Questa pagina è stata tradotta automaticamente e l'accuratezza della traduzione non è garantita. Si prega di fare riferimento al Versione inglese per un testo di partenza.

Mitigating Mitochondrial RNA Release During Aging to Control Inflammation and Senescence (MIRACLE)

Mitigating Mitochondrial RNA Release During Aging to Control Inflammation and Senescence, Preserving Organ Function and Enhancing Healthspan

The MIRACLE study aims to investigate age-related mitochondrial dysfunction, mitochondrial RNA (mtRNA) release, inflammation, and cellular senescence in adult participants across three age groups. Skin-derived fibroblasts and peripheral blood mononuclear cells (PBMCs) will be isolated from skin biopsy and blood samples to characterize age-related cellular and molecular changes and to test experimental therapeutic strategies identified in preclinical studies. Serum, plasma, and whole-blood RNA will be used for protocol-defined analyses of circulating inflammatory mediators and systemic transcriptional signatures related to inflammation, type I interferon activation, mitochondrial stress response, immune aging, and senescence-associated pathways.

Panoramica dello studio

Stato

Non ancora reclutamento

Descrizione dettagliata

Mitochondria are crucial for ATP production and intracellular signaling in higher eukaryotic cells. These organelles contain genetic material that reflects their bacterial ancestry, including mitochondrial RNA (mtRNA). Under normal conditions, mtRNA is tightly confined and processed within mitochondria, ensuring the proper synthesis of proteins required for oxidative phosphorylation. Recent evidence suggests that mitochondrial stress may promote the leakage of mitochondrial components, including mtRNA. Once released into the cytosol, mtRNA can be sensed by cytosolic pattern recognition receptors (PRRs), thereby activating signaling pathways that promote the production of pro-inflammatory cytokines.

Although these mechanisms have been investigated mainly under conditions of acute stress, the specific contribution of mitochondrial dysfunction and mtRNA release to chronic low-grade inflammation and cellular senescence during physiological aging remains incompletely understood. This represents an important knowledge gap in the understanding of molecular processes that may contribute to age-related inflammation and functional decline.

The MIRACLE project includes a broade series of preclinical in vitro and in vivo experiments aimed at clarifying the mechanisms linking mitochondrial dysfunction, mtRNA release, inflammatory pathway activation, and cellular senescence during aging. These experimental activities are designed to define the biological pathways involved and to identify potential strategies capable of modulating mtRNA-associated inflammatory and senescence responses.

Within this broader framework, the present human study is intended to corroborate and extend the preclinical findings in humans. To this aim, adult participants across different age groups will be enrolled, and skin biopsy and blood samples will be collected to obtain skin-derived fibroblasts, peripheral blood mononuclear cells (PBMCs), serum, plasma, and whole-blood RNA.

Skin-derived fibroblasts will provide an accessible primary cell model for the investigation of age-related cellular and molecular changes. Fibroblasts isolated from participants of different ages will be used to assess mitochondrial function, mtRNA release, inflammatory signaling, and markers of cellular senescence. PBMCs collected from the same participants will be analyzed as a complementary blood-derived cellular model to evaluate systemic immune and inflammatory features, including immunosenescence-related signatures. Serum and plasma samples will be used to measure circulating inflammatory mediators and senescence-associated factors, while whole-blood RNA will be used to assess systemic transcriptional signatures related to inflammation, type I interferon activation, mitochondrial stress response, immune aging, and senescence-associated pathways.

Tipo di studio

Interventistico

Iscrizione (Stimato)

90

Fase

  • Non applicabile

Contatti e Sedi

Questa sezione fornisce i recapiti di coloro che conducono lo studio e informazioni su dove viene condotto lo studio.

Contatto studio

Backup dei contatti dello studio

Luoghi di studio

    • BG
      • Bergamo, BG, Italia, 24126
        • Laboratory for Targeted Therapy in Autoimmune Diseases
        • Contatto:
      • Ranica, BG, Italia, 24020
        • Centro di Ricerche Cliniche per le Malattie Rare "Aldo e Cele Daccò"
        • Contatto:

Criteri di partecipazione

I ricercatori cercano persone che corrispondano a una certa descrizione, chiamata criteri di ammissibilità. Alcuni esempi di questi criteri sono le condizioni generali di salute di una persona o trattamenti precedenti.

Criteri di ammissibilità

Età idonea allo studio

  • Adulto
  • Adulto più anziano

Accetta volontari sani

Sì

Descrizione

Inclusion Criteria:

  • Male and female
  • Age between 18 and 90 years (stratified in three groups: young, middle-aged, elderly)
  • Written informed consent

Exclusion Criteria:

  • Inability to understand the potential risk and benefits of the study
  • Legal incapacity
  • Subjects who have taken antibiotics, anti-inflammatory drugs, or antihistamines within the past 7 days
  • Diagnosis of diabetes mellitus
  • Use of anticoagulant medications
  • Any subject with a contraindication to the mini-invasive biopsy procedure

Piano di studio

Questa sezione fornisce i dettagli del piano di studio, compreso il modo in cui lo studio è progettato e ciò che lo studio sta misurando.

Come è strutturato lo studio?

Dettagli di progettazione

  • Scopo principale: Scienza basilare
  • Assegnazione: Non randomizzato
  • Modello interventistico: Assegnazione parallela
  • Mascheramento: Nessuno (etichetta aperta)

Armi e interventi

Gruppo di partecipanti / Arm
Intervento / Trattamento
Sperimentale: Young adults
Female and male volunteers aged 18-40 years
A single 3-4 mm punch biopsy of forearm skin is performed under local anesthesia (lidocaine 1% with epinephrine 1:100,000) for primary dermal fibroblast isolation. Venous blood is collected by standard phlebotomy from the antecubital fossa (43 mL total volume per participant): 5 mL in SST tube for serum separation, 3 mL in EDTA tube for plasma separation, 32 mL in EDTA tubes for PBMC isolation by density gradient centrifugation, and 3 mL in Tempus Blood RNA tube for whole-blood RNA stabilization. All procedures are performed at a single visit at enrollment. Samples are processed for biospecimen-based ex vivo molecular and cellular analyses; no investigational product is administered to participants.
Sperimentale: Middle-aged adults
Female and male volunteers aged 40-60 years
A single 3-4 mm punch biopsy of forearm skin is performed under local anesthesia (lidocaine 1% with epinephrine 1:100,000) for primary dermal fibroblast isolation. Venous blood is collected by standard phlebotomy from the antecubital fossa (43 mL total volume per participant): 5 mL in SST tube for serum separation, 3 mL in EDTA tube for plasma separation, 32 mL in EDTA tubes for PBMC isolation by density gradient centrifugation, and 3 mL in Tempus Blood RNA tube for whole-blood RNA stabilization. All procedures are performed at a single visit at enrollment. Samples are processed for biospecimen-based ex vivo molecular and cellular analyses; no investigational product is administered to participants.
Sperimentale: Elderly adults
Female and male volunteers aged 60-90 years
A single 3-4 mm punch biopsy of forearm skin is performed under local anesthesia (lidocaine 1% with epinephrine 1:100,000) for primary dermal fibroblast isolation. Venous blood is collected by standard phlebotomy from the antecubital fossa (43 mL total volume per participant): 5 mL in SST tube for serum separation, 3 mL in EDTA tube for plasma separation, 32 mL in EDTA tubes for PBMC isolation by density gradient centrifugation, and 3 mL in Tempus Blood RNA tube for whole-blood RNA stabilization. All procedures are performed at a single visit at enrollment. Samples are processed for biospecimen-based ex vivo molecular and cellular analyses; no investigational product is administered to participants.

Cosa sta misurando lo studio?

Misure di risultato primarie

Misura del risultato
Misura Descrizione
Lasso di tempo
Age-dependent differences in cytosolic release of mitochondrial RNA (mtRNA) in primary human fibroblasts
Lasso di tempo: Day 1 (at enrollment)
Assessment of release of mtRNA in the cytosol of primary fibroblasts isolated from study participants across age groups. Cytosolic mtRNA levels assessed through analysis of the mean fluorescence intensity (MFI) per cell by immunofluorescence.
Day 1 (at enrollment)
Age-dependent differences in mitochondrial function in primary human fibroblasts
Lasso di tempo: Day 1 (at enrollment)
Characterization of mitochondrial function parameters in primary fibroblasts isolated from study participants across age groups. Mitochondrial function assessed through analysis of mitochondrial Complex I activity in nmol/min/mg protein by functional ELISA.
Day 1 (at enrollment)
Activation of inflammatory pathways in primary human fibroblasts
Lasso di tempo: Day 1 (at enrollment)
Assessment of inflammatory pathway activation markers in fibroblasts isolated from participants across age groups. Inflammatory pathway activation assessed through Interleukin-6 concentration in skin-derived fibroblast culture supernatant in pg/mL
Day 1 (at enrollment)
Activation of senescence pathways in primary human fibroblasts
Lasso di tempo: Day 1 (at enrollment)
Assessment of cellular senescence markers and senescence-associated pathway activation in fibroblasts isolated from participants across age groups. Senescence pathway activation assessed as percentage (%) of Senescence-associated β-galactosidase (SA-β-gal)-positive cells per microscopic field.
Day 1 (at enrollment)
Comparison of fibroblast findings with PBMC-derived parameters from the same participants
Lasso di tempo: Day 1 (at enrollment)
Integration and comparison of fibroblast-derived molecular data with corresponding PBMC-derived measurements obtained from the same participants as described above.
Day 1 (at enrollment)

Collaboratori e investigatori

Qui è dove troverai le persone e le organizzazioni coinvolte in questo studio.

Investigatori

  • Direttore dello studio: Giuseppe Remuzzi, Istituto Di Ricerche Farmacologiche Mario Negri

Pubblicazioni e link utili

La persona responsabile dell'inserimento delle informazioni sullo studio fornisce volontariamente queste pubblicazioni. Questi possono riguardare qualsiasi cosa relativa allo studio.

Studiare le date dei record

Queste date tengono traccia dell'avanzamento della registrazione dello studio e dell'invio dei risultati di sintesi a ClinicalTrials.gov. I record degli studi e i risultati riportati vengono esaminati dalla National Library of Medicine (NLM) per assicurarsi che soddisfino specifici standard di controllo della qualità prima di essere pubblicati sul sito Web pubblico.

Studia le date principali

Inizio studio (Stimato)

1 settembre 2026

Completamento primario (Stimato)

1 settembre 2031

Completamento dello studio (Stimato)

1 settembre 2031

Date di iscrizione allo studio

Primo inviato

29 aprile 2026

Primo inviato che soddisfa i criteri di controllo qualità

12 maggio 2026

Primo Inserito (Effettivo)

19 maggio 2026

Aggiornamenti dei record di studio

Ultimo aggiornamento pubblicato (Effettivo)

19 maggio 2026

Ultimo aggiornamento inviato che soddisfa i criteri QC

12 maggio 2026

Ultimo verificato

1 maggio 2026

Maggiori informazioni

Termini relativi a questo studio

Piano per i dati dei singoli partecipanti (IPD)

Hai intenzione di condividere i dati dei singoli partecipanti (IPD)?

NO

Informazioni su farmaci e dispositivi, documenti di studio

Studia un prodotto farmaceutico regolamentato dalla FDA degli Stati Uniti

No

Studia un dispositivo regolamentato dalla FDA degli Stati Uniti

No

Queste informazioni sono state recuperate direttamente dal sito web clinicaltrials.gov senza alcuna modifica. In caso di richieste di modifica, rimozione o aggiornamento dei dettagli dello studio, contattare register@clinicaltrials.gov. Non appena verrà implementata una modifica su clinicaltrials.gov, questa verrà aggiornata automaticamente anche sul nostro sito web .

Sottoscrivi