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Biomedical subjects

D G Ritchie

Publications and source records attributed to D G Ritchie.

4 recordsLinked to original sources

Interleukin 6 stimulates hepatic glucose release from prelabeled glycogen pools.

Cytokines, derived from a wide variety of cell types, are now believed to initiate many of the physiological responses accompanying the inflammatory phase that follows either Gram-negative septicemia or thermal injury. Because hypoglycemia (after endotoxic challenge) and hyperglycemia (after thermal injury) represent well-characterized responses to these injuries, we sought to determine whether hepatic glycogen metabolism could be altered by specific cytokines. Cultured adult rat hepatocytes were prelabeled with [14C]glucose for 24 h, a procedure that resulted in the labeling of hepatic glycogen pools that subsequently could be depleted (with concomitant [14C]glucose release) by either glucagon or norepinephrine. After the addition of a highly concentrated human monocyte-conditioned medium (MCM) or various cytokines to these prelabeled cells, [14C]glucose release was stimulated by MCM and recombinant human interleukin 6 (IL-6) but was not stimulated by other cytokines tested. Furthermore, only antisera to IL-6 were capable of reducing the glucose-releasing factor activity found in MCM. These data therefore suggest a novel glucoregulatory role for IL-6.

Animals

Cystinotic fibroblasts accumulate cystine from intracellular protein degradation.

Fibroblasts derived from patients with cystinosis, an autosomal recessive condition, accumulate the disulfide amino acid cystine within lysosomes. The metabolic defect leading to the cystine accumulation and the source from which the cystine is derived are unknown. In this report we present data showing that cystine in these cells accumulates from the degradation of endogenous protein. This conclusion is based upon: (i) no demonstrable synthesis of cystine from serine; (ii) no difference in cystine reaccumulation between glutathione-depleted and non-glutathione-depleted cystinotic cells; (iii) recovery of labeled cystine only when the protein pool is labeled; (iv) reversible inhibition of cystine reaccumulation by known inhibitors of lysosomal protein degradation (chloroquine and NH4Cl).

Biodegradation, Environmental