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Biomedical subjects

Isaac Yaniv

Publications and source records attributed to Isaac Yaniv.

At least 37 records · Page 2Linked to original sources

Critical early events in hematopoietic cell seeding and engraftment.

Durable hematopoietic stem cell engraftment requires efficient homing to and seeding in the recipient bone marrow. Dissection of cellular and molecular mechanisms by retrospective analysis of functional engraftment studies imposes severe limitations on the understanding of the early stages of this process. We have established an experimental approach for in vivo functional imaging of labeled cells at the level of recipient bone marrow in real time. The adhesive interaction of hematopoietic cells with the bone marrow stroma evolves as the most important early event. Adhesion to the marrow, rather than the vascular endothelium, determines the efficiency of both homing and seeding, and is absolutely essential to maintain cell viability in the marrow. Seeding and engraftment may be improved either by bypassing homing or by localized transplant of a large number of cells in a relatively small marrow space. There is functional redundancy in the molecular pathways that mediate the cell-stroma interaction, such that blockage of a single pathway has only minor effect on homing and seeding. We hypothesize that successfully seeding-engrafting cells undergo extensive phenotypic changes as a consequence of interaction with the stroma, without engaging in rapid proliferation. Surprisingly, Fas-ligand appears to promote hematopoietic cell engraftment by immunomodulatory and trophic effects.

Animals↗

Prediction of high risk Ewing's sarcoma by gene expression profiling.

Ewing's sarcoma (ES) is the second most common primary malignant bone tumor in children and adolescents. Currently accepted clinical prognostic factors fail to classify ES patients' risk to relapse at diagnosis. We aimed to find a new strategy to distinguish between poor and good prognosis ES patients already at diagnosis. We analysed the gene expression profiles of 14 primary tumor specimens and six metastases from ES patients, using oligonucleotide microarray analysis. The over-expression of two genes was validated by quantitative PCR using the LightCycler system. We identified two distinct gene expression signatures distinguishing high-risk ES patients that are likely to progress from low-risk ES patients with a favorable prognosis of long-term progression-free survival. The microarray-based classification was superior to currently used prognostic parameters. Over-expressed genes in the poor prognosis patients included genes regulating the cell cycle and genes associated with invasion and metastasis, while among the downregulated genes were tumor suppressor genes and inducers of apoptosis. Our results indicate the existence of a specific gene expression signature of outcome in ES already at diagnosis, and provide a strategy to select patients who would benefit from risk-adapted improved therapy.

Adolescent↗

Induction of tolerance using Fas ligand: a double-edged immunomodulator.

Apoptosis mediated by Fas ligand (FasL) interaction with Fas receptor plays a pivotal regulatory role in immune homeostasis, immune privilege, and self-tolerance. FasL, therefore, has been extensively exploited as an immunomodulatory agent to induce tolerance to both autoimmune and foreign antigens with conflicting results. Difficulties associated with the use of FasL as a tolerogenic factor may arise from (1) its complex posttranslational regulation, (2) the opposing functions of different forms of FasL, (3) different modes of expression, systemic versus localized and transient versus continuous, (4) the level and duration of expression, (5) the sensitivity of target tissues to Fas/FasL-mediated apoptosis and the efficiency of antigen presentation in these tissues, and (6) the types and levels of cytokines, chemokines, and metalloproteinases in the extracellular milieu of the target tissues. Thus, the effective use of FasL as an immunomodulator to achieve durable antigen-specific immune tolerance requires careful consideration of all of these parameters and the design of treatment regimens that maximize tolerogenic efficacy, while minimizing the non-tolerogenic and toxic functions of this molecule. This review summarizes the current status of FasL as a tolerogenic agent, problems associated with its use as an immunomodulator, and new strategies to improve its therapeutic potential.

Animals↗

Hematopoietic stem cell transplantation for de novo acute megakaryocytic leukemia in first complete remission: a retrospective study of the European Group for Blood and Marrow Transplantation (EBMT).

Acute megakaryoblastic leukemia (M7 AML) is a highly aggressive disease. We evaluated outcomes in 57 children (11 with Down syndrome) and 69 adults with M7 AML after first complete remission (CR1) following autologous or HLA-identical allogeneic transplantation. Characteristics of the recipients of autologous transplants (38 children, 37 adults) were, respectively: median age, 1.7 and 46 years; non-total body irradiation (non-TBI) conditioning regimen, 97% and 70%; bone marrow as stem cell source, 74% and 43%. Characteristics of the recipients of allogeneic transplants (19 children, 32 adults) were, respectively: median age, 2.8 and 37 years; non-TBI regimen, 63% and 42%; bone marrow as stem cell source, 95% and 69%. Autologous transplantation benefited children more; the relapse rate was high in adults. Results for autologous transplantation were (children and adults, respectively): engraftment, 90% and 100%; 3-year treatment-related mortality (TRM) rate, 3% and 8%; relapse rate, 45% and 64%; leukemia-free survival (LFS) rate, 52% and 27%; overall survival (OS) rate, 61% and 30%. After allogeneic transplantation, TRM was fairly low in children and adults, and relapse rates were lower than after autologous transplantation. Results for allogeneic transplantation were, respectively: engraftment, 95% and 90%; TRM, 0% and 26%; relapse rate, 34% and 28%; LFS, 66% and 46%; OS, 82% and 43%). We conclude that M7 AML patients in CR1 (except children with Down syndrome, who already have better outcomes) can benefit from transplantation.

Adolescent↗

High frequency of genomic instability in Ewing family of tumors.

We tested Ewing sarcoma tumors for microsatellite instability (MSI) and loss of heterozygosity (LOH) to investigate the role of genomic instability (GI) in this sarcoma. We detected a high frequency of GI (57%), mostly on 1p and 11p, 35% and 30%, respectively. Patients with GI compared to those with stable genome had a median progression-free survival (PFS) and overall survival (OS) of 24 months and 70 months, compared with 39 and 84 months, respectively. MSI was observed in 48% (11/23) of the tumor samples. Low-MSI (L-MSI) patients (with MSI presented at only one locus) tended to have a better prognosis, 70% PFS, compared with 25% in the high-MSI (H-MSI) group (P=0.13). LOH without MSI did not correlate with progression. H-GI (MSI and/or LOH in > or =30% of tested markers) tended to associate with an adverse prognosis (P=0.28), and correlated significantly with the pelvic site of the primary tumor (P=0.02). The instability of 1p was not associated with progression, while alterations at the 11p locus tended to correlate with a more aggressive disease (P=0.18). Our data suggest that GI may play a role in Ewing sarcoma clinical behavior and outcome.

Adolescent↗

The predictive potential of molecular detection in the nonmetastatic Ewing family of tumors.

BACKGROUND: Tumors in the Ewing family (EFTs) are the second most common bone tumors in children and adolescents. Despite aggressive chemotherapy, one-third of patients with localized tumor still may develop recurrences. This implies that not all tumor cells are eradicated and that the patients may have a level of residual disease. EFTs are characterized by specific chromosomal translocations that result in chimeric transcripts that can be detected with reverse transcriptase-polymerase chain reaction (RT-PCR) analysis. METHODS: The authors report the prognostic potential of the positive chimeric transcript (EWS/FLI1) in bone marrow (BM) and/or peripheral blood (PBL) in 26 patients with EFT during a long follow-up period (median, 61 months). RESULTS: At diagnosis, 43% of patients had positive RT-PCR BM results, with no correlation to tumor progression (P = 0.3). During follow-up, 58% of patients had positive RT-PCR results in their last sample analyzed (BM and/or PBL). A highly significant correlation between the presence of the chimeric transcript and disease progression was detected (P = 0.0028). In a multivariate analysis, the percentage of tumor necrosis (P = 0.007) and RT-PCR results during follow-up (P = 0.02) remained significant prognostic markers. In 10 of 11 patients who developed disease progression, BM and/or PBL samples were positive for the chimeric transcript before evidence of overt clinical recurrence. CONCLUSIONS: Occult tumor cells in BM and/or PBL samples during long follow-up are strong predictors of recurrent disease in patients with nonmetastatic EFTs.

Adolescent↗

Germ-line ATM gene alterations are associated with susceptibility to sporadic T-cell acute lymphoblastic leukemia in children.

A major feature of ataxia-telangiectasia (A-T) is an increased risk of cancer, particularly of lymphoid malignancies. We studied ATM gene involvement in leukemic cells derived from 39 pediatric T-cell acute lymphoblastic leukemias (ALLs). Two types of sequence changes--truncating and missense--were identified in 8 T-cell ALL samples: 3 truncating changes, all previously identified in A-T (R35X, -30del215, 2284delCT), and 3 missense variants (V410A, F582L, F1463C) were found, none associated with loss of heterozygosity (LOH). In all patients studied, the mutation was present in the germ-line. A-T carriers, defined by the finding of truncating mutations, were found to be 12.9 times more frequent than in the normal population (P = 0.004). A normally ethnically matched population was screened for the 3 missense variants, and their frequency was significantly more prevalent (4.9-fold excess) than in the normal population (P = 0.03). Our data suggest there is some evidence of an association between missense alterations in the ATM gene and T-cell ALL. A significant difference in the mean age at diagnosis of T-cell ALL was noted between patients harboring an ATM sequence change and those with no change, 5.4 years and 9.7 years, respectively (P = 0.001). No ATM alterations were identified in relapse samples, indicating that ATM does not play a role in disease progression. The high prevalence of germ-line truncating and missense ATM gene alterations among children with sporadic T-cell ALL suggests an association with susceptibility to T-cell acute leukemia and supports the model of predisposition to cancer in A-T heterozygotes.

Ataxia Telangiectasia↗

Prothrombotic factors in children with otitis media and sinus thrombosis.

OBJECTIVE: Venous sinus thrombosis (VST) is the second most common intracranial complication of acute otitis media (AOM). There is some evidence that hereditary and acquired prothrombotic disorders are risk factors for VST. The aim of the present study was to evaluate whether children with AOM complicated VST have a prothrombotic tendency, which might have important therapeutic and preventive implications. STUDY DESIGN: Retrospective. METHODS: The files of children hospitalized at Schneider Children's Medical Center of Israel, a tertiary referral center, from 1999 to 2002, because of AOM complicated by acute mastoiditis and VST were reviewed. All children underwent laboratory work-up for hypercoagulability. RESULTS: Seven children met the study criteria. Of these, five had prothrombotic disorders, namely elevated levels of lipoprotein apolipoprotein (Lp[a]) (n = 4), antibodies to beta 2-glycoprotein and to cardiolipin (markers of antiphospholipid syndrome) (n = 4), and heterozygosity for factor V Leiden mutation (n = 1). One child had three abnormalities, two children had two abnormalities, and two children had one abnormality. CONCLUSIONS: A prothrombotic tendency may exist in children with AOM complicated by mastoiditis and VST. Further studies are needed to evaluate its extent.

Acute Disease↗

Prenatal diagnosis in Li-Fraumeni syndrome.

PURPOSE: The hallmark of Li-Fraumeni syndrome (LFS), a familial cancer syndrome, is constitutional TP53 mutation. The authors addressed the complex question of predictive prenatal genetic testing for cancer risk associated with inheritance of TP53 mutation. METHODS: A classic LFS family including the proband (a 20-month-old boy with rhabdomyosarcoma), his 36-year-old father with osteosarcoma, and his 40-year-old paternal aunt with bilateral breast cancer were identified as carriers of a TP53 germline mutation, a novel 1 base pair deletion in exon 5. A few years later, the mother became pregnant twice, and the parents requested prenatal diagnosis on each occasion. Genetic counseling, psychological evaluation, and support were provided by a multidisciplinary team including a pediatric oncologist, a geneticist, a psychosocial worker, a prenatal care provider, and an ethical representative. After providing overall information on LFS, including the high risk of developing secondary multiple neoplasms in LFS survivors, the committee approved prenatal diagnosis at the request of the family. RESULTS: In the two pregnancies, the two fetuses were found to be carriers of the same mutation. Nine years from diagnosis of the first tumor, the proband, and a month later his father, developed second tumors, multifocal osteosarcoma and leiomyosarcoma, respectively. CONCLUSIONS: Children with primary tumors belonging to LFS should be considered for screening for germline mutations and genetic counseling by a multidisciplinary team. Whether family members are found to be positive or negative as carriers, such measures may provide, by reducing uncertainty, psychological benefit to high-risk families.

Adult↗

Classical and molecular cytogenetic abnormalities and outcome of childhood acute myeloid leukaemia: report from a referral centre in Israel.

The incidence of cytogenetic abnormalities in childhood de novo acute myeloid leukaemia (AML) and its prognostic significance was assessed in an Israeli paediatric referral centre. Cytogenetic analysis was successful in 86 of 97 children (< 20 years of age) diagnosed between 1988 and 2002 with de novo AML. Fluorescence in situ hybridization analysis detected new information in 11 of them, leading to reassignment in cytogenetic group classification. The incidence of the various cytogenetic subgroups was as follows: normal - 9%; t(11q23) - 22%; t(8;21) - 13%; t(15;17) - 8%; inv(16) - 3.4%; abn(3q) - 4.6%; 7/7q-(sole or main) - 5.8%; del(9q)(sole) and +21(sole) - 4.6% each; t(8;16) - 2.3%; t(6;9), t(1;22), +8(sole) - 1.1% each; and miscellaneous - 18%. The overall survival (OS) and event-free survival (EFS) (4 years) for 94 patients treated with the modified Berlin-Frankfürt-Münster (BFM) AML protocols (non-irradiated) were 59.9% (SE = 5%) and 55.7% (SE = 5%), respectively, and for the favourable t(8;21), t(15;17) and inv(16), OS was 60% (SE = 15%), 83% (SE = 15%) and 100% respectively. For the normal group it was 62% (SE = 17%), miscellaneous 64% (SE = 12%), t(11q23) 44.6% (SE = 11%) and of the -7/7q-, del(9q)(sole) or t(6;9), none had survived at 4 years. The incidence of cytogenetic subgroups in the Israeli childhood AML population and their outcome were similar to other recently reported paediatric series. Cytogenetic abnormalities still carry clinical relevance for treatment stratification in the context of modern chemotherapy.

Acute Disease↗

Molecular characterization of three novel Fanconi anemia mutations in Israeli Arabs.

OBJECTIVES: In a previous study, we investigated the molecular basis of Fanconi anemia (FA) in 13 unrelated Israeli Jewish FA patients and identified four ethnicity specific mutations. In the present study we extended our study to Israeli Arab patients. METHODS: We studied three consanguineous families with nine FA patients and an additional unrelated patient. DNA single-strand conformation polymorphism of each exon of the FANCA and FANCG genes was followed by sequence analysis of the aberrantly migrating fragments and by reverse transcriptase-polymerase chain reaction (RT-PCR) analysis of the splice-site mutations identified. RESULTS: Three unique disease-causing mutations were identified: (i) FANCA gross deletion of exons 6-31; (ii) FANCA splice-site mutation IVS 42-2A>C; (iii) FANCG splice-site mutation IVS4+3A>G. Sequence analysis of the FANCA gross deletion revealed recombination between two highly homologous Alu elements. cDNA analysis of the two splice mutations suggested intron 42 retention in FANCA IVS 42-2A>C and exon 4 skipping in FANCG IVS4+3A>G. The clinical condition of eight patients with FANCA mutations was severe. CONCLUSIONS: Two unique FANCA mutations and one FANCG mutation were identified in Israeli Arab FA patients. Deletion of FANCA exon 6-31 as in previously described gross deletions was within introns rich in Alu repeats. To the best of our knowledge, the FANCA IVS 42-2A>C mutation is the first in this gene to result in intron retention. Further analysis of FA mutations will enable prenatal diagnosis and a rational therapeutic approach including frequent monitoring and early bone marrow transplantation.

Abnormalities, Multiple↗

ATM gene mutations are not involved in medulloblastoma in children.

Primitive neuroectodermal tumors (PNET)-medulloblastomas account for approximately 20% of all brain tumors in children. Ataxia-telangiectasia is an autosomal recessive neurological disorder with predisposition to cancer. The most common neoplasms are lymphoid malignancies and solid tumors, including central nervous system tumors, astrocytomas, and medulloblastomas. To investigate the potential role of the ATM gene in the pathogenesis of medulloblastoma, 13 tumors were screened for ATM mutations and 9 for loss of heterozygosity (LOH) of the ATM locus and flanking regions. In none of the tumors were mutations identified. In five of them, the well-known polymorphisms D1853N and F858L were identified and in all 22 tumors, the wild-type allele was preserved. The frequency of the polymorphisms was similar to that reported in our and other normal populations. The LOH of the 11q region (including the ATM gene), detected in 25% of informative cases, is consistent with the molecular and cytogenetic reports of deletion of chromosome 11 in 13%-41% of medulloblastomas. These results indicate that mutations in the ATM gene do not play a role in the pathogenesis of medulloblastoma in children. The LOH in the 11q region may suggest hidden unidentified tumor suppressor genes that may be involved in the malignant transformation.

Adolescent↗

Unrelated cord blood transplantation for childhood acute myeloid leukemia: a Eurocord Group analysis.

Results of unrelated cord blood transplantation (UCBT) in childhood acute myeloid leukemia (AML) have not been previously reported. We analyzed 95 children receiving UCB transplants for AML (20 in first complete remission [CR1], 47 in CR2, and 28 in more advanced stage). Poor prognosis cytogenetic abnormalities were identified in 29 cases. Most patients received a 1 or 2 HLA antigens-mismatched UCB transplants. The median number of collected nucleated cells (NCs) was 5.2 x 107/kg. Cumulative incidence (CI) of neutrophil recovery was 78% +/- 4%, acute graft-versus-host disease (GVHD) was 35% +/- 5%, and 100-day transplantation-related mortality (TRM) was 20% +/- 4%. In multivariable analysis, a collected NC dose higher than 5.2 x 107/kg was associated with a lower 100-day TRM. The 2-year CI of relapse was 29% +/- 5% and was associated with disease status. The 2-year leukemia-free survival (LFS) was 42% +/- 5% (59% +/- 11% in CR1, 50% +/- 8% in CR2, and 21% +/- 9% for children not in CR). Children with poor prognosis cytogenetic features had similar LFS compared with other patients (44% +/- 11% vs 40% +/- 8%). In CR2, LFS was not influenced by the length of CR1 (53% +/- 11% in CR1 < 9.5 months compared with 50% +/- 12% in later relapses). We conclude that UCBT is a therapeutic option for children with very poor-prognosis AML and who lack an HLA-identical sibling.

Acute Disease↗

der(11)t(11;17): a distinct cytogenetic pathway of advanced stage neuroblastoma (NBL) - detected by spectral karyotyping (SKY).

Conventional cytogenetic, molecular cytogenic and genetic methods disclosed a broad spectrum of genetic abnormalities leading to gain and loss of chromosomal segments in advanced stage neuroblastoma (NBL). Specific correlation between the genetic findings could delineate distinct genetic pathways, of which the biology and prognostic significance is as yet undetermined. Using spectral karyotyping (SKY) and fluorescence in situ hybridization (FISH) on metaphases from 16 patients with advanced stage NBL, it was possible to explore the whole spectrum of rearrangement within complex karyotypes and to detect hidden recurrent translocations. All translocations were unbalanced. The most prevalent recurrent unbalanced translocations resulted in 17q gain in 12 patients (75%), 11q loss in nine patients (56%), and 1p deletion/imbalance in eight patients (50%). The most frequent recurrent translocation was der(11)t(11;17) in six patients. Three cytogenetic pathways could be delineated. The first, with six patients, was characterized by the unbalanced translocation der(11)t(11;17), detected only by SKY, resulting in the concomitant 17q gain and 11q loss. No MYCN amplification or 1p deletion (except one patient with 1p imbalance) were found, while 3p deletion, and complex karyotypes were common. The second subgroup, with four patients, had 17q gain and 1p deletion, and in two patients 11q loss, that was apparent only by FISH. 1p deletion occurred through der(1)t(1;17) or del(1p). The third subgroup of four patients was characterized by MYCN amplification with 17q gain and 1p deletion, very rarely with 11q loss (one patient) through a translocation with a non-17q partner. The SKY subclassifications were in accordance with the findings reported by molecular genetic techniques, and may indicate that distinct oncogenes and suppressor genes are involved in the der(11)t(11;17) pathway of advanced stage NBL.

Chromosome Aberrations↗

Characterization of adhesion and viability of early seeding hematopoietic cells in the host bone marrow in vivo and in situ.

OBJECTIVE: Homing and seeding are essential early events of engraftment that depend on the interaction of hematopoietic cells with the host bone marrow (BM) stroma. We used optical techniques to characterize the adhesion patterns and viability of bone marrow cells (BMC) at the level of recipient BM microenvironment. MATERIALS AND METHODS: Donor cells labeled with PKH dyes were tracked in vivo through an optical window placed over the femoral epiphysis of nonconditioned recipients. Adhesion to BM stroma was assessed with laser tweezers, and viability was assayed by fluorescence resonance energy transfer of the pair PKH67-propidium iodide (PI) in freshly excised femurs. RESULTS: Three hours after intravenous injection, an estimated 30% of the labeled cells in the femur were immobile. The percent of adherent cells increased to 74+/-3% and 97+/-2% on days +1 and +3, respectively, (p<0.001), and similar fractions of cells were viable at these times (p<0.001). The observation that all adherent cells were viable suggested a correlation between these parameters. The day +3 BM-seeded cells rescued secondary myeloablated allogeneic hosts. Seeding in the host BM was accompanied by (4.5-fold) enrichment of cells expressing SCA-1 and was 22-fold higher for lineage-negative Lin(-) cells compared to lineage-positive cells (p<0.001). Pretreatment of Lin(-) cells with anti-VLA-4 antibodies caused a 2.4-fold decrease in homing and a 4.6-fold decrease in seeding (p<0.001). CONCLUSIONS: The data indicate that adhesion is rate-limiting determinant of homing and early seeding, and a crucial event that preserves the viability of cells toward successful engraftment. The role of VLA-4 is more important for primary seeding than it is for homing to the BM.

Animals↗

Epilepsy associated with pediatric brain tumors: the neuro-oncologic perspective.

The aim of the study was to correlate the onset of epilepsy with the disease stage in children with brain tumors through treatment and follow-up in the oncologic department. The study sample consisted of a heterogenous group of 219 children who were aged 6 months to 11 years, manifested brain tumors, and had been treated and monitored in the Department of Pediatric Oncology of the Schneider Children's Medical Center of Israel since 1991. The overall rate of epilepsy was 14.6%, which rose to 38% in those with cortical tumors. Two major causes of epilepsy were evident: tumor-related and treatment-related. The first group could be further divided into epilepsy starting at or before diagnosis of brain tumor, epilepsy associated with tumor progression, and epilepsy starting at end-stage disease. The second group could be divided into epilepsy caused by radiation damage to the brain and epilepsy related to another postoperative state. The data emphasize the significance of striving for complete tumor resection and the potential damage from the use of radiotherapy to the brain. The authors suggest that a change in local neurotransmitter balance may be the mechanism underlying tumor-related epilepsy.

Adolescent↗

Psychiatric aspects of pediatric cancer.

Recent progress in the understanding of psychological and social factors related to cancer is important because cancer is the most common fatal disease of childhood and adolescence. Research interest in children and adolescents who have survived cancer also has increased over the past several years. Attention has focused on the long-term social outcomes of these children and adolescents. With increased survival, quality-of-life issues have assumed a more prominent role in the treatment protocols being developed for childhood cancer. The presence of long-lasting uncertainty about recurrence of the disease or second malignancy together with recognition of cognitive and physical side effects of treatment make childhood cancer a potentially chronic condition. Survivors experience actual or potential threats to future health; more than half have medical cognitive or psychological problems.

Adolescent↗

The topologic and chronologic patterns of hematopoietic cell seeding in host femoral bone marrow after transplantation.

The early stages of homing, seeding, and engraftment of hematopoietic stem and progenitor cells are poorly characterized. We have developed an optical technique that allows in vivo tracking of transplanted, fluorescent-tagged cells in the host femurs. In this study we used fluorescence microscopy to monitor the topologic and chronologic patterns of hematopoietic cell seeding in the femoral bone marrow (BM) of mice. PKH-labeled cells homed to the femur within minutes after injection into a peripheral vein. Most cells drifted within the marrow space and gradually seeded in clusters close to the endosteal surface of the epiphyseal cortex. Three days after transplantation 85% to 94% (14%) of PKH-labeled cells in the femoral marrow were located within 100 microm of the epiphyseal bone surface (P <.001 versus the more central cells), whereas labeled cells were absent in the femoral diaphysis. Primary seeding of juxtaendosteal, epiphyseal marrow occurred independently of recipient conditioning (myeloablated and nonconditioned hosts), donor-recipient antigen disparity, or the phenotype of the injected cells (whole BM and lineage-negative cells) and was consistently observed in secondary recipients of BM-homed cells. Seeding in regions close to the epiphyseal bone was also observed in freshly excised femurs perfused ex vivo and in femurs assessed without prior placement of optical windows, indicating that the site of primary seeding was not affected by surgical placement of optical windows. Four to 5 days after transplantation, cellular clusters appeared in the more central regions of the epiphyses and in the diaphyses. Centrally located cells showed decreased PKH fluorescence, suggesting that they were progeny of the seeding cells, and brightly fluorescent cells (quiescent first-generation seeding cells) were observed close to the bone surface for as long as 24 days after transplantation. These data indicate that the periphery of the femoral marrow hosts primary seeding and that quiescent cells continue to reside in the periphery for weeks and do not divide. The site of proliferation of transplanted cells is the center of the marrow space.

Animals↗