Mitochondrial genetics and cancer
著者
書誌事項
Mitochondrial genetics and cancer
Springer, 2010
大学図書館所蔵 全3件
  青森
  岩手
  宮城
  秋田
  山形
  福島
  茨城
  栃木
  群馬
  埼玉
  千葉
  東京
  神奈川
  新潟
  富山
  石川
  福井
  山梨
  長野
  岐阜
  静岡
  愛知
  三重
  滋賀
  京都
  大阪
  兵庫
  奈良
  和歌山
  鳥取
  島根
  岡山
  広島
  山口
  徳島
  香川
  愛媛
  高知
  福岡
  佐賀
  長崎
  熊本
  大分
  宮崎
  鹿児島
  沖縄
  韓国
  中国
  タイ
  イギリス
  ドイツ
  スイス
  フランス
  ベルギー
  オランダ
  スウェーデン
  ノルウェー
  アメリカ
内容説明・目次
内容説明
With very few exceptions, eukaryotic cells possess two interdependent genomes, chromosomal and extra-chromosomal. Over the past several decades, cancer - search has focused primarily on deciphering the intricate alterations in the chro- somal genome, with until recently, very little attention to its cytoplasmic counterpart. In spite of the enormous complexity of the nuclear genome, which we now fully appreciate after completion of the human genome project, the efforts of cancer researchers are commendable in terms of the tremendous gains made in unraveling the numerous genetic changes in cancer. These changes include d- coveries of tumor suppressor genes, oncogenes, and caretaker genes that are often mutated in cancer. Recent studies of genomic pro?les are uncovering even more altered and mutated genes in cancer. Besides these ?ndings, several therapeutic targets for chemotherapy are currently made from studies of altered nuclear genetic pathways. Inspite of all these positive efforts, the war on cancer, declared in 1971 by Richard Nixon, is far from being worn. Indeed, the failure of chemotherapy is obvious to clinicians, oncologists, and their patients alike. Moreover, the global incidence and prevalence of cancer continue to rise. What are we missing? Which direction should we be taking? Of course, modern integrated nuclear genomics, proteomics, and metabolomics should provide important clues to carcinogenesis, but the contribution of cytoplasmic genetic alterations to carcinogenesis cannot be neglected.
目次
PART 1: GENERAL OVERVIEW OF MITOCHONDRIAL GENETICS AND FUNCTIONS
1. Basic Mitochondrial Genetics, Bioenergetics and Biogenesis
2. The Warburg Phenomenon and Other Metabolic Alterations of Cancer Cells
3. Mitochondrial Control of Apoptosis and Cancer
4. Mitochondrial-to-Nuclear Communications in Cancer
PART 2: MITOCHONDRIAL GENETIC ALTERATIONS IN CANCER
5. Types of Mitochondrial Genetic Alterations in Cancer
6. Mitochondrial Genetic Alterations in Cancer I: Skin, Head and Neck,
7. Mitochondrial Genetic Alterations in Cancer II: Renal, Urinary Bladder, Prostate, Ovarian, Endometrial, Cervical, Nervous System, Hematologic, and Connective Tissue Cancers
8. Mitochondrial Genome Rearrangements and Copy Number Changes in Cancer
9. Functional Importance of Mitochondrial Genetic Alterations in Cancer
10. The Role of Mitochondrial Reactive Oxygen Species in Cancer
PART 3: CLINICAL APPLICATIONS OF MITOCHONDRIAL GENOME CHANGES IN CANCER
11. Mitochondrial DNA Measurement in Exfoliated Cells for Cancer Detection and Monitoring - the Copy Number Advantage
12. Early Cancer Detection and Monitoring Using Changes in the Mitochondrial Genome as Biosensors
13. Analysis of Mitochondrial Genome Alterations in Cancer
14. "Mitocans": Agents Targeting Mitochondrial to Kill Cancer Cells
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