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result(s) for
"MicroRNAs - therapeutic use"
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Phase I study of MRX34, a liposomal miR-34a mimic, administered twice weekly in patients with advanced solid tumors
2017
Summary
Purpose
Naturally occurring tumor suppressor microRNA-34a (miR-34a) downregulates the expression of >30 oncogenes across multiple oncogenic pathways, as well as genes involved in tumor immune evasion, but is lost or under-expressed in many malignancies. This first-in-human, phase I study assessed the maximum tolerated dose (MTD), safety, pharmacokinetics, and clinical activity of MRX34, a liposomal miR-34a mimic, in patients with advanced solid tumors.
Patients and Methods
Adult patients with solid tumors refractory to standard treatment were enrolled in a standard 3 + 3 dose escalation trial. MRX34 was given intravenously twice weekly (BIW) for three weeks in 4-week cycles.
Results
Forty-seven patients with various solid tumors, including hepatocellular carcinoma (HCC;
n
= 14), were enrolled. Median age was 60 years, median prior therapies was 4 (range, 1–12), and most were Caucasian (68%) and male (57%). Most common adverse events (AEs) included fever (all grade %/G3%: 64/2), fatigue (57/13), back pain (57/11), nausea (49/2), diarrhea (40/11), anorexia (36/4), and vomiting (34/4). Laboratory abnormalities included lymphopenia (G3%/G4%: 23/9), neutropenia (13/11), thrombocytopenia (17/0), increased AST (19/4), hyperglycemia (13/2), and hyponatremia (19/2). Dexamethasone premedication was required to manage infusion-related AEs. The MTD for non-HCC patients was 110 mg/m
2
, with two patients experiencing dose-limiting toxicities of G3 hypoxia and enteritis at 124 mg/m
2
. The half-life was >24 h, and C
max
and AUC increased with increasing dose. One patient with HCC achieved a prolonged confirmed PR lasting 48 weeks, and four patients experienced SD lasting ≥4 cycles.
Conclusion
MRX34 treatment with dexamethasone premedication was associated with acceptable safety and showed evidence of antitumor activity in a subset of patients with refractory advanced solid tumors. The MTD for the BIW schedule was 110 mg/m
2
for non-HCC and 93 mg/m2 for HCC patients. Additional dose schedules of MRX34 have been explored to improve tolerability.
Journal Article
Role of resveratrol supplementation in regulation of glucose hemostasis, inflammation and oxidative stress in patients with diabetes mellitus type 2: A randomized, placebo-controlled trial
by
Mirza, Shakil Ahmed
,
Mahjabeen, Wajiha
,
Khan, Dilshad Ahmed
in
Armed forces
,
Biomarkers - metabolism
,
Blood Glucose
2022
The objective was to determine the effects of resveratrol supplementation on glucose homeostasis, oxidative stress, inflammation and microRNAs expression in patients with diabetes mellitus type 2 on oral hypoglycemic drugs.
This was a randomized, double blinded placebo-controlled parallel group trial. The diabetic patients (n = 110) were randomly assigned either to resveratrol (n = 55) and placebo (55) groups after informed consent and given once daily resveratrol 200 mg and cellulose capsules respectively for 24 weeks. Fasting glucose, insulin, HbA1c, lipid profile, TNF- α, IL-6, hs-CRP, MDA & circulatory microRNAs were measured at start and end of 24- week intervention.
Out of 110 patients recruited, 94 patients completed the study comprising of 45 in resveratrol and 46 in placebo group. The resveratrol supplementation after 24 weeks was resulted in significant reduction [mean difference (95%CI)] of plasma glucose[− 0.50(−0.94 to −0.06)], insulin[− 1.31(−2.24 to −0.38)], homeostatic model assessment of insulin resistance[− 0.83(−1.37 to −0.29)], malondialdehyde[− 0.36(−0.61 to −0.11)], high sensitive-C-reactive protein[− 0.35(−0.70 to −0.01)], tumor necrosis factor-alpha[− 1.25(−1.90 to −0.61)] and interleukin-6[− 1.99(−3.29 to −0.69)]. More than two-fold down regulation in miRNA-34a, miRNA-375, miRNA-21, miRNA-192 and up regulation in miRNA-126 and miRNA-132 expression was noted in patients receiving resveratrol as compared to placebo. No side effects were reported during the trial.
Resveratrol supplementation contributes in improvement of glycemic control by reducing insulin resistance. It has significant beneficial impact on chronic inflammation, oxidative stress and associated microRNA expression in diabetic patients. Thus, supplementation of resveratrol along with oral hypoglycemic agents may be useful in the reduction of diabetic associated complications.
•Resveratrol along with recommended oral hypoglycemic agents is effective for prevention of disease progression in diabetes mellitus type 2.•Resveratrol significantly regulate glucose homeostasis through substantial decrease in HOMA-IR and insulin levels. Its effect in reduction of fasting glucose and HbA1c is significant but less potent.•Resveratrol proves to be an effective anti-inflammatory and anti-oxidative agent through significant decreases in levels of hs-CRP, IL-6, TNF-α and MDA.•Modulation of diabetes associated micro RNA expressions by resveratrol may represent a new treatment option in Diabetes mellitus type 2.
Journal Article
Multiple Pre-Treatment miRNAs Levels in Untreated Major Depressive Disorder Patients Predict Early Response to Antidepressants and Interact with Key Pathways
by
Nishida, Keiichiro
,
Nonen, Shinpei
,
Tahara, Hidetoshi
in
Antidepressants
,
Antidepressive Agents - pharmacology
,
Antidepressive Agents - therapeutic use
2022
Major depressive disorder (MDD) is a life-impairing disorder, and early successful treatment is important for a favorable prognosis. However, early response to antidepressants differs widely among individuals, and is difficult to predict pre-treatment. As miRNAs have been reported to play important roles in depression, identification of miRNAs associated with antidepressant treatment responses and their interacting genes and pathways will be beneficial in understanding the predictors and molecular mechanisms of depression treatment. This randomized control trial examined miRNAs correlated with the early therapeutic effect of selective serotonin reuptake inhibitors (SSRIs; paroxetine or sertraline) and mirtazapine monotherapy. Before medication, we comprehensively analyzed the miRNA expression of 92 depressed participants and identified genes and pathways interacting with miRNAs. A total of 228 miRNAs were significantly correlated with depressive symptoms improvements after 2 weeks of SSRIs treatment, with miR-483.5p showing the most robust correlation. These miRNAs are involved in 21 pathways, including TGF-β, glutamatergic synapse, long-term depression, and the mitogen-activated protein kinase (MAPK) signaling pathways. Using these miRNAs enabled us to predict SSRI response at week 2 with a 57% difference. This study shows that pre-treatment levels of miRNAs could be used to predict early responses to antidepressant administration, a knowledge of genes, and an identification of genes and pathways associated with the antidepressant response.
Journal Article
MicroRNA therapy stimulates uncontrolled cardiac repair after myocardial infarction in pigs
2019
Prompt coronary catheterization and revascularization have markedly improved the outcomes of myocardial infarction, but have also resulted in a growing number of surviving patients with permanent structural damage of the heart, which frequently leads to heart failure. There is an unmet clinical need for treatments for this condition
1
, particularly given the inability of cardiomyocytes to replicate and thereby regenerate the lost contractile tissue
2
. Here we show that expression of human microRNA-199a in infarcted pig hearts can stimulate cardiac repair. One month after myocardial infarction and delivery of this microRNA through an adeno-associated viral vector, treated animals showed marked improvements in both global and regional contractility, increased muscle mass and reduced scar size. These functional and morphological findings correlated with cardiomyocyte de-differentiation and proliferation. However, subsequent persistent and uncontrolled expression of the microRNA resulted in sudden arrhythmic death of most of the treated pigs. Such events were concurrent with myocardial infiltration of proliferating cells displaying a poorly differentiated myoblastic phenotype. These results show that achieving cardiac repair through the stimulation of endogenous cardiomyocyte proliferation is attainable in large mammals, however dosage of this therapy needs to be tightly controlled.
MicroRNAs delivered by adeno-associated viral vectors improve global and regional contractility, increase muscle mass and reduce scar size in a porcine model of myocardial infarction.
Journal Article
MicroRNA in cancer therapy: breakthroughs and challenges in early clinical applications
by
Di Martino, Maria Teresa
,
Tagliaferri, Pierosandro
,
Tassone, Pierfrancesco
in
Animals
,
Apoptosis
,
Biomarkers
2025
MicroRNAs (miRNAs) have emerged as pivotal regulators in cancer biology, influencing tumorigenesis, progression, and resistance to therapy. Their ability to modulate multiple oncogenic and tumor-suppressive pathways positions them as promising therapeutic tools or targets. This review examines the dual role of miRNAs in solid and hematological malignancies, starting from their dysregulation in various cancer types. Therapeutic approaches, including miRNA replacement and inhibition strategies, are discussed alongside innovative delivery systems such as lipid nanoparticles and exosomes. Despite their transformative potential, challenges persist, including off-target effects, immune activation, and delivery inefficiencies. Recent clinical trials demonstrate both progress and hurdles, underscoring the need for advanced strategies to optimize specificity and minimize toxicity. This review provides an updated comprehensive overview of the current landscape of miRNA-based therapies under early clinical investigation and explores future directions for integrating these approaches into precision oncology.
Journal Article
A systematic review of non-coding RNA therapeutics in early clinical trials: a new perspective against cancer
by
Grillone, Katia
,
Cordua, Alessia
,
Caridà, Giulio
in
Analysis
,
Animals
,
Biomedical and Life Sciences
2024
Targeting non-coding RNAs (ncRNAs), including microRNAs (miRNAs) and long non-coding RNAs (lncRNAs), has recently emerged as a promising strategy for treating malignancies and other diseases. In recent years, the development of ncRNA-based therapeutics for targeting protein-coding and non-coding genes has also gained momentum. This review systematically examines ongoing and completed clinical trials to provide a comprehensive overview of the emerging landscape of ncRNA-based therapeutics. Significant efforts have been made to advance ncRNA therapeutics to early clinical studies. The most advanced trials have been conducted with small interfering RNAs (siRNAs), miRNA replacement using nanovector-entrapped miRNA mimics, or miRNA silencing by antisense oligonucleotides. While siRNA-based therapeutics have already received FDA approval, miRNA mimics, inhibitors, and lncRNA-based therapeutics are still under evaluation in preclinical and early clinical studies. We critically discuss the rationale and methodologies of ncRNA targeting strategies to illustrate this rapidly evolving field.
Journal Article
MicroRNAome genome: A treasure for cancer diagnosis and therapy
2014
The interplay between abnormalities in genes coding for proteins and noncoding microRNAs (miRNAs) has been among the most exciting yet unexpected discoveries in oncology over the last decade. The complexity of this network has redefined cancer research as miRNAs, produced from what was once considered \"genomic trash,\" have shown to be crucial for cancer initiation, progression, and dissemination. Naturally occurring miRNAs are very short transcripts that never produce a protein or amino acid chain, but act by regulating protein expression during cellular processes such as growth, development, and differentiation at the transcriptional, posttranscriptional, and/or translational level. In this review article, miRNAs are presented as ubiquitous players involved in all cancer hallmarks. The authors also describe the most used methods to detect their expression, which have revealed the identity of hundreds of miRNAs dysregulated in cancer cells or tumor microenvironment cells. Furthermore, the role of miRNAs as hormones and as reliable cancer biomarkers and predictors of treatment response is discussed. Along with this, the authors explore current strategies in designing miRNA-targeting therapeutics, as well as the associated challenges that research envisions to overcome. Finally, a new wave in molecular oncology translational research is introduced: the study of long noncoding RNAs.
Journal Article
The Role of Exo-miRNAs in Cancer: A Focus on Therapeutic and Diagnostic Applications
by
Roscigno, Giuseppina
,
Scognamiglio, Iolanda
,
Nuzzo, Silvia
in
Angiogenesis
,
Ascites
,
Biomarkers
2019
Exosomes are extracellular vesicles released into biological fluids where they act as carriers of various molecules, including proteins, lipids, and RNAs, between cells, modulating or perturbing specific physiological processes. Recently, it has been suggested that tumoral cells release excessive amounts of exosomes that, through their cargo, promote tumor progression, stimulating growth, angiogenesis, metastasis, insensitivity to chemotherapy, and immune evasion. Increasing evidence highlights exosomal microRNAs (exo-miRNAs) as important players in tumorigenesis. MicroRNA (miRNA) are a class of small non-coding RNA able to regulate gene expression, targeting multiple mRNAs and inducing translational repression and/or mRNA degradation. Exo-miRNAs are highly stable and easily detectable in biological fluids, and for these reasons, miRNAs are potential cancer biomarkers useful diagnostically and prognostically. Furthermore, since exosomes are natural delivery systems between cells, they can be appropriately modified to carry therapeutic miRNAs to specific recipient cells. Here we summarize the main functions of exo-miRNAs and their possible role for diagnostic and therapeutic applications.
Journal Article
MicroRNAs and other non-coding RNAs as targets for anticancer drug development
by
Ling, Hui
,
Fabbri, Muller
,
Calin, George A.
in
631/154
,
631/154/51/391/2310
,
631/337/384/2568
2013
Key Points
Mature microRNAs (miRNAs) are single-stranded RNAs that are 19–24 nucleotides in length and are produced in a multistep process involving the ribonuclease enzymes Drosha and Dicer.
miRNAs act via diverse mechanisms. In the 'canonical' mechanism, miRNAs bind to the 3′ untranslated (3′ UTR) region of mRNAs and reduce their protein output. Several unexpected mechanisms — such as miRNA binding to other RNA regions or DNA regulatory elements — and direct or indirect upregulation of protein translation have been demonstrated recently.
Extracellular miRNAs such as those secreted in exosomes can act on recipient cells through hormone-like mechanisms.
miRNAs are drivers or cofactors of carcinogenesis as well as tumour metastasis by controlling the expression of multiple protein-coding genes.
Aberrant miRNA expression in cancer can be corrected by replacement using miRNA mimics or blocking with anti-miR approaches.
The main advantages of miRNA therapeutics are their multi-targeting effects. Despite substantial challenges associated with miRNA therapeutics, the strategies of replacing tumour suppressor miRNAs with mimics have generated the first miRNA therapeutic agent (MRX34), which is in clinical trials for the treatment of cancer.
The combination of miRNAs with chemotherapeutic drugs or small interfering RNAs may synergistically improve the anticancer therapeutic efficacy and can be developed for cancer treatment.
Long non-coding RNAs (lncRNAs), including long intergenic ncRNAs (lincRNAs), transcribed ultraconserved regions (T-UCRs) and natural antisense transcripts (NATs), have been found to be involved in human cancers.
Many of the lncRNAs are predominately localized in the nucleus and thus act through different mechanisms than miRNAs. The unique features of such lncRNAs can be exploited for the development of specific and novel therapeutic strategies against cancer.
Non-coding RNAs (ncRNAs) are involved in the development of a number of diseases, including cancer, and the first ncRNA-targeted therapeutics have recently entered clinical trials. Here, Calin, Ling and Fabbri present the latest insights into ncRNA biology, with a focus on microRNAs (miRNAs) and long non-coding RNAs (lncRNAs), and discuss how these inform therapeutic strategies that modulate ncRNAs in cancer.
The first cancer-targeted microRNA (miRNA) drug — MRX34, a liposome-based miR-34 mimic — entered Phase I clinical trials in patients with advanced hepatocellular carcinoma in April 2013, and miRNA therapeutics are attracting special attention from both academia and biotechnology companies. Although miRNAs are the most studied non-coding RNAs (ncRNAs) to date, the importance of long non-coding RNAs (lncRNAs) is increasingly being recognized. Here, we summarize the roles of miRNAs and lncRNAs in cancer, with a focus on the recently identified novel mechanisms of action, and discuss the current strategies in designing ncRNA-targeting therapeutics, as well as the associated challenges.
Journal Article
Nanoscale delivery systems for microRNAs in cancer therapy
by
Ionescu, Calin
,
Onaciu, Anca
,
Gulei, Diana
in
Animals
,
Biochemistry
,
Biomedical and Life Sciences
2020
Concomitant with advances in research regarding the role of miRNAs in sustaining carcinogenesis, major concerns about their delivery options for anticancer therapies have been raised. The answer to this problem may come from the world of nanoparticles such as liposomes, exosomes, polymers, dendrimers, mesoporous silica nanoparticles, quantum dots and metal-based nanoparticles which have been proved as versatile and valuable vehicles for many biomolecules including miRNAs. In another train of thoughts, the general scheme of miRNA modulation consists in inhibition of oncomiRNA expression and restoration of tumor suppressor ones. The codelivery of two miRNAs or miRNAs in combination with chemotherapeutics or small molecules was also proposed. The present review presents the latest advancements in miRNA delivery based on nanoparticle-related strategies.
Journal Article