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Protective effect of methylcellulose and other polymers on insect cells subjected to laminar shear stress.

The relative sensitivity of two insect cell lines to laminar shear stress was determined, and the protective effect of polymers added to the growth media of two insect cell lines, Trichoplusia ni (TN-368) and Spodoptera frugiperda (SF-9), was evaluated. TN-368 and SF-9 cells were found to be equally sensitive to laminar shear stress. Methylcellulose [0.5% (w/v) Dow E4M Methocel] and dextran [4.5% (w/v)] increased the resistance of suspended cells to lysis due to laminar shear stress by factors of up to 76 and 28, respectively, compared to cells in media without additives. It was observed that the protective effect of Pluronic F-68 was concentration-dependent: 0.2% and 0.3% (w/v) F-68 increased the resistance of SF-9 cells to shear stress by factors of 15 and 42, respectively. However, increasing the concentration to 0.5% did not significantly increase the cells' resistance compared to 0.3% (w/v). F-68 at 0.2% only increased the resistance of TN-368 cells by a factor of 6. It is believed that the protection is a result of the polymer adsorbing to the cell membrane. None of the polymer additives tested had a significant effect on SF-9 or TN-368 growth rate.

Animals

The establishment of two cell lines from the insect Spodoptera frugiperda (Lepidoptera; Noctuidae).

The history and characteristics of two cells lines developed from primary explants of pupal tissue from the insect, Spodoptera frugiperda (J.E. Smith), are described. One cell line, IPLB-SF 21, was developed with hemolymph-supplemented medium and has been maintained continuously on the medium. The second cell line, IPLB-SF-1254, was developed with a medium containing a combination of vertebrate sera plus hemolymph and was adapted to hemolyphn-free medium at the 6th passage. The IPLB-SF-21 cell line has a population doubling time of 26 to 30 hr; the doubling time of the IPLB-SF-1254 line is 36 hr. The chromosomal morphology and distribution was typical of other lepidopteran cell lines. Serological studies showed that both cell lines have at least one antigen which also is common is tissue antigens from pupae of Spodoptera frugiperda.

Animals

[Experimental infection of an invertebrate cell line with a mollicute-like procaryote inducing the "lethargy of coleoptera" (author's transl)].

In vitro multiplication of a pathogenic intravacuolar mollicute-like procaryote from Melolontha melolontha L. was experimentally obtained in an insect cell line. The elongated and pleomorphic forms observed in the insect-host are reproduced in cell cultures. A third peculiar giant form is missing, showing that it does not play any role in the multiplication of the germ. The intrinsic potentialities of the germ are maintained during the successive passages, as proved by reinfection of the insect and by immunology. The original syndrome including the giant form is reproduced in the insect. The immunserum prepared from the wild germ isolated by density gradient is positive with the in vitro mollicute. The germs are intravacuolar, both in the cultured cells and in the insect host. Clearly the microorganism multiplies within the vacuoles. A cytopathogenic effect is noticed in the cultured cells overcrowed with germs. The germs become extracellular when they are released in the culture medium by disaggregation of the cell membranes. It seems that this work shows the first model of an intravacuolar mollicute-like procaryote experimentally multiplied in cultivated cells.

Animals

[Multiplication of sindbis virus in Drosophila cells cultivated in vitro (author's transl)].

Sindbis virus replicates in Drosophila cell cultures without any cytopathic effect. In continuous cell lines the virus is able to establish a persistent infection similar to other arboviruses in insect cell lines. The growth curve of Sindbis virus in Drosophila cells shows a maximum virus yield at around 24 hours postinfection, thereafter the virus production decreases and then remains fairly constant during a number of cell divisions. The average virus yield per cell has been estimated to be small, i.e. at best 5 PFU per day.

Animals

A study of communication specificity between cells in culture.

We have examined the specificity of communication between cells in culture by co-culturing cells derived from mammalian, avian, and arthropod organisms. Both mammalian and avian culture cells have similar gap junctional phenotypes, while the insect (arthropod) cell lines have a significantly different gap junctional structure. Electrophysiological and ultrastructural methods were used to examine ionic coupling and junctional interactions between homologous and heterologous cell types. In homologous cell systems, gap junctions and ionic coupling are present at a high incidence. Also, heterologous vertebrate cells in co-culture can communicate readily. By contrast, practically no coupling (0-8%) is detectable between heterologous insect cell lines (Homopteran or Lepidopteran) and vertebrate cells (mammalian myocardial or 3T3 cells). No gap junctions have been observed between arthropod and vertebrate cell types, even though the heterologous cells may be separated by less than 10 nm. In additional studies, a low incidence of coupling was found between heterologous insect cell lines derived from different arthropod orders. However, extensive coupling was detected between insect cell lines that are derived from the same order (Homoptera). These observations suggest that there is little or no apparent specificity for communication between vertebrate cells in culture that express the same gap junctional phenotype, while there is a definite communication specificity that exists between arthropod cells in culture.

Animals

Invertebrate aspartyl/asparaginyl beta-hydroxylase: potential modification of endogenous epidermal growth factor-like modules.

An invertebrate alpha-ketoglutarate-dependent aspartyl/asparaginyl beta-hydroxylase, which posttranslationally hydroxylates specific aspartyl or asparaginyl residues within epidermal growth factor-like modules, was identified, partially purified and characterized. Preparations derived from two insect cell lines catalyzed the hydroxylation of the expected asparaginyl residue within a synthetic epidermal growth factor-like module. This activity was found to be similar to that of the purified mammalian aspartyl/asparaginyl beta-hydroxylase with respect to cofactor requirements, stereochemistry and substrate sequence specificity. Furthermore, recombinant human C1r, expressed in an insect cell-derived baculovirus expression system, was also found to be hydroxylated at the expected asparaginyl residue. Thus, these results establish the potential for invertebrate aspartyl/asparaginyl hydroxylation. Since several invertebrate proteins known to be required for proper embryonic development contain a putative consensus sequence that may be required for hydroxylation, the studies presented here provide the basis for further investigations concerned with identifying hydroxylated invertebrate proteins and determining their physiologic function.

Amino Acid Sequence

Sparged animal cell bioreactors: mechanism of cell damage and Pluronic F-68 protection.

Pluronic F-68 is a widely used protective agent in sparged animal cell bioreactors. In this study, the attachment-independent Spodoptera frugiperda Sf9 insect cell line was used to explore the mechanism of this protective effect and the nature of cell damage in sparged bioreactors. First, bubble incorporation via cavitation or vortexing was induced by increasing the agitation rate in a surface-aerated bioreactor; insect cells were rapidly killed under these conditions of the absence of polyols. Supplementing the medium with 0.2% (w/v) Pluronic F-68, however, fully protected the cells. Next, cell growth was compared in two airlift bioreactors with similar geometry but different sparger design; one of these bioreactors consisted of a thin membrane distributor, while the other consisted of a porous stainless steel distributor. The flow rates and bubble sizes were comparable in the two bioreactors. Supplementing the medium with 0.2% (w/v) Pluronic F-68 provided full protection to cells growing in the bioreactor with the membrane distributor but provided essentially no protection in the bioreactor with the stainless steel distributor. These results strongly suggest that cell damage can occur in the vicinity of the gas distributor. In addition, these results demonstrate that bubble size and gas flow rate are not the only important considerations of cell damage in sparged bioreactors. A model of cell death in sparged bioreactors is presented.

Animals

Characterization of West Nile virus Koutango lineage from phlebotomine sandflies in Kenya.

The West Nile virus (WNV), primarily transmitted by mosquitoes, is one of the most widespread flaviviruses globally, with past outbreaks occurring in the USA and Europe. Recent studies in parts of Africa, including Kenya, have identified the West Nile virus Koutango lineage (WN-KOUTV) among phlebotomine sandfly populations, however, our understanding of this virus remains limited. This study aimed to characterize WN-KOUTV from phlebotomine sandflies. Sandflies were sampled between 12th -16th March 2021 and 16th -20th March 2023 from six villages each in Baringo and Isiolo Counties, using CDC light traps. Female sandflies were taxonomically identified and pooled based on genus and site of collection. Virus isolation was performed in Vero cells. Viral genomes were determined using next-generation sequencing. Phylogenetic and molecular clock analyses were done to decipher the virus's evolutionary relationships. Comparative analyses of amino acid sequences were performed to determine variations. Protein modeling in Pymol was conducted to elucidate variations in key protein regions. Evolutionary pressure analysis investigated the selection pressures on the virus. In vitro experiments were done to investigate the virus growth kinetics in mammalian Vero E6 and mosquito C6/36 cells. We report the isolation of WN-KOUTV from Salabani in Baringo and Aremet in Isiolo, Kenya. The isolated WN-KOUTVs clustered with previously identified WN-KOUTV strains. Comparative analysis revealed a unique amino acid at NS5 653. The WN-KOUTV lineage as a whole is under purifying selective pressure, with diversifying pressure acting at site NS3 267. The current WN-KOUTV replicated in Vero E6 and C6/36 cells comparable to West Nile virus Lineage 1a, isolated from mosquitoes. Subsequent isolations of WN-KOUTV in phlebotomine sandflies suggest potential vectors, however, vector competence studies would confirm this. Replication in mammalian and insect cell lines suggests there may exist a vector/host relationship. We speculate the close genetic relationship of WN-KOUTV strains from East and West Africa may potentially be enabled by bird migratory routes between the two regions. If proven, this could point to a potential future pandemic pathway for this virus.

Animals

A cytotoxic substance in insect cell culture spent media.

Spent media from five different insect cell lines when inoculated into Trichoplusia ni (TN-368) cultures produced cytotoxicity resulting in rounding and detachment of cells. The substance in spent medium from the established cellline Carpocapsa pomonella (CP-169) is believed to be a toxin, based on the failure to serially passage the agent, the early appearance of the cytotoxic effect, and the inability to detect microbes by culturing techniques as well as by electron microscopy. The ability to extract the toxic substance from CP-169 cells indicates that it is cell associated. Biophysical and biochemical properties of the CP-169 cytotoxin are presented.

Cell Line

Purification and functional reconstitution of the cystic fibrosis transmembrane conductance regulator (CFTR).

Circumstantial evidence has accumulated suggesting that CFTR is a regulated low-conductance Cl- channel. To test this postulate directly, we have purified to homogeneity a recombinant CFTR protein from a high-level baculovirus-infected insect cell line. Evidence of purity included one- and two-dimensional gel electrophoresis, N-terminal peptide sequence, and quantitative amino acid analysis. Reconstitution into proteoliposomes at less than one molecule per vesicle was accomplished by established procedures. Nystatin and ergosterol were included in these vesicles, so that nystatin conductance could serve as a quantitative marker of vesicle fusion with a planar lipid bilayer. Upon incorporation, purified CFTR exhibited regulated chloride channel activity, providing evidence that the protein itself is the channel. This activity exhibited the basic biophysical and regulatory properties of the type of Cl- channel found exclusively in CFTR-expressing cell types and believed to underlie cAMP-evoked secretion in epithelial cells.

Animals

Large-scale insect cell culture.

Significant advances have been made over the past year in our understanding of the protective mechanisms, both fluid-mechanical and biological, of media additives on suspended animal cells. The degree of protection offered by different additives, such as pluronic polyol, appears to be cell-type dependent, varying quite dramatically not only between insect and mammalian cells, but also between different insect cell lines themselves.

Animals

Derivation of a monoclonal anti-murine IL-4 antibody specific for an epitope expressed on denatured molecules.

Monoclonal antibodies to interleukin 4 (IL-4) were generated by immunization with recombinant IL-4 and screening by binding to IL-4 adsorbed to plastic surfaces. Three antibodies were obtained that scored well in this assay and one, 13E1, was studied in detail. It was very effective in detecting IL-4 by Western blotting whereas a neutralizing anti-IL-4 antibody, 11B11, was 50-100-fold less sensitive as a detecting agent. Sequential immunoprecipitation and biosynthetic labelling studies indicated that the 11B11 and 13E1 epitopes are largely expressed on different forms of IL-4. 13E1 was able to detect cytosolic IL-4 both by immunohistochemical and flow cytometric analysis of fixed cells. This was routinely successful in an insect cell line (Sf9) expressing large amounts of IL-4 as a result of infection with a recombinant 'IL-4 baculovirus'. Although stimulated D10 cells could also be shown to express IL-4 in their cytosol, positive results were not obtained in all such studies and we have failed to detect IL-4 production by normal T cells using this method. This antibody may have substantial value in detecting IL-4 by Western blots and as a tool to analyze the biosynthesis of IL-4. With suitable improvement in sensitivity, it also may prove valuable in the detection of IL-4 in the cytosol of individual cells.

Animals

Structural features of nonionic polyglycol polymer molecules responsible for the protective effect in sparged animal cell bioreactors.

The nonionic surfactant Pluronic F-68 polyol is commonly used to protect cultured animal cells from the detrimental effects of sparging. In this study we investigated the structural features of the Pluronic F-68 molecule responsible for this protective behavior. Poly(oxyethylene)-poly(oxypropylene) block copolymer polyols of various molecular weights and percentages of hydrophobe (poly(oxypropylene], including both Pluronic and reverse Pluronic polyols, were considered. The potential toxicity of these agents was examined in the absence of sparging (i.e., in spinner flasks) by using the attachment-independent Sf9 insect cell line as a model system. Each polyol resulted in one of three distinct types of behavior in these spinner flask experiments: (1) cells lysed at an exponential rate, (2) inhibition of cell growth (i.e., no net cell growth), or (3) uninhibited cell growth. It was then shown that all of the Pluronic and reverse Pluronic polyols that did not inhibit cell growth provided protection from sparging in the bioreactors used in this study; thus, finding a polyol that protected cells was synonymous with finding one that did not inhibit cell growth. The ability of these polyols to protect animal cells in sparged bioreactors was found to correlate well with the hydrophilic-lipophilic balance (HLB). Those polyols with the largest HLB values were found to be protective agents. These poly(oxyethylene)-poly(oxypropylene) polyols were also shown to be more effective protective agents than pure poly(oxyethylene); thus, the presence of the hydrophobe (poly(oxypropylene] is important in their ability to serve as protective agents.

Animals

Microscopic visualization of insect cell-bubble interactions. I: Rising bubbles, air-medium interface, and the foam layer.

Through the use of microscopic, high-speed video technology, the interactions of two suspended insect cell lines, Trichoplusia ni (TN-368) and Spodoptera frugiperda (SF-9), with air and oxygen bubbles were studied. Events such as cell-bubble attachment, cell-bubble collision, cell transport into the foam layer, and trapping of cells in the foam layer are presented and discussed. Based on these observations and those in a companion paper (Chalmers, J. J.; Bavarian, F. Biotechnol. Prog. 1991, following paper in this issue) and the experimental and theoretical work of other researchers, several mechanisms of cell damage as a result of sparging are presented.

Air

Replication of single viruses across the kingdoms, Fungi, Plantae, and Animalia.

It is extremely rare that a single virus crosses host barriers across multiple kingdoms. Based on phylogenetic and paleovirological analyses, it has previously been hypothesized that single members of the family Partitiviridae could cross multiple kingdoms. Partitiviridae accommodates members characterized by their simple bisegmented double-stranded RNA genome; asymptomatic infections of host organisms; the absence of an extracellular route for entry in nature; and collectively broad host range. Herein, we show the replicability of single fungal partitiviruses in three kingdoms of host organisms: Fungi, Plantae, and Animalia. Betapartitiviruses of the phytopathogenic fungusRosellinia necatrix could replicate in protoplasts of the carrot (Daucus carota), Nicotiana benthamiana and Nicotiana tabacum, in some cases reaching a level detectable by agarose gel electrophoresis. Moreover, betapartitiviruses showed more robust replication than the tested alphapartitiviruses. One of the fungal betapartitiviruses, RnPV18, could persistently and stably infect carrot plants regenerated from virion-transfected protoplasts. Both alpha- and betapartitiviruses, although with different host preference, could replicate in two insect cell lines derived from the fall armyworm Spodoptera frugiperda and the fruit fly Drosophila melanogaster. Our results indicate the replicability of single partitiviruses in members of three kingdoms and provide insights into virus adaptation, host jumping, and evolution.

Animals

A comparison of survival and repair of UV-induced DNA damage in cultured insect versus mammalian cells.

Survival and unscheduled DNA synthesis (UDS) were measured in a cultured insect cell line, TN-368, and a cultured mammalian cell line, V-79-4, following exposure to several fluences of ultraviolet light. TN-368 cells were approximately seven times more resistant to the lethal effects of UV than V-79 cells, as determined by colony formation. The amount of UDS per unit amount of DNA is about the same in both cell types 4 hr after 10-50 J/m2 UV irradiations.

Animals

Recombinant porin of Haemophilus influenzae type b.

A protein of approximately 40 kDa in the outer membrane of Haemophilus influenzae type b (Hib) behaves as a porin and permits transmembrane diffusion of low-molecular-weight solutes. The gene for Hib porin was cloned from an M13 library of chromosomal DNA of Hib strain ATCC9795. The gene was subcloned into a new transfer vector as a prerequisite for its use in the baculovirus expression vector system. Pure recombinant virus (AcPORIN) was isolated. On infection of a cultivated insect cell line Sf9 with AcPORIN, a novel protein was detected in cell lysates, and this novel protein reacted with an anti-Hib porin monoclonal antibody. The purified recombinant Hib porin was tested for its pore-forming properties in a synthetic black lipid membrane. The biophysical activity of purified recombinant Hib porin was identical to porin isolated from the bacterial outer membrane.

Bacterial Outer Membrane Proteins