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Biomedical subjects

M Kamijo

Publications and source records attributed to M Kamijo.

At least 19 recordsLinked to original sources

Immunoglobulin improves a model of acute motor axonal neuropathy by preventing axonal degeneration.

BACKGROUND: The action mechanism of IV immunoglobulin (IVIg) for Guillain-Barré syndrome has yet to be clarified. OBJECTIVE: To evaluate clinical, histologic, and immunologic effects in a disease model of acute motor axonal neuropathy (AMAN) treated by IVIg. METHODS: Rabbits were sensitized with gangliosides including GM1 and divided randomly into two groups at disease onset. One group received IV homologous gamma-globulin (400 mg/kg/day) for 5 days (n = 15), and the other received saline (n = 15). Disease severity was scored (0 to 13 points) daily. Sixty days after onset, anti-GM1 antibodies were tested by ELISA, and the number of degenerative axons was counted in spinal anterior roots. RESULTS: Between both groups at onset, there was no difference in any characteristics including clinical score. The IVIg group had faster recovery than the saline group (p = 0.03). The percentage of rabbits that improved by a score of < or =4 was higher in the IVIg (53%) than in the saline (13%) group 60 days after onset (p = 0.03). Anti-GM1 IgG titers 60 days after onset did not differ between the groups. The anterior roots of rabbits surviving 60 days after onset showed lower frequency of axonal degeneration in the IVIg-treated (n = 11; mean 4.5%) than in the saline-treated (n = 8; mean 11.1%) rabbits (p = 0.01). CONCLUSIONS: The therapeutic efficacy of IVIg in an AMAN model was confirmed. IVIg may not affect the production or catabolism of anti-GM1 IgG, but it may prevent axonal degeneration of motor nerves.

Animals↗

A small dose of the immunosuppressive agent FK506 (tacrolimus) protects peripheral nerve from ischemic fiber degeneration.

The immunosuppressant agent FK506 (tacrolimus) has proven to be neuroprotective against brain ischemia, but there are no data on potential neuroprotective effects of FK506 in peripheral nerve ischemia. We examined the potential effects of two doses of FK506 in protecting peripheral nerve from ischemic fiber degeneration. Ischemia in the left sciatic nerve of the rat was produced by injecting 2 x 10(6) microspheres (14 microm) into the left femoral, hypogastric, and superior gluteal arteries in proportions of 47%, 37%, and 17%, respectively. After embolization, FK506 was injected into the left femoral, hypogastric, and superior gluteal arteries in doses of 9.4, 7.4, and 3.4 microg, respectively, for the high-dose group and 4.7, 3.7, and 1.7 microg, respectively, for the low-dose group. The control rats were injected with saline. FK506 treatment resulted in dramatic behavioral improvement in nerve function, in the number of functioning nerve fibers, and in the salvage of a majority of nerve fibers from ischemic fiber degeneration in a dose-dependent fashion. These results suggest that a small dose of FK506 protects peripheral nerve from ischemic fiber degeneration and that it may have potential in the treatment of ischemic neuropathy.

Action Potentials↗

Physiological and morphometric analyses of neuropathy in sucrose-fed OLETF rats.

To investigate the characteristic features of diabetic neuropathy in type 2 diabetes mellitus, Otsuka Long-Evans Tokushima fatty (OLETF) rats, an animal model of human type 2 diabetes mellitus, and non-diabetic Long-Evans Tokushima Otsuka (LETO) rats were fed with or without sucrose and/or an aldose reductase inhibitor, [5-(3-thienyl) tetrazol-1-yl] acetic acid (TAT), for 24 weeks, and physiological, biochemical and morphological assessments were performed. Sucrose administration caused remarkable hyperglycemia in OLETF rats but not in LETO rats. Sucrose-fed OLETF rats demonstrated delayed nerve conduction velocity, decreased coefficient of variation of R-R interval, reduced sciatic nerve blood flow, increased platelet aggregation activity, a lower concentration of erythrocyte 2,3-diphosphoglycerate, and decreased Na+/K+-ATPase activity in sciatic nerves, compared with the non-sucrose-fed OLETF and LETO rats. TAT prevented all these deficits except hyperglycemia. Sorbitol and fructose accumulation and myo-inositol depletion in tail nerves of sucrose-fed OLETF rats were ameliorated by TAT. Myelinated fiber size and density in sural nerves of sucrose-fed OLETF rats were decreased and increased, respectively, compared with non-sucrose-fed OLETF and LETO rats. These morphological abnormalities were normalized by TAT. These observations suggest that the sucrose-fed OLETF rat developed diabetic neuropathy not only electrophysiologically but also histologically, and that an aldose reductase inhibitor, TAT, possesses therapeutic value for the treatment of diabetic neuropathy.

2,3-Diphosphoglycerate↗

Animal model of axonal Guillain-Barré syndrome induced by sensitization with GM1 ganglioside.

Some humans develop the axonal form of Guillain-Barré syndrome after receiving bovine brain ganglioside. On sensitization with the ganglioside mixture, all of a group of rabbits injected developed high anti-GM1 IgG antibody titers, flaccid limb weakness of acute onset, and a monophasic illness course. Pathological findings for the peripheral nerves showed predominant Wallerian-like degeneration, with neither lymphocytic infiltration nor demyelination. IgG was deposited on the axons of the anterior roots, and GM1 was proved to be present on the axons of peripheral nerves. Sensitization with purified GM1 also induced axonal neuropathy, indicating that GM1 was the immunogen in the mixture. A model of human axonal Guillain-Barré syndrome has been established that uses inoculation with a bovine brain ganglioside mixture or isolated GM1. This model may help to clarify the molecular pathogenesis of the syndrome and to develop new treatments for it.

Animals↗

[A case of acute sensory neuropathy associated with cytomegalovirus infection].

We report a non-compromised patient with acute sensory neuropathy (ASN) developed following cytomegalovirus (CMV) hepatitis. A 67-year-old man admitted to a hospital because of acute hepatic dysfunction accompanying fever and skin eruption. One month later, when hepatic function normalized, numbness and clumsiness started acutely first in the right upper limb next to all the extremities. He found difficulty in walking in a couple of weeks. One month after the commencement of neurological illness, he was referred to us. On examination, he had sensory limb ataxia. His gait was wide-based, and Romberg sign was positive. Position sense was severely diminished in the extremities. Skin sensation was also attenuated distally, while no motor weakness was noted. Tendon reflexes were almost absent. Nerve conduction studies revealed absent sensory potentials in all but the left median nerve, in which amplitude was 5.5 microV with sensory conduction velocity of 40.7 m/s. Motor conduction studies, on the other hand, appeared normal except for a slight focal delay in the right ulnar nerve across the elbow. Mild increase in F-wave latencies was noted. A sural nerve specimen taken two months after the neurological onset showed a marked decrease in myelinated fiber density and active fiber degenerations accompanying axonal sproutings. Sjögren syndrome and paraneoplastic neuropathy were excluded serologically and by comprehensive imaging techniques. Although IgM anti-CMV antibody was not detected, serum IgG anti-CMV antibody was positive and significantly increased during the neurological illness. The intrathecal antibody synthesis of IgG anti-CMV antibody was suggested by a low serum/cerebrospinal fluid (CSF) antibody ratio and a high CSF IgG index. From these observations, it was strongly suggested that acute hepatitis and subsequent ASN were associated with CMV infection in this patient. Although some cases with post-infectious ASN have been previously reported, this is the first report of ASN preceded by CMV infection.

Acute Disease↗

Ytterbium-decreasing Streptomyces sp. and its naphthoquinone-pigment production in the presence of rare-earth elements.

We screened for oligotrophic microorganisms capable of decreasing the concentration of ytterbium (Yb), a representative of the heavy rare-earth elements, in a culture medium. From 476 strains of oligotrophic microorganisms (grown on 1/100 diluted nutrient agar) isolated from soil and river water samples, 5 strains capable of reducing the concentration of Yb in diluted nutrient broth containing 5 ppm Yb were selected. Among them, a strain capable of reducing the concentration of all rare-earth elements to a great extent was identified as Streptomyces sp. (strain YB-1). This strain produced redish-purple pigment(s) only in the presence of rare earths, but not in that of other metals. The pigment was extracted with ethyl acetate and purified by a series of column chromatography steps. From the results of structural analysis using ultraviolet or infrared absorption spectrometry and 13C-NMR, the pigment was determined to be a kind of naphthoquinone similar to nanaomycin produced by a Streptomyces sp. These results suggested that rare earths might affect the physiological activity of this strain.

Journal Article↗

Non-cyclic AMP-dependent, positive inotropic cyclodepsipeptides with negative chronotropy.

The effects of natural cyclodepsipeptides (CDPs) on isolated rat cardiac tissue preparations were examined in vitro. Destruxin A, destruxin B (DB), roseotoxin B (RB), and roseocardin (RC), a novel CDP, each caused a concentration-dependent increase in the contraction force of the right atrium and the papillary and trabecular muscles of the right ventricle at 0.6 to 600 microM. RB, destruxin A, and DB did not affect the half-decay time of relaxation of the papillary muscles, but RC slightly prolonged it, although to a much lesser extent than BA 41899, a calcium sensitizer. This inotropic effect is accompanied by a prolongation of the automatic atrial contraction intervals. The RB-induced increase in the contraction force of papillary muscle was not affected by phentolamine, propranolol, pyrilamine, or cimetidine. RB- and RC-induced increases in the contraction force of papillary muscles were not affected by 3-isobutyl-1-methylxanthine or carbachol. Neither peptide changed the cyclic AMP levels in trabecular muscles. Neither RB nor RC affected the activity of Na(+),K(+)-ATPase from rat kidney. Neither RB, RC, nor DB affected the resting membrane potential or the apparent input resistance of papillary muscles. These results suggest that these CDPs produce both non-cyclic AMP-dependent positive inotropic and negative chronotropic effects.

Animals↗

Vi-deficient and nonfimbriated mutants of Salmonella typhi agglutinate human blood type antigens and are hyperinvasive.

We generated nonfimbriated mutants from both Vi-positive and -negative Salmonella typhi to analyze the role of type 1 fimbriae and Vi-antigen in bacterial invasion. A Vi-defective mutant of S. typhi GIFU 10007-3 was more invasive than the wild-type strain GIFU 10007. The wild-type strain expressing Vi-antigen did not agglutinate both Saccharomyces cerevisiae and human erythrocytes but Vi-defective mutants were able to agglutinate S. cerevisiae and human erythrocytes. Nonfimbriated mutants from Vi-negative GIFU 10007-3 lost the ability to adhere to S. cerevisiae but still could agglutinate human erythrocytes. The Vi-negative mutant increased secreted proteins and became 5-fold more invasive than the wild-type strain. Nonfimbriated Vi mutants became 50-120-fold more invasive than the wild-type GIFU 10007. To determine why nonfimbriated Vi mutants still agglutinate human red blood cells, we searched bacterial proteins that could bind human blood-type antigens. We finally identified a candidate 37 kDa outer membrane protein that recognized fucosyl-galactose, a structure common to blood type A, B and H antigens.

ABO Blood-Group System↗

Roseocardin, a novel cardiotonic cyclodepsipeptide from Trichothecium roseum TT103.

A new cyclodepsipeptide, designated roseocardin, was isolated from the culture broth of Trichothecium roseum TT103. Roseotoxin B and destruxins A and B were also isolated during the same procedure. The structure of roseocardin was determined by EI-MS, NMR and X-ray crystallographic analysis. Roseocardin as well as the other cyclodepsipeptides were shown to produce positive inotropic effects on rat heart muscles.

Animals↗

Primary preventive and secondary interventionary effects of acetyl-L-carnitine on diabetic neuropathy in the bio-breeding Worcester rat.

The abnormalities underlying diabetic neuropathy appear to be multiple and involve metabolic neuronal and vasomediated defects. The accumulation of long-chain fatty acids and impaired beta-oxidation due to deficiencies in carnitine and/or its esterified derivatives, such as acetyl-L-carnitine, may have deleterious effects. In the present study, we examined, in the diabetic bio-breeding Worcester rat, the short- and long-term effects of acetyl-L-carnitine administration on peripheral nerve polyols, myoinositol, Na+/K+ -ATPase, vasoactive prostaglandins, nerve conduction velocity, and pathologic changes. Short-term prevention (4 mo) with acetyl-L-carnitine had no effects on nerve polyols, but corrected the Na+/K+ -ATPase defect and was associated with 63% prevention of the nerve conduction defect and complete prevention of structural changes. Long-term prevention (8 mo) and intervention (from 4 to 8 mo) with acetyl-L-carnitine treatment normalized nerve PGE(1) whereas 6-keto PGF(1-alpha) and PGE(2) were unaffected. In the prevention study, the conduction defect was 73% prevented and structural abnormalities attenuated. Intervention with acetyl-L-carnitine resulted in 76% recovery of the conduction defect and corrected neuropathologic changes characteristic of 4-mo diabetic rats. Acetyl-L-carnitine treatment promoted nerve fiber regeneration, which was increased two-fold compared to nontreated diabetic rats. These results demonstrate that acetyl-L-carnitine has a preventive effect on the acute Na+/- K+_ATPase defect and a preventive and corrective effect on PGE1 in chronically diabetic nerve associated with improvements of nerve conduction velocity and pathologic changes.

6-Ketoprostaglandin F1 alpha↗

Impaired intracellular signal transduction in gastric smooth muscle of diabetic BB/W rats.

The pathophysiological mechanisms responsible for diabetic gastroparesis remain unclear. Diabetes mellitus occurs spontaneously in 90% of a partially inbred colony of BB/W rats. This animal model resembles human insulin-dependent diabetes and is suitable for investigating the mechanism of diabetic gastroparesis. Diabetic BB/W rats were killed 6 mo after the onset of diabetes. Muscle contraction experiments and [3H]acetylcholine release studies were performed with muscle strips of the gastric body. Biochemical measurements of inositol trisphosphate (IP3) and protein kinase C (PKC) in gastric muscle were performed to characterize abnormalities of the intracellular signal transduction system in gastric myocytes. Circular muscle contractions in response to direct myogenic stimulants, carbachol (10(-7) - 10 (-3)M) or substance P (10(-7) - 10(-5)M), were significantly impaired in diabetic BB/W rats compared with controls. Similarly, muscle contractions in response to NaF (10 mM), a direct stimulant of G proteins, were also impaired in diabetic BB/W rats. In contrast, muscle contractions in response to KCl (25-75 mM) were similar between control and diabetic BB/W rats, indicating normal voltage-dependent Ca2+ entry in muscle strips obtained from diabetics BB/W rats. [3H]acetylcholine release from gastric myenteric plexus in response to electrical transmural stimulation remained intact in diabetic BB/W rats. In separate studies, we demonstrated that carbachol (10(-6) - 10(-4)M) -induced IP3 responses were significantly reduced in diabetic rats compared with control. In addition, there was also impairment of translocation of PKC in diabetic BB/W rats. These observations indicate that myogenic impairment occurred in diabetic BB/W rats. This resulted from altered intracellular signal transduction involving abnormal IP3 production and PKC translocation.

Acetylcholine↗

Ex vivo expansion of umbilical cord blood hematopoietic progenitor cells by combinations of cytokines.

Ex vivo expansion of hematopoietic progenitor cells in the umbilical cord blood mononuclear cells (CB-MNC) was investigated in liquid culture system with various combinations of cytokines (stem cell factor [SCF], interleukin [IL]-3, IL-6, granulocyte-colony stimulating factor [G-CSF], erythropoietin [EPO], and interferon [INF]-gamma). Non-lineage-committed hematopoietic progenitor cells and lineage committed hematopoietic progenitor cells were represented as CD34+CD38- and CD34+CD38+ subpopulations, respectively. Although absolute CD34+CD38- cell numbers decreased even in the presence of multicytokines, the combinations of SCF plus IL-6 and SCF plus IL-3 plus IL-6 plus IFN-gamma were significantly effective in maintaining CD34+CD38- cells than the other combinations (P < 0.05). After 4 weeks of culture. CD34+CD38- cells disappeared in all combinations of cytokines. Absolute CD34+CD38+ cell numbers increased in the presence of cytokines. Maximal expansion of CD34+CD38+ cells were observed in the combinations of SCF plus IL-3 plus IL-6 plus EPO (19.8 +/- 3.3-fold) and SCF plus IL-3 plus IL-6 plus G-CSF (18.3 +/- 2.6). The combination of SCF plus IL-3 plus IL-6 was also effective to expand CD34+CD38- cells (15.8 +/- 3.9). However, the expansion was transient and they decreased to zero within 3 weeks. In the combinations of SCF plus IL-6 and SCF plus IL-3 plus IL-6 plus INF-gamma, maximal expansion was inferior to the others but CD34+CD38+ cells were maintained more than 4 weeks. These results suggested that the indication of CBT can be expanded into older children by ex vivo augmentation of CB hematopoietic progenitor cells using multi-cytokines.

ADP-ribosyl Cyclase↗

Effects of cytokines on hematopoietic progenitor cells in cord blood, in bone marrow, and in peripheral blood mobilized by chemotherapy and G-CSF.

We compared the effects of various combinations of cytokines (stem cell factor [SCF], interleukin [IL]-3, IL-6, granulocyte-colony stimulating factor [G-CSF], erythropoietin [EPO]) among the growth of human hematopoietic progenitor cells from cord blood (CB), bone marrow (BM), and peripheral blood mononuclear cells (MNC) mobilized by chemotherapy and G-CSF (PB) in a semi-solid medium. Macroscopic colonies, that were visible to the naked eye, were formed from PB-MNC within 1 week even without cytokines. They consisted of blasts containing macrophage-like cells with immature nuclei on Wright stain, and were strongly accelerated by IL-3. Macroscopic colonies were also formed from CB-MNC. However, they appeared after 1-3 weeks and synergistic effects of SCF with other cytokines, especially EPO, were prominent. Macroscopic colonies were not formed from BM-MNC. Granulocyte-colony stimulating factor was effective in increasing colony forming units of granulocyte macrophage from BM-MNC and they appeared between 1 and 2 weeks. These results suggested that the quality of hematopoietic progenitor cells was different among blood sources. This might lead to different bone marrow recovery patterns after transplantation of each blood source. The appropriate cytokines should be added to evaluate their exact potential.

Adult↗

Establishment of a human pro-B cell line (JKB-1) and its differentiation of preestablished bone marrow stromal cell layer.

A human pro-B cell line, named JKB-1, was established from the bone marrow of a 16-year-old girl with acute lymphoblastic leukemia (ALL) in relapse. The origin of the JKB-1 cell line was indicated by its chromosomal and immunologic similarity to the patient's fresh leukemic cells. This cell line has been growing for more than 14 months in suspension culture medium and had a doubling time of about 24 hours. JKB-1 expressed terminal deoxynucleotide transferase (TdT) and early antigens (HLA-DR, CD19, CD24) of B cells, with heavy chain gene rearrangement. However, it did not express late antigens (CD10, CD20, CD21, CD22, CD23) of B cells, light chain gene rearrangement, and cytoplasmic mu-chain. These results suggested that JKB-1 is at the stage of "pro-B" cell or early B-cell precursors. This cell line was induced to differentiate after 7 days of co-incubation with irradiated bone marrow stromal cells because of the expression of pre-B cell antigens (CD10, CD20), cytoplasmic mu-chain, light chain gene rearrangement, and disappearance of TdT, JKB-1 cells adhered to a preestablished bone marrow stromal cell layer with string-like processes under scanning electron microscope. When JKB-1 cells were separated from the stromal layer by a cyclopore membrane with 0.45 micron pore size, they did not differentiate. Bone marrow stromal cell conditioned medium could not induce differentiation either. Thus it was suspected that direct contact between JKB-1 cells and stromal cells was required for differentiation. In methylcellulose semisolid medium, the colony size and number of JKB-1 cells were increased by stem cell factor (SCF), or interleukin (IL)-3, or IL-7, but they were decreased by IL-6. Moreover, SCF synergized with IL-3 or IL-7 to stimulate the proliferation of JKB-1 cells. Because there are very few reproducible models for examining early stages of human B-cell differentiation, the JKB-1 cell line would be useful for studying the relationship between human B-cell differentiation and bone marrow microenvironment, as well as leukemogenesis.

Adolescent↗

Galactosemia produces ARI-preventable nodal changes similar to those of diabetic neuropathy.

The present study was designed to examine the development of structural changes, characteristic of diabetic neuropathy, in chronic galactosemia and their responsiveness to inhibition of the polyol-pathway. Sprague-Dawley rats weighing 70-90 g were given a 50% galactose diet continued for 4 or 8 months. Half of these animals were simultaneously given the aldose reductase inhibitor (ARI) WAY 121-509. ARI-treatment normalized galactitol and myoinositol levels in the sciatic nerve. At 4 months, sciatic nerve conduction velocity (NCV) in galactosemic rats was reduced by 30% which was prevented in ARI-treated rats. At 8 months galactosemia reduced NCV to 58% of control values, while ARI-treatment for 8 months improved NCV to 71% of control values. ARI-treatment prevented in galactosemic rats nodal structural changes characteristic of diabetic neuropathy, whereas axonal atrophy was not affected by ARI-treatment, which may in part account for the only partial prevention of the NCV slowing at 8 months. Nerve fiber regeneration was increased 4-fold in ARI-treated rats compared with untreated galactosemic rats. These data suggest that chronic galactosemia produces a neuropathy structurally similar to diabetic neuropathy. The lack of an ARI-treatment effect on axonal atrophy suggests that this defect is not polyol related in galactosemia.

Aldehyde Reductase↗

Factors affecting the efficiency of peripheral blood stem cell collection in children treated with chemotherapy and G-CSF.

This retrospective study attempts to clarify the optimal timing for peripheral blood stem cell (PBSC) collection after conventional chemotherapy followed by granulocyte-colony stimulating factor (G-CSF) administration. Leukapheresis was performed 32 times in nine children with various cancers during bone marrow recovery phase following transient pancytopenia after chemotherapy. (On two occasions, leukapheresis was excluded because many leukemic blasts were included). When the number of white blood cells (WBC) exceeded 1.8 x 10(10)/L after administration of G-CSF (200 micrograms/m2, continuous infusion), many more CD34+ cells were contained in the collected peripheral mononuclear cells (P > 0.02) and a sufficient number of PBSC for transplantation (> or = 10 x 10(8) CD34+ cells/kg) was obtained after one run in 15 of 17 leukapheresis sessions. In contrast, sufficient PBSC were obtained only in one of 13 runs of leukapheresis when the number of WBC was < 1.8 x 10(10)/L. The number of WBC on the day when PBSC were collected correlated with collected nuclear cell number (r = 0.60), but not with the CD34+ cell ratio. The ratio was higher only when both platelets and reticulocytes increased in parallel with WBC. We conclude that sufficient PBSC collection is possible after conventional chemotherapy using G-CSF, when hematopoietic recovery is parallel, without the use of high-dose chemotherapy.

Antigens, CD↗

Umbilical cord blood as a rich source of immature hematopoietic stem cells.

To investigate immaturity of hematopoietic progenitor cells in umbilical cord blood mononuclear cells (CB-MNC), the formation of macroscopic colonies and mixed-cell colonies was assayed by methylcellulose culture with various combinations of cytokines (stem cell factor [SCF], interleukin [IL]-3, IL-6, granulocyte-colony stimulating factor [G-CSF], erythropoietin [EPO]) and compared with bone marrow (BM)-MNC. Moreover, distribution of the subpopulations divided by CD34, CD38, HLA-DR and CD33 was compared by flow-cytometry. Colonies derived from CB-MNC were so large that they could be observed with the naked eye and consisted of a variety of types of hematopoietic cells. Mixed-cell colonies were formed to a much greater extent in CB-MNC than in BM-MNC. Addition of EPO, IL-3, and SCF had rapid effects on the growth of mixed-cell colonies. The subpopulations of immature hematopoietic progenitor cells (CD34+, CD38-, HLA-DR-), which are supposed to be able to differentiate into hematopoietic precursors and stromal cells, were significantly higher in CB-MNC (8.7 +/- 6.6%) than in BM-MNC (0.0 +/- 0.1%; P < 0.001). These results suggest that CB is a rich source of immature hematopoietic progenitor cells compared to BM.

Antibodies, Monoclonal↗

Peripheral blood progenitor cell transplantation estimated by three-colour (CD34, HLA-DR, CD33) flow cytometry.

The relationships between transfused cell number of CD34+ cell subpopulations divided by HLA-DR and CD33 antibodies and hematopoietic recovery patterns after peripheral blood progenitor cell transplantation (PBPCT) subsequent to myeloablative chemoradiotherapy were investigated in 14 children with cancer. Both logarithm of transfused CD34+ cell number/10(6)/kg and logarithm of transfused cell number/10(6)/kg of the CD34+HLA-DR+CD33+ subpopulation, which is supposed to be myeloid-committed cells, were correlated with myeloid recovery after PBSCT, though they were not correlated with erythroid or platelets recovery. On the other hand, logarithm of transfused cell number/10(6)/kg of CD34 + HLA-DR-CD33-subpopulation, which is supposed to be immature progenitor cells, was not correlated with myeloid recovery but correlated with erythroid recovery and platelet recovery. These results suggested that rapid myelopoiesis after PBPCT occurs following transfusion of sufficient numbers of myeloid-committed cells and complete hematopoietic reconstitution occurs after transfusion of sufficient numbers of immature hematopoietic progenitor cells.

Adolescent↗