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PubMed · 630471

Leg amputation.

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N S Mitchell. 1978. Leg amputation.. https://pubmed.ncbi.nlm.nih.gov/630471/

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Treatment by digital amputation of subungual squamous cell carcinoma in dogs: 21 cases (1987-1988)

Malignant digital tumors were diagnosed in 62 dogs during a 1-year period. Twenty-one (33.9%) of the dogs had subungual squamous cell carcinoma. Each of these dogs had involvement of single digits. Sixteen (76.2%) of the dogs with squamous cell carcinoma were large-breed dogs, and 15 (71.4%) had predominantly black coats. Labrador Retrievers (n = 5, 23.8%) and Standard Poodles (n = 3, 14.3%) were the most commonly represented purebreeds. None of the dogs had evidence of metastases prior to treatment. All 21 tumors were treated by amputation of the involved digit. Histologic evidence of neoplastic bone invasion was found in 15 of the 21 amputated digits (71.4%). Local tumor recurrences were not observed. Only 1 dog developed documented metastatic disease; this dog was euthanatized because of pulmonary metastases 5 months after surgery. At the time of this report, 9 dogs (42.9%) were alive with no evidence of disease (median, 26 months after surgery), and 11 dogs (52.4%) had died or were euthanatized (median, 20 months after surgery). The cause of death in 7 dogs was known to be unrelated to squamous cell carcinoma, and the cause of death in 4 dogs was unknown. The 1-year and 2-year survival rates were 76.2% and 42.9%, respectively.

Amputation, Surgical

Increased protein kinase C activity in the central nervous system of the newt during limb regeneration.

Protein kinase C (PKC) activity was examined in the CNS of the newt Pleurodeles waltlii undergoing regeneration after limb amputation. In the spinal cord and brain of control newts, the level of PKC activity was virtually the same for the cytosolic and the particulate fractions. At days 7 and 14 after amputation of two limbs, a twofold increase in overall PKC activity occurred in the spinal cord and accounted for increased membrane-bound activity, while cytosolic activity was not significantly impaired. In contrast, overall PKC activity was not affected in brain. However, a twofold increase in the brain particulate fraction occurred at day 14 while cytosolic activity decreased proportionately. Similar alterations were observed in newts undergoing one or multiple limb amputations. Such changes in PKC activity neither occurred in the CNS of newt after limb denervation nor in the CNS of limb amputated frog Rana temporaria, an Amphibian which is unable to regenerate. Taken together, these results provide evidence that PKC of the CNS is involved in the regeneration process of newts. Changes in activation-associated PKC distribution proceeded through different mechanisms: long-lasting increase in membrane bound activity with a net increase of overall activity in the spinal cord, and long-term redistribution of enzyme activity to the particulate fraction in brain.

Amputation, Surgical