33 research outputs found

    Ghosts in the nursery revisited

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    In the last decades new research findings have illuminated many of the factors that affect the mental health development of the pre-verbal child. Attachment theory has emerged as a central concept which has great applicability to the clinical field of infant-mental health. The new knowledge base has been utilized by clinical research programs to develop new models of clinical intervention programs with infants-at-risk and their families. This article describes some of the theoretical and research findings which can be translated to, and enhance, traditional child welfare practice. The theoretical considerations are illustrated by case examples.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/44244/1/10560_2004_Article_BF00755708.pd

    Depression and childhood illness

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    Childhood depression as a component of the impact of childhood illness or developmental impairment on the latency age child is studied in relation to three diagnostic groups: children with asthma, cancer, and psychiatric diagnoses of behavioral disorders. The study revealed a range of coping styles to deal with the anxiety, loss and feelings induced by the specific crises. The special dimensions of stress and coping adaptations affected the child's developing self concept, the separation individuation process and the child-parent relationships. Depressive symptoms were variously present within and between the three groups of children.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/44248/1/10560_2004_Article_BF00755312.pd

    The Toll-Like Receptor Signaling Molecule Myd88 Contributes to Pancreatic Beta-Cell Homeostasis in Response to Injury

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    Commensal flora and pathogenic microbes influence the incidence of diabetes in animal models yet little is known about the mechanistic basis of these interactions. We hypothesized that Myd88, an adaptor molecule in the Toll-like-receptor (TLR) pathway, regulates pancreatic ÎČ-cell function and homeostasis. We first examined ÎČ-cells histologically and found that Myd88−/− mice have smaller islets in comparison to C57Bl/6 controls. Myd88−/− mice were nonetheless normoglycemic both at rest and after an intra-peritoneal glucose tolerance test (IPGTT). In contrast, after low-dose streptozotocin (STZ) challenge, Myd88−/−mice had an abnormal IPGTT relative to WT controls. Furthermore, Myd88−/− mice suffer enhanced ÎČ-cell apoptosis and have enhanced hepatic damage with delayed recovery upon low-dose STZ treatment. Finally, we treated WT mice with broad-spectrum oral antibiotics to deplete their commensal flora. In WT mice, low dose oral lipopolysaccharide, but not lipotichoic acid or antibiotics alone, strongly promoted enhanced glycemic control. These data suggest that Myd88 signaling and certain TLR ligands mediate a homeostatic effect on ÎČ-cells primarily in the setting of injury

    A leucine aminopeptidase is involved in kinetoplast DNA segregation in <i>Trypanosoma brucei</i>

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    The kinetoplast (k), the uniquely packaged mitochondrial DNA of trypanosomatid protists is formed by a catenated network of minicircles and maxicircles that divide and segregate once each cell cycle. Although many proteins involved in kDNA replication and segregation are now known, several key steps in the replication mechanism remain uncharacterized at the molecular level, one of which is the nabelschnur or umbilicus, a prominent structure which in the mammalian parasite Trypanosoma brucei connects the daughter kDNA networks prior to their segregation. Here we characterize an M17 family leucyl aminopeptidase metalloprotease, termed TbLAP1, which specifically localizes to the kDNA disk and the nabelschur and represents the first described protein found in this structure. We show that TbLAP1 is required for correct segregation of kDNA, with knockdown resulting in delayed cytokinesis and ectopic expression leading to kDNA loss and decreased cell proliferation. We propose that TbLAP1 is required for efficient kDNA division and specifically participates in the separation of daughter kDNA networks

    Finishing the euchromatic sequence of the human genome

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    The sequence of the human genome encodes the genetic instructions for human physiology, as well as rich information about human evolution. In 2001, the International Human Genome Sequencing Consortium reported a draft sequence of the euchromatic portion of the human genome. Since then, the international collaboration has worked to convert this draft into a genome sequence with high accuracy and nearly complete coverage. Here, we report the result of this finishing process. The current genome sequence (Build 35) contains 2.85 billion nucleotides interrupted by only 341 gaps. It covers ∌99% of the euchromatic genome and is accurate to an error rate of ∌1 event per 100,000 bases. Many of the remaining euchromatic gaps are associated with segmental duplications and will require focused work with new methods. The near-complete sequence, the first for a vertebrate, greatly improves the precision of biological analyses of the human genome including studies of gene number, birth and death. Notably, the human enome seems to encode only 20,000-25,000 protein-coding genes. The genome sequence reported here should serve as a firm foundation for biomedical research in the decades ahead
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