Background: High-resolution respirometry (HRR) of human biopsies can provide useful metabolic, diagnostic, and mechanistic insights for clinical research and comparative medical studies. Fresh tissues analysis offers the potential best condition, the drawback being the need to use them shortly after dissection for mitochondrial respiratory experiments. The development of effective long-term storage protocols for biopsies that allow the assessment of key Electron Transport System (ETS) parameters at later stages is thus a major need. Methods: We optimised a cryopreservation protocol that preserves mitochondrial membranes intactness, otherwise affected by direct tissue freezing. The protocol is based on a gradual freezing step from on-ice to liquid nitrogen and - 80 °C storage using a specific DMSO-based buffer. Results: Placenta is a suitable tissue to design and test the effectiveness of long-term storage protocols being metabolically active foetal tissue with mitochondrial dysfunctions contributing to placental disease and gestational disorders. Here we designed and tested the effectiveness of the cryopreservation protocol using human placenta biopsies; we measured the ETS activity by HRR of placenta specimens comparing fresh, cryopreserved, and snap frozen conditions. Conclusions: By this protocol, Oxygen Consumption Rate (OCR) measurements of fresh and cryopreserved placental specimens are comparable whereas snap frozen procedure impairs mitochondrial activity.

Cryopreserved placental biopsies maintain mitochondrial activity for high-resolution respirometry / M. Giovarelli, A. Serati, S. Zecchini, F. Guelfi, E. Clementi, C. Mando'. - In: MOLECULAR MEDICINE. - ISSN 1528-3658. - 29:1(2023 Apr 03), pp. 45.1-45.11. [10.1186/s10020-023-00645-2]

Cryopreserved placental biopsies maintain mitochondrial activity for high-resolution respirometry

M. Giovarelli
Primo
;
A. Serati
Secondo
;
S. Zecchini;F. Guelfi;E. Clementi
Penultimo
;
C. Mando'
Ultimo
2023

Abstract

Background: High-resolution respirometry (HRR) of human biopsies can provide useful metabolic, diagnostic, and mechanistic insights for clinical research and comparative medical studies. Fresh tissues analysis offers the potential best condition, the drawback being the need to use them shortly after dissection for mitochondrial respiratory experiments. The development of effective long-term storage protocols for biopsies that allow the assessment of key Electron Transport System (ETS) parameters at later stages is thus a major need. Methods: We optimised a cryopreservation protocol that preserves mitochondrial membranes intactness, otherwise affected by direct tissue freezing. The protocol is based on a gradual freezing step from on-ice to liquid nitrogen and - 80 °C storage using a specific DMSO-based buffer. Results: Placenta is a suitable tissue to design and test the effectiveness of long-term storage protocols being metabolically active foetal tissue with mitochondrial dysfunctions contributing to placental disease and gestational disorders. Here we designed and tested the effectiveness of the cryopreservation protocol using human placenta biopsies; we measured the ETS activity by HRR of placenta specimens comparing fresh, cryopreserved, and snap frozen conditions. Conclusions: By this protocol, Oxygen Consumption Rate (OCR) measurements of fresh and cryopreserved placental specimens are comparable whereas snap frozen procedure impairs mitochondrial activity.
No
English
Cryopreservation; High-resolution respirometry; Mitochondria; Placental biopsies
Settore MED/49 - Scienze Tecniche Dietetiche Applicate
Settore BIO/17 - Istologia
Articolo
Esperti anonimi
Pubblicazione scientifica
   Piano di Sostegno alla Ricerca 2015-2017 - Linea 2 "Dotazione annuale per attività istituzionali" (anno 2021)
   UNIVERSITA' DEGLI STUDI DI MILANO
3-apr-2023
BioMed Central
29
1
45
1
11
11
Pubblicato
Periodico con rilevanza internazionale
pubmed
crossref
Aderisco
info:eu-repo/semantics/article
Cryopreserved placental biopsies maintain mitochondrial activity for high-resolution respirometry / M. Giovarelli, A. Serati, S. Zecchini, F. Guelfi, E. Clementi, C. Mando'. - In: MOLECULAR MEDICINE. - ISSN 1528-3658. - 29:1(2023 Apr 03), pp. 45.1-45.11. [10.1186/s10020-023-00645-2]
open
Prodotti della ricerca::01 - Articolo su periodico
6
262
Article (author)
Periodico con Impact Factor
M. Giovarelli, A. Serati, S. Zecchini, F. Guelfi, E. Clementi, C. Mando'
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/963177
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