ID: hypothesis-h-250b34ab
Hypothesis

RAB27A-dependent extracellular vesicle engineering for mitochondrial cargo delivery

RAB27A-dependent extracellular vesicle engineering for mitochondrial cargo delivery starts from the claim that modulating RAB27A within the disease context of neurodegeneration can redirect a disease-relevant process.
🧬 RAB27A🩺 neurodegeneration🎯 Composite 67%💱 $0.53▼27.3%debated
EvidencePending (0%)📖 21 cit🗣 2 debates 12 support 5 oppose
✓ All Quality Gates Passed
Mechanistic 0.45 (15%) Evidence 0.40 (15%) Novelty 0.85 (12%) Feasibility 0.45 (12%) Impact 0.60 (12%) Druggability 0.40 (10%) Safety 0.60 (8%) Competition 0.50 (6%) Data Avail. 0.50 (5%) Reproducible 0.45 (5%) KG Connect 0.59 (8%) 0.674 composite
🏆 ChallengeSolve: Mitochondrial transfer between astrocytes and neurons$209K →

🧪 Overview

Mechanistic Overview


RAB27A-dependent extracellular vesicle engineering for mitochondrial cargo delivery starts from the claim that modulating RAB27A within the disease context of neurodegeneration can redirect a disease-relevant process. The original description reads: "Molecular Mechanism and Rationale The RAB27A-dependent extracellular vesicle engineering approach leverages the sophisticated molecular machinery governing vesicle biogenesis and mitochondrial dynamics to create a revolutionary therapeutic delivery system. RAB27A, a member of the Rab family of small GTPases, serves as a master regulator of exosome secretion through its interaction with the ESCRT (Endosomal Sorting Complex Required for Transport) machinery and specific effector proteins. In astrocytes, RAB27A localizes to multivesicular bodies (MVBs) where it recruits crucial effectors including Slp4-a (synaptotagmin-like protein 4a) and Slac2-b, which facilitate the docking and fusion of MVBs with the plasma membrane.

...

🧬 Mechanism

🧬 Curated Mechanism Pathway

Curated pathway from expert analysis

graph TD
    A["RAB27A GTPase"]
    B["ESCRT Machinery"]
    C["Multivesicular Bodies"]
    D["Slp4-a Effector"]
    E["Slac2-b Effector"]
    F["Astrocyte Activation"]
    G["Mitochondrial Cargo Loading"]
    H["Exosome Biogenesis"]
    I["Extracellular Vesicle Release"]
    J["Neuronal Uptake"]
    K["Mitochondrial Restoration"]
    L["ATP Production Recovery"]
    M["Neurodegeneration Reversal"]
    N["Synaptic Function Rescue"]
    O["Therapeutic EV Engineering"]

    A -->|"activates"| B
    A -->|"recruits"| D
    A -->|"recruits"| E
    B -->|"forms"| C
    D -->|"facilitates docking"| H
    E -->|"enables fusion"| H
    F -->|"enhances"| A
    F -->|"promotes"| G
    G -->|"loads into"| C
    C -->|"matures to"| H
    H -->|"releases"| I
    I -->|"targets"| J
    J -->|"delivers cargo for"| K
    K -->|"restores"| L
    L -->|"prevents"| M
    K -->|"improves"| N
    O -->|"modulates"| A

    classDef mechanism fill:#4fc3f7,color:#0d0d1a
    classDef pathology fill:#ef5350,color:#0d0d1a
    classDef therapy fill:#81c784,color:#0d0d1a
    classDef outcome fill:#ffd54f,color:#0d0d1a
    classDef genetics fill:#ce93d8,color:#0d0d1a

    class A,B,D,E,G,H mechanism
    class M pathology
    class F,O therapy
    class L,N outcome
    class C,I,J,K genetics

⚖️ Evidence

⚖️ Evidence Matrix12 supports5 contradicts
Supports
Rab27a and Rab27b control different steps of the exosome secretion pathway.
Nat Cell Biol2010PMID:19966785medium
Abstract
Exosomes are secreted membrane vesicles that share structural and biochemical characteristics with intraluminal vesicles of multivesicular endosomes (MVEs). Exosomes could be involved in intercellular communication and in the pathogenesis of infectious and degenerative diseases. The molecular mechanisms of exosome biogenesis and secretion are, however, poorly understood. Using an RNA interference (RNAi) screen, we identified five Rab GTPases that promote exosome secretion in HeLa cells. Among these, Rab27a and Rab27b were found to function in MVE docking at the plasma membrane. The size of MVEs was strongly increased by Rab27a silencing, whereas MVEs were redistributed towards the perinuclear region upon Rab27b silencing. Thus, the two Rab27 isoforms have different roles in the exosomal pathway. In addition, silencing two known Rab27 effectors, Slp4 (also known as SYTL4, synaptotagmin-like 4) and Slac2b (also known as EXPH5, exophilin 5), inhibited exosome secretion and phenocopied sil
Supports
Tumour extracellular vesicles and particles induce liver metabolic dysfunction.
Nature2023PMID:37225988medium
Abstract
Cancer alters the function of multiple organs beyond those targeted by metastasis1,2. Here we show that inflammation, fatty liver and dysregulated metabolism are hallmarks of systemically affected livers in mouse models and in patients with extrahepatic metastasis. We identified tumour-derived extracellular vesicles and particles (EVPs) as crucial mediators of cancer-induced hepatic reprogramming, which could be reversed by reducing tumour EVP secretion via depletion of Rab27a. All EVP subpopulations, exosomes and principally exomeres, could dysregulate hepatic function. The fatty acid cargo of tumour EVPs-particularly palmitic acid-induced secretion of tumour necrosis factor (TNF) by Kupffer cells, generating a pro-inflammatory microenvironment, suppressing fatty acid metabolism and oxidative phosphorylation, and promoting fatty liver formation. Notably, Kupffer cell ablation or TNF blockade markedly decreased tumour-induced fatty liver generation. Tumour implantation or pre-treatment
Supports
Extracellular vesicles in fatty liver promote a metastatic tumor microenvironment.
Cell Metab2023PMID:37172577medium
Abstract
Liver metastasis is a major cause of death in patients with colorectal cancer (CRC). Fatty liver promotes liver metastasis, but the underlying mechanism remains unclear. We demonstrated that hepatocyte-derived extracellular vesicles (EVs) in fatty liver enhanced the progression of CRC liver metastasis by promoting oncogenic Yes-associated protein (YAP) signaling and an immunosuppressive microenvironment. Fatty liver upregulated Rab27a expression, which facilitated EV production from hepatocytes. In the liver, these EVs transferred YAP signaling-regulating microRNAs to cancer cells to augment YAP activity by suppressing LATS2. Increased YAP activity in CRC liver metastasis with fatty liver promoted cancer cell growth and an immunosuppressive microenvironment by M2 macrophage infiltration through CYR61 production. Patients with CRC liver metastasis and fatty liver had elevated nuclear YAP expression, CYR61 expression, and M2 macrophage infiltration. Our data indicate that fatty liver-ind
Supports
Hepatocyte-derived MASP1-enriched small extracellular vesicles activate HSCs to promote liver fibrosis.
Hepatology2023PMID:35849032medium
Abstract
BACKGROUND AND AIMS: Liver fibrosis is a chronic disease characterized by different etiological agents; dysregulated interactions between hepatocytes and HSCs contribute to this disease. β-arrestin 1 (ARRB1) plays an important role in liver fibrosis; however, the effect of ARRB1 on the crosstalk between hepatocytes and HSCs in liver fibrosis is unknown. The aim of this study is to investigate how ARRB1 modulates hepatocyte and HSC activation during liver fibrosis. APPROACH AND RESULTS: Normal and fibrotic human liver and serum samples were obtained. CCl 4 -induced liver fibrosis and methionine-choline deficiency-induced NASH models were constructed. Primary hepatocytes and HSCs were isolated, and human hepatic LO2 and stellate LX2 cells were used. Small extracellular vesicles (EVs) were purified, and key proteins were identified. ARRB1 was up-regulated in hepatocytes and associated with autophagic blockage in liver fibrosis. ARRB1 increased the release of hepatocyte-derived small EVs b
Supports
Extracellular vesicle-packaged ILK from mesothelial cells promotes fibroblast activation in peritoneal fibrosis.
J Extracell Vesicles2023PMID:37357686medium
Abstract
Progressive peritoneal fibrosis and the loss of peritoneal function often emerged in patients undergoing long-term peritoneal dialysis (PD), resulting in PD therapy failure. Varieties of cell-cell communications among peritoneal cells play a significant role in peritoneal fibrogenesis. Extracellular vesicles (EVs) have been confirmed to involve in intercellular communication by transmitting proteins, nucleic acids or lipids. However, their roles and functional mechanisms in peritoneal fibrosis remain to be determined. Using integrative analysis of EV proteomics and single-cell RNA sequencing, we characterized the EVs isolated from PD patient's effluent and revealed that mesothelial cells are the main source of EVs in PD effluent. We demonstrated that transforming growth factor-β1 (TGF-β1) can substitute for PD fluid to stimulate mesothelial cells releasing EVs, which in turn promoted fibroblast activation and peritoneal fibrogenesis. Blockade of EVs secretion by GW4869 or Rab27a knockd
Supports
Tipifarnib Reduces Extracellular Vesicles and Protects From Heart Failure.
Circ Res2024PMID:38847080medium
Abstract
BACKGROUND: Heart failure (HF) is one of the leading causes of mortality worldwide. Extracellular vesicles, including small extracellular vesicles or exosomes, and their molecular cargo are known to modulate cell-to-cell communication during multiple cardiac diseases. However, the role of systemic extracellular vesicle biogenesis inhibition in HF models is not well documented and remains unclear. METHODS: We investigated the role of circulating exosomes during cardiac dysfunction and remodeling in a mouse transverse aortic constriction (TAC) model of HF. Importantly, we investigate the efficacy of tipifarnib, a recently identified exosome biogenesis inhibitor that targets the critical proteins (Rab27a [Ras associated binding protein 27a], nSMase2 [neutral sphingomyelinase 2], and Alix [ALG-2-interacting protein X]) involved in exosome biogenesis for this mouse model of HF. In this study, 10-week-old male mice underwent TAC surgery were randomly assigned to groups with and without tipif
Supports
Deletion in chromosome 6 spanning alpha-synuclein and multimerin1 loci in the Rab27a/b double knockout mouse
Sci Rep2022PMID:35701443strong
Abstract
We report an incidental 358.5 kb deletion spanning the region encoding for alpha-synuclein (αsyn) and multimerin1 (Mmrn1) in the Rab27a/Rab27b double knockout (DKO) mouse line previously developed by Tolmachova and colleagues in 2007. Western blot and RT-PCR studies revealed lack of αsyn expression at either the mRNA or protein level in Rab27a/b DKO mice. PCR of genomic DNA from Rab27a/b DKO mice demonstrated at least partial deletion of the Snca locus using primers targeted to exon 4 and exon 6. Most genes located in proximity to the Snca locus, including Atoh1, Atoh2, Gm5570, Gm4410, Gm43894, and Grid2, were shown not to be deleted by PCR except for Mmrn1. Using whole genomic sequencing, the complete deletion was mapped to chromosome 6 (60,678,870-61,037,354), a slightly smaller deletion region than that previously reported in the C57BL/6J substrain maintained by Envigo. Electron microscopy of cortex from these mice demonstrates abnormally enlarged synaptic terminals with reduced syn
Supports
RAB27A and RAB27B are critical regulators of exosome secretion pathways, with RAB27A specifically controlling SNARE-dependent vesicle docking and fusion at the plasma membrane
Ostrowski et al., Nature Cell Biology (2010) - RabPMID:23201972strong
Abstract
Although the fact that genetic predisposition and environmental exposures interact to shape development and function of the human brain and, ultimately, the risk of psychiatric disorders has drawn wide interest, the corresponding molecular mechanisms have not yet been elucidated. We found that a functional polymorphism altering chromatin interaction between the transcription start site and long-range enhancers in the FK506 binding protein 5 (FKBP5) gene, an important regulator of the stress hormone system, increased the risk of developing stress-related psychiatric disorders in adulthood by allele-specific, childhood trauma-dependent DNA demethylation in functional glucocorticoid response elements of FKBP5. This demethylation was linked to increased stress-dependent gene transcription followed by a long-term dysregulation of the stress hormone system and a global effect on the function of immune cells and brain areas associated with stress regulation. This identification of molecular m
Supports
Extracellular vesicles serve as effective cargo delivery vehicles capable of transferring bioactive molecules including proteins and organellar components between cells, providing a basis for therapeutic cargo engineering
Kalluri & LeBleu, Science (2020) - The biology, fuPMID:29590046strong
Abstract
The gut microbiota benefits humans via short-chain fatty acid (SCFA) production from carbohydrate fermentation, and deficiency in SCFA production is associated with type 2 diabetes mellitus (T2DM). We conducted a randomized clinical study of specifically designed isoenergetic diets, together with fecal shotgun metagenomics, to show that a select group of SCFA-producing strains was promoted by dietary fibers and that most other potential producers were either diminished or unchanged in patients with T2DM. When the fiber-promoted SCFA producers were present in greater diversity and abundance, participants had better improvement in hemoglobin A1c levels, partly via increased glucagon-like peptide-1 production. Promotion of these positive responders diminished producers of metabolically detrimental compounds such as indole and hydrogen sulfide. Targeted restoration of these SCFA producers may present a novel ecological approach for managing T2DM.
Supports
RAB27A-deficient neurons show impaired mitochondrial distribution and altered autophagy-related vesicle trafficking, suggesting RAB27A involvement in mitochondrial dynamics relevant to neurodegeneration
Prigione et al., Human Molecular Genetics (2014) -PMID:25392513moderate
Abstract
Biological causes underpinning the well known gender dimorphisms in human behavior, cognition, and emotion have received increased attention in recent years. The advent of diffusion-weighted magnetic resonance imaging has permitted the investigation of the white matter microstructure in unprecedented detail. Here, we aimed to study the potential influences of biological sex, gender identity, sex hormones, and sexual orientation on white matter microstructure by investigating transsexuals and healthy controls using diffusion tensor imaging (DTI). Twenty-three female-to-male (FtM) and 21 male-to-female (MtF) transsexuals, as well as 23 female (FC) and 22 male (MC) controls underwent DTI at 3 tesla. Fractional anisotropy, axial, radial, and mean diffusivity were calculated using tract-based spatial statistics (TBSS) and fiber tractography. Results showed widespread significant differences in mean diffusivity between groups in almost all white matter tracts. FCs had highest mean diffusivit
Supports
EVs-Mediated Intracardiac Crosstalk Mitigates Doxorubicin-Induced Cardiotoxicity.
Circ Res2026PMID:41948821
Supports
Autophagic extracellular vesicles: a distinct secretory route linking autophagy to extracellular communication
Autophagy2026PMID:41958120moderate
Contradicts
Capturing membrane trafficking events during 3D angiogenic development in vitro
Microcirculation2022PMID:34415654medium
Abstract
OBJECTIVES: Vesicular trafficking dictates protein localization, functional activity, and half-life, providing a critically important regulatory step in tissue development; however, there is little information detailing endothelial-specific trafficking signatures. This is due, in part, to limitations in visualizing trafficking events in endothelial tissues. Our aim in this investigation was to explore the use of a 3-dimensional (3D) in vitro sprouting model to image endothelial membrane trafficking events. METHODS: Endothelial cells were challenged to grow sprouts in a fibrin bead assay. Thereafter, spouts were transfected with fluorescent proteins and stained for various cell markers. Sprouts were then imaged for trafficking events using live and fixed-cell microscopy. RESULTS: Our results demonstrate that fibrin bead sprouts have a strong apicobasal polarity marked by apical localization of proteins moesin and podocalyxin. Comparison of trafficking mediators Rab27a and Rab35 between
Contradicts
In vivo Roles of Rab27 and Its Effectors in Exocytosis
Cell Struct Funct2021PMID:34483204medium
Abstract
The monomeric GTPase Rab27 regulates exocytosis of a broad range of vesicles in multicellular organisms. Several effectors bind GTP-bound Rab27a and/or Rab27b on secretory vesicles to execute a series of exocytic steps, such as vesicle maturation, movement along microtubules, anchoring within the peripheral F-actin network, and tethering to the plasma membrane, via interactions with specific proteins and membrane lipids in a local milieu. Although Rab27 effectors generally promote exocytosis, they can also temporarily restrict it when they are involved in the rate-limiting step. Genetic alterations in Rab27-related molecules cause discrete diseases manifesting pigment dilution and immunodeficiency, and can also affect common diseases such as diabetes and cancer in complex ways. Although the function and mechanism of action of these effectors have been explored, it is unclear how multiple effectors act in coordination within a cell to regulate the secretory process as a whole. It seems
Contradicts
Case Report: Late-onset primary hemophagocytic lymphohistiocytosis leading to the diagnosis of Griscelli syndrome type 2 in a young woman with phenotypically inapparent partial albinism
Front Immunol2025PMID:40852732medium
Abstract
Griscelli syndrome type 2 (GS-2) is a rare congenital immune dysfunction characterized by partial albinism and recurrent episodes of hemophagocytic lymphohistiocytosis (HLH). It is caused by a variant in the gene encoding Rab27a leading to a degranulation defect in melanocytes, natural killer (NK)- and T cells. Prognosis of patients with GS-2 is limited by repetitive episodes of life-threatening HLH with onset in early childhood. The only curative treatment is an allogeneic hematopoietic stem cell transplantation (HSCT). Here, we report on an 18 year old female patient with a homozygous missense p.Arg50Glnfs*35 variant in exon 2 of RAB27A who presented with an exceptionally late onset of severe HLH. Her phenotypically inapparent albinism complicated to correctly diagnose GS-2. Immune function assays confirmed a T- and NK cell degranulation deficiency characteristic for patients with primary HLH, while microscopic hair analysis revealed melanin clumps secondary to melanocyte functional
Contradicts
Interruption of p38(MAPK)-MSK1-CREB-MITF-M pathway to prevent hyperpigmentation in the skin
Int J Biol Sci2024PMID:38481807medium
Abstract
Background: Melanocortin 1 receptor (MC1R), a receptor of α-melanocyte-stimulating hormone (α-MSH), is exclusively present in melanocytes where α-MSH/MC1R stimulate melanin pigmentation through microphthalmia-associated transcription factor M (MITF-M). Toll-like receptor 4 (TLR4), a receptor of endotoxin lipopolysaccharide (LPS), is distributed in immune and other cell types including melanocytes where LPS/TLR4 activate transcriptional activity of nuclear factor (NF)-κB to express cytokines in innate immunity. LPS/TLR4 also up-regulate MITF-M-target melanogenic genes in melanocytes. Here, we propose a molecular target of antimelanogenic activity through elucidating inhibitory mechanism on α-MSH-induced melanogenic programs by benzimidazole-2-butanol (BI2B), an inhibitor of LPS/TLR4-activated transcriptional activity of NF-κB. Methods: Ultraviolet B (UV-B)-irradiated skins of HRM-2 hairless mice and α-MSH-activated melanocyte cultures were employed to examine melanogenic programs. Resul
Contradicts
Autophagy and exosomes coordinately mediate quercetin's protective effects on alcoholic liver disease
J Nutr Biochem2023PMID:36965782medium
Abstract
Alcoholic liver disease (ALD), a spectrum of liver abnormalities induced by chronic alcohol abuse, continues to be the major cause of life-threatening liver disease in developed countries. Autophagy and exosomes were individually confirmed to be involved in the pathogenesis of ALD. Here, we sought to identify the role of autophagy and exosomes in the liver protective effects of quercetin. We observed decreased hepatic LC3II/LC3I and increased p62 level in ethanol-fed mice, and these changes were alleviated by quercetin. Meanwhile, nanoparticle tracking analysis (NTA) showed elevated serum exosomes numbers in ethanol-fed mice, which was combated by quercetin. Ethanol induced elevated LDH, ALT, and AST in HepG2 supernatant, which was alleviated by cytochalasin D (exosomes uptake inhibitor). Moreover, quercetin reduced ethanol-induced LDH and ALT elevation in vitro, and the effects of quercetin were reversed by Rab27a overexpression (induce exosomes release) or wortmannin treatment (autop
📖 Linked Papers (15)Export BibTeX ↗
Figures
Figures
Figures available at source paper (no open-access XML found).
Interruption of p38
International journal of biological sciences (2024) · PubMed:38481807 ↗
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📙 Related Wiki Pages (15)

🏥 Translation

🧬 3D Protein Structure — RAB27A

No curated PDB or AlphaFold mapping for RAB27A yet. Search RCSB →

💉 Clinical Trials (5)Relevance: 44%

0
Active
0
Completed
282
Total Enrolled
PHASE1
Highest Phase
RECRUITING·NCT04220190 · Rapa Therapeutics LLC
41 enrolled · 2025-01-02 · → 2026-07-01
RAPA-501-ALS is a phase 2/3 expansion cohort study of RAPA-501 autologous hybrid TREG/Th2 cells in patients living with amyotrophic lateral sclerosis (pwALS).
Amyotrophic Lateral Sclerosis
RAPA-501 Autologous T stem cells
COMPLETED·NCT03955380 · Prof. Dr. Dieter Willbold
24 enrolled · 2018-12-12 · → 2019-04-03
This is a single-center multiple-ascending-dose clinical trial assessing the safety and tolerability of oral dosing of Contraloid acetate in healthy volunteers. The study drug Contraloid (alias RD2, a
Alzheimer Dementia Alzheimer Disease
Contraloid
UNKNOWN·NCT04820881 · Washington D.C. Veterans Affairs Medical Center
60 enrolled · 2021-10-01 · → 2024-09
This grant award entitled, "Cerebrovascular Reactivity and Oxygen Metabolism as Markers for Neurodegeneration after Traumatic Brain Injury" (hereafter, "Neurovascular Study"), aims to determine if neu
Neurodegenerative Diseases
NOT_YET_RECRUITING·NCT07212088 · iCamuno Biotherapeutics Ltd.
12 enrolled · 2026-02-28 · → 2027-12-15
Parkinson's disease is a progressive neurodegenerative disorder characterized by high morbidity due to the limited regenerative capacity of dopaminergic neurons in the brain. Current drug treatments p
Parkinson Disease
ALC01 therapy
COMPLETED·NCT02405182 · University of Alberta
145 enrolled · 2014-09 · → 2019-03
Amyotrophic lateral sclerosis (ALS) is a disabling and rapidly progressive neurodegenerative disorder. There is no treatment that significantly slows progression. Increasing age is an important risk f
Amyotrophic Lateral Sclerosis ALS Motor Neuron Diseases
Magnetic Resonance Imaging

No curated ClinVar variants loaded for this hypothesis.

Run scripts/backfill_clinvar_variants.py to fetch P/LP/VUS variants.

🔍 Search ClinVar for RAB27A →

No DepMap CRISPR Chronos data found for RAB27A.

Run python3 scripts/backfill_hypothesis_depmap.py to populate.

💰 Estimated Development
Cost
$0
Timeline
2.0 years

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📊 Market Indicators

7d Trend
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7d Momentum
▼ 1.7%
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Medium
0.0249
Events (7d)
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Price History
▼27.3%

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Total Cost
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🔮 Predictions

🔎 Predictions vs Observations2 predictions · 0 with recorded observations
PredictionPredictedObservedStatusConf
If hypothesis is true, intervention enable precise temporal and spatial control over treatment deliveryenable precise temporal and spatial control over treatment delivery— no observation —pending0.40
If hypothesis is true, intervention increase the packaging of intact, functional mitochondria into large extracellular vesicles (LEVs) through a novel mechanism involving the recruitment of mitochondrincrease the packaging of intact, functional mitochondria into large extracellular vesicles (LEVs) through a novel mechanism involving the recruitment of mitoch— no observation —pending0.40
🔮 Falsifiable Predictions (2)
pendingconf 40%
If hypothesis is true, intervention increase the packaging of intact, functional mitochondria into large extracellular vesicles (LEVs) through a novel mechanism involving the recruitment of mitochondria to MVB formation sites
Predicted outcome: increase the packaging of intact, functional mitochondria into large extracellular vesicles (LEVs) through a novel mechanism involving the recruitment
Falsification: Intervention fails to increase the packaging of intact, functional mitochondria into large extracellular vesicles (LEVs) through a novel mechanism involving the recruitment of mitochondria to MVB form
pendingconf 40%
If hypothesis is true, intervention enable precise temporal and spatial control over treatment delivery
Predicted outcome: enable precise temporal and spatial control over treatment delivery
Falsification: Intervention fails to enable precise temporal and spatial control over treatment delivery

📖 References (11)

  1. Rab27a and Rab27b control different steps of the exosome secretion pathway.
    Ostrowski M et al.. Nat Cell Biol (2010)
  2. Tumour extracellular vesicles and particles induce liver metabolic dysfunction.
    Wang G et al.. Nature (2023)
  3. Extracellular vesicles in fatty liver promote a metastatic tumor microenvironment.
    Wang Z et al.. Cell Metab (2023)
  4. Hepatocyte-derived MASP1-enriched small extracellular vesicles activate HSCs to promote liver fibrosis.
    Liu X et al.. Hepatology (Baltimore, Md.) (2023)
  5. Extracellular vesicle-packaged ILK from mesothelial cells promotes fibroblast activation in peritoneal fibrosis.
    Huang Q et al.. Journal of extracellular vesicles (2023)
  6. Tipifarnib Reduces Extracellular Vesicles and Protects From Heart Failure.
    Mallaredy V et al.. Circulation research (2024)
  7. Capturing membrane trafficking events during 3D angiogenic development in vitro.
    ["Francis C" et al.. Microcirculation (New York, N.Y. : 1994) (2022)
  8. In vivo Roles of Rab27 and Its Effectors in Exocytosis.
    ["Izumi T"]. Cell structure and function (2021)
  9. Case Report: Late-onset primary hemophagocytic lymphohistiocytosis leading to the diagnosis of Griscelli syndrome type 2 in a young woman with phenotypically inapparent partial albinism.
    ["Rausch J" et al.. Frontiers in immunology (2025)
  10. Interruption of p38
    ["Kim S" et al.. International journal of biological sciences (2024)
  11. Autophagy and exosomes coordinately mediate quercetin's protective effects on alcoholic liver disease.
    ["Chen H" et al.. The Journal of nutritional biochemistry (2023)
Related Entities
Metadata
statusproposed
_schema_version1
hypothesis_typeNone
📊 Evidence Profile Foundational
Evidence Balance
+0%
Certainty
100%
Debates
2
Incoming
3541
Outgoing
1953
0 supporting 0 contradicting 2 neutral
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