£42.02

Brand: Nova Science Pub Inc Tumor Suppressor Genes - Nova Science Pub Inc Medical Text

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Last 57 days • 57 data points (No recent data available)

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£65.76 £12.37 £24.02 £35.67 £47.31 £58.96 £70.61 08 April 2026 22 April 2026 06 May 2026 20 May 2026 03 June 2026

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8 days 15 days 17 days 3 days 8 days 1 day · current 5 days 0 4 9 13 17 £17 £22 £31 £33 £41 £42 £66 Days at Price

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Most common price: £31 (17 days, 29.8%)

Price range: £17 - £66

Price levels: 7 different prices over 57 days

Description

Explore the fundamental principles of cellular biology with Tumor Suppressor Genes by Nova Science Pub Inc. This text provides a detailed look at the genes responsible for reducing the probability that a cell in a multicellular organism will transform into a tumor cell. Readers will gain a clear understanding of how mutations or deletions in these specific genes increase the risk of tumor formation. The content explains the mechanics of the two-hit hypothesis, which distinguishes tumor suppressor genes from oncogenes. This concept explains why both alleles must be affected before a physical effect is manifested, as a single healthy allele can often still produce the necessary protein. This book serves as a valuable resource for those studying medical and healthcare topics. It covers the biological processes that govern cell stability and the consequences of genetic damage. Whether you are researching genetic mutations or cellular health, this publication offers a focused examination of how these genes function within the body.

Key Features

Detailed explanation of how tumor suppressor genes reduce the probability of cells turning into tumor cells in multicellular organisms.

In-depth analysis of the two-hit hypothesis and how it differs from the behavior of oncogenes.

Clear breakdown of how mutations or deletions in these genes can increase the likelihood of tumor formation.

Examination of allele functionality and how a single undamaged allele can continue to produce correct proteins.

Scientific insight into the specific cases where mutations in only one allele may still lead to biological effects.

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