Javascript must be enabled to continue!
Comparing the strontium isotope signatures of human urinary stones, drinking waters and environmental matrices: A first case study from Italy
View through CrossRef
Urolithiasis is a rather common pathology among the adult population and the biominerals it produces, i.e., urinary stones, may represent a potential proxy to characterize the environmental matrices that surrounded patients before being diagnosed. The objective of the present investigation (recently published in Izzo et al., 2024) was to use 87Sr/86Sr, a peculiar geochemical tracer routinely used for interpreting geological processes, to correlate the characteristics of patients’ urolith and their lifestyle habits, trying to identify correlations with direct or indirect contacts with their geological and environmental surroundings (water, soil, rock, etc.). Analyzed samples consisted of 21 kidney and bladder stones that were collected at the Department of Urology of the San Pio Hospital (Benevento, Italy) from patients living in Campania Region admitted between 2018 and 2020. Investigation was also extended to a vital food for humans such as water. Local tap waters and bottle waters (38 samples) from totally different Italian areas were here analyzed in order to highlight if and how different geological and hydrogeological settings could influence their Sr isotope ratio characterizing the connections existing between humans and their surrounding environment.The 87Sr/86Sr ratios of uroliths ranged from 0.70761 for an uricite sample to 0.70997 for a weddellite one and seem to be partly discriminated based on the mineralogy. The comparison with the isotope characteristics of Italian drinking waters shows a general overlap in 87Sr/86Sr with the biominerals. However, on a smaller geographic area (Campania Region), we observe small 87Sr/86Sr differences between the biominerals and local waters. This may be explained by external Sr inputs for example from agriculture practices, inhaled aerosols (i.e., particulate matter), animal manure and sewage, non-regional foods. Nevertheless, biominerals of patients that stated to drink and eat local water/wines and foods every day exhibited a narrower 87Sr/86Sr range roughly matching the typical isotope ratios of local geological materials and waters, as well as those of archaeological biominerals from the same area. This preliminary study evidences how the strontium isotope ratio of urinary stones records that of the patient's surrounding environmental matrices, although further investigations will be necessary to confirm this hypothesis. Izzo F., Di Renzo V., Langella A., D’Antonio M., Tranfa P., Widory D., Salzano L., Germinario C., Grifa C., Varricchio E., Mercurio M. (2024) Investigating strontium isotope linkage between biominerals (uroliths), drinking water and environmental matrices. Environmental Pollution, https://doi.org/10.1016/j.envpol.2024.123316  
Title: Comparing the strontium isotope signatures of human urinary stones, drinking waters and environmental matrices: A first case study from Italy
Description:
Urolithiasis is a rather common pathology among the adult population and the biominerals it produces, i.
e.
, urinary stones, may represent a potential proxy to characterize the environmental matrices that surrounded patients before being diagnosed.
The objective of the present investigation (recently published in Izzo et al.
, 2024) was to use 87Sr/86Sr, a peculiar geochemical tracer routinely used for interpreting geological processes, to correlate the characteristics of patients’ urolith and their lifestyle habits, trying to identify correlations with direct or indirect contacts with their geological and environmental surroundings (water, soil, rock, etc.
).
Analyzed samples consisted of 21 kidney and bladder stones that were collected at the Department of Urology of the San Pio Hospital (Benevento, Italy) from patients living in Campania Region admitted between 2018 and 2020.
Investigation was also extended to a vital food for humans such as water.
Local tap waters and bottle waters (38 samples) from totally different Italian areas were here analyzed in order to highlight if and how different geological and hydrogeological settings could influence their Sr isotope ratio characterizing the connections existing between humans and their surrounding environment.
The 87Sr/86Sr ratios of uroliths ranged from 0.
70761 for an uricite sample to 0.
70997 for a weddellite one and seem to be partly discriminated based on the mineralogy.
The comparison with the isotope characteristics of Italian drinking waters shows a general overlap in 87Sr/86Sr with the biominerals.
However, on a smaller geographic area (Campania Region), we observe small 87Sr/86Sr differences between the biominerals and local waters.
This may be explained by external Sr inputs for example from agriculture practices, inhaled aerosols (i.
e.
, particulate matter), animal manure and sewage, non-regional foods.
Nevertheless, biominerals of patients that stated to drink and eat local water/wines and foods every day exhibited a narrower 87Sr/86Sr range roughly matching the typical isotope ratios of local geological materials and waters, as well as those of archaeological biominerals from the same area.
This preliminary study evidences how the strontium isotope ratio of urinary stones records that of the patient's surrounding environmental matrices, although further investigations will be necessary to confirm this hypothesis.
 Izzo F.
, Di Renzo V.
, Langella A.
, D’Antonio M.
, Tranfa P.
, Widory D.
, Salzano L.
, Germinario C.
, Grifa C.
, Varricchio E.
, Mercurio M.
(2024) Investigating strontium isotope linkage between biominerals (uroliths), drinking water and environmental matrices.
Environmental Pollution, https://doi.
org/10.
1016/j.
envpol.
2024.
123316  .
Related Results
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct
Introduction
Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Resolving the Hf-Nd paradox of early Earth crust-mantle evolution
Resolving the Hf-Nd paradox of early Earth crust-mantle evolution
<p>One of the fundamental tenets of geochemistry is that the Earth&#8217;s crust has been extracted from the mantle creating a crustal reservoir enriched&...
Correlation of Calcium Metabolic Axis with Urinary Stone Characteristics
Correlation of Calcium Metabolic Axis with Urinary Stone Characteristics
Background: Urinary stone disease (USD) refers to the presence of stones or salt crystals within the urinary tract, with calcium stones accounting for approximately 80% of cases. I...
Chemical Analysis of Urinary Stones
Chemical Analysis of Urinary Stones
Introduction: Urinary stone disease is a common urological problem. Chemical analysis of the urinary stones is a part of metabolic evaluation of first time or recurrent stone forme...
Exploring the association between multiple factors and urolithiasis: A retrospective study and Mendelian randomization analysis
Exploring the association between multiple factors and urolithiasis: A retrospective study and Mendelian randomization analysis
To investigate the relationship between several factors and urinary stone as well as different stone compositions. To guide the diagnosis, treatment, and prevention of urinary ston...
Breast Carcinoma within Fibroadenoma: A Systematic Review
Breast Carcinoma within Fibroadenoma: A Systematic Review
Abstract
Introduction
Fibroadenoma is the most common benign breast lesion; however, it carries a potential risk of malignant transformation. This systematic review provides an ove...
In Vivo Analysis of Urinary Stones With Dual-Energy Computed Tomography
In Vivo Analysis of Urinary Stones With Dual-Energy Computed Tomography
Objective
Formation mechanisms and treatment of the urinary stones are different, depending on their chemical structure. Therefore, determining the stone type plays a k...

