Targeted cell therapy for the treatment of ventricular tachycardia
Targeted cell therapy for the treatment of ventricular tachycardia
批准号:
7825845
负责人:
KENNETH LAURITA
金额:
$49.6万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-30 至 2011-08-31
关键词:
Acute myocardial infarctionAddressAnimal ModelAnti-Arrhythmia AgentsAreaArrhythmiaCardiacCardiac DeathCardiac ablationCardiovascular systemCell TherapyCellsChemicalsChronicCicatrixClinicalClinical TrialsCritical PathwaysDiseaseElectrocardiogramEngraftmentFamily suidaeFrequenciesGoalsHealedHeartHeart DiseasesHematological DiseaseHydrogelsImmunofluorescence ImmunologicImplantable DefibrillatorsIncidenceInfarctionLaboratoriesLifeLungMapsMesenchymal Stem CellsMethodsModalityModelingMyocardialMyocardial InfarctionMyocardiumNecrosisOpticsPathway interactionsPatient CarePatientsPharmacotherapyPredispositionProceduresPublic HealthRadioRadiofrequency Catheter AblationRadiofrequency Interstitial AblationRecurrenceRegenerative MedicineResolutionRiskSignal TransductionStem cellsTechniquesTestingTimeLineTissuesUnited StatesVentricular Tachycardiacellular targetingclinically relevantdesignhealingin vivoinnovationmortalitynovelpalliativeparacrinepreventpublic health relevanceradiofrequencyrepairedrestorationstandard of carestem cell therapysudden cardiac death
中文摘要
描述(由申请人提供):
这项申请涉及广泛的挑战领域(11):再生医学和特殊挑战主题,11-HL-101:为心血管、肺和血液疾病开发基于细胞的疗法。心肌梗死(MI)引起的心脏性猝死(SCD)是心脏病最常见的死亡原因。目前的治疗方法,如植入型心律转复除颤器和抗心律失常药物,都是姑息性的,经常会引发危及生命的心律失常。射频导管消融术可以治愈心肌梗死相关的心律失常,但许多患者并不适合,复发率高。因此,SCD仍然是一个尚未解决的重大公共卫生问题。在许多慢性治愈的心肌梗死患者中,SCD是由于疤痕组织附近异常的电脉冲传导引起的折返性室性心动过速(VT)。直接针对这种异常的电底物进行治疗可能会降低室速的发生率。例如,射频消融通过永久破坏对折返电路至关重要的组织来瞄准基质。然而,这种方法扩大了先前存在的疾病引起的疤痕以外的坏死,这可能解释了为什么这种疗法并不总是成功的。我们提出了一种新的模式来解决这一挑战:与其破坏更多的组织并创造更多的异常传导区域,治疗室速的更有效的方法是使用靶向细胞治疗恢复折返电路关键区域的正常传导。细胞疗法似乎是治疗与急性心肌梗死相关的心肌修复的一种有前景的治疗方法。重要的是,我们实验室使用间充质干细胞(MSC)治疗的研究表明,瘢痕组织中的电活性可以部分恢复,部分原因是所用细胞的直接作用。此外,间接(旁分泌)效应,如干细胞募集,可由释放细胞信号,如SDF-1诱导。然而,在慢性治愈的心肌梗死中,缺乏促进这种旁分泌效应的化学信号。这一点以及直接注射的细胞的不良保留造成了几个障碍,阻碍了愈合的MI中瘢痕组织的存活、植入,并最终恢复了其电活性。我们假设靶向细胞治疗可以用于恢复折返回路关键通路中的脉冲传播,并防止与慢性心肌梗死相关的室速;然而,需要强大的干细胞植入和招募。我们的目标是确定是否可以使用水凝胶和旁分泌因子来增强干细胞在慢性心肌梗死中的植入和募集。我们还将确定干细胞治疗是否可以在临床相关的慢性MI/VT模型中消除慢传导和降低VT的易感性。这项建议的长期目标是创建一种新的、有效的治疗VT的范例,该范例可以很容易地过渡到临床试验,并最终改变有SCD风险的MI患者的护理标准。
公共卫生相关性:美国每年有数十万人罹患心脏性猝死(SCD)。目前植入型心律转复除颤器、抗心律失常药物治疗和射频导管消融术在治疗SCD的潜在病理生理原因方面均无效。因此,SCD仍然是一个尚未解决的重大公共卫生问题。这项建议提出了一种新的方法,使用靶向细胞治疗来恢复正常的功能,从而治愈许多有SCD风险的患者。1
英文摘要
DESCRIPTION (provided by applicant):
This application addresses broad Challenge Area (11): Regenerative Medicine and specific Challenge Topic, 11-HL-101: Develop cell-based therapies for cardiovascular, lung, and blood diseases. Sudden cardiac death (SCD) due to myocardial infarction (MI) is the most common cause of mortality from heart disease. Current therapies such as implantable cardioverter defibrillators and antiarrhythmic drugs are palliative and often provoke life-threatening cardiac arrhythmias. Radiofrequency (RF) catheter ablation can cure arrhythmias associated with MI; however, many patients are not suitable and the recurrence rate is high. Consequently, SCD remains a major unresolved public health problem. In many patients with chronically healed MI, SCD is due to reentrant ventricular tachycardia (VT) caused by abnormal electrical impulse conduction in the vicinity of scar tissue. Therapy that directly targets this abnormal electrical substrate may decrease the incidence of VT. For example, RF ablation targets the substrate by permanently destroying tissue critical to the reentrant circuit. However, this procedure expands necrosis beyond the preexisting disease-induced scar, which may explain why this therapy is not always successful. We propose a novel paradigm to address this challenge: rather than destroying more tissue and creating additional areas of abnormal conduction, a more efficacious approach to cure VT is to restore normal conduction to critical regions of the reentrant circuit using targeted cell therapy. Cell therapy appears as a promising treatment for myocardial repair associated with acute MI. Importantly, studies from our laboratory using mesenchymal stem cell (MSC) therapy have shown that electrical viability in scar tissue can be partially restored due to, in part, a direct effect of the cells administered. Additionally, indirect (paracrine) effects, such as stem cell recruitment, can be induced by the release of cellular signals such as SDF-1. However, the chemical signals that promote such paracrine effects are absent in chronically healed MI. This and poor retention of cells that are directly injected create several barriers to the survival, engraftment, and ultimately the restoration of electrical viability of scar tissue in the setting of healed MI. We hypothesize that targeted cell therapy can be used to restore impulse propagation in pathways critical to the reentrant circuit and prevent VT associated with chronic MI; however, robust stem cell engraftment and recruitment will be required. Our objectives are to determine if the engraftment and recruitment of stem cells in chronic MI can be enhanced using hydrogels and paracrine factors. We will also determine if stem cell therapy can abolish slow conduction and reduce susceptibility to VT in a clinically relevant model of chronic MI/VT. The long term goal of this proposal is to create a novel and efficacious paradigm for treating VT that can be easily transitioned to clinical trials and, eventually, transform the standard of care for patients with MI at risk for SCD.
PUBLIC HEALTH RELEVANCE: Several hundred thousand people suffer sudden cardiac death (SCD) each year in the United States. Current treatment with implantable cardioverter defibrillators, antiarrhythmic drug therapy, and radio frequency catheter ablation are ineffective at treating the underlying pathophysiological causes of SCD. Consequently, SCD remains a major unresolved public health problem. This proposal puts forth a novel method using targeted cellular therapy to restore normal function and, thus, cure many patients at risk for SCD. 1
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会议论文
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海外基金