Interactions of the Cellular Components of the Hematopoietic Niche

Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 3563-3563 ◽  
Author(s):  
Brahmananda Reddy Chitteti ◽  
Bradley Poteat ◽  
Sonia Rodriguez- Rodriquez ◽  
Nadia Carlesso ◽  
Melissa A. Kacena ◽  
...  

Abstract Hematopoietic Stem Cell (HSC) self-renewal and multilineage differentiation potential is governed by multiple intrinsic and extrinsic parameters. Collectively, these parameters dictate the fate of HSC and underscore the heterogeneity observed within phenotypically defined groups of stem cells. While cell cycle status and the genetic profile of HSCs are critical intrinsic modulators of cell fate, interactions with cytokines, growth factors, and cellular elements of the hematopoietic niche (HN) are key extrinsic regulators of stem cell function. We examined the impact of cellular elements of the HN on stem cell fate and maintenance by analyzing the combined effect of calvaria-derived osteoblasts (OB) and mesenchymal stromal cells (MSC) on cultured murine HSC. Murine bone marrow-derived KSL cells were co-cultured with OB alone, MSC alone, or with mixtures of OB and MSC at different ratios for one week. Cultures were supplemented with SCF, Fl-3, Tpo, IL-3, IL-6, IGF1 & OPN. OB alone, maintained the functional properties of cultured HSCs significantly better than MSC thus corroborating the importance of OB in the overall competence of the HN. On day 7, the fold-increase in the number of LSK cells was 1473 ± 291 in OB cultures, 561 ± 159 in MSC cultures, and 603 ± 263 in OB+MSC cultures (n= 4 for all 3 groups). During the same 7 day-period, the number of CFU in progeny cells expanded 74 ± 15 fold in OB cultures, 23 ± 2 fold in MSC cultures, and 27 ± 15 in OB+MSC cultures (n=3 for all groups). The substantial increase in KSL progeny in OB cultures on day 7 was accompanied by a high percentage of cells in active phases of cell cycle (% G0/G1 = 72.5 ± 7.0, n=3) compared to their counterparts in MSC or OB+MSC cultures. In addition, co-culture of KSL cells with OB resulted in an unexpected higher maintenance of the Sca-1+Lin- phenotype (26.5% ± 2.8%) relative to MSC cultures (4.6% ± 1.0%) and OB+MSC cultures (11.7% ± 1.8%; n=3 for all). Only some of these results were reproduced when KSL cells were cultured in OB-conditioned medium suggesting that cell-to-cell contact may be essential for the observed activities. To assess the in vivo potential of LSK cells maintained in these cultures, the 10-day expansion equivalent of 1,000 LSK cells were competitively transplanted in lethally irradiated congenic mice and chimerism was monitored for the next 4 months. At 1 and 2 months post-transplantation, the level of chimerism sustained by LSK cells maintained in OB cultures for 10 days surpassed or was slightly lower than that observed with freshly isolated LSK cells (72.7% vs 59.7% and 57.4% vs 74.7%, respectively) suggesting that OB culture conditions effectively expanded short-term repopulating cells. At 4 months post-transplantation, mice receiving freshly isolated LSK cells were 83.6% ± 1.8% chimeric compared to 53.7% ± 16.1% for mice transplanted with cells from OB cultures and 31.9% ± 21.4% for mice receiving cells from OB+MSC cultures. Overall, these data suggest that OB-LSK interactions promote the maintenance of both short-term and long-term repopulating cells while MSC suppress the OB-mediated activity. To investigate the mechanism of OB-mediated maintenance of stem cell phenotype and function, we examined Notch signaling using Real-Time Q-PCR on cells maintained in culture for 7 days. Relative to the expression in KSL cells, expression of Notch 2 was elevated in OB cultures and suppressed over 2-fold in cultures of MSC and OB+MSC. Similarly, the expression of Jagged 1 and 2, Delta 1 and 4, Hes 1 and 5, Deltex, and SKP2 was increased in OB cultures and suppressed in MSC and OB+MSC cultures. Collectively, these data illustrate that cell-to-cell contact between OB and KSL cells promotes the in vitro maintenance of long-term and short-term repopulating cells and suggest that this stem cell function-promoting activity is induced in part by the upregulation of Notch-mediated signaling between HSCs and osteoblasts. The suppressive effect imparted by MSC on stem cell maintenance compared to cultures of OB alone suggest that these two cellular elements of the HN have opposite effects on the fate and function of stem cells.

Blood ◽  
2000 ◽  
Vol 95 (9) ◽  
pp. 2829-2837 ◽  
Author(s):  
Stephen J. Szilvassy ◽  
Todd E. Meyerrose ◽  
Barry Grimes

Loss of long-term hematopoietic stem cell function in vitro is associated with cell cycle progression. To determine whether cytokine-induced proliferation also limits the rate of short-term engraftment and potential clinical utility of ex vivo expanded hematopoietic cells, murine Sca-1+c-kit+Lin− cells were cultured in interleukin-6 (IL-6), IL-11, granulocyte colony-stimulating factor (G-CSF), stem cell factor, flk-2 ligand, and thrombopoietin for 7 days. Cells amplified 2000-fold were then stained with Hoechst 33342, separated into G0/G1 (72% ± 3%) or S/G2/M (27% ± 3%) fractions by flow sorting, and injected into lethally irradiated mice. Although long-term (more than 6 months) engraftment of lymphoid and myeloid lineages was greater in primary and secondary recipients of expanded cells residing in G0/G1 at the time of transplantation, there were no noted differences in the short-term (less than 6 weeks) recovery kinetics of circulating blood cells. When hematopoietic cells were expanded in cultures containing the tetrapeptide stem cell inhibitor N-Acetyl-Ser-Asp-Lys-Pro (AcSDKP) to reduce progenitor cycling prior to transplantation, again there were no differences observed in short-term reconstitution by inhibited or uninhibited cells. Interestingly, AcSDKP significantly accelerated engraftment by expanded hematopoietic cells when administered in vivo at the time of transplantation. Leukocytes recovered to 20% of normal levels approximately 1 week faster, and thrombocytopenia was largely abrogated in AcSDKP-treated versus untreated mice. Therefore, while AcSDKP can accelerate the engraftment of ex vivo expanded hematopoietic progenitors, which suggests a relatively simple approach to improve their clinical utility, its effects appear unrelated to cell cycle arrest.


Blood ◽  
2000 ◽  
Vol 96 (9) ◽  
pp. 3272-3275 ◽  
Author(s):  
Helen A. Papadaki ◽  
Frances M. Gibson ◽  
Sian Rizzo ◽  
Edward C. Gordon-Smith ◽  
Judith C. W. Marsh

Abstract To investigate whether bone marrow (BM) stem cell compartment and/or BM microenvironment are affected by the immune insult in autoimmune cytopenias (AICs), BM stem cell reserve and function and BM stromal function were studied in 15 AIC patients. Stem cells were evaluated by means of flow cytometry, clonogenic progenitor cell assays, long-term BM cultures (LTBMCs), and limiting dilution assay for quantification of long-term–culture initiating cells (LTC-ICs). Stromal cell function was assessed with the use of preformed irradiated LTBMCs from patients and normal controls, recharged with normal CD34+ cells. AIC patients exhibited a high number of CD34+, CD34+/CD38+, and CD34+/CD38− cells; high frequency of granulocyte-macrophage colony forming units in the BM mononuclear cell fraction; high colony recovery in LTBMCs; and normal LTC-IC frequency. Patient BM stromal layers displayed normal hematopoietic-supporting capacity and increased production of granulocyte-colony stimulating factor. Data from this study support the concept that AIC patients with severe, resistant disease might be appropriate candidates for autologous stem cell transplantation.


2021 ◽  
Author(s):  
Jennifer Chen ◽  
Jenny E Gunton

Islet transplantation, a therapeutic option to treat type 1 diabetes, is not yet as successful as whole-pancreas transplantation as a treatment for diabetes. Mouse models are commonly used for islet research. However, it is clear disparities exist between islet transplantation outcomes in mice and humans. Given the shortage of transplant-grade islets, it is crucial that we further our understanding of factors that determine long-term islet survival and function post-transplantation. In turn, that may lead to new therapeutic targets and strategies that to improve transplant outcomes. Here, we summarise the current landscape in clinical transplantation, highlight underlying similarities and differences between mouse and human islets, and review interventions that are being considered to create a new pool of β-cells for clinical application.


Blood ◽  
2008 ◽  
Vol 112 (11) ◽  
pp. 4318-4318
Author(s):  
Benedicte Bruno ◽  
David Seguy ◽  
Vincent Maunoury ◽  
Valerie Coiteux ◽  
Leonardo Magro ◽  
...  

Abstract One of major hurdles to achieving good patient outcomes and survival rates in allogeneic stem cell transplantation (allo-SCT) after myeloablative conditioning is the high rate of transplant-related mortality (TRM). Much progress in supportive patient care has been accomplished over the last decade-notably the use of allelic HLA-matching (Yakoub-Agha, JCO 2006), the introduction of enteral nutrition (Seguy, Transplantation 2004), the development of wireless video-capsule endoscopy for the management of post-transplant diarrhea (Yakoub-Agha, Transplantation 2005), the availability of broad-spectrum antifungal prophylaxis, the use of busulfan IV instead of PO in the conditioning regimen, limitation of the use of ATG in graft-versus-host disease (GVHD) treatment and dose reduction when the latter drug is used in conditioning. Although all these various modifications have had a positive impact on short-term patient outcomes, their impact on long-term survival is still unclear. Hence, the main objective of the present study was to evaluate allo-CST outcomes as a function of the transplantation period. A total 445 patients have undergone post-myeloablation allo-CST in our department. The patient distribution over the time was as follows: prior to 1998 (first period): n=133; between 1998 and 2003 (second period): n=154; between 2003 and 2007 (third period): n=158. Only the first transplant for a given individual was taken into account. Kaplan-Meyer curves were plotted for 100-day survival, 180-day survival and 3-year survival for each time period. Setting aside the clear differences in supportive care methods, the three groups were well matched in terms of disease diagnosis, disease status at transplant and the main recipient and donor characteristics. It is noteworthy, however, that the median age of patients increased over time. Mean 100-day survival was 86 days (95% CI: 81–90), 93 days (95% CI: 90–96) and 96 days (95% CI: 94–98) for the first, second and third periods, respectively (p<.0001). Mean 180-day survival was 137 days (95% CI: 126–147), 157 days (95% CI: 150–164) and 165 days (95% CI: 160–171) for the first, second and third periods, respectively (p<.0001). The improvement in short-term survival has translated into an improvement in long-term survival, as the mean 3-year survival was 513 days (95% CI: 437–591), 705 days (95% CI: 635–775) and 782 days (95% CI: 715–850) for the first, second and third periods, respectively (p<0.0001). Median survival was 339 days (95% CI: 145–533) for the first period but has not yet been reached for the two other periods. While we observed a significant reduction in TRM over the three periods, post-transplantation relapse is still a major complication which impacts negatively on long-term patient outcomes. In conclusion, this study highlights the positive impact of supportive care on both short-term patient outcomes and long-term survival after myeloablative allo-CST. The most recent data on myeloablative allo-CST must be taken into account before ruling out the latter as treatment option. Although supportive care will doubtless continue to progress, further research into reducing the post-transplantation relapse rate must now become a priority.


Blood ◽  
2000 ◽  
Vol 96 (9) ◽  
pp. 3272-3275
Author(s):  
Helen A. Papadaki ◽  
Frances M. Gibson ◽  
Sian Rizzo ◽  
Edward C. Gordon-Smith ◽  
Judith C. W. Marsh

To investigate whether bone marrow (BM) stem cell compartment and/or BM microenvironment are affected by the immune insult in autoimmune cytopenias (AICs), BM stem cell reserve and function and BM stromal function were studied in 15 AIC patients. Stem cells were evaluated by means of flow cytometry, clonogenic progenitor cell assays, long-term BM cultures (LTBMCs), and limiting dilution assay for quantification of long-term–culture initiating cells (LTC-ICs). Stromal cell function was assessed with the use of preformed irradiated LTBMCs from patients and normal controls, recharged with normal CD34+ cells. AIC patients exhibited a high number of CD34+, CD34+/CD38+, and CD34+/CD38− cells; high frequency of granulocyte-macrophage colony forming units in the BM mononuclear cell fraction; high colony recovery in LTBMCs; and normal LTC-IC frequency. Patient BM stromal layers displayed normal hematopoietic-supporting capacity and increased production of granulocyte-colony stimulating factor. Data from this study support the concept that AIC patients with severe, resistant disease might be appropriate candidates for autologous stem cell transplantation.


Author(s):  
Steffen T. Simon ◽  
Anne Pralong ◽  
Michael Hallek ◽  
Christoph Scheid ◽  
Udo Holtick ◽  
...  

AbstractPatients undergoing allogeneic stem cell transplantation (allo-SCT) are given a real chance of cure, but at the same time are confronted with a considerable risk of mortality and of severe long-term impediments. This narrative, non-systematic literature review aims to describe the supportive and palliative care needs of allo-SCT recipients, including long-term survivors or those relapsing or dying after transplantation. It also evaluates the feasibility and effectivity of integrating palliative care early in transplant procedures. In this appraisal of available literature, the main findings relate to symptoms like fatigue and psychological distress, which appear to be very common in the whole allo-SCT trajectory and might even persist many years post-transplantation. Chronic GvHD has a major negative impact on quality of life. Overall, there is a paucity of research on further issues in the context of allo-SCT, like the distress related to the frequently unpredictable post-transplant trajectory and prognosis, as well as the end-of-life phase. First randomized controlled results support the effectiveness of early integration of specialized palliative care expertise into transplant algorithms. Barriers to this implementation are discussed.


2015 ◽  
Vol 3 (2) ◽  
pp. 383-390 ◽  
Author(s):  
Yon Jin Chuah ◽  
Shreyas Kuddannaya ◽  
Min Hui Adeline Lee ◽  
Yilei Zhang ◽  
Yuejun Kang

Surface silanization with 3-aminopropyl triethoxy silane (APTES) ± glutaraldehyde (GA) enhanced the biocompatibility of poly(dimethylsiloxane) surfaces for long term cell culture investigation.


Anemia ◽  
2012 ◽  
Vol 2012 ◽  
pp. 1-9 ◽  
Author(s):  
Elisabeth H. Javazon ◽  
Mohamed Radhi ◽  
Bagirath Gangadharan ◽  
Jennifer Perry ◽  
David R. Archer

Previous studies have shown that the sickle environment is highly enriched for reactive oxygen species (ROS). We examined the oxidative effects of sickle cell disease on hematopoietic stem cell function in a sickle mouse model.In vitrocolony-forming assays showed a significant decrease in progenitor colony formation derived from sickle compared to control bone marrow (BM). Sickle BM possessed a significant decrease in the KSL (c-kit+, Sca-1+, Lineage−) progenitor population, and cell cycle analysis showed that there were fewer KSL cells in the G0phase of the cell cycle compared to controls. We found a significant increase in both lipid peroxidation and ROS in sickle-derived KSL cells.In vivoanalysis demonstrated that normal bone marrow cells engraft with increased frequency into sickle mice compared to control mice. Hematopoietic progenitor cells derived from sickle mice, however, demonstrated significant impairment in engraftment potential. We observed partial restoration of engraftment by n-acetyl cysteine (NAC) treatment of KSL cells prior to transplantation. Increased intracellular ROS and lipid peroxidation combined with improvement in engraftment following NAC treatment suggests that an altered redox environment in sickle mice affects hematopoietic progenitor and stem cell function.


Blood ◽  
1999 ◽  
Vol 94 (1) ◽  
pp. 1-8 ◽  
Author(s):  
Laura S. Haneline ◽  
Troy A. Gobbett ◽  
Rema Ramani ◽  
Madeleine Carreau ◽  
Manuel Buchwald ◽  
...  

Fanconi anemia (FA) is a complex genetic disorder characterized by progressive bone marrow (BM) aplasia, chromosomal instability, and acquisition of malignancies, particularly myeloid leukemia. We used a murine model containing a disruption of the murine homologue ofFANCC (FancC) to evaluate short- and long-term multilineage repopulating ability of FancC −/− cells in vivo. Competitive repopulation assays were conducted where “test”FancC −/− or FancC +/+ BM cells (expressing CD45.2) were cotransplanted with congenic competitor cells (expressing CD45.1) into irradiated mice. In two independent experiments, we determined that FancC −/− BM cells have a profound decrease in short-term, as well as long-term, multilineage repopulating ability. To determine quantitatively the relative production of progeny cells by each test cell population, we calculated test cell contribution to chimerism as compared with 1 × 105 competitor cells. We determined that FancC −/− cells have a 7-fold to 12-fold decrease in repopulating ability compared with FancC +/+cells. These data indicate that loss of FancC function results in reduced in vivo repopulating ability of pluripotential hematopoietic stem cells, which may play a role in the development of the BM failure in FA patients. This model system provides a powerful tool for evaluation of experimental therapeutics on hematopoietic stem cell function.


2016 ◽  
pp. sjw197 ◽  
Author(s):  
Lauren E. Kokai ◽  
Dmitry O. Traktuev ◽  
Liyong Zhang ◽  
Stephanie Merfeld-Clauss ◽  
Gabriella DiBernardo ◽  
...  

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