Endocrine System | IB OCR 生物学:内分泌系统 考点精讲

📚 Endocrine System | IB OCR 生物学:内分泌系统 考点精讲

The endocrine system is a collection of glands that secrete hormones directly into the bloodstream, regulating processes such as growth, metabolism, reproduction, and homeostasis. For IB and OCR Biology students, understanding how chemical messengers coordinate slow but long‑lasting responses is essential. This article breaks down key concepts, common exam traps, and revision strategies to help you master the topic.

内分泌系统是由多种腺体组成的系统,它们将激素直接分泌到血液中,调节生长、代谢、生殖和稳态等过程。对 IB 和 OCR 生物学学生来说,理解化学信使如何协调缓慢但持久的反应至关重要。本文梳理了核心概念、常见考试陷阱和复习策略,帮助你掌握这一主题。

1. Endocrine Glands vs. Exocrine Glands | 内分泌腺与外分泌腺

Endocrine glands are ductless and release hormones directly into the blood, whereas exocrine glands possess ducts and secrete substances onto epithelial surfaces or into body cavities.

内分泌腺无导管,将激素直接释放入血液;外分泌腺则有导管,将物质分泌到上皮表面或体腔内。

  • Examples of endocrine glands include the pituitary, thyroid, adrenal, and pancreas (islets of Langerhans).

    内分泌腺的例子包括垂体、甲状腺、肾上腺和胰腺(胰岛)。

  • Exocrine glands include salivary glands, sweat glands, and the exocrine portion of the pancreas that secretes digestive enzymes.

    外分泌腺包括唾液腺、汗腺以及分泌消化酶的胰腺外分泌部分。

  • OCR often asks students to identify whether a gland is endocrine or exocrine based on its structure and secretion pathway.

    OCR 常要求学生根据结构和分泌途径辨别腺体属于内分泌还是外分泌。


2. Hormone Classification | 激素的分类

Hormones can be classified by their chemical nature into peptide/protein hormones, steroid hormones, and amine hormones, each with distinct modes of action.

激素按化学性质可分为肽类/蛋白质激素、类固醇激素和胺类激素,各自作用方式不同。

  • Peptide hormones (e.g. insulin, glucagon) are water‑soluble and bind to cell‑surface receptors, triggering second‑messenger cascades.

    肽类激素(如胰岛素、胰高血糖素)为水溶性,与细胞表面受体结合,引发第二信使级联反应。

  • Steroid hormones (e.g. oestrogen, testosterone) are lipid‑soluble and diffuse through the plasma membrane to bind intracellular receptors, directly affecting gene transcription.

    类固醇激素(如雌激素、睾酮)为脂溶性,可穿过细胞膜与胞内受体结合,直接影响基因转录。

  • Amine hormones include those derived from tyrosine, such as thyroxine (lipid‑soluble) and adrenaline (water‑soluble).

    胺类激素包括源自酪氨酸的激素,如甲状腺素(脂溶性)和肾上腺素(水溶性)。


3. Mechanism of Hormone Action | 激素的作用机制

Water‑soluble hormones cannot cross the phospholipid bilayer; they bind to specific receptors on the plasma membrane and activate a signal transduction pathway.

水溶性激素无法穿过磷脂双分子层,它们与质膜上的特异性受体结合,激活信号转导通路。

  • A classic example is the binding of adrenaline to the β‑adrenergic receptor, which activates a G‑protein, stimulating adenylyl cyclase to convert ATP to cyclic AMP (cAMP).

    典型例子是肾上腺素与 β‑肾上腺素能受体结合,激活 G 蛋白,刺激腺苷酸环化酶将 ATP 转化为环磷酸腺苷 (cAMP)。

  • cAMP acts as a second messenger, activating protein kinase A, which phosphorylates target enzymes, leading to increased glycogen breakdown in liver cells.

    cAMP 作为第二信使,激活蛋白激酶 A,使目标酶磷酸化,导致肝细胞中糖原分解加速。

Lipid‑soluble hormones enter the cell and form a hormone‑receptor complex that directly binds to DNA, acting as a transcription factor.

脂溶性激素进入细胞后形成激素‑受体复合物,直接与 DNA 结合,充当转录因子。


4. The Hypothalamus–Pituitary Axis | 下丘脑‑垂体轴

The hypothalamus links the nervous and endocrine systems by secreting releasing hormones that control the anterior pituitary, while the posterior pituitary stores and releases hormones synthesised in the hypothalamus.

下丘脑通过分泌释放激素控制垂体前叶,将神经和内分泌系统联系起来;垂体后叶则储存并释放下丘脑合成的激素。

  • Anterior pituitary releases trophic hormones: TSH, ACTH, FSH, LH, GH, and prolactin. For OCR, remember the mnemonic “TF FLAG”.

    垂体前叶分泌促激素:TSH(促甲状腺激素)、ACTH(促肾上腺皮质激素)、FSH、LH、GH 和催乳素。OCR 可用记忆口诀“TF FLAG”。

  • Posterior pituitary releases ADH (vasopressin) and oxytocin, both of which are nonapeptides produced in the hypothalamic nuclei.

    垂体后叶释放抗利尿激素(ADH,血管加压素)和催产素,两者均是在下丘脑核团合成的九肽。

  • Negative feedback typically operates to keep hormone levels within a narrow range (e.g. thyroxine feedback on TRH and TSH).

    负反馈通常使激素水平保持在狭窄范围内(如甲状腺素对 TRH 和 TSH 的反馈)。


5. Blood Glucose Regulation | 血糖调节

The pancreas acts as both an endocrine and exocrine gland. The islets of Langerhans contain α‑cells (secrete glucagon) and β‑cells (secrete insulin).

胰腺既是内分泌腺又是外分泌腺。胰岛含有 α 细胞(分泌胰高血糖素)和 β 细胞(分泌胰岛素)。

  • When blood glucose rises, β‑cells release insulin, which increases membrane permeability to glucose and stimulates glycogenesis in the liver and muscle.

    血糖升高时,β 细胞释放胰岛素,增加膜对葡萄糖的通透性,并刺激肝脏和肌肉中的糖原生成。

  • When blood glucose falls, α‑cells secrete glucagon, which promotes glycogenolysis and gluconeogenesis in the liver.

    血糖下降时,α 细胞分泌胰高血糖素,促进肝糖原分解和糖异生。

  • Diabetes mellitus type 1 (autoimmune destruction of β‑cells) and type 2 (insulin resistance) are frequently examined in both IB and OCR Biology.

    1 型糖尿病(自身免疫破坏 β 细胞)和 2 型糖尿病(胰岛素抵抗)在 IB 和 OCR 生物学中常考。


6. Osmoregulation and ADH | 渗透调节与抗利尿激素

Osmoreceptors in the hypothalamus detect changes in blood water potential. When water potential is low (dehydration), ADH secretion increases.

下丘脑的渗透压感受器检测血液水势的变化。当水势降低(脱水)时,ADH 分泌增多。

ADH acts on the collecting ducts of the kidney, inserting aquaporin‑2 water channels into the apical membrane, increasing water reabsorption.

ADH 作用于肾集合管,将水通道蛋白‑2 嵌入顶膜,增加水的重吸收。

  • This results in concentrated urine and conservation of body water. IB expects you to explain ultrafiltration and selective reabsorption alongside the role of ADH.

    这导致尿液浓缩和体内水分的保存。IB 要求你结合超滤和选择性重吸收来解释 ADH 的作用。


7. The Adrenal Glands | 肾上腺

The adrenal glands consist of the outer cortex (steroid hormones) and the inner medulla (catecholamines).

肾上腺由外层的皮质(分泌类固醇激素)和内层的髓质(分泌儿茶酚胺)组成。

  • Adrenal cortex produces aldosterone (mineralocorticoid, stimulates Na⁺ reabsorption and K⁺ secretion in the distal tubule) and cortisol (glucocorticoid, increases blood glucose and suppresses immune response).

    肾上腺皮质产生醛固酮(盐皮质激素,促进远曲小管对 Na⁺ 的重吸收和 K⁺ 的分泌)和皮质醇(糖皮质激素,升高血糖并抑制免疫反应)。

  • Adrenal medulla produces adrenaline and noradrenaline, mediating the ‘fight or flight’ response by increasing heart rate, bronchodilation, and glycogenolysis.

    肾上腺髓质产生肾上腺素和去甲肾上腺素,调节“战斗或逃跑”反应,表现为心率加快、支气管扩张和糖原分解。


8. Thyroxine and Metabolic Rate | 甲状腺素与代谢率

Thyroxine (T₄) and triiodothyronine (T₃) are iodine‑containing hormones that regulate basal metabolic rate, protein synthesis, and neural development.

甲状腺素 (T₄) 和三碘甲状腺原氨酸 (T₃) 是含碘激素,调节基础代谢率、蛋白质合成和神经发育。

  • Hypothalamus releases TRH → anterior pituitary releases TSH → thyroid releases thyroxine. High thyroxine levels inhibit TRH and TSH release (negative feedback).

    下丘脑释放 TRH → 垂体前叶释放 TSH → 甲状腺释放甲状腺素。甲状腺素水平升高会抑制 TRH 和 TSH 的释放(负反馈)。

  • Iodine deficiency leads to decreased thyroxine production and continuous TSH stimulation, causing goitre.

    碘缺乏导致甲状腺素生成减少,TSH 持续刺激,引起甲状腺肿(大脖子病)。


9. Reproductive Hormones and the Menstrual Cycle | 生殖激素与月经周期

The menstrual cycle is regulated by interplay between FSH, LH, oestrogen, and progesterone. Both IB and OCR require detailed knowledge of the ovarian and uterine cycles.

月经周期受 FSH、LH、雌激素和孕激素相互作用的调节。IB 和 OCR 都要求详细了解卵巢周期和子宫周期。

  • FSH stimulates follicle development; the follicle secretes oestrogen, which stimulates repair of the endometrium and triggers the LH surge.

    FSH 刺激卵泡发育;卵泡分泌雌激素,刺激子宫内膜修复并引发 LH 峰。

  • LH surge causes ovulation. The ruptured follicle forms the corpus luteum, which secretes progesterone to maintain the endometrium.

    LH 峰引发排卵。破裂的卵泡形成黄体,分泌孕激素以维持子宫内膜。

  • If fertilisation does not occur, the corpus luteum degenerates, progesterone drops, and menstruation occurs.

    若未受精,黄体退化,孕激素水平下降,月经来潮。


10. Negative and Positive Feedback | 负反馈与正反馈

Most hormonal regulation operates via negative feedback, where the output inhibits further secretion. A few processes, such as oxytocin release during childbirth, use positive feedback.

大多数激素调节通过负反馈进行,即输出抑制进一步的分泌。少数过程,如分娩时催产素的释放,采用正反馈。

  • Negative feedback example: high thyroxine inhibits TRH/TSH; high blood glucose inhibits glucagon and stimulates insulin.

    负反馈例子:甲状腺素水平高抑制 TRH/TSH;高血糖抑制胰高血糖素并刺激胰岛素。

  • Positive feedback example: uterine contractions stimulate oxytocin release, which intensifies contractions until delivery. OCR may ask you to compare feedback types.

    正反馈例子:子宫收缩刺激催产素释放,加剧宫缩直至分娩。OCR 可能会要求比较不同的反馈类型。


11. Common Exam Questions and Pitfalls | 常见考题与易错点

Examiners often test the difference between endocrine and nervous coordination, the mode of hormone action, and interpretation of blood glucose graphs.

考官常考查内分泌与神经协调的区别、激素的作用方式,以及血糖曲线图的解读。

  • Do not confuse the roles of insulin and glucagon; insulin lowers blood glucose, glucagon raises it.

    不要混淆胰岛素和胰高血糖素的功能;胰岛素降血糖,胰高血糖素升血糖。

  • In OCR, ‘Osmoregulation’ questions frequently link ADH to urine volume and concentration. Always mention aquaporins.

    在 OCR 中,“渗透调节”题常将 ADH 与尿量和浓度联系起来。一定要提到水通道蛋白。

  • IB data‑based questions might ask you to analyse hormone concentration graphs and identify which feedback loop is operating.

    IB 数据分析题可能会让你分析激素浓度曲线图,判断运行的是哪种反馈回路。


12. Study Tips and Summary | 学习技巧与总结

Create a table linking each gland, its hormone, target tissue, and effect. For IB, practise drawing annotated diagrams of the hypothalamus–pituitary axis and the menstrual cycle profiles.

制作一张表格,链接每个腺体、激素、靶组织和效应。对 IB 而言,练习绘制下丘脑‑垂体轴和月经周期曲线的带注释示意图。

  • Use flow charts to describe feedback mechanisms step by step, including the names of hormones and glands.

    用流程图逐步描述反馈机制,包括激素和腺体名称。

  • When revising, compare and contrast peptide and steroid hormone actions. This is a frequent short‑answer topic.

    复习时,比较并对比肽类与类固醇激素的作用方式。这是常见简答题考点。

  • Finally, test yourself on real IB past papers and OCR specimen questions to become comfortable with the command terms like ‘describe’, ‘explain’, and ‘discuss’.

    最后,用真实的 IB 历年真题和 OCR 样题自测,熟悉“描述”“解释”“讨论”等指令词。

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