13 views 0 likes

Live Event Content

GCMD Space · View profile →

CAPS - The use of urine sodium to creatinine ratio as a marker of total body sodium in infants with intestinal failure - Sara Choi

Video Published 2022-05-24 Updated 2022-10-20

Timestops (20)

0:00
Next
Next, we have a presentation that was presented by Sarah Choi from British Columbia Children's Hospital. Uh, she present…
0:26
My name is Sarah and I am a 3rd year medical student at the …
My name is Sarah and I am a 3rd year medical student at the University of British Columbia. To begin, none of the author…
0:45
Sodium depletion can go unrecognized
Sodium depletion can go unrecognized, resulting in poor growth, refractory to increased caloric intake, and as a result,…
1:14
Ideally
Ideally, the fractional excretion of sodium would be used as an optimum measure of total body sodium, however, is inconv…
1:44
However
However, one caveat of the urine sodium is that it doesn't account for volume status, therefore can result in oversupple…
2:13
However
However, the use of the ratio has not yet been validated in this population. In this study, we aim to evaluate the use o…
2:43
We collected data on patient demographics
We collected data on patient demographics, etiology of intestinal failure, weekly nutritional intake, urine electrolytes…
3:10
Infants without weekly urine electrolyte values and those be…
Infants without weekly urine electrolyte values and those being treated with diuretics were excluded. 22 infants were id…
3:41
When evaluating the entire data set
When evaluating the entire data set, there was no significant correlation between either urine sodium or the ratio with …
4:04
We did find that the ratio was more strongly associated with…
We did find that the ratio was more strongly associated with sodium intake when compared to urine sodium alone. And this…
4:28
The urine sodium threshold of 29 is similar to previous stud…
The urine sodium threshold of 29 is similar to previous studies, as it is generally accepted that urine sodium values ab…
4:59
In conclusion
In conclusion, we analyzed infants with intestinal failure, followed by a single center intestinal rehabilitation team f…
5:29
Our findings can be used to guide further validation studies
Our findings can be used to guide further validation studies. I would like to thank everyone that has helped me througho…
5:50
So I hope everybody can hear me.
So I hope everybody can hear me. Thanks for inviting me to participate in this great event, and thanks for asking me to,…
6:19
Stomas and high stool losses are a large source of sodium bi…
Stomas and high stool losses are a large source of sodium bicarb, as well as mag magnesium loss. And sodium status needs…
6:45
And therefore
And therefore, it's important that we track these patients serially, so that we can detect a trend evolving, so that we …
7:12
But I would argue that if
But I would argue that if, if it becomes part of practice to order urine one minute left in discussion at the time that.…
7:41
If we see their potassium level higher than their sodium lev…
If we see their potassium level higher than their sodium level, that often will tell you that the aldosterone pathway is…
8:03
Um
Um, I, I think the next step is to just implement this, you know, and start making it routine practice, um, and then to …
8:32
I agree with you, Paul.
I agree with you, Paul. This is, uh, critically important to patient care. Hannah, uh, Doctor Piper, thank you for prese…

Topic Overview

This discussion examines the use of urine sodium to creatinine ratio as a non-invasive marker of total body sodium status in infants with intestinal failure. A retrospective chart review of 22 infants found that while neither urine sodium nor the ratio correlated significantly with weight gain, the ratio showed stronger correlation with sodium intake than urine sodium alone. The study identified a ratio threshold above 35 as predictive of adequate weight gain, suggesting sufficient sodium stores, compared to the established urine sodium threshold of 29-30.

Key Takeaways

  • Urine Na:Cr ratio >35 predicts adequate weight gain in infants with intestinal failure, suggesting sufficient sodium stores. (5:21)
  • Urine Na:Cr ratio correlates more strongly with sodium intake than urine sodium alone, accounting for variable urine flow. (1:57)
  • Serum sodium does not reflect total body sodium; fractional excretion is optimal but requires paired blood/urine samples. (1:04)
  • Sodium depletion causes poor growth refractory to increased calories; supplementation improves weight gain but not catch-up growth. (0:45)
  • Urine K>Na suggests aldosterone activation, indicating sodium depletion even when serum sodium appears normal. (1:04)

Inside this episode

Kai, the Library's AI content creator, listened to this episode and mapped who's speaking, the chapters, key claims, and cases. Every item links to the exact moment in the recording.

AI-enriched

Who's speaking

  • Speaker 1 — host
  • Sarah Choi — guest
  • Paul Wales — guest
  • Hannah Piper — guest
  • Speaker 5

Chapters

  • 0:00Introduction — Host introduces presentation by Sarah Choi on urine sodium to creatinine ratio in infants with intestinal failure, with discussant Dr. Paul Wales and co-author Dr. Hannah Piper present.
  • 0:25Background and Study Rationale — Sarah Choi presents background on intestinal failure, sodium depletion risks, current use of urine sodium (threshold >30), limitations of existing markers, and introduces urine sodium to creatinine ratio as potentially more accurate non-invasive marker.
  • 2:33Methods and Results — Description of retrospective chart review of 22 infants, patient demographics, findings showing ratio more strongly associated with sodium intake than urine sodium alone, identification of ratio threshold >35 for adequate weight gain, and 19% discordance rate between markers.
  • 5:44Expert Discussion — Dr. Paul Wales emphasizes clinical importance of sodium depletion in stoma patients, discusses practical implementation of fractional excretion of sodium, suggests adding potassium and osmolality to urine studies, and Dr. Piper outlines next steps for prospective implementation.

Key claims

  • 0:36Infants with intestinal failure have compromised intestinal function, putting them at increased risk of malabsorption and electrolyte and fluid deficits — Sarah Choi
  • 0:45Sodium depletion can go unrecognized, resulting in poor growth refractory to increased caloric intake — Sarah Choi
  • 1:00Sodium supplementation has been shown to be associated with weight gain and overall growth in infants with intestinal failure — Sarah Choi
  • 1:04Serum sodium does not reflect total sodium stores — Sarah Choi
  • 1:14Fractional excretion of sodium is the optimum measure of total body sodium but is inconvenient in the pediatric population as it requires a paired urine and blood sample — Sarah Choi
  • 1:29At BC Women's Hospital, urine sodium is used as a non-invasive marker to estimate total body sodium in infants with intestinal failure, with a value above 30 suggesting sodium sufficiency — Sarah Choi
  • 1:44Urine sodium doesn't account for volume status, therefore can result in oversupplementation or under supplementation with sodium — Sarah Choi
  • 1:57The urine sodium to urine creatinine ratio offers a non-invasive measure which accounts for variable urine flow and has shown to be strongly correlated with fractional excretion of sodium — Sarah Choi
  • 2:13The use of the urine sodium to creatinine ratio has not yet been validated in the intestinal failure population — Sarah Choi
  • 3:18The study included 22 infants with median gestational age of 31 weeks, median birth weight of 1.9 kg, and median age of enrollment at 8 days — Sarah Choi
  • 3:30Gastroschisis was the most common etiology of intestinal failure in the study cohort — Sarah Choi
  • 3:41There was no significant correlation between either urine sodium or the ratio with daily weight gain when evaluating the entire data set — Sarah Choi
  • 4:04The ratio was more strongly associated with sodium intake when compared to urine sodium alone — Sarah Choi
  • 4:18Urine sodium values above 29 and ratio values above 35 best predicted adequate weight gain — Sarah Choi
  • 4:28It is generally accepted that urine sodium values above 30 is suggestive of sodium sufficiency — Sarah Choi
  • 4:54In 19% of the time, urine sodium and ratio values were discordant — Sarah Choi
  • 5:10Urine sodium to creatinine ratio significantly correlated with sodium intake — Sarah Choi
  • 5:21Urine sodium to creatinine values above 35 best predicted adequate weight gain, therefore suggesting sufficient sodium stores — Sarah Choi
  • 6:08Patients with stomas, even those without intestinal failure, run the risk of sodium depletion which has a significant impact on their growth — Paul Wales
  • 6:19Stomas and high stool losses are a large source of sodium bicarb as well as magnesium loss — Paul Wales
  • 6:38When we replace sodium, it does help restore growth, but it doesn't allow catch up growth — Paul Wales
  • 7:41If potassium level is higher than sodium level in urine, that often will tell you that the aldosterone pathway is turned on — Paul Wales

Open questions

  • Where do you wanna take this project next?
This episode was analyzed and enriched by Kai, the Library's AI content creator. Every item links to the moment it comes from — click a timestamp to listen in context.

Tracking Sodium Depletion in Infants With Intestinal Failure Using Urine Markers

The episode's main topic retold as a plain-language walkthrough — what it is, why it matters, and what the speakers concluded. Written by Kai from the episode transcript and reviewed before publishing.

For the care team · Explainer · AI-written, human-reviewed

Why This Matters

Infants with intestinal failure — compromised intestinal function from conditions like gastroschisis, necrotizing enterocolitis, or extensive bowel resection — face a clinical problem that general pediatricians and neonatologists frequently miss: occult sodium depletion 0:36. These babies present with poor weight gain despite what appears to be adequate caloric intake, and the reflex is to push more calories 0:45. But the real deficit is sodium, not energy. Sodium supplementation has been shown to restore growth in this population 1:00, yet determining how much to give remains guesswork because the standard marker — serum sodium — does not reflect total body sodium stores 1:04.

This matters beyond the intestinal rehabilitation unit. Any infant with a stoma, even without formal intestinal failure, runs the risk of sodium depletion through high stool losses, and that depletion has a significant impact on growth 6:08. Stomas and high-output losses drain sodium bicarbonate and magnesium at rates that outpace typical supplementation 6:19. The challenge is detecting depletion before it manifests as growth failure.

The Core Problem

The gold standard for assessing total body sodium is fractional excretion of sodium, but it requires simultaneous blood and urine sampling, which is inconvenient in infants and rarely done serially 1:14. Many centers, including BC Women's Hospital, use spot urine sodium as a surrogate, with values above 30 mmol/L suggesting sodium sufficiency 1:29. The threshold is practical and non-invasive, but it has a critical flaw: urine sodium concentration does not account for urine volume or flow rate 1:44. A concentrated urine sample in a dehydrated infant may show a falsely reassuring sodium level, leading to undersupplementation. Conversely, dilute urine may trigger unnecessary sodium loading.

How the Ratio Works

The urine sodium-to-creatinine ratio addresses this by normalizing sodium excretion to creatinine, which is excreted at a relatively constant rate and serves as a proxy for urine concentration 1:57. The ratio has been shown to correlate strongly with fractional excretion of sodium in other populations, but it had not been validated in infants with intestinal failure 2:13.

Choi and colleagues conducted a retrospective chart review of 22 infants with intestinal failure at BC Women's Hospital — median gestational age 31 weeks, median birth weight 1.9 kg, enrolled at a median age of 8 days 3:18. Gastroschisis was the most common etiology 3:30. The team collected paired urine sodium and urine sodium-to-creatinine ratio values and correlated them with sodium intake and daily weight gain.

The findings were straightforward. Neither marker correlated significantly with daily weight gain when the entire dataset was analyzed, likely because weight gain in critically ill infants is multifactorial 3:41. However, the ratio was more strongly associated with sodium intake than urine sodium alone 4:04, which makes physiologic sense — the ratio accounts for variable urine flow, while raw sodium concentration does not.

Using ROC curve analysis, the authors identified thresholds: urine sodium above 29 mmol/L and ratio above 35 best predicted adequate weight gain 4:18. The urine sodium threshold aligns with the accepted cutoff of 30 mmol/L 4:28. The ratio threshold of 35 is new and requires prospective validation, but it offers a more precise target.

Crucially, the two markers were discordant 19% of the time 4:54 — meaning one suggested sufficiency while the other did not. This is not a small error rate. In nearly one in five measurements, relying on urine sodium alone would have led to a different clinical decision than the ratio would support.

Where Practice Is Uncertain

This is a single-center retrospective study with 22 patients and an average of three data points per infant. The ratio threshold of 35 is derived, not validated. The study excluded infants on diuretics, which is appropriate but limits generalizability to the sickest patients. The ratio significantly correlated with sodium intake 5:10 and values above 35 predicted adequate weight gain 5:21, but the mechanism linking sodium status to growth is complex, and the study does not prove that targeting a ratio above 35 improves outcomes.

What the study does establish is that the ratio performs better than urine sodium alone as a marker of sodium intake, and it identifies a threshold worth testing prospectively. As one of the co-authors noted, the next step is to implement this in routine practice and refine the parameters [q8].

When to Use This

Any infant with a stoma or high stool output who is not gaining weight appropriately despite adequate calories should have sodium status assessed. Serum sodium is not sufficient 1:04. If you are ordering spot urine sodium, add urine creatinine to the panel and calculate the ratio. If the ratio is below 35, consider sodium supplementation even if serum sodium is normal.

One practical refinement: adding urine potassium and osmolality to the panel gives a fuller picture [q7]. If urine potassium exceeds urine sodium, the aldosterone pathway is activated — a physiologic signal of sodium depletion 7:41.

Finally, track these values serially. Sodium replacement restores growth but does not permit catch-up growth 6:38. The goal is to detect depletion early, before growth falters [q6]. A single normal value does not mean the problem is solved. Trends matter more than snapshots.

Takeaways from this story

  • Serum sodium does not reflect total body sodium stores; infants with intestinal failure need urine-based markers to guide supplementation.
  • Urine sodium-to-creatinine ratio above 35 predicts adequate weight gain better than urine sodium alone by accounting for variable urine flow.
  • The two markers are discordant 19% of the time, meaning urine sodium alone can mislead clinical decisions in nearly one in five measurements.
  • Sodium replacement restores growth but does not permit catch-up growth; serial tracking is essential to prevent depletion before it occurs.
  • Any infant with a stoma and poor weight gain despite adequate calories should have sodium status assessed with urine markers, not serum sodium.

Keywords

Hashtags

Transcript

Comments

Loading comments…