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Effect of neomycin and ionophore A23189 on ATP levels and turnover of polyphosphoinositides in human erythrocytes.

The relationship of polyphosphoinositide metabolism to erythrocyte ATP levels was examined. Turnover of polyphosphoinositides was not closely dependent on ATP as it is reported to be in yeast. Neomycin increased 32P incorporation into diphosphoinositide and to a lesser extent into triphosphoinositide without affecting intracellular ATP. Treatment of intact cells with ionophore A23187 resulted in a decrease of at least 80% in polyphosphoinositide levels which followed a decrease in cellular ATP and an increase in phosphatidate. The results indicate that polyphosphoinositide turnover does not regulate energy charge in the erythrocyte. However some of the events which follow treatment of erythrocytes with metabolic inhibitors or calcium and ionophore may be related to the accompanying decrease in polyphosphoinositide levels.

Adenosine Triphosphate↗

The control of accuracy during protein synthesis in Escherichia coli and perturbations of this control by streptomycin, neomycin, or ribosomal mutations.

This review surveys the different experimental approaches which describe the binding of tRNA to mRNA-programmed ribosomes and the control of tRNA selection. This selection is best described by the two-step model proposed by Hopfield and demonstrated by Thompson and his collaborators. The model involves a first control at the initial reversible binding of tRNA to the ribosome and a second control, the proofreading control, which promotes rejection of the incorrect tRNA from a high-energy intermediate during the transition from the initial to the final binding state. Streptomycin, neomycin, and ribosomal fidelity mutations appear to affect both control steps. Their effect can be related to the location of the mutated ribosomal proteins and to the conformational changes induced in the ribosome by the misreading agents. An alteration of the first control probably results from a distortion of the codon-anticodon interaction, while an alteration of the second control may be caused by a change in the association between ribosomal subunits.

Anticodon↗

Trimethoprim-polymyxin eye drops versus neomycin-polymyxin-gramicidin eye drops in the treatment of presumptive bacterial conjunctivitis - a double-blind study.

48 patients witha diagnosis of presumptive bacterial conjunctivitis were assessed. They had been treated with either trimethoprim-polymyxin or neomycin-polymyxin-gramicidin eye drops in a randomised double-blind trial. There were 24 patients in each treatment group. There were no significant differences between the two preparations proved with regard to the eradication of organisms or clinical improvement, and both preparations proved to be very effective. Patient compliance was good and no adverse reactions were encountered with either preparation.

Adolescent↗

Use of allogeneic bone marrow labeled with neomycin resistance gene to examine bone marrow-derived chimerism in experimental organ transplantation.

Posttransplant infusion of viable donor bone marrow cells (DBMC) has been shown in our previous studies to promote acceptance of incompatible kidney allografts in rhesus monkeys after treatment with polyclonal antithymocyte globulin to deplete peripheral T-lymphocytes. In this nonhuman primate model, the infusion of the DBMC is requisite for the induction of functional graft tolerance and specific MLR and CTLp unresponsiveness, although the relevant role and fate of bone marrow-derived chimeric cells is uncertain. Standard immunological and molecular techniques applied to this monkey model are unable to differentiate between chimeric cells derived from the infused DBMC and those derived from allograft-borne passenger leukocyte emigrants. To distinguish chimerism due to infused DBMC, we transduced DBMC with a functional neomycin resistance gene (Neo(r)) using the retroviral vector pHSG-Neo.Neo(r)-transduced BMC were infused into recipients approximately 2 wk after kidney transplantation and treatment with rabbit antithymocyte globulin. No maintenance immunosuppressive drugs were given. Genomic DNA isolated from peripheral blood leukocytes was used to monitor the presence ofNeo(r)-positive cells. Tissue samples obtained at necropsy also were assessed forNeo(r)-positive chimeric cells. The presence of DBMC-derived chimerism was assessed by polymerase chain reaction usingNeo(r) sequence-specific primers (PCR-SSP). Chimerism was detectable in recipient tissues at various times for up to 6 mo after DBMC infusion. These studies using gene transduction methodology indicate that a stable genetic marker can provide capability to examine DBMC-derived chimerism for prolonged periods in a nonhuman primate model. This approach should facilitate future studies in preclinical models to study the role and type of chimeric cell lineages in relation to functional allograft tolerance.

Animals↗

Evaluation of a topical steroid antibiotic combination (halcinonide-neomycin-amphotericin) in the treatment of cutaneous candidiasis and inflammatory dermatoses.

Halcinonide-neomycin-amphotericin (HNA) cream was evaluated in the treatment of cutaneous candidiasis and inflammatory dermatoses. The anti-candidal properties of HNA were assessed in a parallel comparison with iodochlorhydroxyquin-hydrocortisone (I-HC) as the control drug. The overall therapeutic response with HNA was excellent in 38 (95%) of 40 patients as compared to 17 (43%) of 40 treated with I-HC. In 50 patients treated for psoriasis, eczematous dermatitis, or neurodermatitis, HNA was evaluated in a paired comparison with hydrocortisone (HC). The overall therapeutic response with HNA was excellent in 36 (72%) patients as compared to 18 (36%) with HC. There were no adverse reactions with HNA or the control drugs.

Administration, Topical↗

Gene trap mutagenesis of hnRNP A2/B1: a cryptic 3' splice site in the neomycin resistance gene allows continued expression of the disrupted cellular gene.

BACKGROUND: Tagged sequence mutagenesis is a process for constructing libraries of sequenced insertion mutations in embryonic stem cells that can be transmitted into the mouse germline. To better predict the functional consequences of gene entrapment on cellular gene expression, the present study characterized the effects of a U3Neo gene trap retrovirus inserted into an intron of the hnRNP A2/B1 gene. The mutation was selected for analysis because it occurred in a highly expressed gene and yet did not produce obvious phenotypes following germline transmission. RESULTS: Sequences flanking the integrated gene trap vector in 1B4 cells were used to isolate a full-length cDNA whose predicted amino acid sequence is identical to the human A2 protein at all but one of 341 amino acid residues. hnRNP A2/B1 transcripts extending into the provirus utilize a cryptic 3' splice site located 28 nucleotides downstream of the neomycin phosphotransferase start codon. The inserted Neo sequence and proviral poly(A) site function as an 3' terminal exon that is utilized to produce hnRNP A2/B1-Neo fusion transcripts, or skipped to produce wild-type hnRNP A2/B1 transcripts. This results in only a modest disruption of hnRNPA2/B1 gene expression. CONCLUSIONS: Expression of the occupied hnRNP A2/B1 gene and utilization of the viral poly(A) site are consistent with an exon definition model of pre-mRNA splicing. These results reveal a mechanism by which U3 gene trap vectors can be expressed without disrupting cellular gene expression, thus suggesting ways to improve these vectors for gene trap mutagenesis.

3' Untranslated Regions↗

Clinical application of retroviral gene transfer in oncology: results of a French study with tumor-infiltrating lymphocytes transduced with the gene of resistance to neomycin.

PURPOSE: Adoptive immunotherapy with tumor-infiltrating lymphocytes (TIL) and interleukin-2 (IL-2) has been reported to mediate tumor regression in some human cancers. To define better the biologic characteristics of TIL, especially survival and distribution in vivo, we performed a gene-marker study in patients with advanced malignancies. PATIENTS AND METHODS: We treated five patients with metastatic melanoma or renal cell carcinoma with adoptive immunotherapy. TIL were genetically modified, before their infusion, using a recombinant retroviral vector that contained the marker gene coding for resistance to neomycin (NeoR). RESULTS: All of the patients tolerated the treatment well and none of the theoretic safety hazards due to the retroviral gene transduction was observed. The presence of the NeoR gene in TIL was detected by Southern blot analysis, with an efficiency of transduction that ranged from 1% to 26%. With polymerase chain reaction (PCR) analysis, we demonstrated that gene-modified TIL can survive for several months after reinjection, since positive blood samples were observed up to day 260 following reinjection. Eight malignant biopsy specimens were obtained from three patients after cell infusion. TIL were detected in only four of these eight tumor deposits on days 7 and 260. CONCLUSION: These results confirm the feasibility and safety of using in vitro retroviral gene transduction in human lymphocytes to analyze their in vivo distribution for further therapeutic applications. However, a selective and prolonged retention of TIL at the tumor site was not found in this study.

Adult↗

Testicular function in type II hyperlipoproteinemic patients treated with lovastatin (mevinolin) or neomycin.

Steroid synthesis requires cholesterol derived from de novo synthesis or plasma lipoproteins. Low density lipoproteins appear to be the major contributor of cholesterol for steroid synthesis in man. Patients with disorders of low density lipoproteins or the low density lipoprotein receptor have reduced cortisol production in response to ACTH. Therapeutic agents designed to lower plasma cholesterol could, therefore, adversely affect steroid hormone production. Lovastatin (mevinolin) is a new hypolipidemic agent which blocks cholesterol synthesis by competitive inhibition of 3-hydroxy-3-methylglutaryl coenzyme A reductase. In beagle dogs, lovastatin at 40-180 times the clinically effective dose in man, has been associated with an increase in spontaneous testicular atrophy. Accordingly, the effect of lovastatin on testicular function and lipoprotein levels was studied in 16 hyperlipidemic men in a randomized, double blind, cross-over study with another hypolipidemic agent, neomycin. Serum testosterone, PRL, LH, and FSH; LHRH-stimulated LH and FSH concentrations; and testicular size were measured, and semen analyses were made. We found no evidence that lovastatin had adverse effects on testicular function despite significant alterations in plasma lipoprotein concentrations.

Adult↗

Potential ototoxicity from triamcinolone, neomycin, gramicidin and nystatin (Tri-Adcortyl) cream.

Although rare, ototoxicity from the use of aminoglycoside drops is well recognized. Ototoxicity has not been described with the use of combination aminoglycoside-steroid-antifungal creams or ointments. We present the case of a 60-year-old man with a perforated tympanic membrane who suffered a total hearing loss after the instillation of cream containing triamcinolone, neomycin, gramicidin and nystatin (Tri-Adcortyl cream) into his ear canal. On balance, we believe that a number of potentially ototoxic constituents in this cream were responsible. Other possible causes of sensorineural hearing loss and the possible mechanisms of ototoxicity of this cream are discussed. The reasons why such creams may be particularly ototoxic, compared with drops, are also considered. The authors caution against the use of such creams or ointments in the ear if there is any suspicion of a tympanic membrane perforation.

Administration, Topical↗

Effects of dietary cellulose and neomycin on function of the cecum of pigs.

Six crossbred male pigs (40 kg) with cecal cannulas were randomly allotted to three treatments for evaluation of the effect of three levels of dietary Solka-floc (2, 10 and 18%) on cecal functionality. Samples were collected every fourth day for 40 days. Blood was obtained 4 hr after the morning feeding, and cecal contents were sampled at 3-hr intervals during the 12-hr period between the morning and evening meals. Blood urea nitrogen was not affected by dietary cellulose, and it remained constant throughout the experiment. Dry matter and cellulose digestibilities were reduced (P < .05) by the increase in dietary cellulose, suggesting a maximum cellulose digestion capability of about 35 g/pig daily. A definite daily pattern was observed for cecal ammonia nitrogen. It reached a maximum 6 hr after feeding. Cecal volatile fatty acid (VFA) concentrations were not affected by dietary cellulose. After 40 days, 150 mg/kg body weight of neomycin sulfate was administered daily for 8 days, 100 mg in the feed and 50 mg into the cecum via the cannula. The antibiotic resulted in a decrease (P < .01) in cecal VFA concentrations, an increase (P < .01) in cecal ammonia N level and a complete arrest of cellulose digestion.

Ammonia↗

Conditional replication of a recombinant adenovirus studied using neomycin as a selective marker.

An E1B-defective adenovirus, named r2/Ad carrying the neo expression cassette, was constructed by homologous recombination. The construction, selection (using neomycin as a selective marker), and propagation of the recombinant virus was performed in human embryonic kidney 293 cells (HEK 293). An in vitro study demonstrated that this recombinant virus has the ability to replicate in and lyse some p53-deficient human tumor cells such as human glioma tumor cells (U251) and human bladder cells (EJ), but not in some cells with functional p53, such as human adenocarcinoma cells (A549) and human fibroblast cells (MRC-5). Also, based on the cytopathic effect (CPE), it was demonstrated, under identical conditions, that the U251 cells were more sensitive to r2/Ad replication than the EJ cells. In this paper, we report that r2/Ad could be very useful in studying the in vitro selective replication of E1B-defective adenovirus and has great potential in cancer gene therapy.

Adenoviridae↗

Sub-unit assembly in the biosynthesis of neomycin. The synthesis of 5-O-beta-D-ribofuranosyl and 4-O-beta-D-ribofuranosyl-2,6-dideoxystreptamines.

The preparation of the deoxy- analogues of two pseudodisaccharide fragments of neomycin, 5-O-beta-D-ribofuranosyl-2,6-dideoxy-streptamine and 6-deoxyneamine is described. When added to the growth medium of a deoxystreptamine-idiotroph of Streptomyces rimosus forma paromomycinus only the latter was incorporated into antibiotic, suggesting an obligatory order for the assembly of sub-units. 4-O-beta-D-Ribofuranosyl-2,6-dideoxystreptamine was also prepared. When added to the growth medium of a deoxystreptamine-idiotroph of Streptomyces fradiae it was converted into the 6-deoxyneomycins, apparently after hydrolysis to 2,6-dideoxystreptamine. The structure of the protected derivatives of the ribofuranosyl 2,6-dideoxystreptamines, potentially useful intermediates for the synthesis of novel antibiotics, was shown by using 15C NMR spectroscopy.

Hexosamines↗

Characterization of the tobramycin-kanamycin-neomycin resistance plasmid in Staphylococcus epidermidis.

A strain of Staphylococcus epidermidis was transduced to tobramycin resistance and all transductants were also resistant to kanamycin and neomycin. Results of curing studies also indicated that these resistances were controlled by a single determinant on a plasmid. Agarose gel electrophoresis of the plasmid DNA from parent, cured, and transduced strains showed a single plasmid was responsible and its molecular weight was calculated to be 2.85 x 10(6). Attempts to determine other properties of the organism controlled by this plasmid were unsuccessful.

Anti-Bacterial Agents↗

Resistance mechanisms of kanamycin-, neomycin-, and streptomycin-producing streptomycetes to aminoglycoside antibiotics.

Streptomyces kanamyceticus ISP5500, S. fradiae ISP5063 and S. griseus ISP5236, which produce kanamycin, neomycin or streptomycin respectively, were highly resistant to the antibiotics they produced. Polyphenylalanine synthesis in cell free systems was also resistant to the action of the antibiotics. Reciprocal exchange between ribosomes and S150 fractions from the three strains revealed that the S150 fraction of each strain had an enzyme activity that inactivated the appropriate antibiotic whereas the ribosomes were susceptible to the antibiotics. It was concluded that the resistance of the in vitro polyphenylalanine synthesizing systems of these antibiotics was due to the presence of inactivating enzymes. Furthermore, S. fradiae and S. kanamyceticus were highly resistant to aminocyclitol-containing aminoglycoside antibiotics other than those produced by the two strains. In these cases, the inactivating enzymes were found to have a major role in the resistance mechanism. However, the resistance of S. kanamyceticus ISP5500 to streptomycin seems to be due to resistance at the ribosomal level.

Aminoglycosides↗

6"'-Deamino-6"'-hydroxy derivatives, as intermediates in the biosynthesis of neomycin and paromomycin.

From broths of a neomycin producing Streptomyces fradiae and of a mutant of Streptomyces rimosus forma paromomycinus respectively, 6"'-deamino-6"'-hydroxyneomycin and 6"'-deamino-6"'hydroxyparomomycin were obtained and their structures established by mass and 13C-NMR spectroscopy and by the study of hydrolytic fragments. These new compounds, which are both present as two epimers at C-5"', are suggested as intermediates in the biosynthesis of the parent antibiotics. The place and the mechanism of the 5"'-epimerisation and of the 6"'-amination are discussed.

Chemical Phenomena↗

Role of aminoglycoside 6'-acetyltransferase in a novel multiple aminoglycoside resistance of an actinomycete strain #8: inactivation of aminoglycosides with 6'-amino group except arbekacin and neomycin.

From a rare actinomycete strain #8 isolated from soil as arbekacin (ABK) resistant, we cloned a gene segment (0.9 kb) conferring multiple resistance to aminoglycoside (AG) antibiotics with 6'-NH2 including semisynthetic ones except ABK and neomycin (NM). Enzymatic modification using cell free extracts from Streptomyces lividans TK21/pANT-S2 carrying the cloned gene revealed that the gene coded for an AG 6'-acetyltransferase [AAC(6')] capable of acetylating all of the tested AGs with 6'-NH2 including semisynthetic ones and astromicin. The substrate specificity of the enzyme was thus similar to that of AAC(6')-Ie of Enterococcus faecalis. Antibiotic assay revealed a weak but clear antibiotic activity of 6'-N-acetylABK (8% of ABK activity) in contrast with substantial inactivation by the AAC(6') of the other AGs including amikacin and isepamicin. The NM acetylation by the AAC(6') also did not result in NM inactivation. It seems thus likely that AAC(6')-dependent resistance to ABK and NM, if it emerges, will remain at low level.

Acetylation↗

Determination of neomycin in animal tissues by liquid chromatography.

Tissue samples are digested under hot alkaline conditions after initial conditioning at room temperature with phosphate-buffered saline. The cooled digest is deproteinated with concentrated perchloric acid. After centrifugation and pH adjustment, the clear supernatant is applied to an ion-exchange cartridge, and after the cartridge is washed, the neomycin is eluted with dilute perchloric acid. This eluate is derivatized with 9-fluorenylmethyl chloroformate prior to liquid chromatography using a wide-pore spherical silica C4 column and fluorescence detection. Recovery and repeatability are calculated from tissue extract standard calibration curves produced from the same assay. Recoveries ranged from 80 to 120% for fortifications of 0.25-1.00 mg/kg for muscle tissue and from 80 to 100% for fortifications of 0.50-10.0 mg/kg for kidney tissue. Limits of quantitation were 0.25 and 0.50 mg/kg, respectively, for muscle and kidney tissues. Limits of detection were 0.125 and 0.20 mg/kg, respectively, for muscle and kidney tissues.

Animals↗