Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
about
The clinical relevance of the metabolism of prostate cancer; zinc and tumor suppression: connecting the dotsCrystal structure of human senescence marker protein 30: insights linking structural, enzymatic, and physiological functionshZIP1 zinc uptake transporter down regulation and zinc depletion in prostate cancerThe genetic/metabolic transformation concept of carcinogenesisMetabolic Imaging in Prostate Cancer: Where We AreDifferential response to zinc-induced apoptosis in benign prostate hyperplasia and prostate cancer cells.Zinc transporter expression profiles in the rat prostate following alterations in dietary zincA comprehensive review of the role of zinc in normal prostate function and metabolism; and its implications in prostate cancer.Mitochondrial function, zinc, and intermediary metabolism relationships in normal prostate and prostate cancer.Zinc and zinc transporters in normal prostate and the pathogenesis of prostate cancer.Cellular mechanisms of zinc dysregulation: a perspective on zinc homeostasis as an etiological factor in the development and progression of breast cancer.Mitochondrial oncobioenergetic index: A potential biomarker to predict progression from indolent to aggressive prostate cancer.Zinc as an anti-tumor agent in prostate cancer and in other cancers.The Important Role of Osteoblasts and Citrate Production in Bone Formation: "Osteoblast Citration" as a New Concept for an Old Relationship.The important role of the apoptotic effects of zinc in the development of cancers.Copper as a target for prostate cancer therapeutics: copper-ionophore pharmacology and altering systemic copper distribution.Zinc and prostatic cancerEvidence for operation of the direct zinc ligand exchange mechanism for trafficking, transport, and reactivity of zinc in mammalian cells.hZIP1 zinc transporter down-regulation in prostate cancer involves the overexpression of ras responsive element binding protein-1 (RREB-1).Ras responsive element binding protein-1 (RREB-1) down-regulates hZIP1 expression in prostate cancer cells.Methods for metabolic evaluation of prostate cancer cells using proton and (13)C HR-MAS spectroscopy and [3-(13)C] pyruvate as a metabolic substrate.An inherited heteroplasmic mutation in mitochondrial gene COI in a patient with prostate cancer alters reactive oxygen, reactive nitrogen and proliferation.Effect of red maca (Lepidium meyenii) on prostate zinc levels in rats with testosterone-induced prostatic hyperplasia.From gametogenesis and stem cells to cancer: common metabolic themes.
P2860
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P2860
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年論文
@yue
2004年論文
@zh-hant
2004年論文
@zh-hk
2004年論文
@zh-mo
2004年論文
@zh-tw
2004年论文
@wuu
2004年论文
@zh
2004年论文
@zh-cn
name
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@ast
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@en
type
label
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@ast
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@en
prefLabel
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@ast
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@en
P2093
P2860
P1433
P1476
Terminal oxidation and the effects of zinc in prostate versus liver mitochondria.
@en
P2093
Boone Kukoyi
Leslie C Costello
Renty B Franklin
Zhixin Guan
P2860
P304
P356
10.1016/J.MITO.2004.07.031
P577
2004-08-01T00:00:00Z