# A nurse is caring for a 28-year-old female client diagnosed with iron-deficiency anemia (hemoglobin 8.2 g/dL, serum ferritin 8 ng/mL) who reports fatigue, weakness, and heavy menstrual periods. Which dietary teaching should the nurse prioritize to enhance iron absorption?

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> subject: Adult Health

## 문제

A nurse is caring for a 28-year-old female client diagnosed with iron-deficiency anemia (hemoglobin 8.2 g/dL, serum ferritin 8 ng/mL) who reports fatigue, weakness, and heavy menstrual periods. Which dietary teaching should the nurse prioritize to enhance iron absorption?

## 보기

1. Consume iron-rich foods with vitamin C sources like citrus fruits or tomatoes **✔ 정답**
2. Take iron supplements with dairy products to improve tolerance
3. Eat iron-rich foods with whole grain cereals and bran products
4. Consume iron supplements with coffee or tea to aid digestion

**정답: 1**

## 해설

Vitamin C enhances iron absorption by converting ferric to ferrous iron, making it the priority teaching. Other options like dairy or coffee can inhibit absorption and should be avoided.

## 심화 해설

Clinical Context

This client presents with classic signs of iron-deficiency anemia (IDA), confirmed by a low hemoglobin of 8.2 g/dL and a depleted serum ferritin of 8 ng/mL. The heavy menstrual periods are a common etiological factor in premenopausal women, leading to chronic blood loss and depletion of iron stores. The primary nursing goal is not just to replace iron, but to maximize its bioavailability through strategic dietary pairing.

Pathophysiology and Mechanism of Absorption

Dietary iron exists in two forms: heme iron (from animal sources) and non-heme iron (from plant sources). Non-heme iron, which constitutes the majority of dietary iron, is poorly absorbed in the duodenum because it is often in the ferric (Fe³⁺) state. To be transported across the enterocyte membrane by the divalent metal transporter 1 (DMT1), iron must be in the reduced ferrous (Fe²⁺) state. Ascorbic acid (vitamin C) acts as a potent reducing agent, converting ferric iron to the more soluble and absorbable ferrous form. Furthermore, vitamin C chelates with iron to form a complex that remains soluble in the alkaline pH of the small intestine, preventing the formation of insoluble ferric hydroxide [1].

Analysis of Options

The correct teaching prioritizes the synergistic relationship between iron and vitamin C to overcome the bioavailability challenges seen in IDA, particularly in populations with increased menstrual losses.

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**Option 1 (Correct):** Pairing iron-rich foods with vitamin C sources like citrus fruits or tomatoes directly leverages the chemical reduction of iron to enhance absorption. In the context of adolescent and young adult women experiencing menarche-related losses, nutritional counseling must emphasize this combination to counteract dietary deficiencies [1].

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**Option 2:** Dairy products are rich in calcium, a divalent cation that competes with iron for the DMT1 transport pathway. This competition inhibits iron uptake, making this combination counterproductive.

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**Option 3:** Whole grains and bran contain phytates, which are potent inhibitors of non-heme iron absorption. Phytates bind to iron in the intestinal lumen, forming insoluble complexes that cannot be absorbed.

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**Option 4:** Coffee and tea contain tannins and other polyphenols that strongly chelate iron, significantly reducing its absorption. This is a major dietary inhibitor that should be avoided during iron-rich meals.

Nursing Application and NCLEX-RN Focus

For the NCLEX-RN, understanding the distinction between absorption enhancers and inhibitors is critical for client teaching in IDA management. The priority is to educate the client to take iron supplements or consume iron-rich meals with a source of vitamin C, while separating intake of iron from calcium-rich foods, phytates, and tannins by at least one to two hours. Given that this client's IDA is linked to heavy menstrual periods, effective dietary counseling is a key nursing intervention to support pharmacologic therapy and prevent recurrence [1].

References (research sources)

- [1]Iron Deficiency Anemia in Teenage Girls: The Impact of Menarche and Nutritional Care.Research articleAnwar S, Rauf MK, Farooq M, Khan M, Maqsood W, Gulraiz S. (2025) · DOI: 10.7759/cureus.84997

## 임상 시나리오

Maximizing Oral Iron AbsorptionClinical strategies for dietary counseling in iron-deficiency anemia
Always pair non-heme iron sources (e.g., spinach, legumes) with a vitamin C source. 75 mg of ascorbic acid can increase absorption up to 4-fold by converting ferric iron (Fe³⁺) to the absorbable ferrous form (Fe²⁺).

Administer oral iron on an empty stomach with water or acidic juice. If gastrointestinal upset occurs, a small amount of food may be taken, but avoid calcium-rich items, phytates (bran), and tannins (tea/coffee) which chelate iron and block its uptake.

Heme iron from meat, poultry, and fish is absorbed 2-3 times more efficiently than non-heme iron and is not affected by inhibitors. Encourage inclusion of lean red meat to boost total iron bioavailability.

CautionLiquid iron supplements can stain teeth; instruct the client to use a straw and dilute the dose. Warn that stools will become dark green or black, which is a benign effect, not a sign of GI bleeding.

## 핵심 개념

- **Heme Iron** — Iron from animal sources (meat, poultry, fish) that is well absorbed directly by enterocytes.
- **Non-Heme Iron** — Iron from plant sources and dairy; requires conversion from ferric (Fe3+) to ferrous (Fe2+) state for absorption via DMT1.
- **DMT1** — Divalent Metal Transporter 1; the primary protein responsible for transporting ferrous iron across the intestinal cell membrane.
- **Ascorbic Acid** — Vitamin C; a reducing agent that keeps non-heme iron in the soluble, absorbable ferrous form and chelates it for stability in alkaline pH.
- **Serum Ferritin** — An intracellular protein that stores iron; its level (

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