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Cryopreservation of epididymal spermatozoa collected by needle biopsy from cynomolgus monkeys (Macaca fascicularis).

We have examined the motility, morphology, and cryopreservation of epididymal spermatozoa collected by needle biopsy from cynomolgus monkeys (Macaca fascicularis). At collection, epididymal sperm (23 x 10(6) +/- 4 x 10(6) sperm/sample; 611 x 10(6) +/- 116 x 10(6) sperm/ ml; n = 18) were alive (79 +/- 2%), motile (67 +/- 2%), and exhibited intact membranes (65 +/- 2%). Sperm maintained at room temperature in handling medium exhibited decreased motility over time, but head-to-head agglutination was limited. Tris egg-yolk extender containing 6% glycerol and dimethylsulfoxide (DMSO) did not significantly affect functional morphology, whereas extender containing propanediol significantly reduced motility, survival, and membrane integrity. Cryostorage reduced all measures of functional morphology independent of cryoprotectant. Post-thaw motility was superior for glycerol and DMSO compared to propanediol. Variation in glycerol concentration (4, 6, and 8%) produced equivocal effects on sperm functional morphology post-thaw. Needle biopsy may be a useful technique for laboratory and field-based collection of spermatozoa from nonhuman primates.

Animals↗

Global regulation by CsrA in Salmonella typhimurium.

CsrA is a regulator of invasion genes in Salmonella enterica serovar Typhimurium. To investigate the wider role of CsrA in gene regulation, we compared the expression of Salmonella genes in a csrA mutant with those in the wild type using a DNA microarray. As expected, we found that expression of Salmonella pathogenicity island 1 (SPI-1) invasion genes was greatly reduced in the csrA mutant, as were genes outside the island that encode proteins translocated into eukaryotic cells by the SPI-1 type III secretion apparatus. The flagellar synthesis operons, flg and fli, were also poorly expressed, and the csrA mutant was aflagellate and non-motile. The genes of two metabolic pathways likely to be used by Salmonella in the intestinal milieu also showed reduced expression: the pdu operon for utilization of 1,2-propanediol and the eut operon for ethanolamine catabolism. Reduced expression of reporter fusions in these two operons confirmed the microarray data. Moreover, csrA was found to regulate co-ordinately the cob operon for synthesis of vitamin B12, required for the metabolism of either 1,2-propanediol or ethanolamine. Additionally, the csrA mutant poorly expressed the genes of the mal operon, required for transport and use of maltose and maltodextrins, and had reduced amounts of maltoporin, normally a dominant protein of the outer membrane. These results show that csrA controls a number of gene classes in addition to those required for invasion, some of them unique to Salmonella, and suggests a co-ordinated bacterial response to conditions that exist at the site of bacterial invasion, the intestinal tract of a host animal.

Animals↗

HIV-1 integrase can process a 3'-end crosslinked substrate.

Integrase of the human immunodeficiency virus type-1 (HIV-1) recognizes specific sequences located in the U3 and U5 regions at the ends of viral DNA. We synthesized DNA duplexes mimicking the U5 region and containing either 2'-aminonucleosides or non-nucleoside 1,3-propanediol insertions at the third and terminal positions and studied their interactions with HIV-1 integrase. Both modifications introduced a local structural distortion in the DNA double helix. Replacement of the terminal nucleosides by corresponding 2'-aminonucleosides had no significant effect on integrase activity. We used an integrase substrate bearing terminal 2'-aminonucleosides in both strands to synthesize a duplex with cross-linked strands. This duplex was then used to determine whether terminal base pair disruption is an obligatory step of retroviral DNA 3'-processing. Processing of the cross-linked analog of the integrase substrate yielded a product of the same length as 3'-processing of the wild-type substrate but the reaction efficiency was lower. Replacement of the third adenosine in the processed strand by a corresponding 2'-aminonucleoside did not affect integrase activity, whereas, its replacement by 1,3-propanediol completely inhibited 3'-processing. Both modifications of the complementary thymidine in the nonprocessed strand increased the initial rate of 3'-processing. The same effect was observed when both nucleosides, at the third position, were replaced by corresponding 2'-aminonucleosides. This indicates that the local duplex distortion facilitated the cleavage of the phosphodiester bond. Thus, a localized destabilization of the third A-T base pair is necessary for efficient 3'-processing, whereas 3'-end-fraying is important but not absolutely required.

Base Pairing↗

Differential effect of cryopreservation on natural killer cell and lymphokine-activated killer cell activities.

The use of lymphokine-activated killer (LAK) cell therapy in delayed treatment requires the use of cryopreserved effector cells. The purpose of this study was to determine the optimal cryopreservation protocol for the maintenance of cytotoxic activity in mononuclear cells (MNCs). MNCs were cryopreserved with dimethyl sulfoxide or 1,2-propanediol before and after 3 days of culture with recombinant interleukin 2. The effects of cryopreservation on cell recovery, LAK cell and natural killer (NK) cell cytotoxic activities, and surface antigen markers were studied. Recovery of nonactivated MNCs was higher with 1,2-propanediol than with dimethyl sulfoxide (p < 0.05). Cytotoxic activities, measured with a 51Cr release assay, significantly decreased after thawing, on both activated cells (76.3%; range, 35.8-92.2%) and fresh cells (54.6%; range, 17.5-75.4%). A 6-day kinetic test was used to compare the cytotoxic activity of cryopreserved and fresh cells. The results showed different patterns for NK cells (cryopreserved cells had lower levels of activity than fresh cells) and LAK cells (cryopreserved cells had higher levels of activity than fresh cells). Phenotype changes of effector cells in culture, with and without cryopreservation, were monitored by flow cytometry using monoclonal antibodies. These results were compared with changes in the cytotoxicity of cells with and without cryopreservation. After thawing, there was a decrease in MNCs expressing CD14 and CD56. Recovery of the CD56 marker correlates with increased cytotoxic activity. Despite some loss of NK cell activity, it is concluded that MNCs may be successfully cryopreserved before their use in immunotherapeutic treatment.

CD4-CD8 Ratio↗

Preventive agents against sepsis and new phenylpropanoid glucosides from the fruits of Illicium verum.

The bioassay-guided fractionation of preventive agents against lethality due to septic shock from the fruits of Illicium verum led to the isolation of two known racemic mixtures of phenylpropanoids, [1-(4'-methoxyphenyl)-(1 R,2 S and 1 S,2 R)-propanediol (1) and 1-(4'-methoxyphenyl)-(1 R,2 R and 1 S,2 S)-propanediol (2)], along with two known phenylpropanoid glucosides, [1-(4'-methoxyphenyl)-(1 S,2 R)-propan-1-ol 2-O-beta-D-glucopyranoside (3) and 1-(4'-methoxyphenyl)-(1 R,2 S)-propan-1-ol 2-O-beta-D-glucopyranoside ( 5)], and two new phenylpropanoid glucosides, [1-(4'-methoxyphenyl)-(1 S,2 S)-propan-1-ol 2- O-beta- D-glucopyranoside (4) and 1-(4'-methoxyphenyl)-(1 R,2 R)-propan-1-ol 2-O-beta-D-glucopyranoside (6)]. Their chemical structures were elucidated on the basis of spectroscopic studies. Among them, 1 exhibited the highest survival rate in a dose-dependent manner (100 % with a dose of 10 mg/kg against 40 % for the control experiment) and showed a reduction of the plasma alanine aminotransferase (ALT) value on the in vivo assay model of septic shock induced by tumor necrosis factor (TNF)-alpha.

Alanine Transaminase↗

Incision activity of human apurinic endonuclease (Ape) at abasic site analogs in DNA.

The major apurinic/apyrimidinic (AP) endonuclease of human cells, the Ape protein, incises DNA adjacent to abasic sites to initiate DNA repair and counteract the cytotoxic and mutagenic effects of AP sites. Here we address the determinants of Ape AP endonuclease activity using duplex DNA substrates that contain synthetic analogs of AP sites: tetrahydrofuranyl (F), propanediol (P), ethanediol (E), or 2-(aminobutyl)-1,3-propanediol (Q). The last of these, a branched abasic structure, was a poor substrate for which Ape had kcat > 1000-fold lower than for F. In contrast, the specificity constant (kcat/Km) for E or P of Ape purified from HeLa cells was only 5-8-fold lower than for F. Positioning a phosphorothioate ester immediately 5' to F inhibited Ape incision activity 20-fold (Rp isomer) or > 10,000-fold (Sp isomer). Although Ape did not have detectable endonuclease activity toward single-stranded substrates or unmodified double-stranded DNA, the enzyme displayed a low level of 3'-exonuclease activity for duplex DNA (< 0.03% of its AP endonuclease activity), which was influenced by the reaction conditions. The base positioned opposite F did not dramatically affect the cleavage efficiency of Ape, but an F:F arrangement was cleaved at approximately one-third of the efficiency of F:C. A 3'-mismatch diminished P and E cleavage only slightly and F not at all. A 5'-mismatch reduced the Ape cleavage rate 4-10-fold for F and approximately 100-fold for P and E. A series of substrates with F at different positions along the oligonucleotide showed that Ape requires > or = 4 base pairs 5' to the abasic site and > or = 3 base pairs on the 3'-side. The implications of these results for substrate recognition by Ape are discussed.

Base Sequence↗

Primary structure of a new phosphocholine-containing glycoglycerolipid of Mycoplasma fermentans.

The chemical structure of a novel phosphocholine-containing glycoglycerolipid, the major polar lipid in the cell membrane of Mycoplasma fermentans PG18, was investigated by chemical analyses, gas-liquid chromatography-mass spectrometry, matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry, as well as one- and two-dimensional homo- and heteronuclear NMR spectroscopy and identified as 6'-O-(3"-phosphocholine-2"-amino-1"-phospho-1", 3"-propanediol)-alpha-D-glucopyranosyl-(1'-->3)-1,2-diacyl-glycerol (MfGL-II). Palmitate (16:0) and stearate (18:0), in a 3.6:1 molar ratio, constitute the major fatty acids present. MALDI-TOF mass spectrometry revealed two major pseudomolecular ions at m/z 1049.5 [MI + H]+ and 1077.3 [MII + H]+ representing a dipalmitoyl as the major component and a palmitoyl-stearoyl structure as a minor component. This is the first report of 2-amino-1,3-propanediol-1,3-bisphosphate present in a natural product. This glycoglycerolipid is the second phosphocholine-containing glycoglycerolipid found in M. fermentans.

Fatty Acids↗

Emissions of volatile organic compounds from new carpets measured in a large-scale environmental chamber.

This study was undertaken to quantify the emissions of volatile organic compounds (VOCs) released by new carpets. Samples of four typical carpets, including two with styrene-butadiene rubber (SBR) latex adhesive and two with different backings, were collected from the finish lines at manufacturers' mills. Individual VOCs released from these samples were identified, and their concentrations, emission rates and mass emissions were measured under simulated indoor conditions in a 20 m3 environmental chamber over one week periods. Concentrations and emission rates of VOCs emitted by a new SBR carpet were also measured in a house. The carpets emitted a variety of VOCs. The two SBR carpets primarily emitted 4-phenylcyclohexene (4-PCH), the source of "new carpet" odor, and styrene. The concentrations and emission rates of 4-PCH were similar for the two carpets, while the styrene values varied significantly. The carpet with a polyvinyl chloride backing emitted formaldehyde, vinyl acetate, isooctane, 1,2-propanediol, and 2-ethyl-1-hexanol. Of these, vinyl acetate and propanediol had the highest concentrations and emission rates. The carpet with a polyurethane backing primarily emitted butylated hydroxytoluene. With the exception of formaldehyde, little is known about the health effects of these VOCs at low concentrations.

Air Pollutants↗

Comparative evaluation of four detectors in the high-performance liquid chromatographic analysis of chiral nonaromatic alcohols.

A comparative evaluation of ultraviolet, polarimetric, refractive index, and evaporative light-scattering detection coupled with high-performance liquid chromatography has been developed for the separation and quantitation of the enantiomers of chiral nonaromatic alcohols, some of which are intermediates in the synthesis of chiral drugs. (R,S)-3-tert-butylamino-1,2-propanediol; (R,S)-glycidol; and (R,S)-1-(4-morpholino)-2-octanol are selected as model compounds in order to compare the detection sensitivity and the linearity of the response with the four detectors. Separation of the enantiomers is performed using chiral stationary phases in normal-phase liquid chromatography. A one-day validation is achieved for (S)-3-tert-butylamino-1,2-propanediol with each detector, and limits of quantitation are determined for the three compounds. Advantages and limitations of the four detectors are discussed.

Alcohols↗

Cryopreservation of oocytes and embryos: use of a mouse model to investigate effects upon zona hardness and formulate treatment strategies in an in-vitro fertilization programme.

Mouse oocytes and embryos were obtained following ovulation induction of (C57B16 x CBA) F1 animals. Zonae pellucidae were exposed to alpha-chymotrypsin in phosphate-buffered medium (PB1) supplemented with 3 mg/ml bovine serum albumin upon a heated stage (37 degrees C) and were observed constantly through an inverted microscope. The endpoint of the bioassay was the limits of the zona no longer being seen clearly at x 200 magnification, and the time taken for each zona to dissolve was recorded. A dose-dependent response in dissolution time was clearly seen, with 1% alpha-chymotrypsin being chosen as the routine working solution. Cryopreservation of 2-cell mouse embryos using propanediol did not cause zona hardening but induced a small and significant softening, as gauged by the time taken for zona dissolution (2181 +/- 167 versus 1864 +/- 82 s). Zona hardening was not suspected to occur after the freezing of human embryos as there was no difference in implantation rates per embryo for in-vitro fertilization (IVF) and intracytoplasmic sperm injection (ICSI) treatment cycles between fresh [IVF: 63/644 (9.7%); ICSI: 51/330 (15.5%)] and frozen embryos [IVF: 36/458 (7.9%); ICSI: 18/112 (16.1%)]. Conversely, significant hardening of the zonae of mature oocytes was seen following cryopreservation (747 +/- 393 s) compared with freshly ovulated oocytes (151 +/- 68 s). It is concluded that (i) the freezing of murine oocytes with propanediol results in zona hardening, implying a possible benefit of ICSI after the cryopreservation of human oocytes, and (ii) the cryopreservation of embryos is not associated with zona hardening or reduced implantation, making microdissection of the zona in such cases generally unwarranted.

Animals↗

A modified cryopreservation method increases the survival of human biopsied cleavage stage embryos.

BACKGROUND: The relatively poor survival rate of human biopsied cleavage stage embryos following cryopreservation is a significant obstacle in the application of preimplantation genetic diagnosis (PGD). We have attempted to improve cryosurvival of biopsied embryos by modifying the standard embryo cryopreservation technique. METHODS: Biopsied embryos were cryopreserved in 1.5 mol/l 1,2-propanediol in the presence of an elevated concentration of sucrose (0.2 mol/l) and human serum albumin was replaced by maternal serum (20% vol:vol). An additional initial thawing step in the presence of 0.3 mol/l sucrose was also included. RESULTS: The proportion of biopsied embryos which survived cryopreservation with > or =50% of their blastomeres intact was significantly higher using the modified method (138/185; 75%) than that observed using the standard propanediol method (20/46; 43%; P = 0.022). Total blastomere survival was also significantly increased as a result of the modifications (1010/1513; 67% versus 177/385; 46%; P < 0.001). Six fetal hearts have been detected to date following replacement of biopsied embryos cryopreserved with the modified method. CONCLUSIONS: Survival of human biopsied cleavage stage embryos can be restored to a level similar to that of non-biopsied controls by modification of the cryopreservation procedure. Embryos which have been cryopreserved using the modified method can implant following replacement in utero.

Biopsy↗

Cryopreservation of follicles in human ovarian cortical tissue. Comparison of serum and human serum albumin in the cryoprotectant solutions.

BACKGROUND: Cryopreservation of follicles in ovarian cortical tissue has been suggested as a method for preserving fertility for young women who need to undergo cytotoxic therapy. Varying compositions of cryoprotectant solutions have been used to prevent tissue damage during cryopreservation and thawing. We compared human serum [20% (v/v)] and human serum albumin (HSA) (25 mg/ml) in cryoprotectant solutions containing propanediol and sucrose to evaluate whether serum-free medium could be used for this purpose. METHODS: Biopsies of ovarian cortical tissue were obtained from 23 subjects after informed consent. Fourteen underwent Caesarean section and nine underwent sterilization by laparoscopy. The cortical tissue was cut into pieces of 1-1.5 mm(3 )and cryopreserved in cryoprotectant solutions containing serum or HSA. After thawing, a total of 1318 follicles were analysed using light microscopy, transmission electron microscopy (TEM) or live/dead assay. RESULTS: Viability of the follicles was 99.3% in freshly dissected tissue. After thawing, 65% of the follicles and 75% of the oocytes were viable with serum, and 69 and 74%, respectively, with HSA. No significant differences were observed between results in solutions containing serum versus HSA. TEM showed similar results; however, poor survival of stromal tissue was evident in this analysis. The live/dead assay showed 82% viability after thawing for both groups. No benefits were seen from post-thawing culture for 4 h before histological preparation. CONCLUSIONS: A cryoprotectant solution containing HSA was equally effective as one containing serum. Good viability of follicles was confirmed when using propanediol and sucrose as cryoprotectants, with a large number of follicles.

Adult↗

Determination of glycols in biological specimens by gas chromatography-mass spectrometry.

A simple extraction and derivatization procedure for the analysis of eight glycols (ethylene glycol, EG; diethylene glycol, DEG; triethylene glycol, TEG; 1,2-propanediol, 1,2-PD; 1,3-propanediol, 1,3-PD; 1,2-butanediol, 1,2-BD; 2,3-butanediol, 2,3-BD; and hexylene glycol, HXG) using a 2-microL serum or blood sample is described. Following deproteinisation with acetonitrile, derivatization to its mono or di TMS derivative, glycols were detected using gas chromatography-electron impact mass spectrometry equipped with a split-spitless inlet and a DB-5MS column in the scan mode from 40 to 500 amu. Gamma-hydroxybutyrate-d6 (GHB-d6) was used as the internal standard. The limits of detection and quantitation in 2 pL of serum ranged, respectively, from 0.7 mg/L for EG to 8.5 mg/L for TEG and from 1.3 mg/L for EG to 18.2 mg/L for 1,2-PD. A linear response was observed over the concentration range from 1 to 800 mg/L for EG and 18 from 800 for TEG and 1,2-PD for serum and blood. Coefficients of variation for both intra-assay precision and interassay reproductibility ranged respectively between 1.9% for TEG to 4.9% for 1,2-PD (11.8% for HXG) and 3.5% for DEG to 9% for 2,3-BD (20.4 for HXG) at the 400 mg/L serum level. The method was applied to plasma and whole blood.

Calibration↗

Site-specific hydrolysis and alcoholysis of human immunodeficiency virus DNA termini mediated by the viral integrase protein.

Before integration of the human immunodeficiency virus (HIV) DNA, two nucleotides are removed from the 3' ends of the viral DNA by the integrase (IN) protein. We studied the chemistry of this reaction, and found that IN mediates site-specific hydrolysis of a phosphodiester bond, resulting in release of a dinucleotide. A class of alcohols (including glycerol, 1,2-propanediol, but not 1,3-propanediol) can also act as nucleophile in this reaction, and likewise the alcoholic amino acids L-serine and L-threonine can be covalently linked to the dinucleotide. No evidence was found for a covalent linkage between the IN protein and this dinucleotide, suggesting that IN directs a single nucleophilic attack of water at the specific phosphodiester bond.

Avian Sarcoma Viruses↗

Cryopreservation of human oocytes.

Three different methods were used for freezing human excess oocytes (320 frozen, 205 thawed) in our IVF programme and the results of these methods were compared. A high fertilization rate (75%) could be achieved after thawing, using 1,2 propanediol as a cryoprotectant. Polyploidy rates of 20% and 40% were observed using DMSO and 1,2-propanediol as cryoprotectants, respectively. Using the ultracooling method, the survival rate was poor (4%).

Cryoprotective Agents↗

Determination of felbamate concentration in pediatric samples by high-performance liquid chromatography.

A simple and rapid procedure to determine felbamate (2-phenyl-1,3-propanediol dicarbamate) concentrations in human plasma/serum by high-performance liquid chromatography is described. The method employs a high-performance liquid chromatography unit equipped with a C18 reverse-phase cartridge (3-microliters particle diameter, 3.2 x 40 mm), an acetonitrile/water gradient, and detection at 210 nm. The sample is deproteinized with acetonitrile containing internal standard (2-methyl-2-phenyl-1,3-propanediol dicarbamate), and the resulting supernatant, after diluting 1:1 with water, is injected onto the column. The felbamate and internal standard are eluted with a linear gradient of 0% to 22% acetonitrile for 11 minutes at a flow rate of 0.8 ml/minute. Under these conditions, felbamate and the internal standard are eluted at 9.2 +/- 0.03 and 10.8 +/- 0.03 minutes, respectively. The assay is linear from 10 to 400 microgram/ml. It is highly reproducible; at 100 micrograms/ml felbamate, within-day and between-day coefficients of variation are less than 0.5% and 4.3%, respectively. Recovery is > or = 95%. No interferences from other common antiepileptic drugs and analgesics are observed. Advantages of this method include simple and fast sample preparation; use of a gradient to eliminate interferences; and use of a cartridge column, which is economical, provides good resolution, allows rapid equilibration and elution, and operates at low back pressures. The method requires samples of only 100 microliters and is ideal for pediatric samples.

Anticonvulsants↗

Isolation and characterization of Streptomyces venezuelae mutants blocked in chloramphenicol biosynthesis.

Twelve Streptomyces venezuelae mutants blocked in chloramphenicol biosynthesis were isolated. Two of these (Cm1-1 and Cm1-12) were apparently blocked in the conversion of chorismic acid to p-aminophenylalanine and three (Cm1-4, Cm1-5 and Cm1-8) accumulated p-aminophenylalanine and may have been blocked in the hydroxylation reaction that converted this intermediate to p-aminophenylserine. One mutant (Cm1-2) accumulated D-threo-1-p-nitrophenyl-2-propionamido-1,3-propanediol and D-threo-1-p-nitrophenyl-2-isobutyramido-1,3-propanediol, indicating that chlorination of the alpha-N-acyl group of chloramphenicol was blocked. The remaining six strains did not excrete any detectable chloramphenicol pathway intermediates.

Chloramphenicol↗

Glycerol utilization in Fusarium oxysporum var. lini: regulation of transport and metabolism.

Glycerol was transported in the fungus Fusarium oxysporum var. lini by a facilitated diffusion transport system with a half-saturation constant, Ks, of 0.5 mM and a maximum velocity, Vmax, of 0.9 mmol (g dry wt)-1 h-1 at pH 5 and 25 degrees C. 1,2-Propanediol was a competitive inhibitor of glycerol transport, but the cells did not actively accumulate 1,2-propanediol. The transport system was partially constitutive. In cells grown in the presence of glucose, glycerol was not transported, indicating that the synthesis of the system was under glucose repression. Glycerol kinase and NADP(+)-dependent glycerol dehydrogenase activities were present under all physiological conditions tested. A flavin-dependent glycerol phosphate dehydrogenase was induced only when glycerol was the sole energy source in the medium. This enzyme, together with the transport system, constitute the regulated steps in the glycerol metabolic pathway.

Biological Transport, Active↗