Search PubMed⌕ Search

Biomedical subjects

C D Hillyer

Publications and source records attributed to C D Hillyer.

At least 55 records · Page 3Linked to original sources

Large-volume leukapheresis for peripheral blood stem cell collection in patients with hematologic malignancies.

Large-volume leukapheresis (LVL, 15-35 L) was performed in two groups of patients (n = 10) with hematologic malignancies to obtain peripheral blood stem cells for bone marrow rescue following high-dose chemotherapy. The target cell count was 7 x 10(8) mononuclear cells (MNCs = lymphocytes and monocytes) per kg of body weight. Group A patients (n = 4) were studied on Day 1 of LVL, and components were collected from them as four sequential samples. Total MNCs collected averaged 1.29 x 10(10), total colony-forming-units granulocyte-macrophage (CFU-GM) averaged 12.1 x 10(6), and a 1.8-fold mobilization of CFU-GM was observed (p < 0.05, Sample 1 vs. Sample 4). Group B patients (n = 6) were studied throughout the three consecutive planned days of 5-hour LVL. An average of three LVL procedures per patient was performed (range, 1.25-4), and an average of 27 L (range, 24-33) of blood per LVL was processed. The blood:ACD-A ratio was 24:1 with 3000 units of heparin per 500 mL of ACD-A; heparin was also added to the collection bags. The component had an average hematocrit (Hct) of 0.02 and MNC content of 93 percent. The patients' pre-LVL and post-LVL average Hct varied significantly (before Day 1, 0.36 +/- 0.08; after Day 3, 0.28 +/- 0.06; p < 0.05). Platelet counts also decreased, with post-Day 3 counts averaging 19 percent of the average pre-Day 1 counts (p < 0.05). A decrease in the average MNC count after LVL was significant on Day 1 only (p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Preservation↗

Colony-forming unit culture of bone marrow and peripheral blood stem cells: comparison of commercially available media.

Increased utilization of the granulocyte-macrophage colony-forming unit (CFU-GM) assay for quality control, dosing, and clinical investigation of peripheral blood (PB) stem cell and bone marrow (BM) products led us to compare two commercially available media ("Ready-Mix" [RM] from Terry Fox, Vancouver, Canada and Stem Cell CFU Kit [SCCK]) from GIBCO, Grand Island, NY-Baxter Healthcare Corp., Deerfield, IL) to our standard laboratory media (SLM). Aliquots of mononuclear cells (MNC) from PB and BM donors were cultured in triplicate in the three media and CFU-GM and erythroid burst-forming units (BFU-E) were enumerated. Similar colony growth was achieved in all media for PB; modestly increased BM CFU-GM were noted in SCCK. SCCK and RM are easy to use, are commercially available with lot-controlled conditioned media (PHA-LCM), and may facilitate the standardization of CFU assays in blood banks and bone marrow processing laboratories.

Bone Marrow Cells↗

Donor origin Rh antibodies as a cause of significant hemolysis following ABO-identical orthotopic liver transplantation.

A group A, D-positive patient underwent orthotopic liver transplantation from a group A, D-negative (cde/cde) donor. Anti-D and -E were eluted from the recipient's red cells and were found in the recipient's serum 13 days later, at which time significant hemolysis developed. These Rh antibodies appear to he secondary to passive transfer of sensitized donor lymphocytes, a rare finding following liver transplantation.

Journal Article↗

Prompt engraftment using autologous peripheral blood stem cells for double autologous bone marrow rescue.

A patient with Hodgkin's Disease, stage IIIA, was treated for recurrent disease with autologous peripheral blood stem cells after ablative chemotherapy. Bone marrow rescue occurred promptly and his disease was significantly reduced. Ablative chemotherapy was administered again and a second bone marrow rescue with peripheral blood stem cells was successful. Sequential peripheral blood stem cell bone marrow rescue, following high dose chemotherapy, may provide an alternative approach in selected patients.

Adult↗

Increase in circulating colony-forming units-granulocyte-macrophage during large-volume leukapheresis: evaluation of a new cell separator.

Peripheral blood stem cell (PBSC) collection was evaluated in two groups of normal donors who underwent large-volume leukapheresis on a blood cell separator. In Group A (n = 10), a 3-hour leukapheresis was performed. An average of 11.8 L of blood was processed with a mean flow rate of 66 mL per minute and a collection rate of 3 mL per minute. The PBSC product contained a mean 1.4 x 10(10) mononuclear cells (MNCs) (lymphocytes and monocytes), 1.27 x 10(6) colony-forming units-granulocyte-macrophage (CFUs-GM), and an average hematocrit of 4 percent (0.04). Postapheresis blood counts showed significant reductions in MNCs (19%) and platelets (45%) (p less than 0.005). Twenty-four hours later, the MNCs had returned to preapheresis levels. The platelet count returned to baseline only after 7 days. Circulating CFUs-GM remained stable for 3 days after apheresis but were increased twofold by Day 7 after apheresis (p = 0.025). Varying the product hematocrit from 1 percent (0.01) to 13.3 percent (0.13) did not change the number of CFUs-GM collected per MNC. In Group B (n = 4), an average of 18.5 L of blood was processed with a mean flow rate of 94 mL per minute and a collection rate of 3 mL per minute. The PBSC product was collected as four sequential samples and assayed for MNCs and CFUs-GM. Total MNCs averaged 1.7 x 10(10) (an increase of 21% relative to Group A) and CFUs-GM averaged 3.08 x 10(6) (an increase of 143%). Mean MNCs did not vary significantly among the four samples. However, CFUs-GM collected per minute (relative to the first sample) did show 1.26-fold (p = 0.001), 1.86-fold (p = 0.011), and 2.52-fold (p = 0.04) increases in the second, third, and fourth samples. These data suggest that MNCs and committed progenitor cells are recruited during large-volume leukapheresis. Moreover, there is a twofold increase in circulating CFUs-GM 1 week after apheresis.

Adult↗

Case report and review: alloimmunization, delayed hemolytic transfusion reaction, and clinically significant anti-Yt(a) in a patient with Beta-thalassemia/sickle cell anemia.

A 26-year-old female with Beta-thalassemia/sickle cell anemia was admitted to the hospital with symptoms of a painful crisis. During the next 4 days her hematocrit decreased to 13 percent, and there was reticulocytopenia. She was transfused with four units of red blood cells that were microscopically incompatible, and the hematocrit increased to 29 percent. Eight days later the patient was readmitted with back pain, hemoglobinuria, and a hematocrit of 27 percent. Anti-E, -c, -Jka, and -Yta were identified. The direct antiglobulin test was positive, and the eluate contained anti-c and -Jka. The patient's hematocrit continued to decrease to 14 percent. Transfusions were withheld and the patient recovered uneventfully. Separate 51Cr red blood cell survival studies showed significantly shortened survival of both autologous and R(1)R(1), Jk(a-), Yt(a+) erythrocytes. This case illustrates the complexity of transfusion management in hemoglobinopathy patients.

Journal Article↗

Severe autoimmune hemolytic anemia in SIVsmm9-infected Macaca mulatta.

One of 15 rhesus macaques infected with SIVsmm9 developed profound hemolysis with spherocytosis, reticulocytosis, and IgG and complement at the red blood cell surface. A female offspring born to this animal developed similar findings. Furthermore, cold agglutinins were noted in samples from both animals. Four of the 13 animals remaining in the cohort had weakly positive antiglobulin tests but were not anemic. Autoimmune hemolytic anemia may be an underrecognized cause of anemia in SIV infection.

Anemia, Hemolytic, Autoimmune↗

Autoimmune hemolytic anemia in Kawasaki disease: a case report.

A 3-year-old boy presented with the fever, conjunctivitis, rash, and lymphadenopathy diagnostic of Kawasaki disease. Treatment with antibiotics, aspirin, and intravenous immunoglobulin was instituted. The hematocrit decreased from 35 percent on admission to 11 percent by hospital Day 10, and the white cell count had increased from 13.7 to 42 x 10(3) per microL, and the patient had a leukoerythroblastic blood smear. The direct antiglobulin test demonstrated IgG but not complement on the red cell (RBC) surface. An acid eluate reacted (titer of 4) with all panel cells in the antiglobulin phase. Intravenous immunoglobulin from the same lot used for treatment did not contain antibody that reacted with the patient's group O RBCs or a panel of group O RBCs, but did contain IgG anti-A and -B (titer of 4). The patient received a transfusion and was given methylprednisone. The direct antiglobulin test and acid eluate were negative 4 days later. The patient had an uneventful recovery. The distinction between antibody-mediated hemolytic anemia and autoimmune hemolytic anemia is important in the treatment of this disease.

Anemia, Hemolytic, Autoimmune↗

EDTA-dependent leukoagglutination.

Leukopenia (WBC 1.9 x 10(9)/L) was reported from an automated cell counter (TOA E-5,000, Symex) on a patient blood sample collected in ethylene diamine tetracetic acid (EDTA). Leukocyte aggregates of 30-50 cells were seen on the peripheral blood smear. Blood samples collected in heparin, citrate, and EDTA had white blood counts (WBC) of 8.1, 8.1, and 2.5 x 10(9)/L. A 0.3-mL aliquot of patient EDTA-plasma mixed with 0.3 mL normal packed cells (NPC) resulted in a WBC of 2.7 x 10(9)/L, a reduction of 58% from the control value. Increasing concentrations of EDTA (0.35-2.16 mg/mL), patient serum, and NPC resulted in a greater than 60% WBC reduction at EDTA concentrations greater than 0.96 mg/mL. Serial dilutions of patient serum in phosphate buffered saline (PBS) showed greater than 50% WBC reduction at a dilution of 1:4. Incubation (0, 1, and 2 hours) (0 degrees C, room temperature [RT], and 37 degrees C) of samples containing patient serum, EDTA, and NPC resulted in the greatest WBC reduction at 2 hours and at RT (60%). Incubation with 0.01 M dithiothreitol (DTT) abolished the ability of patient serum to decrease the WBC. These data suggest an EDTA-dependent, low titer IgM leukoagglutinin.

Adult↗

Malignant granular lymphoproliferation after Epstein-Barr virus infection: partial immunologic reconstitution with interleukin-2.

This report describes a patient who developed a malignant proliferation of granular lymphocytes following Epstein-Barr virus (EBV) infection. For many months, his illness resembled prolonged infectious mononucleosis with persistent fatigue, fever, leukocytosis, and serologic evidence of recent primary EBV infection. After approximately 1 year, however, he developed progressive granular lymphocytosis and extensive lymphocytic infiltration of the bone marrow and liver. Tests for EBV DNA in pre- and postmortem tissue samples using a sensitive DNA hybridization technique were negative. Southern blot analysis of DNA prepared from blood mononuclear cells demonstrated clonal T-cell antigen receptor gene rearrangement. Despite increased numbers of circulating lymphocytes with the morphology and surface phenotype of normal donor natural killer (NK) cells, the patient's NK activity was consistently depressed in a standard in vitro assay. However, in vitro incubation with interleukin-2 (IL-2), but not with alpha- or gamma-interferon, increased the NK activity of the patient's lymphocytes. Intravenous recombinant IL-2 treatment transiently increased the patient's blood NK activity and was associated with seroconversion to EBV nuclear antigens but failed to affect the progression of his disease. Our findings indicate that clonal granular lymphocytic proliferation may develop after EBV infection and confirm the utility of DNA hybridization analysis in distinguishing monoclonal from benign immunoreactive lymphoproliferation. Furthermore, our results suggest that certain functionally inert neoplastic granular lymphocytes acquire NK activity when exposed to IL-2.

Adult↗

Density gradient separation of peripheral blood stem cells: comparison of an automated cell processing device and manual methods.

Peripheral blood stem cells were collected from normal donors by leukapheresis on a cell separator. The leukapheresis product contained 1.5 x 10(10) mononuclear cells (MNCs) and was divided into two aliquots that underwent either automated or manual density gradient separation with ficoll-hypaque and subsequent washing. In the automated process, recovery of MNCs was 85 percent, reduction in platelet content was 64 percent, and the final hematocrit (Hct) was less than 1 percent. The manual separation resulted in 76-percent MNC recovery, a 79-percent reduction in platelet content, and a final Hct of less than 1 percent. The purified MNCs were then placed in methylcellulose culture at a concentration of 4 x 10(5) MNCs per mL. Quadruplicate 1-mL aliquots were cultured, and colonies were counted and classified on Day 14. Comparison of automated and manual ficoll-hypaque separations demonstrated no differences in the total, erythroid, or granulocyte-macrophage colony numbers. The cell processor used is fast, reliable, uncomplicated, and provides a sterile product containing progenitor cells that are not adversely affected by the automated ficoll-hypaque separation.

Cell Separation↗

Evaluation of the red cell storage lesion after irradiation in filtered packed red cell units.

Packed red cell units (n = 10) were filtered and divided equally. One-half unit from each donor was irradiated (x) (3500 cGy). On Days 0, 14, 28, and 42, ATP, K+, Na+, lactate dehydrogenase (LDH), plasma-free hemoglobin (PFH), and pH were determined. The reduction in ATP was greater in the irradiated than the nonirradiated (y) units by Day 42 (mean x-y: -70, p = 0.0005). The increase in K+ was greater in the irradiated than nonirradiated units on Days 14, 28, and 42 (mean x-y: 17-20, p = 0.0001). Decrease in pH and increases in LDH and PFH were significant (p less than 0.05) on Day 42 only. K+ increases added only 1.7 to 2.0 mmol per unit, a difference felt to be clinically insignificant. The changes noted in ATP, pH, LDH, and PFH are significant but minimal on Day 42 and imply that viability changes would also be minimal. These biochemical data support the storage of irradiated units for at least 28 days.

Adult↗

Development of a colorimetric dosimeter for quality control of blood units and irradiators.

The development is reported of a reproducible colorimetric irradiation dosimeter that is easy to prepare as well as to interpret. Optimal chloroform, dithizone, and paraffin concentrations to produce a distinctive color change at > 1500 cGy (optimized for 3000 cGy) were determined by combining various concentrations of each component at 65 degrees C. The melted dosimetric material was poured into molds, allowed to solidify, and irradiated with doses ranging from 0 to 3000 cGy. Color change was evaluated visually and spectrophotometrically to determine reproducibility. Twenty-percent chloroform (wt/wt) and a dithizone concentration of 5.0 x 10(-5) M combined in paraffin (TP-2) produced optimal color change from pink to green after > 1500 cGy. The change was reproducible, and 50 individuals were able to distinguish between irradiated and nonirradiated dosimeters. Additionally, five of five of these individuals correctly ranked five dosimeters in order of increasing irradiation from 0 to 3000 cGy, in increments of 750 cGy. This dosimeter is easy to make and easy to read and may allow blood banks to show unit-by-unit quality assurance for irradiated blood components and quality control of the irradiator itself.

Blood Component Transfusion↗

Low incidence of red cell and HLA antibody formation by bone marrow transplant patients.

BACKGROUND: Bone marrow transplant (BMT) patients, although immunosuppressed, are at risk for the development of red cell (RBC) and HLA antibodies, and they often are given filtered blood in an effort to prevent the latter complication. This study attempts to determine the rate of formation and the specificity of both RBC and HLA alloantibodies in this patient population. STUDY DESIGN AND METHODS: BMT patients (148 received autologous marrow; 45 received allogeneic marrow) from an 18-month period, including patients with leukemia (57 patients), lymphoma (54), breast cancer (68), myeloma (8), myelodysplastic syndrome (5), and aplastic anemia (1), were studied to determine the rate of alloantibody formation to RBC and HLA antigens. A total of 2,410 RBC antibody screens were performed. The patients received 3,921 packed RBCs and 5,915 single-donor platelet units; all were irradiated and administered via white cell-reduction filters. RESULTS: Seven (3.6%) of 193 patients had RBC antibodies upon hospital admission. Four (2.1%) of 193 developed RBC antibodies during the course of BMT: 3 patients had one RBC antibody and 1 patient had two RBC antibodies. RBC antibodies included anti-E (n = 2), anti-M (n = 1), anti-Jkb (n = 1), and anti-Lu14 (n = 1). Thus, 98 percent of patients (189/193) did not develop new (182/186) or additional (7/7) RBC antibodies during BMT. BMT patients were also screened weekly for HLA antibody formation (60-cell panel). Upon admission, 170 (85%) patients were negative. Of these, 8 (4.7%) developed persistent HLA antibodies (mean panel-reactive antibody score, 33 +/- 29%) and 9 (5.3%) were variably positive. Thus, in our setting and population, RBC antibody formation was 0.1 percent per unit transfused, and the HLA alloimmunization rate was 5 to 10 percent. CONCLUSION: As RBC antibody screens are done every Monday, Wednesday, and Friday on this BMT service and as RBC antibody formation is low in these patients, screening for unexpected antibodies might be possible on a more infrequent basis. Also, the rate of HLA alloimmunization in this population receiving filtered blood components is low.

Adult↗

Immune and hematopoietic parameters in HIV-1-infected chimpanzees during clinical progression toward AIDS.

Until recently, chimpanzees were considered susceptible to human immunodeficiency virus type 1 (HIV-1) infection, but refractory to disease induction based on the asymptomatic status of all experimentally infected chimpanzees after over 10 years postinfection (PI). However, a decline in peripheral CD4+ T cells was noted in one chimpanzee (C499) of the Yerkes cohort of HIV-1 infected apes, after 11 years PI concurrent with increasing plasma viral load. These clinical signs were followed by the occurrence of opportunistic infections, thrombocytopenia, and progressive anemia leading to euthanasia. A second chimpanzee (C455) was transfused with blood from C499 collected during the symptomatic stage. Shortly thereafter, this second animal showed a rapid decline in peripheral CD4+ T-cell levels and sustained high viral load. Hematological analyses showed a 50% decrease in CFU-GM for both apes during the symptomatic phase and a reduction of 40% and 73% of the total CFU despite normal levels of CD34+ cells in the bone marrow. Cryopreserved sequential PBMC samples from these two chimpanzees were analyzed for constitutive and PHA-P induced levels of cytokines and chemokines. Data show that whereas there were no detectable constitutive levels of mRNA coding for IL-2, 4, and 10, there appears to be a transient increase in IFN-gamma message level coincident with increased viremia and this IFN-gamma synthesis decreased with disease progression. PHA-induced cytokine mRNA analysis showed low or undetectable levels of IL-4 and IL-10 mRNA in all samples and a marked decrease in the levels of IL-2 shortly after HIV infection. In addition, there was also a gradual decrease in IFN-gamma mRNA with progression of disease. Of interest were the findings of high to normal levels of PHA-induced synthesis of the chemokines MIP-1alpha, MIP-1beta, and RANTES in samples during the asymptomatic and early symptomatic period, which also dramatically decreased at late stages of the disease. These data suggest important roles for IL-2, IFN-gamma, and the chemokines in the regulation of immune responses in HIV-1-infected chimpanzees.

Acquired Immunodeficiency Syndrome↗