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1.
G Ital Nefrol ; 40(Suppl 81)2023 Oct 03.
Article in Italian | MEDLINE | ID: mdl-38007822

ABSTRACT

A deadly embrace occurs between cancer and chronic kidney disease. The estimation of kidney function in cancer patients is of utmost interest due to its direct impact on chemotherapy dosing, selection, and eligibility for chemotherapeutics. Overestimating kidney function (determined as estimated glomerular filtration rate -eGFR) can lead to overdosing and drug toxicity, while underestimating kidney function can prevent patients from receiving novel therapies. Notably, the current measures of eGFR are not validated in transplanted patients yet. The field of onconephrology ranges from nephrotoxicity of existing and novel therapeutics, paraproteinemias, and cancer-associated electrolyte imbalance, fluid and acid-base disturbances, the effects of the destruction of cancer cells, and acute and/or chronic kidney injuries. Recently, the therapeutic armamentarium has been enriched with new agents that interfere with specific proteins involved in oncogenesis. These are the so-called target therapies, which although acquired as "targeted" therapies do not have absolute specificity and selectivity and tend to inhibit multiple targets, often involving the kidney. Renal biopsy may be critical in managing these adverse effects. Moreover, primary hematological and oncological disorders can have significant kidney implications in the form of glomerular or nonglomerular diseases presenting with proteinuria, hematuria, hypertension, and kidney function decline, specifically including cast nephropathy or systemic light chain amyloidosis, and paraneoplastic glomerulopathies that occur as a result of occult malignancy, such as Membranous Nephropathy and Minimal Change disease.


Subject(s)
Amyloidosis , Glomerulonephritis, Membranous , Neoplasms , Renal Insufficiency, Chronic , Humans , Kidney/pathology , Kidney Glomerulus/pathology , Neoplasms/complications , Renal Insufficiency, Chronic/pathology , Glomerular Filtration Rate
2.
G Ital Nefrol ; 40(2)2023 Apr 27.
Article in English | MEDLINE | ID: mdl-37179478

ABSTRACT

Background. Pregnant women are at high risk of Coronavirus disease 2019 (COVID-19) complications, including acute respiratory distress syndrome. Currently, one of the cornerstones in the treatment of this condition is lung-protective ventilation (LPV) with low tidal volumes. However, the occurrence of hypercapnia may limit this ventilatory strategy. So, different extracorporeal CO2 removal (ECCO2R) procedures have been developed. ECCO2R comprises a variety of techniques, including low-flow and high-flow systems, that may be performed with dedicated devices or combined with continuous renal replacement therapy (CRRT). Case description. Here, we report a unique case of a pregnant patient affected by COVID-19 who required extracorporeal support for multiorgan failure. While on LPV, because of the concomitant hypercapnia and acute kidney injury, the patient was treated with an ECCO2R membrane inserted in series after a hemofilter in a CRRT platform. This combined treatment reducing hypercapnia allowed LPV maintenance at the same time while providing kidney replacement and ensuring maternal and fetal hemodynamic stability. Adverse effects consisted of minor bleeding episodes due to the anticoagulation required to maintain the extracorporeal circuit patency. The patient's pulmonary and kidney function progressively recovered, permitting the withdrawal of any extracorporeal treatment. At the 25th gestational week, the patient underwent spontaneous premature vaginal delivery because of placental abruption. She gave birth to an 800-gram female baby, who three days later died because of multiorgan failure related to extreme prematurity. Conclusions. This case supports using ECCO2R-CRRT combined treatment as a suitable approach in the management of complex conditions, such as pregnancy, even in the case of severe COVID-19.


Subject(s)
COVID-19 , Continuous Renal Replacement Therapy , Pregnancy , Humans , Female , Carbon Dioxide , Hypercapnia/therapy , Continuous Renal Replacement Therapy/adverse effects , Extracorporeal Circulation/adverse effects , Extracorporeal Circulation/methods , COVID-19/complications , COVID-19/therapy , Placenta , Renal Replacement Therapy/adverse effects
4.
Biomedicines ; 11(1)2023 Jan 05.
Article in English | MEDLINE | ID: mdl-36672649

ABSTRACT

Lung-protective ventilation (LPV) with low tidal volumes can significantly increase the survival of patients with acute respiratory distress syndrome (ARDS) by limiting ventilator-induced lung injuries. However, one of the main concerns regarding the use of LPV is the risk of developing hypercapnia and respiratory acidosis, which may limit the clinical application of this strategy. This is the reason why different extracorporeal CO2 removal (ECCO2R) techniques and devices have been developed. They include low-flow or high-flow systems that may be performed with dedicated platforms or, alternatively, combined with continuous renal replacement therapy (CRRT). ECCO2R has demonstrated effectiveness in controlling PaCO2 levels, thus allowing LPV in patients with ARDS from different causes, including those affected by Coronavirus disease 2019 (COVID-19). Similarly, the suitability and safety of combined ECCO2R and CRRT (ECCO2R-CRRT), which provides CO2 removal and kidney support simultaneously, have been reported in both retrospective and prospective studies. However, due to the complexity of ARDS patients and the limitations of current evidence, the actual impact of ECCO2R on patient outcome still remains to be defined. In this review, we discuss the main principles of ECCO2R and its clinical application in ARDS patients, in particular looking at clinical experiences of combined ECCO2R-CRRT treatments.

5.
Front Immunol ; 13: 854749, 2022.
Article in English | MEDLINE | ID: mdl-35479070

ABSTRACT

Introduction: The Forkhead box protein P3 (FOXP3) is a transcription factor central to the function of regulatory T cells (Treg). Mutations in the FOXP3 gene lead to a systemic disease called immune dysregulation, polyendocrinopathy, and enteropathy, an X-linked syndrome (IPEX) characterized by the triad of early-onset intractable diarrhea, type 1 diabetes, and eczema. An atypical presentation of IPEX has been reported. Method: We report rare cases with equivocal clinical associations that included inflammatory, kidney, and hematologic involvements screened with massively parallel sequencing techniques. Results: Two patients with hemizygous mutations of FOXP3 [c.779T>A (p.L260Q)] and [c.1087A>G (p.I363V)] presented clinical manifestations not included in typical cases of IPEX: one was a 16-year-old male patient with an initial clinical diagnosis of autoimmune lymphoproliferative syndrome (ALPS) and who developed proteinuria and decreased kidney function due to membranous nephropathy, an autoimmune renal condition characterized by glomerular sub-epithelial antibodies. The second patient was a 2-year-old child with bone marrow failure who developed the same glomerular lesions of membranous nephropathy and received a bone marrow transplantation. High levels of IgG4 in serum, bone marrow, and kidney led to the definition of IgG4-related kidney disease (IgG4 RKD) in this young boy. The circulating Treg levels were normal in the former case and very low in the second. Conclusion: Two atypical associations of functional mutations of FOXP3 that include ALPS and IgG4 RKD are described. Membranous nephropathy leading to renal failure completed in both cases the clinical phenotypes that should be included in the clinical panorama of FOXP3 failure.


Subject(s)
Autoimmune Diseases , Genetic Diseases, X-Linked , Glomerulonephritis, Membranous , Child, Preschool , Female , Forkhead Transcription Factors/metabolism , Genetic Diseases, X-Linked/diagnosis , Genetic Diseases, X-Linked/genetics , Humans , Immunoglobulin G/genetics , Male , Mutation , T-Lymphocytes, Regulatory
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