Vitamin C Deficiency

(Scurvy; Ascorbic Acid Deficiency)

ByLarry E. Johnson, MD, PhD, University of Arkansas for Medical Sciences
Reviewed/Revised Aug 2024
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In countries with low rates of food insecurity, vitamin C deficiency can occur as part of general undernutrition, but severe deficiency (causing scurvy) is uncommon. Symptoms include fatigue, depression, and connective tissue defects (eg, gingivitis, petechiae, rash, internal bleeding, impaired wound healing). In infants and children, bone growth may be impaired. Diagnosis is usually clinical. Treatment consists of oral vitamin C.

Vitamin C plays a role in collagen, carnitine, hormone, and amino acid formation. It is essential for bone and blood vessel health and wound healing and facilitates recovery from burns. Vitamin C is also an antioxidant, supports immune function, and facilitates the absorption of iron (see table Sources, Functions, and Effects of Vitamins).

Dietary sources of vitamin C include citrus fruits, tomatoes, potatoes, broccoli, strawberries, and sweet peppers. (See also Overview of Vitamins.)

Severe vitamin C deficiency results in scurvy, a disorder characterized by hemorrhagic manifestations and abnormal osteoid and dentin formation.

Etiology of Vitamin C Deficiency

Primary vitamin C deficiency is usually due to

  • Inadequate diet

The need for dietary vitamin C is increased by febrile illnesses, inflammatory disorders (particularly diarrheal disorders), achlorhydria, smoking, hyperthyroidism, iron deficiency, cold or heat stress, surgery, burns, and protein deficiency.

Heat (eg, sterilization of formulas, cooking) can destroy some of the vitamin C in food.

Pathophysiology of Vitamin C Deficiency

When vitamin C is deficient, formation of intercellular cement substances in connective tissues, bones, and dentin is defective, resulting in weakened capillaries with subsequent hemorrhage and defects in bone and related structures.

Bone tissue formation becomes impaired, which, in children, causes bone lesions and poor bone growth. Fibrous tissue forms between the diaphysis and the epiphysis, and costochondral junctions enlarge. Densely calcified fragments of cartilage are embedded in the fibrous tissue. Subperiosteal hemorrhages, sometimes due to small fractures, may occur in children or adults.

Symptoms and Signs of Vitamin C Deficiency

In adults, symptoms of vitamin C deficiency develop after weeks to months of vitamin C depletion. Lassitude, weakness, irritability, weight loss, and vague myalgias and arthralgias may develop early.

Symptoms of scurvy (related to defects in connective tissues) develop after a few months of deficiency. Follicular hyperkeratosis, coiled hair, and perifollicular hemorrhages may develop. Gums may become swollen, purple, spongy, and friable; they bleed easily in severe deficiency. Eventually, teeth become loose and avulsed. Secondary infections may develop. Wounds heal poorly and tear easily, and spontaneous hemorrhages may occur, especially as ecchymoses in the skin of the lower limbs or as bulbar conjunctival hemorrhage.

Other symptoms and signs include femoral neuropathy due to hemorrhage into femoral sheaths (which may mimic deep venous thrombosis), lower extremity edema, and painful bleeding or effusions within joints.

In infants, symptoms include irritability, pain during movement, anorexia, and slowed growth. In infants and children, bone growth is impaired, and bleeding and anemia may occur.

Diagnosis of Vitamin C Deficiency

  • Usually clinical (based on skin or gingival findings and risk factors)

Diagnosis of vitamin C deficiency is usually made clinically in a patient who has skin or gingival signs and is at risk of vitamin C deficiency. Laboratory confirmation may be available. Complete blood count is done, often detecting anemia. Bleeding, coagulation, and prothrombin times are normal.

Skeletal radiographs can help diagnose childhood (but not adult) scurvy. Changes are most evident at the ends of long bones, particularly at the knee. Early changes resemble atrophy. Loss of trabeculae results in a ground-glass appearance. The cortex thins. A line of calcified, irregular cartilage (white line of Fraenkel) may be visible at the metaphysis. A zone of rarefaction or a linear fracture proximal and parallel to the white line may be visible as only a triangular defect at the bone’s lateral margin but is specific. The epiphysis may be compressed. Healing subperiosteal hemorrhages may elevate and calcify the periosteum.

< 0.6 mg/dL (< 34 mcmol/L) are considered marginal; levels of < 0.2 mg/dL (<

In adults, scurvy must be differentiated from arthritis, hemorrhagic disorders, gingivitis, and protein-energy undernutrition. Hyperkeratotic hair follicles with surrounding hyperemia or hemorrhage are almost pathognomonic. Bleeding gums, conjunctival hemorrhages, most petechiae, and ecchymoses are nonspecific.

Treatment of Vitamin C Deficiency

  • Nutritious diet with supplemental ascorbic acid

daily recommended intake.

In scurvy, therapeutic doses of ascorbic acid restore the functions of vitamin C in a few days. The symptoms and signs usually disappear over 1 to 2 weeks. Chronic gingivitis with extensive subcutaneous hemorrhage persists longer.

Prevention of Vitamin C Deficiency

Vitamin C 75 mg orally once a day for women and 90 mg orally once a day for men prevents deficiency. People who smoke should consume an additional 35 mg/day. Preventive doses in children are age-dependent.

Five servings of most fruits and vegetables (recommended daily) provide > 200 mg of vitamin C.

Key Points

  • The need for vitamin C is increased by fever, inflammation, diarrhea, smoking, hyperthyroidism, iron deficiency, cold or heat stress, surgery, burns, and protein deficiency.

  • After weeks or months, the deficiency causes nonspecific symptoms (eg, weakness, lassitude, irritability, arthralgias, myalgias); later, connective tissue is affected, causing follicular hyperkeratosis, coiled hair, swollen and bleeding gums, loose teeth, poor wound healing, and spontaneous hemorrhages.

  • In patients who have skin or gingival symptoms or risk factors for the deficiency, measure the ascorbic acid level.

Drugs Mentioned In This Article

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