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[Science of evaluating the characteristics, quality and safety of biotechnological products: RDNA-derived products, cell culture technology-derived products, gene therapy products, cellular therapy products, and transgenic animal-derived protein products and cellular products].

Recent progress in biotechnology, including recombinant DNA (rDNA) technology and cell culture technology, has enabled us to produce new medically useful agents intended for human use. These agents include therapeutic peptides and proteins derived from rDNA-modified cell substrates, continuous cell lines, diploid cell lines, and hybridoma cell lines, gene therapy products, cellular therapy products, and therapeutic protein products and cellular products derived from transgenic animals. To enable these products to be of use in human therapy, it is essential that suitable measures be taken by manufacturers and regulatory authorities to assure their quality, efficacy, and safety. This article describes points based on the latest sound scientific principles to be considered when producing, testing, evaluating and controlling biotechnology products for human therapy, especially with respect to their characteristics, quality, and safety.

Animals↗

Impaired production of IL-12 in systemic lupus erythematosus. I. Excessive production of IL-10 suppresses production of IL-12 by monocytes.

Interleukin 12 (IL-12) plays a crucial role in defensive immune responses, modulation of cytokine production and is involved in the pathogenesis of some autoimmune diseases. The authors investigated whether decreased in vitro production of IL-12 occurs in systemic lupus erythematosus (SLE), in which the cytokine secreting pattern is predominantly type 2. IL-12 production by SLE peripheral blood mononuclear cells (PBMC) was significantly impaired compared with normal PBMC, and this was not due to decreased numbers of monocytes. After depletion of non-adherent cells from PBMC, monocytes of SLE patients produced significantly less IL-12 than those of controls, but IL-12 levels in SLE and control non-adherent cells supernatants were not significantly different. Exogenous recombinant (r)IL-10 strongly inhibited IL-12 production by both SLE and normal PBMC and anti-IL-10 neutralizing antibody significantly reversed the IL-12 deficiency of SLE PBMC and SLE monocytes, while not affecting normal PBMC. Recombinant interferon gamma (rIFN-gamma) considerably enhanced IL-12 production in both SLE and normal PBMC, but it did not significantly reverse the inhibitory effect of rIL-10 on IL-12 production. IL-12 production was significantly lower in patients with active SLE than those in remission. These results suggest that SLE monocytes may be deficient in IL-12 production and that this is secondary to abnormal production of various cytokines, especially excessive production of IL-10.

B-Lymphocytes↗

Effects of insulin, insulin-like growth factor I, and gonadotropins on bovine granulosa cell proliferation, progesterone production, estradiol production, and(or) insulin-like growth factor I production in vitro.

The objectives of the present studies were to determine the effect of insulin, insulin-like growth factor I (IGF-I), testosterone, and FSH on proliferation, progesterone production, and(or) estradiol production of bovine granulosa cells. In addition, existence of IGF-I mRNA in granulosa cells and in vitro IGF-I production by granulosa cells were assessed. Cells from small (1 to 5 mm) and large (> or = 8 mm) follicles were collected from cattle and cultured for either 3 or 4 d. When cells from small follicles were cultured, insulin (.1 to 10 micrograms/mL) and IGF-I (100 to 400 ng/mL) increased (P < .05) cell numbers compared with controls. Insulin alone or IGF-I alone increased (P < .05) progesterone production per cell by severalfold on d 4. In cells from both sizes of follicles, insulin (1 microgram/mL), in the presence of FSH, increased estradiol production per cell. In contrast, IGF-I (100 ng/mL) inhibited estradiol production by cells from small follicles and stimulated estradiol production by cells from large follicles. Insulin-like growth factor II (100 ng/mL) and insulin at higher doses (> or = 5 micrograms/mL) had no effect on estradiol production by cells from small and large follicles. Granulosa cells contained four IGF-I mRNA transcripts and produced IGF-I in vitro. These results support the hypothesis that insulin and IGF-I may have direct local effects on bovine ovarian function, and that these effects are influenced by dose and size of follicle.

Animals↗

Downregulation of T cell growth factor production by ornithine decarboxylase and its product putrescine: D,L-alpha-difluoromethylornithine suppresses general protein synthesis but augments simultaneously the production of interleukin-2.

Treatment of EL-4 lymphoma cells with tetradecanoylphorbol-acetate (TPA), a well-known activator of protein kinase C, induces the production of the T cell growth factor interleukin-2 (IL-2) and the expression of IL-2-specific mRNA within 4-8 h. This system is an ideal model for studies on the induction of a differentiated function in a homogeneous lymphoid cell population by a defined signal. TPA induces also an increase of ornithine decarboxylase (ODC) activity and elevates the intracellular concentrations of putrescine and polyamines within 4-8 h. A similar increase of intracellular putrescine and polyamine concentrations can be achieved by administration of 2 mM putrescine to the culture medium. However, putrescine cannot induce the production of IL-2 in the absence of TPA and cannot reconstitute the IL-2 production in cultures with PGE2 or cyclosporine A, i.e., two well-known immunosuppressive substances which inhibit ODC activity. Putrescine has rather a counter-regulatory effect as concluded from the observation that the TPA-induced TCGF production and IL-2-specific mRNA expression are augmented (superinduced) by the ODC inhibitor D,L-alpha-difluoromethylornithine (DFMO) and again suppressed after the administration of putrescine or polyamines to DFMO-treated cultures. The glycolytic activity, general protein synthesis [( 3H]leucine incorporation), and the cell cycle progression from G2/M to G1, in contrast, are inhibited by DFMO and reconstituted by putrescine. This demonstrates that the cells are able to sacrifice to a large extent several vital functions including their general protein synthesis and to devote themselves at the same time to a fulminant production of their functionally most relevant protein IL-2. This process is downregulated by ODC and its product putrescine. A correlation between increased IL-2 production and accumulation of cells in the G2/M phase was also observed in cultures treated with hydroxyurea or with a combination of amethopterin and adenosine.

Adjuvants, Immunologic↗

Suitability of 30 Agricultural Products and By-Products as Nutrient Sources for Laboratory Production of Bacillus thuringiensis subsp. aizawai (HD133)

Bacillus thuringiensis subsp. aizawai (HD133) was grown in culture media in which dextrose was a common carbon source and 30 different agricultural products and by-products were tested as the main nitrogen sources. These products included legumes, cereals, animal proteins, leaf proteins, yeasts, oilseeds, tubers, and casamino acid. Of the 30 products tested, cottonseed meal, defatted soy flour, and corn gluten meal were the most efficient substrates for the production of spore-crystal biomass and endotoxin potency. The carbohydrate/nitrogen ratios for these additives ranged from 0.3 to 0.5 and the glutamic acid content of their proteins from 9.2 to 16.0%. There was no close relationship between the estimates of the amounts of endotoxin produced and the potency of the product when fed to bertha armyworm, Mamestra configurata.

Journal Article↗

International Conference on Harmonisation; guidance on quality of biotechnological/biological products: derivation and characterization of cell substrates used for production of biotechnological/biological products; availability. Notice. Food and Drug Administration, HHS.

The Food and Drug Administration (FDA) is publishing a guidance entitled "Q5D Quality of Biotechnological/Biological Products:Derivation and Characterization of Cell Substrates Used for Production of Biotechnological/Biological Products." The guidance was prepared under the auspices of the International Conference on Harmonisation of Technical Requirements for Registration of Pharmaceuticals for Human Use (ICH).The document provides broad guidance on appropriate standards for the derivation and characterization of cell substrates used in the production of biotechnological/biological products and recommends information in these areas that should be presented in marketing applications.

Biological Products↗

Quantitation of 5-lipoxygenase products by electrospray mass spectrometry: effect of ethanol on zymosan-stimulated production of 5-lipoxygenase products by human neutrophils.

A reverse-phase-HPLC/tandem mass spectrometric method (LC/MS/MS) was developed for the quantitation of leukotriene B4 (LTB4), the 5-lipoxygenase product, 5-hydroxyeicosatetraenoic acid (5-HETE), as well as the omega-oxidation metabolites of LTB4, 20-hydroxy-LTB4, and 20-carboxy-LTB4. Electrospray-generated carboxylate anions were collisionally activated and decomposed to specific and abundant product ions and multiple reaction monitoring was used to analyze LTB4 (m/z 335-->195), 20-hydroxy-LTB4 (m/z 351-->195), 20-carboxy-LTB4 (m/z 365-->195), and 5-HETE (m/z 319-->115). A linear correlation was observed in comparison of results obtained from quantitation by LC/MS/MS with quantitation by gas chromatography/MS of the pentafluorobenzyl ester/trimethylsilyl ether derivative of LTB4 produced during opsonized zymosan stimulation of human neutrophils. Detection limits at the low picogram level were obtained for all metabolites. This method was applied to the quantitation of 5-lipoxygenase products produced from zymosan-stimulated human neutrophils in the presence of ethanol. At physiologically relevant concentrations of ethanol, production of all 5-lipoxygenase products generated by stimulated neutrophils was markedly attenuated.

Arachidonate 5-Lipoxygenase↗

Reduced in vitro production of interferon-gamma, interleukin-4 and interleukin-12 and increased production of interleukin-6, interleukin-10 and tumour necrosis factor-alpha in systemic lupus erythematosus. Weak correlations of cytokine production with disease activity.

Production of cytokines in unstimulated and mitogen-stimulated cultures were evaluated by ELISPOT in 34 SLE patients with low to moderate disease activity and 23 healthy controls. Significantly reduced production of IFN gamma, IL4 and IL12 and significantly increased production of IL6, IL10 and TNF alpha were found in patients with SLE. Regression analysis revealed that production of all six cytokines tended to decrease with increasing disease activity, but negative correlation with SLEDAI was significant (p < 0.05) only for PHA-stimulated IL4, unstimulated and PHA-stimulated IL10 and SAC-stimulated IL6. Negative correlation of stimulated and unstimulated IL6 and TNF alpha production with anti-DNA antibody levels were also significant.

Adolescent↗

The inhibition of pepsin-catalysed reactions by products and product analogues. Kinetic evidence for ordered release of products.

1. The inhibition of pepsin-catalysed hydrolysis of N-acetyl-l-phenylalanyl-l-phenylalanylglycine by products and product analogues was studied. 2. The non-competitive nature of the inhibition by the product N-acetyl-l-phenylalanine confirms an ordered release of products, and points to a common mechanism (involving an amino-enzyme) for pepsin-catalysed transpeptidation and hydrolysis reactions. 3. N-Acetyl-l-phenylalanine ethyl ester is also a non-competitive inhibitor, but here the inhibition is of the ;dead-end' type. No ethanol is detectable in reaction mixtures, indicating that this ester cannot act as an amino group acceptor in a transpeptidation process. 4. The same is true for N-methanesulphonyl-l-phenylalanine methyl and methyl thiol esters. No methanethiol is liberated when the methyl thiol ester is present as an inhibitor of the hydrolytic reaction, and the hope that such a thiol ester would effectively trap the amino-enzyme was not fulfilled.

Amino Acids↗

Capsicum--production, technology, chemistry, and quality--Part II. Processed products, standards, world production and trade.

Capsicums, as a spice, have been known since the beginning of civilization and historically associated with the discovery of the New World. The genus Capsicum (Fam. Solanaceae) provides many varieties and adds color, pungency, and aroma to the cuisines of most of the world. From the pungent chilli, of interest also to pharmaceuticals, to the colorful paprika and the bell capsicums with its remarkable aroma, the genus has been of great interest for its chemistry and physiological action. Pungency as a sensory attribute, its evaluation, structure-activity relationship, and its increasing acceptance and preference by diverse populations of the world are of great interest to many research disciplines. In a comprehensive review of all aspects in four sequential parts, Part I deals with History, Botany, Cultivation, and Primary Processing (CRC Critical Review, Food Science and Nutrition). The Capsicums among the spices are second only to black pepper in trades both in volume and value. The production of the different forms of this spice as ground, specialty seasonings, and as the concentrated oleoresins through technologically advanced processes, proposed newer products, the standard to control quality of the different products, world production, trade, and prospects are reviewed in detail in this, Part II.

Capsaicin↗

Grass roots productivity: productivity managed by the productive.

Can there be a radiology productivity system that enlists the eager support of technologists and is endorsed by management? Can there be a productivity system that involves 10-15 minutes of time per day to manage and produces meaningful results? Can there be a productivity system that is run by employees? The following article describes a productivity system implemented at Presbyterian Intercommunity Hospital that answers these questions in the affirmative.

California↗

Production of interleukin 6 from human liver cell lines: production of interleukin 6 is not concurrent with the production of alpha-fetoprotein.

The production of interleukin (IL) 6 from six human liver cell lines, including Chang liver, HLF, HLE, HepG2, PLC/PRF/5, and HuH-7, was investigated using enzyme-linked immunosorbent assay and Northern blot analysis. When cells were cultured in the presence of 12-O-tetradecanoylphorbol-13-acetate, significant amounts of IL6 were detected in the culture supernatants of Chang liver cells, HLF cells, and HLE cells. However, IL6 was not detected in the culture supernatants from HepG2 cells, PLC/PRF/5 cells, or HuH-7 cells which had been treated similarly. To further investigate the production of IL6, expression of the IL6 gene was studied. Results of Northern blot analysis using IL6 complementary DNA as a probe showed that the induction was initiated at the mRNA level. Moreover, IL6 mRNA was also induced by IL1 beta and tumor necrosis factor but not by a calcium ionophore (A23187) or IL6 itself in Chang liver cells. This is the first study to demonstrate the production of human IL6 in liver cells. Furthermore, when the production of alpha-fetoprotein (AFP) from the liver cell lines was examined, the three that were able to produce IL6 failed to produce AFP, whereas the other three cell lines succeeded in producing AFP. These observations may indicate the heterogeneous origin of the liver cell lines.

Adolescent↗

Assigned and participative production standards and feedback affecting worker productivity in a repetitive production task.

The main objective of this research was to determine the effects of assigned and participative standards in conjunction with feedback on worker productivity in a repetitive production task. An assigned hard standard and feedback was significantly better than a participative standard and feedback in terms of quality output but no significant difference in quantity output was found between them. Thus from the overall worker productivity viewpoint, the former condition was superior to the latter condition. Both conditions provided a significant improvement in worker productivity. The percentage increases in quantity and quality output for the assigned hard standard and feedback condition were 12% and 7%, respectively, compared to the control group. The assigned normal standard and feedback had a significant positive impact on quantity output but no significant effect was found in terms of quality output.

Efficiency↗

[Fluctuation of plasma levels of fibrinogen degradation products, fibrin degradation products and total fibrin/fibrinogen degradation products in patients with DIC].

Ten patients with disseminated intravascular coagulation syndrome (DIC) were analyzed using three enzyme linked immunosorbent assays (ORGANON TEKNIKA, Belgium) for fibrin degradation products (FbDP), fibrinogen degradation products (FgDP) and total fibrin/fibrinogen degradation products (TDP). A significant elevation in each parameter and a significant depression of FgDP/FbDP (g/b) ratio were observed in the patients in early stage of DIC, comparing with normal individuals (p < 0.001 and p < 0.01). These results suggested that both fibrinolysis and fibrinogenolysis were marked accelerated, with a superiority in fibrinolysis in those patients. The levels of these parameters decreased and the g/b ratio increased with the passage of the clinical courses in five patients who were improved. Although in five deteriorated cases, the levels were kept high and their g/b ratio showed low continuously. These findings suggested that separated monitoring of fibrinolysis or fibrinogenolysis was useful to study patients with DIC and g/b ratio could be regarded as a helpful indication of therapeutic effects.

Disseminated Intravascular Coagulation↗

Production of the biocontrol agent Pantoea agglomerans strain CPA-2 using commercial products and by-products.

The aim of this paper was to find the nitrogen and carbon sources that provide maximum biomass production of strain CPA-2 of the biocontrol agent Pantoea agglomerans and minimum cost of media, whilst maintaining biocontrol efficacy. To reduce the cost of media, commercial products and by-products were tested. P. agglomerans can be produced using a combination of nitrogen sources such as yeast extract (5 g l(-1)) and dry beer yeast (10 g l(-1)) with inexpensive carbohydrates such as sucrose (10 g l(-1)) and molasses (20 g l(-1)), respectively, maintaining the efficacy of the biocontrol agent against Penicillium digitatum and P. italicum on oranges. The results obtained in this study could be used to provide a reliable basis for a scale-up of this fermentation process to an industrial level.

Biomass↗

Distribution of aflatoxins in product and by-products during glucose production from contaminated corn.

Aflatoxins are known to be hepatotoxic, carcinogenic, and teratogenic. A positive correlation has been established between the consumption of aflatoxin-contaminated foods and the increased incidence of liver cancer worldwide. A survey of Egyptian corn and corn-based products and by-products shows that the majority of the samples had higher limits of aflatoxin. We have conducted experiments to determine the fate and distribution of aflatoxin during wet-milling process fractions and investigate the aflatoxin destruction during starch conversion to glucose syrup. The present results showed that about half of the aflatoxin content (48.1%) in the infected corn grain was found to be lost in steep liquor, depending upon the aflatoxin type, arranged in the order G1 > G2 > B1 > B2. After wet-milling aflatoxins were distributed into starch, gluten, fiber, and germ. Gluten, fiber, and germ were the most highly contaminated fractions. The loss of aflatoxin during process of starches reached 54.4% in steep water and water process. Although the gluten fraction represents only 9.6% of corn, the higher percentage (25.3%) of aflatoxin was found in this fraction, the fiber and germ account for nearly 29% of the milled corn and contain 11.6% of the aflatoxin. On the other hand, 8.7% of the total aflatoxins in start corn was found in starch fraction which accounts 61% of the milled corn. Aflatoxins G1 and G2 were found lost in higher concentrations compared to the aflatoxin B1 and B2. A higher percentage of AfG1 (86.35%) and AfG2 (78.36%) and a lower percentage of AfB1 (16.3%) and AfB2 (14.7%) were found in starch fraction. The conversion percent of contaminated starch was 89.5% compared with control starch. It can be concluded that aflatoxins were destroyed during starch conversion. Consequently, glucose syrup produced from contaminated starch was found aflatoxin-free.

Aflatoxin B1↗

Large-scale production of kappa-carrageenan droplets for gel-bead production: theoretical and practical limitations of size and production rate.

Immobilization of biocatalysts in kappa-carrageenan gel beads is a widely used technique nowadays. Several methods are used to produce the gel beads. The gel-bead production rate is usually sufficient to make the relatively small quantities needed for bench-scale experiments. The droplet diameter can, within limits, be adjusted to the desired size, but it is difficult to predict because of the non-Newtonian fluid behavior of the kappa-carrageenan solution. Here we present the further scale-up of the extrusion technique with the theory to predict the droplet diameters for non-Newtonian fluids. The emphasis is on the droplet formation, which is the rate-limiting step in this extrusion technique. Uniform droplets were formed by breaking up a capillary jet with a sinusoidal signal of a vibration exciter. At the maximum production rate of 27.6 dm3/h, uniform droplets with a diameter of (2.1 +/- 0.12) x 10(-3) m were obtained. This maximum flow rate was limited by the power transfer of the vibration exciter to the liquid flow. It was possible to get a good prediction of the droplet diameter by estimating the local viscosity from shear-rate calculations and an experimental relation between the shear rate and viscosity. In this way the theory of Newtonian fluids could be used for the non-Newtonian kappa-carrageenan solution. The calculated optimal break-up frequencies and droplet sizes were in good agreement with those found in the experiments.

Biotechnology↗

A Quantum State-Resolved Insertion Reaction: O((1)D) + H(2)(J = 0) --> OH((2) product operator product operator product operator, v, N) + H((2)S).

The O((1)D) + H(2) --> OH + H reaction, which proceeds mainly as an insertion reaction at a collisional energy of 1.3 kilocalories per mole, has been investigated with the high-resolution H atom Rydberg "tagging" time-of-flight technique and the quasiclassical trajectory (QCT) method. Quantum state-resolved differential cross sections were measured for this prototype reaction. Different rotationally-vibrationally excited OH products have markedly different angular distributions, whereas the total reaction products are roughly forward and backward symmetric. Theoretical results obtained from QCT calculations indicate that this reaction is dominated by the insertion mechanism, with a small contribution from the collinear abstraction mechanism through quantum tunneling.

Journal Article↗