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Free-flow electrophoresis. II. Analysis of the method with respect to preparative cell separation.

Electrophoretic cell separation by means of free-flow electrophoresis in an FF5 apparatus was investigated with respect to band resolution, separation capacity, reproducibility and influence on cell viability. Very sharp bands and a large separation capacity were achieved using triethanolamine/acetate buffered glycine media as liquid curtain. Acid buffer ions such as N-2-hydroxyethylpiperazine-N'-ethanesulfonic acid (HEPES) or phosphate produced broader bands. Osmotic expanders such as saccharides, though preserving cell viability excellently, decrease electrophoretic velocity and thus separation capacity. The decrease in cell viability observed in glycine media could be compensated for by addition of Ca2. Band broadening caused by methodologically specific velocity flow profiles could be reduced to a negligible level by coating the chamber walls with albumin and by appropriate adjustment of sample flow rate and liquid curtain velocity. Under the optimum conditions described, selective cell loss and artificial change in electrophoretic mobility of the cells during operation can be disregarded. The main reason for cell loss was cell aggregation at low ionic strength, which can be prevented or reversed by treatment of the cells with deoxyribonuclease.

Animals

Hollow-fibre affinity cell separation system for CD34+ cell enrichment.

A hollow-fibre immunoadsorption system has been developed for the purification of CD34+ cells from mononuclear cells. This cell separation technique is based on the use of uniform surface fluid shear stress to fractionate cells that attach to the inside surface of hollow fibres. Monoclonal antibody to the CD34 antigen was covalently coupled to the lumenal surface of cuprophan minidialysers (surface area 220 cm2). After the selective adsorption of CD34+ cells (28 min), a depleted fraction was collected at 5 dynes/cm2 followed by washes at 10 and 25 dynes/cm2. Antigen-positive cells were recovered after incubation with chymopapain. The device was tested by using peripheral blood mononuclear cells from seven patients who had received granulocyte colony-stimulating factor and chemotherapy. The average number of cells processed was 1.3 +/- 0.2 x 10(8) (+/- S.E.M.), and the preselection incidence of CD34+ cells ws 1.6 +/- 0.6% (range 0.21-4.13%; n = 7). The enrichment purity was 94.4 +/- 3.1%, and 61 +/- 9% of input CD34+ cells were recovered in the enriched fraction (n = 4). Enrichment resulted in a 3.3 +/- 0.1% log10 depletion of CD34- cells (n = 4). Hollow-fibre affinity cell separation has potential as a medium to large-scale cell enrichment technology.

Antibodies, Monoclonal

Effects of target antigen density on the efficacy of immunomagnetic cell separation.

Immunomagnetic cell separation uses binding of an antibody to its epitope to identify the target cell, which is then removed by attachment to an anti-immunoglobulin-coated paramagnetic bead, and passage through a magnetic field. This method has previously been shown to be less sensitive to the effects of low target antigen density than are other cell elimination methods, such as complement-mediated lysis. In this paper we demonstrate that, with certain antibody/target cell combinations, the efficiency of immunomagnetic depletion can be adversely affected by high expression of the target antigen. This can occur by two non-mutually exclusive mechanisms. These are (i) steric hindrance of bead binding due to crowding of monoclonal antibodies on the cell surface; and (ii) binding of the monoclonal antibody molecule in a configuration that is poorly-accessible to the anti-immunoglobulin immobilized on the microspheres. The predominant effect operating in any system can be determined by analysis of the cells remaining after the separation procedure. In both cases pre-attachment of the monoclonal to the beads results in improved separation efficiency. These results emphasize the necessity of optimizing experimental conditions in each system that is investigated.

Antibodies, Monoclonal

Antigen-binding T cells as helper cells. Separation of helper cells by immune rosette formation.

The spleen T cells from mice immunized 6 days earlier with either chicken gamma globulin (CGG) or with donkey erythrocytes (DRC) were rosetted with CGG-coated sheep erythrocytes or with DRC. The immune rosettes (RFC) (antigen-binding cells) were separated from the bulk of nonrosette-forming cells (non-RFC) by 1-g velocity sedimentation and the RFC and non-RFC tested for helper activity in cooperative antihapten responses in vitro. RFC or non-RFC were mixed with normal or hapten-primed spleen cells, challenged with the appropriate hapten-carrier conjugate and cultured for 4 days in Marbrook tissue cultures. The helping activity was quantitated from the numbers of antihapten antibody-producing cells generated per culture. The results show that specific helper cell activity could be selectively recovered in the immune rosette-forming cell population whereas the non-RFC population was depleted of help. These findings indicate that the helper T cells express specific antigen binding receptors.

Animals

[Preliminary results of the 2nd multicenter study. Thrombocytapheresis with the Fresenius AS-104 blood cell separator and ring study of cell counting. Section of Therapeutic and Preparative Hemapheresis of the DGTI].

Only multicenter studies on cell separators give valid data to compare different cell separators. The aim of the 2nd multicenter study was to evaluate the separation protocol, software version V 4.61, of the Fresenius AS-104 cell separator for efficiency and deviation from predicted yields. Plateletpheresis data from twelve hemapheresis centers, using identical apheresis protocols and cell counting methods, were registered and statistically analyzed. Additionally, the counting methods of the centers were controlled by a ring study with biweekly external cell count trials. To get a comparison, the apheresis data, which depend on the center effects, were corrected by the values from the ring study. Preliminary results of 380 runs are 45.2 +/- 8.1% for the separation effectivity, 1.95% deviation from the predicted yield, whereby 90% of all runs deviated less than 20% from the predicted yield. 50% of products had a WBC contamination below 6 x 10(6).

Blood Volume

Buffy coat and cell separator granulocyte concentrates. Comparison of cell content and in vitro granulocyte function.

Buffy coat granulocyte concentrates were prepared manually from single fresh whole blood donations after centrifugation. The erythrocyte, granulocyte and platelet numbers in these concentrates were compared to cell numbers in concentrates obtained by mechanical leukapheresis using intermittent flow centrifugation. Buffy coats contained approximately half the number of granulocytes and three times the number of erythrocytes per unit volume than cell separator concentrates. There was no difference in platelet numbers. Thus to give a therapeutic dose of granulocytes equivalent to that obtained by cell separation, 2-3 times greater volume of buffy coat concentrates would be required. In vitro granulocyte function, as measured by migration, phagocytosis, and Candida killing was also compared in buffy coat and cell separator concentrates. The only difference found was reduced Candida killing in the buffy coat granulocytes. The possible clinical use of buffy coat concentrates, as a source of granulocytes, is discussed.

Blood Cell Count

Magnetic affinity colloid (MAC) cell separation of leukemia cells from autologous bone marrow aspirates.

A colloidal suspension of Co2B with avidin irreversibly adsorbed to the surface has been used with biotinylated antibodies and lectins to eliminate specific cell populations from mixtures with peripheral blood or bone marrows. Using the monoclonal antibodies CF-1 and PM-81 with this magnetic affinity colloid (MAC), we can eliminate five logs of K562 cells from mixtures with peripheral blood or marrow cells as determined by a linear limiting dilution clonogenic assay. We have also used this separation to eliminate clonogenic leukemia cells from fresh samples of peripheral blood and bone marrow from relapsed acute leukemia patients. Using CF-1 alone or in combination with PM-81, we eliminated two logs of colonies and clusters of leukemia cells from the fresh samples. The same antibodies used with MAC separation of hematologically normal marrows allow recovery of greater than 30% of the hematopoietic progenitors.

Bone Marrow Cells

Comparison of two blood cell separators in collecting peripheral blood stem cell components.

To ensure that a sufficient number of CD34+ cells are collected for an allogeneic blood progenitor cell transplant, the most effective blood cell separator should be used to collect peripheral blood stem cell (PBSC) components. We compared the effectiveness of two blood cell separators. We gave 29 healthy people 7.5 or 10 micrograms kg-1 of granulocyte colony stimulating factor (G-CSF) daily for 5 days and collected one PBSC component with either a Fenwal CS3000 (n = 15) or a Cobe Spectra (n = 14) blood cell separator. The volume of blood processed was the same for each machine (8.4 +/- 1.0 L; range = 4.9-9.4 L for the CS3000 and 8.9 +/- 1.0 L; range 6.7-10.9 L; P = 0.71). The components collected with the CS3000 contained more mononuclear cells (39.6 +/- 21.9 x 10(9) compared with 26.9 +/- 5.6 x 10(9), P = 0.02) and fewer neutrophils (1.38 +/- 1.88 x 10(9) compared with 5.53 +/- 8.71 x 10(9), P = 0.001). The total number of CD34+ cells collected with the two instruments was the same (470 +/- 353 x 10(6) for the CS3000 and 419 +/- 351 x 10(6) for the Spectra; P = 0.64) as was the number of CD34+ cells collected per litre of whole blood processed (55.9 +/- 42.0 x 10(6) L-1 compared with 45.9 +/- 37.9 x 10(6) L-1; P = 0.59). The mononuclear cell collection efficiency was greater for the CS3000 (82.4 +/- 54.9% compared with 53.3 +/- 14.1; P = 0.04) but the CD34+ cell collection efficiencies were the same (87.4 +/- 61.1% for the CS3000 compared with 56.3 +/- 23.5% for the Spectra; P = 0.07). In conclusion, both blood cell separators collected components which contained large numbers of CD34+ cells, but those collected with the CS3000 contained fewer neutrophils and the CS3000 was more efficient at collecting mononuclear cells.

Adult

Selective removal of sickle cells with the IBM 2997 continuous flow blood cell separator.

Partial red cell exchange transfusion is used to manage several complications of sickle cell anemia. Reports have stressed the safety, ease, and speed of red cell exchange procedures performed with blood cell separators, but little information exists concerning operating conditions for the most efficient removal of hemoglobin S (HbS) containing cells. We performed 13 red blood cell exchange transfusions with the IBM 2997 continuous flow blood cell separator on two previously transfused adult homozygous (SS) sickle cell patients. We used both a single stage and a dual stage disposable pathway and varied rotor speed, collection port, and collection interface independently. The patients' baseline percentage HbS ranged from 28 to 64% (mean = 46%); post exchange values ranged from 19.1 to 46% (mean = 32%). Thirty-three of 34 specimens collected from the white cell or platelet port showed a higher percentage of HbS in the collection line compared to simultaneous patient samples. Mean enrichment was 9.4% (range = -4.0 to 35.5%). There was an inverse relationship between the hemoglobin concentration and the percentage of HbS in the collected specimens (p = 0.001; N = 45). Differential separation of sickle cells should decrease the volume of blood required for partial red cell exchange of selected SS patients.

Anemia, Sickle Cell

E-cadherin distribution in interleukin 6-induced cell-cell separation of ductal breast carcinoma cells.

E-cadherin is expressed in both the ZR-75-1-Tx and the ZR-75-1-Ro sublines of ductal breast carcinoma cells and is concentrated at cell-cell borders as shown by immunocytochemical examination. Free cell borders generally show no or little staining. The localized decrease in E-cadherin expression observed after interleukin 6 (IL-6) treatment of either subline correlates with the increase in free cell borders as IL-6 causes cell-cell separation. As we previously reported, many IL-6-treated ZR-75-1-Tx cells round up and detach from the substratum while ZR-75-1-Ro cells remain adherent and display prominent processes. The results are consistent with the view that E-cadherin expression is not responsible for the marked difference in the IL-6-induced phenotypes in these cell lines, although the localized decrease may play a role in cell-cell separation. ZR-75-1-Tx cells are deficient in desmosomes and show a wider intercellular space than ZR-75-1-Ro cells. Alternative mechanisms involving different aspects of the interlinked cytoskeletal and cell adhesion structures are considered to account for the IL-6-induced antimorphogenetic effect.

Antibodies, Monoclonal

Studies on dispersed pancreatic exocrine cells. II. Functional characteristics of separated cells.

The functional characteristics of separated guinea pig pancreatic exocrine cells have been examined following dissociation of the gland by a procedure described in the previous paper (J. Cell Biol. 1974. 63:1037). The ability of isolated cells to incorporate labeled amino acids into secretory proteins was assessed biochemically and by quantitative electron microscope autoradiography. Incorporation remained linear for up to 4-h incubation at levels equivalent to those of pancreatic slices; over 95% of the exocrine cells in the population were viable, and all appeared to be equally active in incorporating amino acids. The capacity of separated cells to transport, concentrate, and store exportable proteins was monitored by electron microscope autoradiography on populations pulse labeled with [(3)H]leucine and chase incubated for 4 h. The same overall pathway previously mapped in pancreatic slices was followed by secretory proteins in separated cells although in quantitative studies a defect was noted in the rate of conversion of condensing vacuoles to zymogen granules. Secretogogue responsiveness was assessed by monitoring discharge of labeled secretory proteins or of amylase in response to carbamylcholine and caerulein to the medium. While the separated cells released secretory proteins linearly for up to 4 h in response to both secretogogues, the net release was approximately 50% less than previously noted for pancreatic slices and required a ten times higher concentration of stimulant. The defect may represent alteration in receptors due to the protease used for dissociation. Our data indicate, however, that separated exocrine cells retain their ability to process secretory proteins stepwise and vectorially which is consistent with preservation of structural polarity.

Amylases

Purging and haemopoietic progenitor cell selection by CD34+ cell separation.

Tumour cell contamination of autologous peripheral blood stem cell samples (PBSC) and bone marrow (BM) is frequent. Enrichment of CD34+ stem cells is a promising approach to purging tumour cells from autografts without damaging progenitor cells. Breast cancer cells were seeded (10(-3)-10(-7)) into mononuclear cells from G-CSF-mobilised PBSC and BM harvests from patients without breast cancer. CD34+ cells were enriched from mixtures either by immunomagnetic separation (Isolex-50, and MiniMACS) or by biotin-streptavidin immunoaffinity columns (Ceprate-LC). CD34+ cell fractions were determined by FACS, cancer cells were detected immunocytochemically with an anti-pancytokeratin antibody. The CD34+ cells were enriched with a median purity of 92.2% (43.5-96.1) (n = 17) (Isolex-50), 96.5% (66.6-99.2) (n = 17) (MiniMACS) and 77.9% (31.4-93.6) (n = 15) (Ceprate-LC) from PBSC and BM harvests. The percentages of median recovery of CD34+ cells were 30.8% (18.6-71.8) (Isolex-50), 69.9% (39.1-100) (MiniMACS) and 42.9% (23.7-100) (Ceprate-LC). The median tumour cell reductions in log steps were 3.7 (2.9-4.3) (n = 13) (Isolex-50), 3.5 (2.6-4.3) (n = 13) (MiniMACS) and 1.5 (0.9-2.9) (n = 17) (Ceprate-LC). Results were compared statistically by univariate analysis. Purity was significantly (P < 0.05) better after MiniMACS selection. Recovery rates were significantly different between all devices tested. Tumour cell purging was superior after immunomagnetic separation (P < 0.001). Tumour cell purging is a main objective of CD34+ selection in the autologous setting. Our in vitro data clearly indicate that immunomagnetic separation is more efficient in the prevention of accidental reinfusion of contaminating tumour cells compared to immunoaffinity. However, it is not yet known if the same results can be obtained with fresh contaminating tumour cells.

Antigens, CD34

Production of IL-8 and IL-4 by positively and negatively selected CD4+ and CD8+ human T cells following a four-step cell separation method including magnetic cell sorting (MACS).

Highly enriched CD4+ and CD8+ human T cells were obtained from peripheral blood using a relatively simple and inexpensive method consisting of four steps: separation of mononuclear cells on Lymphoprep, removal of adherent monocytes by incubation in plastic petri dishes, removal of B cells, NK cells and further depletion of nonadherent monocytes by panning with anti-CD19, -CD16, -CD14, -CD11b and -CD33 mAb, and separation of CD4+ and CD8+ T lymphocytes by magnetic cell sorting (MACS). Cell culture for up to 48 h showed preservation of function by both positively and negatively selected cells as determined by production of IL-8. Although the cell separation procedure had no effect on interleukin-2 receptor (IL-2R, CD25) expression, it induced production of IL-4 by both T cell subsets selected positively, implying cell activation by ligation of CD4 and CD8 molecules. Irrespective of the mode of separation, CD8+ T cells produced more IL-4, a cytokine which is associated with a Th2-type cytokine profile of CD4+ T cells. We conclude that our method for separating T cells into their CD4+ and CD8+ subsets results in high cell purities with preservation of function, as determined by cytokine generation. If enriched cells are to be used for functional studies we recommend isolation by negative selection which has less effect on cell function. The relevance of the finding that CD8+ T cells can be an important source of IL-4 remains to be elucidated.

CD4-Positive T-Lymphocytes

Harvest of young red cells on an automated cell separator.

Red cells can be fractionated by age on a blood processor (Model 2991, IBM). However, little data exist on processing a product for transfusion. This report details a method for collecting young erythrocyte (YE) units containing a mean hemoglobin content of 56.43 +/- 1.39 (SEM) grams. Enrichment with YEs was indicated by greater activity of the enzyme pyruvate kinase (PK) in aliquots of YE units. The mean ratio of PK activity in the young red cell product compared to unfractionated blood was 1.14 +/- 0.03 (SEM). An increased PK ratio was noted in 23 of 26 units studied. Based on the PK ratio, the mean age of the erythrocytes was 46 days, compared to 60 days for standard units of blood. In the 6 units assayed, the reticulocyte count was increased. Collection of YE units was relatively easy, no untoward donor reactions were observed, and no deleterious effects developed in the recipient. Although these data suggest enrichment with a young population of red cells, YE units produced by this method are experimental. Routine use of this procedure awaits demonstration of a significant decrease in transfusion frequency in patients receiving YE units for chronic red cell therapy.

Bloodletting

Analysis of physical parameters of discrete cell populations. (Double data control by combining specific density and sedimentation velocity cell separation techniques).

Physical cell separations are employed in a number of investigations in cell biology, immunology, haematology, etc., when the study of homogeneous cell populations is required. Differences in physical characters are reflected in the various functions and differentiation stages of the individual cell lines, which can be concentrated and separated into discrete cell classes by these methods. The correct utilization of the separation techniques mainly depends on the knowledge of the physical laws on which they are based. This paper discusses the theoretical background and a practical application of a combined separation procedure which uses velocity sedimentation and linear density gradient and also gives a double check of the physical data obtained in the different experiments. As an example of this analysis, cells from the lymph nodes of Hodgkin's patients were separated, and the physical parameters as well as some sources of 'error' in the experimental results obtained with these 'Hodgkin's cells' are reported and discussed.

Cell Separation