1.Pleiotrophic Actions of Erythropoietin
Laurie FELDMAN ; Arthur J. SYTKOWSKI
Environmental Health and Preventive Medicine 2002;7(6):239-245
Erythropoietin is the prime regulator of red blood cell production. However, recent evidence suggests that the hormone has multiple effects outside the hematopoietic system. Functional receptors have been identified on a wide variety of normal and malignant cell types, and numerous biologic effects of the hormone on these cells have been observed both in vitro and in vivo. These findings are causing a reassessment of the understanding of erythropoietin physiology. Moreover, there are important implications for the use of recombinant erythropoietin in the clinical setting.
Erythropoietin measurement
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Hormones
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Erythropoietin
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in vivo
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receptor
2.An in vivo study of a locally-manufactured hydroxyapatite-based material as bone replacement material.
N H Abdul Razak ; K A Al-Salihi ; A R Samsudin
The Medical journal of Malaysia 2004;59 Suppl F():119-20
Defects were created in the mandible of a rabbit model whereby the right side was implanted with hydroxyapatite (HA) while the left side was left empty to act as control. Both the implant and control sites were evaluated clinically and histologically at 4,12,20,22 weeks. Decalcified sections were studied under confocal laser scanning microscope. No reactive cells were evident microscopically in all sections. There was bone ingrowth as early as 4 weeks when viewed by the topographic method. Enhancement of osteoconduction was evident by the presence of abundant capillaries, perivascular tissue and osteoprogenitor cells of the host. At 22 weeks, the implanted defect showed mature bone formation filling almost the whole field. This study demonstrated that the dense HA exhibits excellent biocompatibility as noted by the complete absence of reactive cells. It also promotes osteoconduction.
Materials
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Skeletal bone
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week
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Durapatite
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in vivo study
3.The in vivo rodent micronucleus assay of Kacip Fatimah (Labisia pumila) extract.
Shahrim Zaizuhana ; M B Puteri J Noor ; Yahya Noral'ashikin ; Hussin Muhammad ; A B Rohana ; I Zakiah
Tropical biomedicine 2006;23(2):214-9
Kacip Fatimah also known as Labisia pumila (Myrsinaceae), is a traditional herbal medicine with a long history in the Malay community. It has been used by many generations of Malay women to induce and facilitate childbirth as well as a post-partum medicine. We tested the genotoxic potential of Kacip Fatimah in bone marrow cells obtained from Sprague-Dawley rats using micronuclei formation as the toxicological endpoints. Five groups of five male rats each were administered orally for two consecutive days with doses of 100, 700 and 2000 mg/kg body weight of Kacip Fatimah extract dissolved in distilled water. Micronucleus preparation was obtained from bone marrow cells of the animals following standard protocols. No statistically significant increase in micronucleated polychromatic erythrocytes (MNPCEs) was observed at any dose level and sacrifice/harvest time point (24, 48 and 72h). However, a significant decrease in polychromatic erythrocytes/normochromatic erythrocytes (PCE:NCE) ratio was observed from the highest dose level (2000 mg/kg of body weight) at 48h harvest time point. In this study, we investigated the effect of Kacip Fatimah on mammalian bone marrow cells using micronuclei formation to assess the genotoxicity of the herb.
Micronuclei
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Erythrocytes
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Bone Marrow
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in vivo
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assay