10.9
由于参与细胞分裂调节的基因突变而产生癌症,这导致不受限制的细胞增殖。现代科学和医学在癌症的理解和治疗方面取得了很大进展,包括在一些患者中根除癌症。然而,我们仍然无法治愈癌症。这主要是因为癌症是许多疾病的大群体。
肿瘤可能导致两个人在癌基因或抑癌基因上有相同的突变。最初,肿瘤可能非常相似。然而,不受控…
癌症的一般特征 是不受控制的细胞分裂, 导致了称为肿瘤的大量细胞。 在肿瘤开始侵入附近的组织之前, 它被考虑为是良性的, 之后则就是恶性的。 健康细胞通过正面和负面 调节因子的复杂网 络严格调节增殖, 这些调节因子可确保细胞 仅在它们应该分裂时分裂。
当编码正调节因子的基因 突变而产生过度活跃的蛋白质时, 它们被称为致癌基因。 一些病毒通过将自己的癌基因拷贝插入 健康细胞而导致癌症。 例如,SRC酶的病毒形式, 参与细胞信号传导的关键分子 缺少了控制人类版本的 调节域, 缺少该结构域 会导致宿主细胞中不受控制的分裂。
与致癌基因相反,肿瘤抑制基因 编码负调节增殖的蛋白质。 当它们发生突变时,细胞分裂不受控制。 高达50%的人类肿瘤在编码p53的 肿瘤抑制基因中具有突变。
这种多功能蛋白质对于细胞周期控制 和细胞凋亡至关重要。 不受控制的细胞增殖导致肿瘤生长, 意味着细胞需要更多的氧气和营养。 在称为血管生成的过程中, 产生促进血管在肿瘤中 形成的生长因子。
肿瘤越持续增长, 细胞越多分裂和变化, 细胞脱离肿瘤并扩散到 体内其他部位的机会就越高。 来自肿瘤的癌细胞的传播 被称为转移,并且导致 近90%的癌症相关死亡。 治疗癌症的一个主要挑战 是它不仅仅是一种疾病。 每位癌症患者都有特定的基因突变, 每个肿瘤都由 不同的突变细胞组成。
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Q1: What causes uncontrolled cell division in cancer?
Cancer results from mutations in genes that regulate cell division. When genes encoding positive regulators are mutated, they become oncogenes producing over-active proteins. Conversely, mutations in tumor suppressor genes disable negative regulation, allowing unchecked proliferation. These genetic changes disrupt the normal balance that keeps cells dividing only when appropriate.
Q2: How does p53 mutation contribute to cancer development?
p53 is a multifunctional tumor suppressor protein essential for cell cycle control and apoptosis. Up to 50% of human tumors have mutations in the gene coding for p53. When mutated, this negative regulator loses function, allowing cells to divide unchecked and preventing damaged cells from undergoing programmed death, accelerating cancer progression.
Q3: What is the difference between benign and malignant tumors?
A benign tumor is a mass of cells that remains localized and does not invade nearby tissues. Once a tumor begins invading surrounding tissues, it becomes malignant. Malignant tumors are dangerous because they can spread to other body parts through metastasis, which accounts for nearly 90% of cancer-related deaths.
Q4: How do cancer cells acquire the blood supply they need to grow?
As tumors grow, cells require more oxygen and nutrients. Through a process called angiogenesis, cancer cells produce growth factors that promote new blood vessel formation within the tumor. This increased blood supply enables continued tumor growth and provides a pathway for cancer cells to enter circulation and spread to distant sites.
Q5: Why is cancer difficult to treat with a single therapy?
Cancer is not one disease but many distinct diseases. Each patient has specific gene mutations, and every tumor contains different mutated cells. As tumors grow, new random mutations accumulate, making cells increasingly varied. Two patients with identical initial mutations develop tumors that respond differently to the same treatment, requiring personalized therapeutic approaches.
Q6: How can viruses trigger cancer in healthy cells?
Some viruses cause cancer by inserting their own oncogene copies into healthy cells. For example, the viral version of the SRC enzyme lacks the regulatory domain present in the human version. Without this regulatory control, the viral protein triggers uncontrolled cell division in host cells, transforming them into cancer cells.
Q7: What is the role of chemotherapy in cancer treatment?
Chemotherapy targets cell division processes by using cytotoxic drugs—chemicals toxic to cells—that slow proliferation or kill fast-growing cells throughout the body. Different drug combinations are used depending on cancer type and stage. This approach exploits the characteristic feature shared by all cancers: abnormal cell proliferation.