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Biomedical subjects

W Berthold

Publications and source records attributed to W Berthold.

At least 37 records · Page 2Linked to original sources

Experimental approaches to guarantee minimal risk of potential virus in purified monoclonal antibodies.

Regarding biological products, increasing awareness of potential side effects have placed great importance not only at protein purity regarding other proteins but on the removal of biologicals such as DNA and especially virus the importance of which may not be known. Monoclonal antibodies (Mab) have come to be an important class of molecules obtained from hybridoma cells, i.e., nonrecombinant cells in culture. It has been noted during the last years, that with rare exceptions hybridoma cell lines contain retrovirus like particles. The infectious nature of the EM-visible particles has been tested for, however, in most cases not been substantiated. In order to bring these valuable biological reagents, Mab's, to good use in man for imaging or therapy, the remaining concern about a potential retroviral infection has to be reduced to an acceptable minimum. We describe experimental approaches for the validation of chromatographic and ultrafiltration steps used in the production of monoclonal antibodies to remove and inactivate murine retrovirus. Present day biotechnological manufacturing processes have been devised incorporating a number of strategic preventive measures that have found wide spread acceptance. They permit to answer the question: how can a potentially harmful infection by an unknown virus be excluded. Knowledge of the efficacy of purification steps to clear infectious model virus is fundamental to devise biotechnological manufacturing processes yielding a purified antibody for use in man.

Animals↗

Purification of proteins produced by biotechnological process.

Proteins maintain functions important to life. Faulty functioning or deficiency gives rise to pathological reactions. These proteins can now be produced, using the methods of recombinant DNA technology and administered to patients for replacement therapy. Many proteins as active ingredients are already available for use as immunomodulators, agents for tumour treatment, plasma proteins and hormones. They are in various stages of development, ranging from cloning of the producing cells to marketing of the finished products. Since the active substances are proteins synthesized by recombinant cells, their purification presents a particular challenge to protein chemists. Purification of recombinant DNA-derived proteins intended for human use is an essential part of the biotechnical process. It starts immediately after the fermentation of the host cell. The characteristics of the protein determine which microorganisms or cell cultures are used and this in turn defines the first purification step. The microorganisms are disrupted, and the insoluble protein, desposited in "inclusion bodies" has to be renatured, or the proteins secreted by cells and have to be concentrated. The subsequent strategy for purification of the protein does not depend on the fermentation process but is entirely determined by the physiochemical properties of the proteins. The goal of the first purification step is to isolate as fast and quantitatively as possible the recombinant protein from the culture filtrate, in order to minimize potential changes brought about by proteases or glycosidases. Immunoaffinity or ligand-affinity chromatography is used preferentially for this purpose. The concentration of protein and buffer changes are carried out by precipitation followed by reconstitution or, preferably, by dialysis and ultrafiltration/diafiltration.(ABSTRACT TRUNCATED AT 250 WORDS)

Chemical Phenomena↗

A sensitive radioimmunoprecipitation assay for the detection of antibody to recombinant human gamma-interferon: comparison to a bioassay neutralization test.

This report describes a specific radioimmunoprecipitation (RIP) assay for the detection of antibodies to recombinant DNA (rDNA) derived human gamma-interferon (rHuIFN-gamma). The assay was shown not to detect antibodies to rHuIFN-alpha, rHuIFN-beta, human lymphotoxin, or E. coli proteins and was reproducible with intraassay and interassay coefficients of variation of 1.6 and 3%, respectively, for the log titer of a high positive control. Comparison of this assay with a standard bioassay for detection of neutralizing antibody (abrogation of the inhibitory effect of rHuIFN-gamma on EMC virus replication in A549 cells) demonstrated that the RIP assay was more sensitive for detection of HuIFN-gamma neutralizing monoclonal antibody. Nonneutralizing monoclonal antibody was detectable in the RIP assay but not in the bioassay neutralization test. Examination of polyclonal antisera (rabbit and monkey) that contained neutralizing antibodies also demonstrated the RIP system to be a more sensitive indicator of the presence of antibodies than the bioassay neutralization test. In preliminary studies of human samples (86 patients) from clinical trials using an assay precipitation system capable of detecting antibody of the IgG, IgM, IgA, and IgE classes, no antibody to rHuIFN-gamma was observed. These patients were also found negative for neutralizing antibody to rHuIFN-gamma.

Antibodies↗

Selective inhibitory effect of Hu-IFN-gamma on the agarose clonability of tumor-derived lymphoid cell lines.

Recombinant human interferon alpha (IFN-alpha) and interferon gamma (IFN-gamma) were compared for their ability to influence the proliferative capacity of tumor-derived cell lines and of normal B lymphocytes infected in vitro by Epstein-Barr virus (EBV). EBV-induced B-cell proliferation was suppressed almost completely when 10(2) U/ml IFN-alpha were added to the culture medium while the same dose of IFN-gamma had significantly lower inhibitory activity. The pure IFNs differed in their ability to influence the growth of three Burkitt lymphoma-derived cell lines, Raji, Daudi, and Namalwa, depending on whether the cells were propagated in suspension or in semisolid cultures. IFN-alpha inhibited cell proliferation under both culture conditions with thresholds of sensitivity characteristics for each cell line. In contrast, IFN-gamma had no effect on the growth in suspension but it abolished the clonogenic potential of tumor cell lines in semisolid agarose. The results suggest that the two IFN types may exert their growth inhibitory activity through different mechanisms of action.

B-Lymphocytes↗

Immunoassay for the quantitation of human leukocyte interferon.

A sensitive nonradioactive immunoassay based on monoclonal antibodies was developed. A number of monoclonal hybridomas secreting antibodies against human leukocyte interferon (IFN alpha) were generated using mice immunized with purified lymphoblastoid IFN. Although the binding of antibody to IFN alpha was used as one criterium of selection, all antibodies found can neutralize its antiviral activity. A pair of antibodies binding to different regions of IFN alpha was identified. These were incorporated into sensitive sandwich assays of IFN alpha. A microtiter plate assay - using horse radish peroxidase as marker enzyme - is able to detect IFN alpha at a concentration of 30 IU/ml within 5 h. An overnight tube assay can detect approximately 30 pg IFN alpha 2 or 3 IU per ml solution. The 5-h ELISA (enzyme-linked immunosorbent assay) is well suited for the monitoring of the recovery of rIFN alpha from recombinant organism, during purification and refinement of the protein to a therapeutic drug.

Antibodies, Monoclonal↗

Virologic, immunologic, and clinical observations on a patient during the incubation, acute, and convalescent phases of infectious mononucleosis.

One patient with infectious mononucleosis (IM) was studied from the probable time of Epstein-Barr virus (EBV) infection (38 days before the onset of clinically overt disease), during the incubation and acute phases, until 6 months after clinical remission. Analysis of spontaneous outgrowth of EBV-carrying lymphoblastoid cells, by limiting dilution on feeder layer cultures, showed that virus containing B lymphocytes are already present early during the incubation period. Also low interferon serum levels were detected early after infection, and only before the onset of clinical disease. All other studied clinical laboratory and virus-associated variables were within normal range during the incubation phase, but changed to a pattern characteristic of IM in parallel to the clinical symptoms. During the acute disease EBV-associated nuclear antigen (EBNA)-positive cells could be directly detected among the lymphocytes, and antibodies to EBV antigens appeared. Lymphocytes stained by monoclonal antibodies, detecting Ia-like determinants (activated cells) and suppressor cells, increased dramatically, in parallel to a strong increase of functional suppressor cell activity, measured by inhibition of blastogenesis and PWM-induced immunoglobulin production. During the acute phase there was also a decrease of spontaneous cytotoxicity against the NK-sensitive cell line K562, while cytotoxicity (spontaneous) against an autologous EBV-positive lymphoblastoid cell line (LCL) was detected only during this phase. These reactions correlated to the presence of blasts, and the autologous reaction was exerted mainly by Fc-receptor-negative cells. Lymphokine production in response to EBV antigens was also initiated during the acute phase. During the convalescence period the serological and cellular immune parameters adjusted to the pattern of a normal EBV-seropositive person.

Adolescent↗

Human fibroblastoid interferon: immunosorbent column chromatography and N-terminal amino acid sequence.

Three mice and one rabbit were inoculated with purified human fibroblastoid interferon. Neutralizing activity to human fibroblastoid interferon was observed in the serum of these animals with the rabbit showing the highest anti-interferon titers (10(6) neutralizing units/mL). Rabbit antiserum was coupled to cyanogen bromide activated Sepharose, and the resulting material was tested for use in the purification of human fibroblastoid interferon. Pure interferon obtained by this procedure was analyzed, and we report the sequence of the first 13 N-terminal amino acid residues of this protein.

Amino Acid Sequence↗

Target selectivity of interferon-induced human killer lymphocytes related to their Fc receptor expression.

Human blood lymphocytes were fractionated on the basis of surface characteristics such as adherence to nylon wool and expression of erythrocyte (E) and Fc receptors. The various subsets were incubated with interferon for 3 hr. Two cell lines that differ in sensitivity to the natural killer effect, K562 and Daudi, were exposed to these lymphocytes (i.e., their sensitivity to interferon-activated killing was tested.) Cell line Daudi, with a low sensitivity to the natural killer effect, was also affected by interferon-activated killing. The efficiency of the nonadherent subsets, separated according to the expression E receptor, ranked similarly in natural killing (anti-K562) and interferon-activated killing (anti-K562 and anti-Daudi) in the following order: E receptor-negative cells, low-affinity E receptor-positive cells, and high-affinity E receptor-positive cells. Further separation on the basis of Fc receptor expression revealed a difference between the two targets. The Fc receptor-positive and -negative cells that did not express high-affinity E receptors killed K562 with similar efficiency whereas Daudi cells were more sensitive to the effect of cells devoid of Fc receptor. Results obtained with other targets suggested that T cell lines behave similarly to K562 and that the difference may be generally valid for T and B cell lines.

Animals↗

The isolation and amino acid/sugar composition of human fibroblastoid interferon.

Human fibroblastoid interferon produced from an established human cell line was purified by controlled-pore glass and concanavalin A-Sepharose column chromatography followed by preparative two-dimensional gel electrophoresis. The purification procedure provided a 10% recovery of pure interferon with good reproducibility. The purified protein was homogeneous with respect to its molecular weight of 20,000 and net electrical charge at pH 2.5. Interferon of high specific activity of 5 x 10(8) units/mg of protein was directly demonstrated in the polyacrylamide gel before staining with Coomassie brilliant blue. Parallel purification of a sham-induced interferon preparation did not yield an equivalent product indicating the purified interferon is not derived from uninduced cells or from the fetal calf serum of the tissue culture growth medium. Pure interferon was radioiodinated by Bolton-Hunter reagent. Amino acid analysis of the pure preparation shows interferon to be a leucine-rich glycoprotein containing a high percentage of glutamic/glutamine residues and that disulfide bridges(s) are important for its biological activity.

Amino Acids↗

Purification and in vitro labeling of interferon from a human fibroblastoid cell line.

Interferon was produced from a clonal human fibroblastoid line. This cell line was derived from an established fibroblastoid culture treated with ethylmethane sulfonate and is capable of producing higher amounts human interferon than primary human fibroblast cultures. The interferon produced from this cell line was purified by concanavalin A and phenyl-Sepharose column chromatography followed by preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The purified interferon was then labeled with [125I]-iodine, with [3H]5-dimethylaminonaphthalene-1-sulfonyl-chloride and with sodium [3H]borohydride after periodate oxidation. An appreciable amount of biological activity was retained after both tritium labelings but not after iodination. When subjected to electrophoresis in the presence of sodium dodecyl sulfate all three radioactive interferon preparations comigrated with the purified interferon preparation as a single protein component with a molecular weight of 19,000. Both purified and radioactive preparations were also shown to migrate with the antiviral activity in polyacrylamide gels in the absence of sodium dodecyl sulfate. The specific activity of purified interferon preparations ranged from 2 X 10(8) to 10 X 10(8) units/mg of protein.

Cell Line↗

Chemical modifications of tyrosyl residue(s) and action of human-fibroblast interferon.

Partially purified and purified human fibroblastoid interferon were iodinated and nitrated under experimental conditions in which the most likely amino acyl residue modified was tyrosine(s). The modification resulted in a loss of human interferon activity suggesting that tyrosyl residue(s) is associated with the antiviral action of human interferon.

Cell Line↗

A mechanism for the induction and regulation of human fibroblastoid interferon genetic expression.

Some commonly used inducers such as viruses and double-stranded RNA are known to inhibit cellular protein synthesis. We have now shown that conventional inhibitors of macromolecular synthesis such as cycloheximide, 2-(4-methyl-2, 6-dinitroanilino)-N-methyl propionamide (MDMP) and I-beta-D-ribofuranosylbenzimidazole (DRB) can induce the production of significant amounts of interferon in human fibroblastoid cell lines. The interferon-inducing activity of these inhibitors depends on the concentration as well as the time of treatment with the inhibitors. These findings lead to the suggestion that the induction of human interferon may be mediated by a reduction in the critical concentration of a rapidly turning over repressor(s) which normally represses the interferon gene(s) in uninduced cells.

Aniline Compounds↗

Genetic control of the interferon system.

Now that some studies have been done on the genetics of the human interferon system, it would appear that the primary constraint to interferon research imposed by the lack of human interferon can be overcome as indicated herein with mutagenized human cell lines containing multiple copies of chromosome 5. Purified interferon from these mutants has allowed us to label it radioactively. However the amount required for a complete amino acid and sugar sequence of human interferon is still very large but within the realm of possibility when the use of these mutant cell lines is considered (23, 24).

Animals↗

The metabolism of high-molecular-weight ribonucleic acid including polyadenylated species, in the developing rat brain.

High-molecular-weight RNA was isolated from rat brain at various times after the intracranial administration of [32P]Pi. The synthesis of 28S and 18S rRNA could be detected within 1h of the injection of the radioactive precursor and appeared to be more pronounced, relative to other high-molecular-weight RNA, in the brains of older rats compared with those of newborn rats. Polyadenylated RNA, representing most mRNA and their precursors, was isolated by chromatography on oligo(dT)-cellulose. The contribution of this polyadenylated RNA to total RNA synthesis was investigated in the cerebral cortex and the phylogenetically older brain stem at different stages in the development of the rats by using a 5h period of labelling as an arbitrary index of transcription. In the brain stem the proportion of labelled polyadenylated RNA comprised 27-30% of the total RNA. The corresponding values for the cortex decreased from 34% in newborn rats to 23% in 40-150-day-old rats. These data indicated that proportionately more polyadenylated RNA is synthesized in the cortex of the newborn than in the adult rat and that there is a progressive decrease in the synthesis of polyadenylated RNA relative to rRNA during development.

Animals↗

Nucleo-cytoplasmic relationships of high-molecular-weight ribonucleic acid, including polyadenylated species, in the developing rat brain.

The metabolism of high-molecular-weight RNA in the nuclear and cytoplasmic fractions of newborn and adult rat brain was investigated after the intracranial administration of [32P]Pi. In young brain, a considerable proportion of the newly synthesized radioactive RNA is transferred to the cytoplasm, in contrast with the adult brain, where there appears to be a high intranuclear turnover. Electrophoretic analysis of the newly synthesized RNA showed that processing of the rRNA precursor to yield the 28S and 18S rRNA may be more rapid in the adult than in the young, although most of the adult rRNA in the nucleus is not transferred to the cytoplasm. In young brain, processing is probably tightly coupled to transport of rRNA into the cytoplasm, so that 28S and 18S rRNA are not subjected to possible degradation within the nucleus. Polyadenylated RNA turns over in concert with high-molecular-weight RNA in the nuclei of the adult rat brain. In the cytoplasm the polyadenylated RNA has a higher turnover rate relative to rRNA. In the young brain the polyadenylated RNA is transferred to the cytoplasm along with rRNA, although polyadenylated RNA is transported into the cytoplasm at a faster rate. The nuclear and cytoplasmic polyadenylated RNA species of young brain are larger than their corresponding adult counterparts. These results suggest that there are considerable changes in the regulation of the nucleo-cytoplasmic relationship of rRNA and polyadenylated RNA during the transition of the brain from a developing replicative phase to an adult differentiated and non-dividing state.

Animals↗