PubMed HealthSearch

PubMed · 7879357

Hematologic emergencies.

Abstract

The most common life-threatening hematologic emergencies include hemorrhage and severe anemia. Successful treatment of these conditions depends on the emergency veterinarian having a thorough understanding of the possible etiologies of these conditions, and a systematic approach to diagnosis and therapy. Use of blood component therapy can be a life-saving technique in these patients. The goal of this article is to familiarize the emergency veterinarian with a systematic approach to the diagnosis and treatment of hematologic emergencies.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D R Van Pelt, E Miller, L G Martin, T B Hackett. 1994. Hematologic emergencies.. https://doi.org/10.1016/s0195-5616(94)50132-3

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Carcinogenicity of 2',3'-dideoxycytidine in mice.

2',3'-dideoxycytidine (ddC) is a synthetic pyrimidine nucleoside analogue approved for treatment of HIV-positive patients. Previous studies indicated that ddC has the potential to cause thymic lymphoma in C57BL/6 x C3H F1 (hereafter called B6C3F1) mice. In this study, we evaluated the carcinogenic potential of ddC in two different mouse models. B6C3F1 hybrid mice carry ecotropic endogenous proviral sequences that may be activated to cause lymphoma, whereas NIH Swiss mice lack proviral sequences that can be expressed. The mice were treated with ddC by gavage at 500 and 1000 mg/kg/day for up to 6 months (human dose, 2.25 mg/day) and evaluated for toxicity, plasma levels of ddC, and pathological changes. Lymphocyte cell markers from the thymic lymphomas were assessed by immunophenotyping. Expression of p53 protein was evaluated using immunohistochemical staining. Treatment-related thymic lymphomas were present in both mouse models with a higher incidence in NIH Swiss than in B6C3F1 mice. The lymphomas were more prevalent in females than in males of both mouse models. Most mice with thymic lymphoma died during the course of the study. In addition to the thymus, lymphoma was often present in lymph nodes, spleen, and other organs. Lymphomas arose more frequently in mice that lack endogenous ecotropic retroviral sequences and thus were not due to activation of endogenous provirus. During the third month of the study, a few NIH Swiss mice that died had granulosa cell tumors of the ovary. Treatment-related but reversible thymic atrophy was observed in both mouse models. There was a very high correlation between the internal dose of ddC and the incidence of thymic lymphoma in both mouse models. Most of the lymphocytes from control thymuses and ddC-induced lymphomas were positive for Thy-1.2 (pan-T), heat stable antigen, and CD4 and CD8 markers, with no marked differences in the lymphocyte markers of the tumors between sexes or dose groups. p53 protein was detected in only 20% (23/115) of the ddC-induced lymphomas with mostly minimal expression in scattered cells. Because ddC induced lymphomas in two different mouse models, the potential carcinogenic risk should be considered in long-term treatment of HIV-positive patients, especially children and adolescent patients treated with ddC.

Anemia

Blood flow, oxygenation, and bioenergetic status of tumors after erythropoietin treatment in normal and anemic rats.

Growth, blood flow, oxygenation, and bioenergetic status of experimental tumors were investigated in normal (control) and anemic animals after administration of recombinant human erythropoietin (rhEPO). DS sarcomas were implanted s.c. onto the hind foot dorsum of Sprague-Dawley rats. Tumor-associated anemia was induced by the development of an i.p. hemorrhagic ascites. rhEPO (1000 IU/kg) was administered s.c. three times per week over 14 days, after which it was found to have significantly increased hematocrit values in both normal and anemic animals. Tumor growth in anemic animals was slower than in normal animals, and rhEPO administration did not influence tumor growth in either group. Tumor blood flow in anemic animals was lower than in control animals and was only increased in larger tumors in animals in which anemia was prevented by prophylactic rhEPO application. Tumor oxygenation, determined using polarographic needle electrodes and oxygen partial pressure histography, was poorer in anemic animals than in normal animals. This reduction could be reversed partially, but not compensated fully by rhEPO treatment in smaller tumors (< or = 1.4 ml). These changes suggest that rhEPO, by improving tumor oxygenation, may increase the efficacy of standard radiotherapy in anemic animals and may be of use in anemic tumor patients in whom the success of radiotherapy or O2-dependent chemotherapy might be limited by tumor hypoxia.

Anemia