizable medium, based on our serum-free medium in which many lymphoblastoid cells and hybridoma could grow as well as in a conventional serum-containing medium. As is well-known, L-glutamine (L-Gln) is one of the most heat-labile but essential components for cell growth. As a substitute for L-Gln, dipeptide such as Gly-L-Gln or L-Ala-L-Gln, which was quite stable even after autoclaving, was found to be utilizable for mammalian cell growth. The L-Gln dipeptide-containing serum-free medium was quite stable in a solution even after storing at 37 degrees C for 4 months. In the serum-free medium containing L-Ala-L-Gln, mouse hybridola could grow and produce more antibody than in RPMI 1640 + 10% FBS. It has been proved that BSA and transferrin, which are also heat-labile but essential for the growth of various cell lines, can be substituted by heat-stable alpha-cyclodextrin and cholesterol, and Fe-gluconate, respectively. Insulin has also proved to be heat stable in a solution of Fe-gluconate. We thus established a new serum-free medium, all the components of which could be heat-sterilizable. Moreover, by adding EGF and BSA but without the adhesion factor included in FBS, the serum-free medium was found to support a long-term serial culture of a human diploid fibroblast. Finally, with this auotoclavable serum-free medium in a perfusion culture apparatus, we were able to continuously cultivate a human lymphoblastoid cell line. The production rate of IgM was found to be markedly increased by feeding the serum-free medium enriched by glucose, bicarbonate, L-Cys, and approtinin. The cell density reached as high as 2 x 10(8)/ml in the serum-free medium. Although the working volume in the reactor was only 1 1, the rate of IgM production reached 480 mg/day. The new heat-sterilizable serum-free medium has several advantages, because L-Gln peptide is a heat-stable and available precursor of L-Gln.

Animals↗

[The immunosuppressive effects of 0.025% cyclosporin eye drops in alpha cyclodextrin on rabbit corneal allografts].

We reported the ocular penetration of cyclosporin (CYA) and the immunosuppressive effect of rabbit corneal allograft using 0.025% CYA eye drops in alpha-cyclodextrin (alpha-CD). Local application using 0.025% CYA in alpha-CD showed the concentration of 4,133 ng/gr in the cornea, but no detectable levels in aqueous humor and serum. All eyes (10/10) in the CYA eye drop group remained clear for 100 days after corneal allografting. CYA eye drops halted and suppressed the corneal allograft's immune reaction when the treatment was begun early in the initial phase of rejection. These results indicate that 0.025% CYA eye drops in alpha-CD penetrate the cornea 5 to 10 times more than CYA eye drops in lipophilic vehicles. Furthermore, they are extremely effective in suppressing the immune reaction of corneal grafts.

Animals↗

A comparative study of straight chain and branched chain fatty acid oxidation in skin fibroblasts from patients with peroxisomal disorders.

The beta-oxidation of stearic acid and of alpha- and gamma-methyl isoprenoid-derived fatty acids (pristanic and tetramethylheptadecanoic acids, respectively) was investigated in normal skin fibroblasts and in fibroblasts from patients with inherited defects in peroxisomal biogenesis. Stearic acid beta-oxidation by normal fibroblast homogenates was several-fold greater compared to the oxidation of the two branched chain fatty acids. The effect of phosphatidylcholine, alpha-cyclodextrin, and bovine serum albumin on the three activities suggests that different enzymes are involved in the beta-oxidation of straight chain and branched chain fatty acids. Homogenates of fibroblasts from patients with a deficiency in peroxisomes (Zellweger syndrome and infantile Refsum's disease) showed a normal ability to beta-oxidize stearic acid, but the oxidation of pristanic and tetramethylheptadecanoic acid was decreased. Concomitantly, 14CO2 production from the branched chain fatty acids by Zellweger fibroblasts in culture (but not from stearic acid) was greatly diminished. The Zellweger fibroblasts also showed a marked reduction in the amount of water-soluble metabolites from the radiolabeled branched chain fatty acids that are released into the culture medium. The data presented indicate that the oxidation of alpha- and gamma-methyl isoprenoid-derived fatty acids takes place largely in peroxisomes in human skin fibroblasts.

Adrenoleukodystrophy↗

Investigating aluminium citrate speciation by high performance liquid chromatography.

The toxicity of aluminium (Al) is dependent on its chemical form or species. However, there are no current techniques available to separate small molecular weight toxic Al complexes. In the present study, HPLC separation was combined with atomic absorption spectroscopic detection of Al in an attempt to determine the potential for this analytical method to separate Al citrate from other Al species. A total of nine different HPLC stationary phase supports along with numerous mobile phases were examined. Promising results were obtained with the Cyclobond I and Cyclobond III columns containing the beta- and alpha-cyclodextrin stationary phases, respectively and the cyano column. Using a mobile phase of methanol:water (1:1; v/v) containing 0.1 M triethylamine (TEA) and glacial acetic acid (pH = 4.0), Al was reproducibly retained for approximately 9 minutes following the injection of Al citrate onto the Cyclobond III column. Injection of other simple Al complexes showed no demonstrable recovery of Al under these same conditions. However, the more stable Al desferrioxamine complex was retained, but with a retention time that was only 3-4.5 minutes. Unfortunately, the retention characteristics and recovery of Al were not reproducible or sufficient with either of the cyclobond columns for routine quantitation of Al citrate in biological samples. The cyano column did provide better recovery of Al citrate (up to 65%) than could be obtained with the cyclobond column (up to 58%). However, manipulation of the retention time for Al citrate on the cyano column was limited to a period of only 3-4.5 minutes. Under similar conditions, Al desferrioxamine could be retained for over 10 minutes on this same column.(ABSTRACT TRUNCATED AT 250 WORDS)

Aluminum↗

New fluorescence reactions in DNA cytochemistry. 1. Microscopic and spectroscopic studies on nonrigid fluorochromes.

Some nonrigid DNA-binding antibiotics and fluorochromes that recognize adenine-thymine (AT) sequences are widely applied in biomedical research, but the microscopic use, spectral characteristics and DNA binding modes of other similar compounds have been overlooked or scarcely explored. After treatment with thioflavine T, auramine O and G, curcumin, bis-aminophenyl-oxadiazol, berenil and distamycin A, a bright DNA-dependent fluorescence reaction was found in the chromatin of interphase nuclei, meiotic and polytene chromosomes, spermatozoa heads and kinetoplasts of Trypanosoma cruzi epimastigotes. Nucleoli and basophilic cytoplasm showed low or no fluorescence; the highest emission occurred in the AT-rich kinetoplast DNA. When bound to DNA or in the presence of alpha-cyclodextrin and viscous solvents or cosolutes, nonrigid compounds revealed a striking enhancement of fluorescence. The results indicate that these new or poorly known fluorochromes bind selectively to DNA-containing structures and that the minor groove from AT-rich DNA regions could represent the specific and highly fluorescent binding site.

Animals↗

Flocculation of serum lipoproteins with cyclodextrins: application to assay of hyperlipidemic serum.

We describe the complexation of isolated and native lipoproteins by natural macrocyclic polymers of glucose ("cyclodextrins"). Treatment of serum with cyclodextrin produces an immediate flocculation of the lipoproteins. The formation of cyclodextrin-lipoprotein complexes was evident on agarose electrophoresis gels. The concentration-dependent ability of alpha-cyclodextrin to precipitate chylomicrons and very-low-, low-, and high-density lipoproteins was used for clarifying lipemic serum. Results for normal and lipemic patients' specimens for some routinely measured analytes showed a good correlation between cyclodextrin treatment and ultracentrifugation. Unlike the use of organic solvents or ultracentrifugation, the proposed system provides a simple, mild, non-hazardous, and effective means for removing interfering lipid particles from biological specimens.

Chemical Precipitation↗

Conformational changes associated with complex formation between a mycobacterial polymethylpolysaccharide and palmitic acid.

The anomeric proton magnetic resonances of Mycobacterium smegmatis 3-O-methylmannose polysaccharide have chemical shifts intermediate betwen those of nonaglucoamylose and alpha-cyclodextrin, and on addition of palmitic acid most of these resonances are shifted upfield toward that of the cyclodextrin. This suggests that the methylated polysaccharide could have a conformation with some secondary structure intermediate between those of the two reference compounds, and that it forms a tightened coil upon addition of the lipid which yields an inclusion complex with the polysaccharide. The change in chemical shift is linear with lipid concentration, which indicates that the complex undergoes rapid exchange with free polysaccharide. The changes in proton chemical shifts of the polysaccharide and of the palmitic acid are consistent with the fatty acid being inserted in the coiled polysaccharide with its carboxyl group near the methyl aglycon.

Chemical Phenomena↗

Physicochemical properties of carbovir, a potential anti-HIV agent.

(+-)-Carbovir [(+-)-9-[4 alpha-(hydroxymethyl)-cyclopent-2-ene-1 alpha-yl]guanine; NSC 614846] is a novel carbocyclic nucleoside analogue which has been shown to be a potent and selective inhibitor of HIV in vitro. As part of an effort to develop a parenteral formulation for subsequent clinical and toxicological evaluation of this compound, the aqueous solution stability of carbovir as a function of pH and temperature and various physicochemical properties of carbovir including its pKa, solubility versus pH and solvent composition, and octanol-water partition coefficient have been examined. Ultraviolet spectrophotometry indicated that carbovir has pKa values of 3.15 and 9.68, respectively, at 25 degrees C and 0.01 ionic strength. The aqueous solubility of carbovir over the pH range 7-10.5 was consistent with that expected of a weak acid with a pKa of 9.65 and an intrinsic solubility of 1.24 mg/mL. Due to the limited solubility of carbovir at physiological pH, methods for solubilizing carbovir in aqueous solution were explored, including propylene glycol-water cosolvents and complexation with hydroxypropyl-beta-cyclodextrin. As expected for carbovir, a semipolar compound with an octanol-water partition coefficient of 0.29, propylene glycol:water cosolvents were not highly effective in enhancing solubility. Complex formation between carbovir and 2-hydroxypropyl-beta-cyclodextrin was found to be more effective, with a K1:1 of 105 M-1 for the complexation. The pH profiles generated at 50, 70, and 90 degrees C were accounted for by acid-catalyzed degradation at low pH leading to the formation of guanine and a neutral degradation pathway which dominates above pH 4. Prototype lyophilized formulations containing (after reconstitution) 10 mg/mL of carbovir at a pH of 10.6 were developed and evaluated.

2-Hydroxypropyl-beta-cyclodextrin↗

Hydroxypropylcyclodextrins in parenteral use. I: Lipid dissolution and effects on lipid transfers in vitro.

Hydroxypropyl ethers of cyclodextrins form water-soluble inclusion complexes with lipids. Of the three hydroxypropylcyclodextrins examined, hydroxypropyl-alpha-cyclodextrin had limited specificity for phospholipids, and hydroxypropyl-beta-cyclodextrin had limited specificity for cholesterol, and hydroxypropyl-gamma-cyclodextrin was nonspecific. The formation of inclusion complexes was found to be a fast and reversible process in which complexation of cholesterol did not inhibit its oxidation by cholesterol oxidase, and cholesterol of the erythrocyte membrane could be exchanged within a minute for cholesteryl methyl ether which was in the inclusion complex. Thus, hydroxypropylcyclodextrin in the circulation may catalyze the transport of lipids in the direction of equilibrium distribution.

2-Hydroxypropyl-beta-cyclodextrin↗

Hydroxypropylcyclodextrins in parenteral use. II: Effects on transport and disposition of lipids in rabbit and humans.

Hydroxypropyl ethers of cyclodextrins, after parenteral administration, come into contact with lipids in tissues and in circulation and form water-soluble inclusion complexes with these lipids. A single intravenous administration of hydroxypropyl-beta-cyclodextrin to a hereditary hyperlipidemic Watanabe rabbit slightly and temporarily decreased the level of total cholesterol in serum. Single injections of hydroxypropyl-alpha-cyclodextrin and of the corresponding gamma-homologue, both of which are less potent solubilizers of cholesterol, had lesser effects. Repeated administration of hydroxypropyl-beta-cyclodextrin to rabbits led to a gradual increase in total cholesterol in circulation and eventually to a slight relief of atherosclerotic lesions in the thoracic aorta. The only untoward effects of repeated treatments (total doses of up to 40 g/kg) were vacuoles in cells of proximal convoluted tubules in the kidneys. Repeated administration also strongly increased cholesterol in urine, probably because of excretion of the soluble cholesterol-hydroxypropyl-beta-cyclodextrin complex. Proteins in urine increased significantly, whereas triglycerides increased only moderately after repeated administrations. Intravenous infusion of hydroxypropyl-beta-cyclodextrin into a patient with hypervitaminosis A led to a release of liver-stored retinoids into serum in quantities much higher than those that could be directly solubilized by hydroxypropyl-beta-cyclodextrin. Levels of total cholesterol in the circulation of this patient decreased during the infusion. Thus, hydroxypropylcyclodextrins may serve as artificial lipid carriers in the circulation, and because the exchanges that involve inclusion complexation occur very quickly, the presence of hydroxypropylcyclodextrins in organisms may catalytically augment the establishment of equilibria in lipid distribution.

2-Hydroxypropyl-beta-cyclodextrin↗

A prostacyclin analogue reduces free radical generation in heart-lung transplantation.

The mechanism by which prostacyclin acts to prevent in vivo reperfusion injury is still uncertain. This study was therefore undertaken to assess the effect of a stable prostacyclin analogue (OP 41483-alpha-CD [OP]) on oxygen-derived free radicals after heart-lung transplantation. OP was administered to the heart-lung graft through the pulmonary artery for 25 minutes encompassing the reperfusion process. Free radicals were directly measured by electron spin resonance spectroscopy. The radical intensities of pulmonary venous blood were significantly lower in the OP group than in the control group, suggesting that fewer free radicals were generated in the lungs of the OP group. The cardiac and respiratory function were better in the OP group than in the control group. The lung is the primary source of oxygen free radical attack, and the beneficial action of OP on free radical generation is almost exclusively restricted to the lung and does not apply to the heart. This result suggested that OP probably is effective in inhibiting free radical generation from the endothelium.

Adenosine Diphosphate↗

Vibrational Raman optical activity of carbohydrates.

Vibrational Raman optical activity (R.o.a.) spectra of a range of carbohydrates in aqueous solution, measured in back-scattering between 700 and 1500 cm-1, are presented. Features were revealed that appear to be characteristic of details of the stereochemistry. Effects associated with the glycosidic linkage in di- and oligo-saccharides are prominent.

Arabinose↗

Preparation of di-O-triphenylmethyl-(trityl-) cyclomaltohexaoses and -cyclomaltoheptaoses and characterization of three positional isomers of each by the "hex-5-enose degradation".

Regioisomeric 6(1),6n-di-O-trityl-cyclomaltohexaoses (cG6s) or -cyclomaltoheptaoses (cG7s) were prepared by the reaction of cyclomaltohexaose (1, cG6) or cylomaltoheptaose (5, cG7) with chlorotriphenyl-methane in pyridine and isolation by h.p.l.c. The regiochemical determination of each three ditrityl-substituted derivatives has been accomplished by the "hex-5-enose degradation", followed by measurement of their f.a.b.-mass spectra.

Carbohydrate Conformation↗

The utility of 2-hydroxypropyl-beta-cyclodextrin as a vehicle for the intracerebral and intrathecal administration of drugs.

The substituted glucopyranose ring structure 2-hydroxypropyl-beta-cyclodextrin (CDEX) increases the solubility of molecules by inclusion of the agent in the lipophilic interior of the ring. This property is of particular use for the administration of molecules by the intracerebral (ICV) or intrathecal (IT) routes. In concentrations up to 40% w/v (isotonic), this agent (10 microliters) effect upon nociceptive or motor function after IT injection or on EEG and general behavior after ICV injection in rats. Using 20% CDEX, there is no change in the ED50 as compared to saline on the hot plate (HP) after IT injection of morphine, D-Ala2-D-Leu5 enkephalin or Tyr-Aib-Gly-gPhe-mAib-NH2, (Aib: alpha-aminoisobutyric acid) although there is an increase in their respective durations of effect. Cyclic peptide opioids: Tyr-c[D-A2bu-Gly-D-beta Nal(1)-D-Leu] (A2bu: alpha, gamma-diaminobutyric acid; beta-Nal(1): beta-naphthylalanine(1)) or Tyr-c[DA2bu-Gly-beta Nal(1)-D-Leu] are insoluble in saline but are readily dissolved in CDEX, and display a naloxone-sensitive antinociception following spinal administration. In other studies, saline insoluble capsaicin is administered in 25% dimethylsulfoxide (DMSO) or 20% CDEX (15 microliters; 5 mg/ml) which result in a significant reduction in the spinal levels of substance P and calcitonin gene related peptide and an increase in the HP latency. DMSO alone, but not CDEX alone, reduces the levels of the two peptides. These data emphasize the utility of complexation with CDEX for intracerebral drug delivery and compatibility with brain and spinal tissue.

2-Hydroxypropyl-beta-cyclodextrin↗

Structural effects on the binding of amine drugs with the diphenylmethyl functionality to cyclodextrins. II. A molecular modeling study.

Molecular modeling has been used to study the complexation between alpha, beta, or gamma-cyclodextrin (CD) and a group of amine compounds having the diphenylmethyl functionality. The computer program SYBYL 5.3 and the Tripos force field (version 5.2) were used for all the calculations. Three-dimensional structures of 13 amine compounds were built individually from their atoms, and CDs were built based on the X-ray crystallographic coordinates. The diphenylmethyl derivative-CD complexes were constructed and optimized. Based on the calculated binding energies accompanying the inclusion process, the preferred method of approach of the compounds to the cavities of the CD molecules, and the structural effects on the binding between amine compounds and three CDs were explored. The calculated binding energies exhibited a good correlation with the stability constants obtained from solution calorimetric titrations. The present study shows that for similar ligand molecules, the molecular modeling technique should enable us to visualize the structure of the inclusion complexes and will also assist us in determining the ability of a potential drug molecule to form a stable complex with CDs.

Amines↗