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High-Sensitivity Troponin I (hs-Trop I) Test: What It Is, Normal Range, Meaning & Why It Matters

By Dr. Vishesh Bharucha +2 more

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Introduction

Chest pain does not always mean a heart attack. Many people with heart muscle injury may have no chest pain, while chest pain can also have non-cardiac causes, such as muscle, digestive, or lung problems. In such situations, a simple blood test, such as the high-sensitivity troponin I test, can provide valuable clues, helping doctors quickly determine whether the heart has been damaged and guide timely treatment.  

The high-sensitivity troponin I test can be used to assess the individual for a heart attack, as the test can detect heart-specific proteins in the bloodstream quickly1.

High-Sensitivity Troponin I (hs-Trop I) Test

In this article, we’ll explain what is troponin test, how it works, the troponin normal range, what the results mean, who may need the test, and why it plays an important role in assessing heart health. 

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What Is Troponin I?

Cardiac troponin I (cTnI) is a special form of protein found only in heart muscle cells. It differs from other types of troponin found in the body and can be identified on laboratory tests, making troponin I one of the most reliable and accurate markers of heart muscle damage2. When the heart muscle is injured, such as during a heart attack, troponin I is released into the bloodstream and can be used for early diagnosis and treatment of heart conditions. 

What Is the High-Sensitivity Troponin I (hs-Trop I) Test?

The high-sensitivity troponin I (hs-cTnI) test is a blood test that measures very small amounts of cardiac troponin I (a protein released when the heart muscle is injured). It is mainly used when doctors suspect acute coronary syndrome (ACS), including a heart attack, or other heart muscle injury. When compared with conventional troponin tests, hs-cTnI can detect very low levels of troponin and may detect heart muscle injury earlier (depending on when the injury occurred)3

However, a high hs-cTnI level does not always mean a heart attack. Troponin I is specific to heart muscle, but levels can also rise with conditions such as myocarditis, heart failure, pulmonary embolism, severe infection (sepsis), kidney disease, and very fast heart rhythms4

Types of Troponin

Troponin is a group of three proteins, troponin I (TnI), troponin C (TnC), and troponin T (TnT). These proteins work together to regulate muscle contractions. Of these, troponin I and troponin T may be used as markers to detect heart muscle damage5

  • Troponin C (TnC): Troponin C binds to calcium and helps initiate muscle contraction; however, it is not specific to the heart muscle and cannot be used to diagnose heart muscle injury6
  • Troponin T (TnT): Troponin T is the largest subunit of the troponin complex and interacts with both TnI and TnC to help ensure proper contraction of the heart muscle. It is a key regulator of normal heart function and is used, along with troponin I, to detect and assess heart muscle injury7
  • Troponin I (TnI): Troponin I helps regulate the contraction and relaxation of the heart muscle. The cardiac form of troponin I (cTnI) is found almost always in heart muscle cells. It has a unique structure and works together with other forms of troponins to regulate heart muscle contraction. Because cardiac troponin I is specific to the heart, it can be used as a highly reliable biomarker for detecting heart muscle injury8

hs-Troponin I Normal Range & What Your Results Mean

High-sensitivity troponin I (hs-cTnI) tests can detect extremely small amounts of cardiac troponin I (cTnI) in the blood. This increased sensitivity allows small changes in troponin levels to be identified and may help rule out a heart attack sooner after the onset of acute chest pain. It also helps people with normal troponin levels to be discharged earlier. 

A single high troponin level indicates heart muscle injury, but it does not necessarily mean a heart attack. To diagnose an acute myocardial infarction (AMI), doctors look for a rise or fall in troponin levels, along with other evidence of reduced blood flow to the heart, such as symptoms, ECG changes, imaging findings, or angiographic findings. 

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Because different laboratories use different testing methods (assays), there is no single normal value for everyone. Instead, each laboratory interprets the result using its own 99th-percentile upper reference limit (URL), which is different in men and women9

Examples of sex-specific 99th-percentile upper reference limits used by different hs-cTnI assays are shown below. 

Manufacturer9Assay999th centile (ng/l) – Males999th centile (ng/l) – Females9
Abbott Diagnostics Alinity i STAT hs-cTnI 34.2 15.6 
Beckman Coulter Access hs-cTnI 19.8 11.6 
bioMérieux VIDAS hs-cTnI 25 11 
Ortho Clinical Diagnostics VITROS hs-cTnI 12 
Quidel TriageTrue hs-cTnI 25.7 14.4 
Siemens Healthcare ADVIA Centaur hs-cTnI 57.27 36.99 

The results could conclude: 

hs-Troponin I Normal Range & What Your Results Mean
  • Below the 99th-percentile URL (normal): Usually considered within the normal range for that assay. However, a normal result does not completely rule out a heart problem, and repeat tests may be needed. 
  • Borderline or mildly elevated: May indicate heart muscle injury. Elevated levels can also be seen in conditions other than a heart attack, such as heart failure, pulmonary embolism, chronic kidney disease, sepsis, or abnormal heart rhythms. 
  • Elevated with a rising and falling pattern: A rise and fall in troponin levels on repeat tests, particularly when at least one value is above the 99th-percentile URL, is suggestive of a recent heart muscle injury. This type of result is interpreted along with the individual’s symptoms, ECG results, and medical history when diagnosing a heart attack. 

Who Should Consider a Troponin I Test?

A troponin I test is not a routine screening test. It is mainly used when doctors suspect an acute myocardial infarction (heart attack) or other acute heart muscle injury. A troponin I test is usually recommended in individuals with: 

  • Chest pain or discomfort, especially when a heart attack is suspected. 
  • Shortness of breath or other symptoms that may suggest acute heart muscle injury. 
  • Other conditions that can cause acute heart muscle injury, such as pulmonary embolism, severe infection (sepsis), certain abnormal heart rhythms, or heart failure. 
  • Other clinical situations where a doctor suspects myocardial injury, based on the person’s symptoms, examination, ECG, or medical history1.

How Is the Test Done?

The troponin I test involves collecting a small blood sample from a vein in your arm using a sterile needle. You may experience a slight prick or stinging sensation when the needle is inserted or removed. The entire procedure is quick and typically takes less than 5 minutes. 

The test does not require any special preparation. It is important to tell your healthcare professional if you are taking vitamin B7 (biotin) supplements, as they can lower troponin levels1.

Turnaround time for a troponin test can vary depending on the laboratory, hospital, and type of test used. Results may sometimes be available within a short time, but some laboratories may take longer. The high-sensitivity troponin I test result is interpreted along with the individual’s symptoms, medical history, and ECG results. Rapid testing options are also available through the troponin I rapid test9.

Also Read: Hemolysis: Meaning, Causes, Types, Symptoms, Diagnosis & Treatment 

When to Consult a Doctor?

You should consult a doctor if you experience symptoms suggestive of heart attack or other serious heart condition, such as: 

  • Discomfort, heaviness, or chest pain 
  • Pain or discomfort that travels to the left arm, jaw, neck, or back 
  • Shortness of breath 
  • Nausea or vomiting 
  • Unexplained tiredness 
  • Dizziness or lightheadedness 
  • Cold sweats 
  • Irregular heart beat1

These symptoms require emergency medical assistance. In these situations, a high-sensitivity troponin I test is used as part of emergency evaluation rather than as a routine test. 

Conclusion

The high-sensitivity troponin I (hs-cTnI) test is one of the most accurate blood tests for detecting heart muscle injury, and it can detect even small changes in troponin levels. It is usually interpreted along with the individual’s symptoms, ECG report, and medical history and helps doctors diagnose or rule out serious heart conditions quickly and take timely decisions for treatment. This is useful when early diagnosis and treatment are essential, for example, in patients who visit the emergency room. 

Frequently Asked Questions (FAQs)

What does a high troponin I result mean? 

High troponin I levels indicate that the heart muscle has been injured. Although a heart attack is one of the most common cause of high troponin levels, they may also be caused by conditions such as heart failure, pulmonary embolism, or chronic kidney disease1.

Is the high-sensitivity troponin I test better than a regular troponin test? 

Yes. High-sensitivity troponin I (hs-cTnI) tests can detect much smaller amounts of troponin than older tests and can identify heart muscle injury earlier. This allows doctors to diagnose or rule out a heart attack more quickly in patients with chest pain, especially when time is of essence, for example, in the emergency department10

Do I need to fast before a troponin I test? 

No, fasting is not required before a high-sensitivity troponin I test. A healthcare professional collects a blood sample from a vein in your arm using a small needle. Biotin supplements may interfere with the test results; therefore, if you are taking biotin supplements,  inform your doctor  before the test1.

Can troponin be high without a heart attack? 

Yes, troponin can be high without a heart attack. Some conditions in which troponin can be elevated include heart muscle inflammation, heart failure, sepsis, strenuous exercise, chest injuries, blood clots in the lungs, chronic kidney disease, irregular heartbeat, or severe COVID infection. 

References

  1. Troponin Test. [Internet]. Medline Plus. Available from: https://medlineplus.gov/lab-tests/troponin-test/  
  1. Babuin L, Jaffe AS. Troponin: the biomarker of choice for the detection of cardiac injury. CMAJ. 2005 Nov 8;173(10):1191-202. doi: 10.1503/cmaj/051291. Erratum in: CMAJ. 2005 Dec 6;173(12):1490. Erratum in: CMAJ. 2006 Jan 31;174(3):353. Available from: https://pmc.ncbi.nlm.nih.gov/articles/PMC1277047/  
  1. Xu RY, Zhu XF, Yang Y, Ye P. High-sensitive cardiac troponin T. J Geriatr Cardiol. 2013 Mar;10(1):102-9. doi: 10.3969/j.issn.1671-5411.2013.01.015. Available from: https://pmc.ncbi.nlm.nih.gov/articles/PMC3627711/  
  1. Thorsteinsdottir I, Aspelund T, Gudmundsson E, Eiriksdottir G, Harris TB, Launer LJ, et al. High-Sensitivity Cardiac Troponin I Is a Strong Predictor of Cardiovascular Events and Mortality in the AGES-Reykjavik Community-Based Cohort of Older Individuals. Clin Chem. 2016 Apr;62(4):623-30. doi: 10.1373/clinchem.2015.250811. Epub 2016 Mar 2. https://pubmed.ncbi.nlm.nih.gov/26936931/
  1. Katrukha IA. Human cardiac troponin complex. Structure and functions. Biochemistry (Mosc). 2013 Dec;78(13):1447-65. doi: 10.1134/S0006297913130063. Available from: http://protein.bio.msu.ru/biokhimiya/contents/v78/full/78130149.html  
  1. Lindhout DA, Sykes BD. Structure and dynamics of the C-domain of human cardiac troponin C in complex with the inhibitory region of human cardiac troponin I. J Biol Chem. 2003 Jul 18;278(29):27024-34. doi: 10.1074/jbc.M302497200. Epub 2003 May 5. Available from: https://www.jbc.org/article/S0021-9258(20)84666-3/pdf  
  1. Troponin. [Internet]. 2013, Encyclopedia of Biological Chemistry (Second Edition). Available from: https://www.sciencedirect.com/topics/pharmacology-toxicology-and-pharmaceutical-science/troponin-t  
  1. Marston S, Zamora JE. Troponin structure and function: a view of recent progress. J Muscle Res Cell Motil. 2020 Mar;41(1):71-89. doi: 10.1007/s10974-019-09513-1. Epub 2019 Apr 27.  https://pubmed.ncbi.nlm.nih.gov/31030382/
  1. Westwood M, Ramaekers B, Grimm S, et al. High-sensitivity troponin assays for early rule-out of acute myocardial infarction in people with acute chest pain: a systematic review and economic evaluation. V NIHR Journals Library; 2021 May. Available from: https://www.ncbi.nlm.nih.gov/books/NBK570808/  
  1. Lin Z, Cardelli P, Marino R, Lim SH, Di Somma S; Great Network. Advantage of Using of High-Sensitivity Troponin I Compared to Conventional Troponin I in Shortening Time to Rule out/in Acute Coronary Syndrome in Chest Pain Patients Presenting to the Emergency Department. Medicina (Kaunas). 2022 Oct 4;58(10):1391. doi: 10.3390/medicina58101391.  https://pubmed.ncbi.nlm.nih.gov/36295552/

Disclaimer: The information provided here is for educational/awareness purposes only and is not intended to be a substitute for medical treatment by a healthcare professional and should not be relied upon to diagnose or treat any medical condition. The reader should consult a registered medical practitioner to determine the appropriateness of the information and before consuming any medication. PharmEasy does not provide any guarantee or warranty (express or implied) regarding the accuracy, adequacy, completeness, legality, reliability or usefulness of the information; and disclaims any liability arising thereof.

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