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Scientific Reports Apr 2021AKI has a high mortality rate, may lead to chronic kidney disease, and effective therapies are lacking. Micro-RNAs (miRNAs) regulate biologic processes by potently... (Meta-Analysis)
Meta-Analysis
AKI has a high mortality rate, may lead to chronic kidney disease, and effective therapies are lacking. Micro-RNAs (miRNAs) regulate biologic processes by potently inhibiting protein expression, and pre-clinical studies have explored their roles in AKI. We conducted a systematic review and meta-analysis of miRNAs as therapeutics in pre-clinical AKI. Study screening, data extraction, and quality assessments were performed by 2 independent reviewers. Seventy studies involving 42 miRNA species were included in the analysis. All studies demonstrated significant effects of the miRNA intervention on kidney function and/or histology, with most implicating apoptosis and phosphatase and tensin homolog (PTEN) signaling. Fourteen studies (20.0%) examined the effect of miRNA-21 in AKI, and meta-analysis demonstrated significant increases in serum creatinine and kidney injury scores with miR-21 antagonism and pre-conditioning. No studies reported on adverse effects of miRNA therapy. Limitations also included lack of model diversity (100% rodents, 61.4% ischemia-reperfusion injury), and predominance of male sex (78.6%). Most studies had an unclear risk of bias, and the majority of miRNA-21 studies were conducted by a single team of investigators. In summary, several miRNAs target kidney function and apoptosis in pre-clinical AKI models, with data suggesting that miRNA-21 may mediate protection and kidney repair.Systematic review registration ID: CRD42019128854.
Topics: Acute Kidney Injury; Animals; Antagomirs; Apoptosis; Creatinine; Drug Evaluation, Preclinical; Female; Male; Mice; MicroRNAs; Rats
PubMed: 33907298
DOI: 10.1038/s41598-021-88746-y -
Clinical Pharmacology and Therapeutics Dec 2021Spinal muscular atrophy (SMA) is a rare, progressive neuromuscular disease characterized by loss of motor neurons and muscle atrophy. Untreated infants with type 1 SMA...
Spinal muscular atrophy (SMA) is a rare, progressive neuromuscular disease characterized by loss of motor neurons and muscle atrophy. Untreated infants with type 1 SMA do not achieve major motor milestones, and death from respiratory failure typically occurs before 2 years of age. Individuals with types 2 and 3 SMA exhibit milder phenotypes and have better functional and survival outcomes. Herein, a systematic literature review was conducted to identify factors that influence the prognosis of types 1, 2, and 3 SMA. In untreated infants with type 1 SMA, absence of symptoms at birth, a later symptom onset, and a higher survival of motor neuron 2 (SMN2) copy number are all associated with increased survival. Disease duration, age at treatment initiation, and, to a lesser extent, baseline function were identified as potential treatment-modifying factors for survival, emphasizing that early treatment with disease-modifying therapies (DMT) is essential in type 1 SMA. In patients with types 2 and 3 SMA, factors considered prognostic of changes in motor function were SMN2 copy number, age, and ambulatory status. Individuals aged 6-15 years were particularly vulnerable to developing complications (scoliosis and progressive joint contractures) which negatively influence functional outcomes and may also affect the therapeutic response in patients. Age at the time of treatment initiation emerged as a treatment-effect modifier on the outcome of DMTs. Factors identified in this review should be considered prior to designing or analyzing studies in an SMA population, conducting population matching, or summarizing results from different studies on the treatments for SMA.
Topics: Cholestenones; Humans; Muscular Atrophy, Spinal; Observational Studies as Topic; Oligonucleotides; Prognosis; Randomized Controlled Trials as Topic; Treatment Outcome
PubMed: 33792051
DOI: 10.1002/cpt.2247 -
AJNR. American Journal of Neuroradiology May 2021Spinal muscular atrophy is a progressive neurodegenerative disorder that can be treated with intrathecal antisense oligonucleotide therapy (nusinersen). However,...
BACKGROUND
Spinal muscular atrophy is a progressive neurodegenerative disorder that can be treated with intrathecal antisense oligonucleotide therapy (nusinersen). However, administration is often complicated by posterior spinal fusion and neuromuscular scoliosis, necessitating a transforaminal approach.
PURPOSE
To assess the safety profile of the transforaminal approach for intrathecal access.
DATA SOURCES
Searches of the PubMed, Web of Science, and SCOPUS databases.
STUDY SELECTION
Thirteen articles were selected based on inclusion of transforaminal access and appropriate clinical information about the procedure.
DATA ANALYSIS
Complications were taken from the included articles and aggregated based on Cardiovascular and Interventional Radiological Society of Europe scale adverse event grading.
DATA SYNTHESIS
Total number of complications and grade of complications were analyzed, by year and in total.
LIMITATIONS
Selection bias in publication, small patient population size, and variability of the procedure limits the available data.
CONCLUSIONS
Transforaminal approach is a safe alternative for intrathecal access in patients with spinal muscular atrophy and may be applicable to a larger patient population.
Topics: Europe; Humans; Injections, Spinal; Male; Muscular Atrophy, Spinal; Oligonucleotides; Postoperative Complications
PubMed: 33632735
DOI: 10.3174/ajnr.A7009 -
Restorative treatments of dystrophin expression in Duchenne muscular dystrophy: A systematic review.Annals of Clinical and Translational... Sep 2020To evaluate the effect of pharmacological treatments that increase the synthesis of dystrophin in Duchenne muscular dystrophy (DMD). Systematic searches were carried out... (Meta-Analysis)
Meta-Analysis
To evaluate the effect of pharmacological treatments that increase the synthesis of dystrophin in Duchenne muscular dystrophy (DMD). Systematic searches were carried out in MEDLINE, EMBASE, and Web of Science, and in gray literature from inception to December 2019. Clinical trials addressing the effect of restorative treatments of dystrophin expression in children and adolescents with DMD on functional outcomes {(6-minute walking distance [6MWD], other timed functional tests [TFTs], The North Star Ambulatory Assessment)}, dystrophin expression, cardiorespiratory function, and biochemical tests were included. The DerSimonian-Laird method was used to calculate the pooled estimates for functional outcomes. Eleven studies were included in the systematic review and five in the meta-analysis. Eteplirsen showed a significant effect on 6MWD, Δ6MWD = 67.3 m (95% CI: 27.32, 107.28), and Δ6MWD = 151.0 m (95% CI: 36.15, 265.85) at 48 weeks and 3 years, respectively. In the systematic review, analyzing individually the clinical trials using Ataluren and Drisapersen showed a nonsignificant effect on 6MWD. However, the meta-analysis showed a significant effect on 6MWD for Ataluren and Drisapersen, Δ6MWD = 18.3 m (95% CI: 1.0, 35.5) and Δ6MWD = 21.5 m (95% CI: 4.7, 38.3), respectively. There were no significant differences according to baseline age for Drisapersen. Similarly, the meta-analysis showed effect in TFT with Ataluren. All drugs induced a partial synthesis of dystrophin, and exon skipping was obtained with Eteplirsen and Drisapersen. Eteplirsen also improved forced vital capacity (Δ%pFVC = 1.8%) and maximal inspiratory pressure (Δ%pMIP = 4.4%). Eteplirsen and Ataluren could modestly reduce disease progression. However, more trials are needed to confirm its efficacy, as well as quality of life and cost-utility studies.
Topics: Dystrophin; Humans; Morpholinos; Muscular Dystrophy, Duchenne; Oligonucleotides; Outcome Assessment, Health Care; Oxadiazoles
PubMed: 33325654
DOI: 10.1002/acn3.51149 -
Biomedicine & Pharmacotherapy =... Dec 2020Aptamers are single-stranded nucleic acid sequences that can bind to target molecules with high selectivity and affinity. Most aptamers are screened in vitro by a...
Aptamers are single-stranded nucleic acid sequences that can bind to target molecules with high selectivity and affinity. Most aptamers are screened in vitro by a combinatorial biology technique called systematic evolution of ligands by exponential enrichment (SELEX). Since aptamers were discovered in the 1990s, they have attracted considerable attention and have been widely used in many fields owing to their unique advantages. In this review, we present an overview of the advancements made in aptamers used for biosensors and targeted therapy. For the former, we will discuss multiple aptamer-based biosensors with different principles detected by various signaling methods. For the latter, we will focus on aptamer-based targeted therapy using aptamers as both biotechnological tools for targeted drug delivery and as targeted therapeutic agents. Finally, challenges and new perspectives associated with these two regions were further discussed. We hope that this review will help researchers interested in aptamer-related biosensing and targeted therapy research.
Topics: Animals; Antineoplastic Agents; Aptamers, Nucleotide; Biomarkers, Tumor; Biosensing Techniques; Drug Carriers; Drug Delivery Systems; Gene Transfer Techniques; Humans; Nanoparticles; Neoplasms; Predictive Value of Tests; RNA, Small Interfering; RNAi Therapeutics; SELEX Aptamer Technique
PubMed: 33096353
DOI: 10.1016/j.biopha.2020.110902 -
Pharmacological Reviews Oct 2020RNA-based therapies, including RNA molecules as drugs and RNA-targeted small molecules, offer unique opportunities to expand the range of therapeutic targets. Various...
RNA-based therapies, including RNA molecules as drugs and RNA-targeted small molecules, offer unique opportunities to expand the range of therapeutic targets. Various forms of RNAs may be used to selectively act on proteins, transcripts, and genes that cannot be targeted by conventional small molecules or proteins. Although development of RNA drugs faces unparalleled challenges, many strategies have been developed to improve RNA metabolic stability and intracellular delivery. A number of RNA drugs have been approved for medical use, including aptamers (e.g., pegaptanib) that mechanistically act on protein target and small interfering RNAs (e.g., patisiran and givosiran) and antisense oligonucleotides (e.g., inotersen and golodirsen) that directly interfere with RNA targets. Furthermore, guide RNAs are essential components of novel gene editing modalities, and mRNA therapeutics are under development for protein replacement therapy or vaccination, including those against unprecedented severe acute respiratory syndrome coronavirus pandemic. Moreover, functional RNAs or RNA motifs are highly structured to form binding pockets or clefts that are accessible by small molecules. Many natural, semisynthetic, or synthetic antibiotics (e.g., aminoglycosides, tetracyclines, macrolides, oxazolidinones, and phenicols) can directly bind to ribosomal RNAs to achieve the inhibition of bacterial infections. Therefore, there is growing interest in developing RNA-targeted small-molecule drugs amenable to oral administration, and some (e.g., risdiplam and branaplam) have entered clinical trials. Here, we review the pharmacology of novel RNA drugs and RNA-targeted small-molecule medications, with a focus on recent progresses and strategies. Challenges in the development of novel druggable RNA entities and identification of viable RNA targets and selective small-molecule binders are discussed. SIGNIFICANCE STATEMENT: With the understanding of RNA functions and critical roles in diseases, as well as the development of RNA-related technologies, there is growing interest in developing novel RNA-based therapeutics. This comprehensive review presents pharmacology of both RNA drugs and RNA-targeted small-molecule medications, focusing on novel mechanisms of action, the most recent progress, and existing challenges.
Topics: Aptamers, Nucleotide; Betacoronavirus; COVID-19; Chemistry Techniques, Analytical; Clustered Regularly Interspaced Short Palindromic Repeats; Coronavirus Infections; Drug Delivery Systems; Drug Development; Drug Discovery; Humans; MicroRNAs; Oligonucleotides, Antisense; Pandemics; Pneumonia, Viral; RNA; RNA, Antisense; RNA, Messenger; RNA, Ribosomal; RNA, Small Interfering; RNA, Viral; Ribonucleases; Riboswitch; SARS-CoV-2
PubMed: 32929000
DOI: 10.1124/pr.120.019554 -
Danish Medical Journal Aug 20205q spinal muscular atrophy (SMA) is an autosomal recessive neuromuscular disorder caused by insufficient survival motor neuron protein. Untreated SMA involves death or...
INTRODUCTION
5q spinal muscular atrophy (SMA) is an autosomal recessive neuromuscular disorder caused by insufficient survival motor neuron protein. Untreated SMA involves death or permanent respiratory support (type 1), inability to walk (type 2) or ability to walk (type 3). The incidence of SMA is 1 in 7,500 live births, equivalant to eight children being born with SMA in Denmark annually.
METHODS
We undertook a systematic review of the efficacy of nusinersen as SMA treatment. We included randomised controlled trials and cohort studies. Our primary endpoints were survival without permanent respiratory support and change in motor function.
RESULTS
We identified 658 articles and included 13 of these (two randomised controlled trials and 11 cohort studies). Nusinersen increased survival without permanent respiratory support in SMA type 1 and increased motor function development in types 1-3. Nusinersen treatment before symptom onset in children with presymptomatic SMA produced near-normal motor development. So far, nusinersen has only minor safety concerns mostly related to the lumbar puncture.
CONCLUSIONS
Nusinersen increased survival without permanent ventilatory support in children with SMA type 1. Improvements in SMA type 2 and 3 were less evident. Better outcomes were seen in young children with a short disease duration, particularly in children receiving nusinersen before symptom onset. Newborn SMA screening may facilitate presymptomatic treatment with splice modification (nusinersen, risdiplam) or gene implantation therapy (AVXS-101, zolgensma).
Topics: Cohort Studies; Denmark; Female; Humans; Infant; Infant, Newborn; Male; Motor Activity; Muscular Atrophy, Spinal; Oligonucleotides; Randomized Controlled Trials as Topic; Respiration, Artificial; Spinal Muscular Atrophies of Childhood; Treatment Outcome
PubMed: 32800069
DOI: No ID Found -
Molecular and Cellular Probes Oct 2020The recently known coronavirus, SARS-CoV-2, has turn into the greatest global health challenge, affecting a large number of societies. The lack of specific treatment and... (Meta-Analysis)
Meta-Analysis
The recently known coronavirus, SARS-CoV-2, has turn into the greatest global health challenge, affecting a large number of societies. The lack of specific treatment and gold-standard diagnostic system has made the situation more complicated. Efforts have led to production of several diagnostic kits that are associated with limitations such as inadequate sensitivity and accuracy. Aptamers as multipotent biological probes could be promising candidates to design sensitive and specific biosensors. Although few studies have introduced specific aptamer types of coronavirus, they may help us select the best approach to obtain specific aptamers for this virus. On the other hand, some of already-introduced aptamers have shown the inhibitory effects on coronavirus that could be applied as therapeutics. The present study has provided a systematic overview on use of aptamer-based biosensors and drugs to diagnose and treat coronavirus.
Topics: Antiviral Agents; Aptamers, Nucleotide; Biosensing Techniques; COVID-19; Coronavirus Infections; Humans; Pandemics; Pneumonia, Viral
PubMed: 32634550
DOI: 10.1016/j.mcp.2020.101636 -
Medicine Jun 2020The reduced range of motion and pain are the most characteristic clinical features of osteoarthritis (OA). Hyaluronic acid (HA), which is one of the infiltrative... (Meta-Analysis)
Meta-Analysis
Efficacy of intra-articular polynucleotides associated with hyaluronic acid vs hyaluronic acid alone in the treatment of knee osteoarthritis: A systematic review and meta-analysis of randomized clinical trial.
BACKGROUND
The reduced range of motion and pain are the most characteristic clinical features of osteoarthritis (OA). Hyaluronic acid (HA), which is one of the infiltrative therapies for OA treatment, and polynucleotides (PNs), which is a DNA-derived macromolecule favored cell growth and collagen production, are an ongoing debate in clinical effectiveness.
METHODS
We plan to perform a systematic review and meta-analysis of randomized clinical trial to evaluate efficacy of intra-articular polynucleotides associated with hyaluronic acid versus hyaluronic acid alone in the treatment of knee osteoarthritis. We will search PubMed, EMBASE, Cochrane Library using a comprehensive strategy. The related conference proceedings and reference lists of the included studies will also be checked to identify additional studies. Two reviewers will screen retrieved records, extract information and assess the risk of bias independently. Stata v15.1 software will be used to conduct data synthesis.
RESULTS
This study will be submitted to a peer-reviewed journal for publication.
CONCLUSION
We hope it will provide a relatively comprehensive reference for clinical practice and future relevant clinical trials.
ETHICS AND DISSEMINATION
Ethics approval and patient consent are not required, as this study is a systematic review and meta-analysis.
PROSPERO REGISTRATION NUMBER
CRD42020167678.
Topics: Humans; Arthralgia; Drug Combinations; Hyaluronic Acid; Injections, Intra-Articular; Osteoarthritis, Knee; Polynucleotides; Randomized Controlled Trials as Topic; Research Design; Treatment Outcome
PubMed: 32541518
DOI: 10.1097/MD.0000000000020689 -
Current Atherosclerosis Reports May 2020To revise the clinical evidence supporting the use of volanesorsen as new lipid-lowering drug and to assess the efficacy and safety of volanesorsen (ISIS 304801) through... (Meta-Analysis)
Meta-Analysis
PURPOSE OF REVIEW
To revise the clinical evidence supporting the use of volanesorsen as new lipid-lowering drug and to assess the efficacy and safety of volanesorsen (ISIS 304801) through a systematic review of the literature and a meta-analysis of the available phase 2 and phase 3 clinical studies.
RECENT FINDINGS
The meta-analysis of three clinical studies comprising 11 arms (N = l 156 subjects, with 95 in the active-treated arm and 61 in the control one) shows that volanesorsen significantly affects plasma levels of triglycerides (TG) [MD = - 67.90%, 95%CI = - 85.32, - 50.48, P < 0.001], high-density lipoprotein cholesterol (HDL-C) [MD = 40.06%, 95%CI: 32.79, 47.34, P < 0.001], very-low-density lipoprotein cholesterol (VLDL-C) [MD = - 72.90%, 95%CI = - 82.73, - 63.07, P < 0.001], apolipoprotein B (Apo B) [MD = 8%, 95%CI = 2.17, 13.84, P = 0.007], Apo B-48 [MD = - 64.63, 95%CI = - 105.37, - 23.88, P = 0.002], ApoCIII [MD = - 74.83%, 95%CI = - 85.93, - 63.73, P < 0.001], and VLDL ApoCIII [MD = - 83.69%, 95%CI = - 94.08, - 73.29, P < 0.001], without significant impact on LDL-C [MD = 47.01%, 95%CI = - 1.31, 95.33, P = 0.057] levels. Treatment with volanesorsen was associated with an higher risk of injection site reaction (OR = 32.89, 95%CI = 7.97,135,74, P < 0.001) and with an increased risk of upper respiratory tract infections (OR = 10.58, 95%CI = 1.23, 90.93, P < 0.05) when compared to placebo. Volanesorsen has a relevant impact on plasma TG and related parameters without affecting LDL cholesterolemia and is associated with an acceptable safety profile.
Topics: Adult; Aged; Animals; Apolipoprotein C-III; Cholesterol, HDL; Female; Humans; Hypertriglyceridemia; Hypolipidemic Agents; Male; Middle Aged; Oligonucleotides; Triglycerides; Young Adult
PubMed: 32458077
DOI: 10.1007/s11883-020-00836-w