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Christoph Schaniel

Publications and source records attributed to Christoph Schaniel.

8 recordsLinked to original sources

A stem cell molecular signature.

Mechanisms regulating self-renewal and cell fate decisions in mammalian stem cells are poorly understood. We determined global gene expression profiles for mouse and human hematopoietic stem cells and other stages of the hematopoietic hierarchy. Murine and human hematopoietic stem cells share a number of expressed gene products, which define key conserved regulatory pathways in this developmental system. Moreover, in the mouse, a portion of the genetic program of hematopoietic stem cells is shared with embryonic and neural stem cells. This overlapping set of gene products represents a molecular signature of stem cells.

Adult↗

In vitro and in vivo plasticity of Pax5-deficient pre-B I cells.

In mice deficient for the transcription factor Pax-5, B cell development is blocked at the pre-B I cell stage. Like wild type, Pax-5-/- pre-B I cells can be grown long-term in vitro in the presence of stromal cells and IL-7. However, unlike their wild type in vitro grown counterparts, Pax-5-/- pre-B I cells posses an extraordinary developmental plasticity showing hematopoeitic stem cell features such as multipotency and self renewing capacity. Here we review and discuss this in vitro and in vivo plasticity of Pax-5-/- pre-B I cells.

Animals↗

Extensive in vivo self-renewal, long-term reconstitution capacity, and hematopoietic multipotency of Pax5-deficient precursor B-cell clones.

Self-renewal, pluripotency, and long-term reconstitution are defining characteristics of single hematopoietic stem cells. Pax5(-/-) precursor B cells apparently possess similar characteristics. Here, using serial transplantations, with in vitro recloning and growth of the bone marrow-homed donor cells occurring after all transplantations, we analyzed the extent of self-renewal and hematopoietic multipotency of Pax5(-/-) precursor B-cell clones. Moreover, telomere length and telomerase activity in these clones was analyzed at various time points. Thus far, 5 successive transplantations have been performed. Clones transplanted for the fifth time, which have proliferated for more than 150 cell divisions in vitro, still repopulate the bone marrow with precursor B cells and reconstitute these recipients with lymphoid and myeloid cells. During this extensive proliferation, Pax5(-/-) precursor B cells shorten their telomeres at 70 to 90 base pairs per division. Their telomerase activity remains at 3% of that of HEK293 cancer cells during all serial in vivo transplantations/in vitro expansions. Together, these data show that Pax5(-/-) precursor B-cell clones possess extensive in vivo self-renewal capacity, long-term reconstitution capacity, and hematopoietic multipotency, with their telomeres shortening at the normal rate.

Animals↗

Multiple hematopoietic cell lineages develop in vivo from transplanted Pax5-deficient pre-B I-cell clones.

Pax5-deficient pre-B I-cell clones, transplanted into natural killer (NK)-cell-deficient RAG2(-/-) IL-2Rgamma(-/-) hosts, populate the NK-cell compartment with functional NK cells. NK-cell generation from Pax5(-/-) pre-B I cells is also observed in NK-cell-proficient Balb/c RAG2(-/-) hosts. In the same Balb/c RAG2(-/-) hosts, Pax5(-/-) pre-B I-cell clones not only populate the pre-B I-cell compartment and fill the deficient T-cell-lineage compartment in the thymus and the periphery of all hosts, as shown before, they also generate CD8alpha(-) and CD8alpha(+) dendritic cells (DCs), macrophages, and granulocytes in vivo in approximately half the hosts. In some recipients, practically all the mature myeloid cells are of Pax5(-/-) origin, indicating the effectiveness by which Pax5(-/-) pre-B I cells can compete with endogenous myeloid precursors. In a smaller percentage of hosts, the generation of Pax5(-/-) pre-B I-cell-derived erythrocytes is observed 4 to 6 months after transplantation. The results indicate that Pax5(-/-) pre-B I cells can develop in vivo in hosts that have undergone transplantation to erythroid, myeloid, and lymphoid cell lineages. Hence, the Pax5(-/-) mutation introduces an unusual instability of differentiation in pre-B I cells so that they appear to dedifferentiate as far back as the pluripotent hematopoietic stem cell.

Animals↗

Stability and plasticity of wild-type and Pax5-deficient precursor B cells.

In Pax5-deficient mice, B cell development is blocked at the pre-BI cell stage. Like wild-type, Pax5-/- pre-BI cells can be grown long-term in vitro in the presence of stromal cells and IL-7. However, unlike their wild-type in vitro-grown counterparts, Pax5-/- pre-BI cells possess an extraordinary developmental plasticity showing hematopoietic stem cell features such as multipotency and self renewing capacity. Here we review and discuss this in vitro and in vivo plasticity of Pax5-/- pre-BI cells.

Animals↗

A new paradigm for the closed-loop intraoperative administration of analgesics in humans.

We present a new paradigm for the closed-loop administration of analgesics during general anesthesia. The manipulated variable in the control system is the infusion rate of the opiate alfentanil, administered intravenously through a computer-controlled infusion pump (CCIP). The outputs to be controlled are the patient's mean arterial pressure (MAP) and the drug concentration in the plasma. Maintaining MAP within appropriate ranges provides optimal treatment of the patient's reactions to surgical stimuli. Maintaining plasma drug concentrations close to a reference value specified by the anesthesiologist allows to titrate analgesic administration to qualitative clinical end-points of insufficient analgesia. MAP is acquired invasively through a catheter cannula. Since plasma drug concentrations cannot be measured on-line, they are estimated via a pharmacokinetic model. We describe an explicit model-predictive controller which achieves the above-mentioned objectives. An upper constraint on drug concentrations is maintained to avoid overdosing. Constraints on the MAP are introduced to trigger a prompt controller reaction during hypertensive and hypotensive periods. Measurement artifacts in the MAP signal are rejected to prevent harmful misbehavior of the controller. We discuss the results of the clinical validation of the controller on humans.

Alfentanil↗

Plasticity of Pax-5(-/-) pre-B I cells.

In Pax-5 deficient mice, B cell development is blocked at the pre-B I cell stage. In contrast to their wild type counterparts, Pax-5(-/-) pre-B I cells posses an extraordinary developmental plasticity showing hematopoietic stem cell features such as pluripotency and self renewing capacity. Here we review the in vitro and in vivo evidence of this intriguing phenomenon.

Animals↗