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  • Synonyms
  • Signs & Symptoms
  • Causes
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  • Diagnosis
  • Standard Therapies
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Pulmonary Interstitial Glycogenosis

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Last updated: 2/26/2026
Years published: 2026


Acknowledgment

NORD gratefully acknowledges Vikram Chinnaiyan, MD Candidate, University of South Florida Morsani College of MedicineKatiana Garagozlo, MD, Assistant Professor, University of South Florida Morsani College of Medicine and Gioconda Alyea, MD (FMG), MS, National Organization for Rare Disorders for assistance in the preparation of this report. 


Disease Overview

Summary 

Pulmonary interstitial glycogenosis (PIG) is a rare type of lung disease that affects children and especially infants.    

PIG is characterized by  respiratory issues, including difficulty with breathing, dry cough, and increased effort with breathing.2 It presents soon after birth, typically within 9 months of life.The signs and symptoms include bluish color of skin or lips (cyanosis), increased respiratory rate (tachypnea), and decreased oxygen in blood (hypoxemia).2 Due to these features of the condition, there is increased risk of poor growth, lung infections, and poor lung development. However, PIG typically resolves by end of infancy and has good long-term outcomes.3   

PIG is considered a developmental disorder, meaning it happens while the lungs are still growing. In PIG, certain immature lung cells contain too much glycogen, which is a stored form of sugar, but the cause is not known.4 These cells line the tiny air sacs in the lungs (alveoli) that are responsible for gas (oxygen and carbon dioxide) exchange. When there are too many of these cells, oxygen and carbon dioxide do not move in and out of the lungs as well as they should.   

There is no cure for PIG. Treatment is primarily supportive to manage symptoms while the lungs mature.5 Management often includes supplemental oxygen (oxygen tank or concentrator), with or without ventilatory support (use of a mechanical ventilator or continuous positive airway pressure [CPAP] machine or bilevel positive airway pressure [BiPAP] machine).6  

Some doctors may prescribe steroid medications (glucocorticoids) to limit overgrowth of PIG cells following a careful assessment of potential benefits and risks by the doctors and the patients.⁶   

In addition, infants should receive routine childhood vaccinations, avoid smoke and other environmental irritants, and maintain adequate nutrition to support growth and healing.   

PIG is considered a type of interstitial lung disease (chILD).  

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Synonyms

  • PIG
  • Pulmonary Interstitial Glycogenosis
  • Infantile cellular interstitial pneumonitis
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Signs & Symptoms

Pulmonary interstitial glycogenosis (PIG) shares common symptoms with other diseases within childhood interstitial lung disease (chILD syndrome). The condition begins very early in life, often within the first few weeks after birth. In most cases, it improves on its own and resolves by the end of the first year of life, with good long-term outcomes.1,3,7 However, the respiratory symptoms may continue into adolescence.1 The signs and symptoms may include the following:2,7 

  • Respiratory signs and symptoms 
    • Increased rate of breathing (tachypnea)   
    • Shortness of breath (dyspnea) with activity, such as feeding, or at rest   
    • Increased use of extra muscles for breathing, such as inward movements of the chest wall when taking a breath in   
    • Dry cough   
    • Abnormal lung sounds, such as crackles and wheezing   
  • Low oxygen in blood (hypoxemia)  
  • Bluish skin color or lips (cyanosis)  
  • Failure to thrive   
    • Due to increased effort with breathing and chronic hypoxemia, there is an inability to maintain growth and development   
  • Increased pressure within the pulmonary artery due to impaired oxygen exchange into the bloodstream and narrowing of blood vessels   
  • Increased risk for lung infections, such as pneumonia.   
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Causes

Pulmonary interstitial glycogenosis (PIG) is classified as part of a group of lung conditions called childhood interstitial lung disease (child), a group of lung diseases in infants involving the cells within lungs that often cause similar breathing problems.4   

The cause of PIG is not known.4 So far, no genes have been identified as causes of PIG.   

Lung development in newborns (neonates) involves the creation of small sacs (alveoli) with thin membranes that enable oxygen and carbon dioxide exchange. PIG is a development disorder characterized by the persistence of immature cells called mesenchymal cells that contain too much glycogen, a form of stored sugar.4 Glycogen is a large macromolecule built from simple sugar units (glucose). The walls separating alveoli are made of mesenchymal cells. These cells have large amounts of glycogen during early lung development.8 Normally, they lose their glycogen as the lungs mature.  

However, in babies with PIG, mesenchymal cells mature later than normal and continue to grow while containing large amounts of glycogen. This thickens the tissue between the air sacs and blood vessels, making gas exchange less efficient. As a result, infants develop low oxygen levels in the blood (hypoxemia) and tissues (hypoxia), leading to bluish skin discoloration, increased effort with breathing, and other respiratory symptoms. 

PIG may be associated with other conditions, such as congenital heart disease (heart defects that are  present at birth) and pulmonary hypertension (high blood pressure in lung arteries).8  

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Affected populations

Pulmonary interstitial glycogenosis (PIG) is a very rare condition. As per 2026, there are less than 100 cases documented in the medical literature.9   

It is reported that the prevalence of childhood interstitial lung disease (chILD) is 1.3 to 3.6 children per million. Each year, about 0.1 to 16 children per 100,000 are newly diagnosed with some form of chILD.9 Since PIG is a subset of chILD, the incidence and prevalence of PIG are much lower than these reported numbers. The age of onset is in early infancy (less than 8 months) and it often presents in newborn babies shortly after birth.1   

 

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Diagnosis

The diagnostic process for pulmonary interstitial glycogenosis (PIG) begins with an evaluation for childhood interstitial lung disease.   

When infants and young children have widespread (diffuse) lung disease, meaning that many areas of the lungs are affected, clinicians use the term “chILD (childhood interstitial lung disease) syndrome” to identify those who require urgent diagnostic workup (testing) to determine the exact underlying chILD condition. chILD syndrome may be suspected in newborns with persistent breathing symptoms along with physical signs of breathing difficulty. However, other conditions that can cause similar symptoms must be ruled out first.   

A diagnosis of chILD syndrome is made when an infant has at least three of the following four criteria, after common causes of diffuse lung disease have been excluded:2,5 

  1. Persistent respiratory symptoms, such as chronic cough, dyspnea (difficulty breathing), or increased respiratory effort 
  2. Clinical signs of respiratory insufficiency, meaning the lungs are not working well enough, which may include abnormal lung sounds such as crackles or wheezing heard during a physical examination 
  3. Low oxygen levels in the blood (hypoxemia), measured using pulse oximetry, a painless test in which a small sensor placed on the skin estimates blood oxygen levels 
  4. Imaging findings consistent with interstitial lung disease, seen on chest X-ray or computed tomography (CT) scan, which can show abnormal changes in lung tissue. 

PIG is one of several possible diagnoses that may be identified through the diagnostic workup triggered by chILD syndrome. Infants with PIG typically develop respiratory distress immediately after birth or within the first few months of life. The most common symptoms include increased respiratory effort when breathing and low blood oxygen levels (hypoxemia).3, 9   

A high-resolution CT (computed tomography) scan of the chest is typically ordered to look for specific lung changes such as hazy or cloudy areas in the lungs (ground-glass opacities).2 

However, these imaging findings can look similar to other lung conditions that affect newborns, particularly genetic disorders affecting surfactant (a substance that helps the lungs work properly). For this reason, imaging alone cannot confirm the diagnosis of PIG, but the findings are helpful in guiding the need for genetic testing and/or biopsy. 

Several laboratory tests and procedures are commonly used to evaluate disease severity and support the diagnosis:2  

  • Pulmonary function tests, which measure how well the lungs are working and help track changes over time. In PIG, these tests may show reduced lung size or capacity.  
  • Blood gas tests, which measure oxygen (O) and carbon dioxide (CO) levels in the blood to assess how well gases are exchanged in the lungs  
  • Diffusion capacity testing (DLCO), which evaluates how effectively gases move across the air sacs of the lungs into the bloodstream. This test may be markedly reduced in infants with PIG.  
  • Genetic testing, which is done to look for genetic conditions associated with chILD, although PIG itself does not have a known genetic marker used for diagnosis. PIG appears to be a developmental abnormality of lung maturation rather than a genetic disorder.  
  • Bronchoscopy with bronchoalveolar lavage, a procedure in which a small camera is inserted into the airways of the lungs to look for blockages, inflammation or abnormal anatomy and to collect fluid samples from the lungs. These samples are tested for infection, inflammation or bleeding. This test can help doctors decide whether more invasive testing, such as a lung biopsy, is needed.  
  • Cardiac (heart) ultrasound (echocardiogram), which is used to evaluate for pulmonary hypertension. 

The diagnosis of PIG can only be confirmed with a surgical lung biopsy. During this procedure, a small sample of lung tissue is removed and examined under a microscope. The tissue is treated with special stains that allow doctors to identify the characteristic cells seen in PIG.2,9 All lung biopsies showing PIG also demonstrate alveolar growth abnormalities with simplified alveolar development (reduced alveolarization).3, 9   

During the diagnostic process, doctors will also look for other conditions that may occur alongside PIG. Many infants with PIG have other lung or heart problems.  

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Standard Therapies

There is currently no cure for pulmonary interstitial glycogenosis (PIG).5 Treatment focuses on supporting breathing, managing symptoms, and preventing complications while the lungs mature.   

Most children with PIG have favorable outcomes, and many improve over time. However, in rare cases with severe lung damage, a lung transplant may be needed.6 Even when symptoms improve, some children may continue to have changes (abnormalities) on lung imaging tests or have reduced lung function (pulmonary function deficits) that can persist into adolescence. 

Children with PIG should receive routine childhood vaccinations and avoid lung irritants, such as cigarette smoke, which can worsen breathing problems.6 Supplemental oxygen is often used to help improve low oxygen levels in the blood (hypoxemia). During periods of more serious breathing difficulty, breathing support (ventilatory support) may be also be needed.    

There is no clear consensus on the use of glucocorticoids, medications commonly used to reduce inflammation. In theory, glucocorticoids may limit the growth of immature PIG cells.⁶ However, available evidence suggests they may be effective primarily in the diffuse form of PIG.⁶ The decision to use glucocorticoids is made on a case-by-case basis after carefully weighing potential risks and benefits.⁵  

People affected with PIG should be cared for by a team of multiple specialists working together in a coordinated way to provide high-quality care. These specialists may include doctors who specialize in lung and breathing problems in children (pediatric pulmonologists), doctors who read imaging tests, such as chest X-rays and CT scans to look for changes in the lungs (radiologists), surgeons, doctors who examine tissue samples under a microscope to confirm a diagnosis (pathologists), and healthcare professionals who help manage breathing treatments, oxygen therapy, and ventilator support (respiratory therapists).5   

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Clinical Trials and Studies

Information on current clinical trials is posted on the Internet at https://clinicaltrials.gov/ All studies receiving U.S. Government funding, and some supported by private industry, are posted on this government web site.  

For information about clinical trials being conducted at the NIH Clinical Center in Bethesda, MD, contact the NIH Patient Recruitment Office:   

Tollfree: (800) 411-1222  

TTY: (866) 411-1010 

Email: [email protected]  

Some current clinical trials also are posted on the following page on the NORD website:   https://rarediseases.org/living-with-a-rare-disease/find-clinical-trials/  

For information about clinical trials sponsored by private sources, contact:  http://www.centerwatch.com/ 

For information about clinical trials conducted in Europe, contact:  https://www.clinicaltrialsregister.eu/ 

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References

  1. LiptzinDR, Baker CD, Darst JR, et al. Pulmonary interstitial glycogenosis: Diagnostic evaluation and clinical course. Pediatr Pulmonol. 2018;53(12):1651-1658. doi:10.1002/ppul.24123 
  2. Nathan N, Griese M, Michel K, et al. Diagnostic workup of childhood interstitial lung disease.Eur Respir Rev. 2023;32(167):220188. Published 2023 Feb 21. doi:10.1183/16000617.0188-2022 
  3. SardónO, Torrent-Vernetta A, Rovira-Amigo S, et al. Isolated pulmonary interstitial glycogenosis associated with alveolar growth abnormalities: A long-term follow-up study. Pediatr Pulmonol. 2019;54(6):837-846. doi:10.1002/ppul.24324 
  4. Presti S, Parisi GF, Papale M, Gitto E, Manti S, Leonardi S. Interstitial Lung Disease in Children: “Specific Conditions of Undefined Etiology” Becoming Clearer.Children (Basel). 2022;9(11):1744. Published 2022 Nov 14. doi:10.3390/children9111744 
  5. KurlandG, Deterding RR, Hagood JS, et al. An official American Thoracic Society clinical practice guideline: classification, evaluation, and management of childhood interstitial lung disease in infancy. Am J Respir Crit Care Med. 2013;188(3):376-394. doi:10.1164/rccm.201305-0923ST 
  6. Young LR, Deterding R, Deutsch GH. Approach to the infant and child with diffuse lung disease (interstitial lung disease). In: Post TW, ed.UpToDate. UpToDate; 2025. Accessed December 22, 2025. https://www.uptodate.com/contents/approach-to-the-infant-and-child-with-diffuse-lung-disease-interstitial-lung-disease 
  7. Casey A, Fiorino EK, Wambach J. Innovations in Childhood Interstitial and Diffuse Lung Disease.Clin Chest Med. 2024;45(3):695-715. doi:10.1016/j.ccm.2024.04.002 
  8. Cutz E, Chami R, Dell S, Langer J, Manson D. Pulmonary interstitial glycogenosis associated with a spectrum of neonatal pulmonary disorders.Hum Pathol. 2017;68:154-165. doi:10.1016/j.humpath.2017.06.026 
  9. Seidl E,Carlens J, Reu S, et al. Pulmonary interstitial glycogenosis – A systematic analysis of new cases. Respir Med. 2018;140:11-20. doi:10.1016/j.rmed.2018.05.009 

 

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