In December 2019, a novel coronavirus infectious disease characterized by acute respiratory impairment due to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) broke out in Wuhan city of Hubei province in China. So far no specific antiviral therapy can be available for patients with SARS-CoV-2 infection. Although symptomatic and supportive care, even with mechanical ventilation or extracorporeal membrane oxygenation (ECMO), are strongly recommended for severe infected individuals, those with advancing age and co-morbidities such as diabetes and heart disease remain to be at high risk for adverse outcomes. This pilot clinical trial will be performed to explore the safety and efficiency of aerosol inhalation of the exosomes derived from allogenic adipose mesenchymal stem cells (MSCs-Exo) in severe patients with novel coronavirus pneumonia (NCP).
Since December 2019, SARS-CoV-2 infection has become a worldwide urgent public health event, especially in China. As of February 13, 2020, over 63,000 cases have been confirmed with over 10,200 severe cases in mainland of China. There is currently no vaccine or specific antiviral treatment existing for SARS-CoV-2 infection. Although symptomatic and supportive care are recommended for severe infected individuals, those with advancing age and co-morbidities such as diabetes and heart disease remain to be at high risk for adverse outcomes, with mortality of \~10%. Therefore, it is urgent to find a safe and effective therapeutic approach to patients with severe coronavirus disease-19(COVID-19) characterized by an severe acute respiratory impairment. Experimental studies have demonstrated that mesenchymal stem cells (MSCs) or their exosomes (MSCs-Exo) significantly reduced lung inflammation and pathological impairment resulting from different types of lung injury. In addition, macrophage phagocytosis, bacterial killing and outcome are improved. It is highly likely that MSCs-Exo have the same therapeutic effect on inoculation pneumonia as MSCs themselves. Although human bone marrow MSCs have been safely administered in patients with ARDS and septic shock (phase I/II trials), it seems safer to deliver MSCs-Exo rather than live MSCs. The intravenous administration of MSCs may result in aggregating or clumping in the injured microcirculation and carries the risk of mutagenicity and oncogenicity, which do not exist by treating with nebulized MSCs-Exo. Another advantage of MSCs-Exo over MSCs is the possibility of storing them for several weeks/months allowing their safe transportation and delayed therapeutic use. The purpose of this single-arm design, open label, combined interventional clinical trial, therefore, is to explore the safety and efficiency of aerosol inhalation of the exosomes derived from allogenic adipose mesenchymal stem cells (MSCs-Exo) in the treatment of severe patients hospitalized with novel coronavirus pneumonia (NCP).
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
24
5 times aerosol inhalation of MSCs-derived exosomes (2.0\*10E8 nano vesicles/3 ml at Day 1, Day 2, Day 3, Day 4, Day 5).
Ruijin Hospital Shanghai Jiao Tong University School of Medicine
Shanghai, Shanghai Municipality, China
Adverse reaction (AE) and severe adverse reaction (SAE)
Safety evaluation within 28 days after first treatment, including frequency of adverse reaction (AE) and severe adverse reaction (SAE)
Time frame: Up to 28 days
Time to clinical improvement (TTIC)
Efficiency evaluation within 28 days, including time to clinical improvement (TTIC)
Time frame: Up to 28 days
Number of patients weaning from mechanical ventilation
Number of patients weaning from mechanical ventilation within 28 days
Time frame: Up to 28 days
Duration (days) of ICU monitoring
Duration (days) of ICU monitoring within 28 days
Time frame: Up to 28 days
Duration (days) of vasoactive agents usage
Duration (days) of vasoactive agents using within 28 days
Time frame: Up to 28 days
Duration (days) of mechanical ventilation supply
Duration (days) of mechanical ventilation supply among survivors
Time frame: Up to 28 days
Number of patients with improved organ failure
Number of patients with improved organ failure within 28 days, including cardiovascular system, coagulation system, liver, kidney and other extra-pulmonary organs
Time frame: Up to 28 days
Rate of mortality
Rate of mortality within 28 days
Time frame: Up to 28 days
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