A Phase 2 interventional study of Sodium Chloride 0.9% Inj pre-exposure and Sodium Chloride 0.9% Inj post-exposure in Decompression Sickness, sponsored by BioAegis Therapeutics Inc.. Active, not recruiting at 1 site in United States. Open to participants aged 18 Years and older, including healthy volunteers. Per ClinicalTrials.gov, last updated 2025-10-15.
Sponsored by BioAegis Therapeutics Inc. · Phase 2, Interventional, and Treatment
Healthy trained SCUBA divers will be randomized into three groups and exposed to a high-pressure profile in a hyperbaric chamber. The high-pressure profile simulates the pressure at a depth of 30 meters of sea water (MSW) for 35 minutes. In the control group, the subjects will receive intravenous normal saline immediately before and after the high-pressure exposure. The second group will receive intravenous recombinant human gelsolin (rhu-pGSN) 24 mg/kg immediately prior to the exposure, and saline post-exposure. The third group will receive saline pre-exposure and rhu-pGSN post-exposure. Blood samples will be collected at multiple time points pre- and post-exposure to assess levels of inflammatory markers, including interleukin (IL)-1β. Other assessments include screening for gas bubbles, a validated questionnaire to assess the incidence of clinical decompression sickness (DCS), measurement of plasma gelsolin (pGSN) levels, and measurement of anti-pGSN antibodies.
This is a prospective, randomized, double-blind, placebo-controlled study in healthy volunteers who have been trained for SCUBA diving.
The study will be performed in the hyperbaric chamber at the University of Maryland. Healthy trained divers will be exposed to a high-pressure profile known to cause decreased plasma gelsolin (pGSN), increased microparticles (MPs), and cytokine changes with no adverse effects such as decompression sickness (DCS). The intervention with recombinant human plasma gelsolin (rhu-pGSN) is patterned after the animal model of DCS where rhu-pGSN administration prior to or after decompression abrogated organ injuries concurrent with inhibiting elevations of MPs and intra-particle interleukin (IL)-1β concentration.
There will be three experimental groups. The control subjects will receive intravenous sterile 0.9% saline immediately before and immediately after the 35-minute 30 meters of sea water (MSW) exposure. A second group will receive intravenous rhu-pGSN 24 mg/kg immediately prior to the high pressure exposure and sterile saline post-exposure. The third group will receive sterile saline prior to the exposure and 24 mg/kg rhu-pGSN post-exposure. Development of DCS is not anticipated based on previous experience with 30 MSW exposure for 35 minutes.
Once informed consent is obtained, the following assessments/procedures will be performed:
Before the 30 MSW exposure, blood will be obtained from all subjects for pre-exposure measurements. A second sampling will be obtained after 30 minutes post initiation of the exposure to high pressure while still at pressure in the hyperbaric chamber and before decompression to assess whether inflammatory changes occurring due to pressure and before decompression are altered by rhu-pGSN when administered pre-exposure to high pressure. Blood specimens will be obtained at 60, 120 and 240 minutes after decompression.
Prior to, and following the 30 MSW exposure, all subjects will be screened for gas bubbles (vascular gas emboli [VGE]) using a phase array ultrasonic probe. Intravascular bubbles are thought to play a role in the evolution of DCS. Preliminary work has demonstrated that rhu-pGSN can lyse inflammatory MPs and \~28% of MPs contain a gas phase of nitrogen dioxide that can serve as a nucleation site for bubble formation. Therefore, this work will also evaluate whether rhu-pGSN can prevent bubble production.
The Doolette well-being questionnaire will be administered 60 minutes after decompression.
On Day 14 blood samples for analysis of antibodies against pGSN are to be collected.
During the course of the study starting at screening and for at least 3 months after their final study treatment:
Exclusion Criteria:
Sterile normal saline 0.9% IV immediately prior to hyperbaric chamber exposure, and immediately after exposure
Drug: Sodium Chloride 0.9% Inj pre-exposure · Drug: Sodium Chloride 0.9% Inj post-exposure · Other: Hyperbaric chamber
rhu-pGSN 24 mg/kg IV immediately prior to hyperbaric chamber exposure, and sterile normal saline 0.9% IV immediately after exposure
Drug: Sodium Chloride 0.9% Inj post-exposure · Drug: Recombinant human plasma gelsolin pre-exposure · Other: Hyperbaric chamber
Sterile normal saline 0.9% IV immediately prior to hyperbaric chamber exposure, and rhu-pGSN 24 mg/kg IV immediately after exposure
Drug: Sodium Chloride 0.9% Inj pre-exposure · Drug: Recombinant human plasma gelsolin post-exposure · Other: Hyperbaric chamber
Sterile normal saline 0.9% administered IV as a placebo immediately before hyperbaric chamber exposure
Also known as: Normal saline
Sterile normal saline 0.9% administered IV as a placebo immediately after hyperbaric chamber exposure
Also known as: Normal saline
rhu-pGSN administered IV at a dose of 24 mg/kg immediately before hyperbaric chamber exposure
Also known as: rhu-pGSN
rhu-pGSN administered IV at a dose of 24 mg/kg immediately after hyperbaric chamber exposure
Also known as: rhu-pGSN
High-pressure profile equivalent 35 minutes at a depth of 30 meters of sea water
Interleukin (IL)-1β
Change from baseline in blood IL-1β levels at 2 hours after hyperbaric chamber exposure
Time frame: At baseline, during and after exposure, and afterward at 60, 120, and 240 minutes, at 24 hours, and at day 14
Adverse Events
Incidence, causality, and severity of Adverse Events (graded according to the NCI CTCAE version 5.0)
Time frame: 14 days
Biomarkers
Change from baseline in biomarker levels, including but not limited to: NOS2, TNFα, IL-6, CCL2, CCL5, and microparticles
Time frame: At baseline, during and after exposure, and afterward at 60, 120, and 240 minutes, at 24 hours, and at day 14
Gas bubbles
Cardiac Echo to screen for vascular gas emboli (VGE) using a phase array ultrasonic probe
Time frame: At baseline, and 30, 60, 120, and 240 minutes after exposure
Questionnaire
Doolette well-being questionnaire to screen for clinical decompression sickness (DCS)
Time frame: 60 minutes after hyperbaric chamber exposure
pGSN levels
Blood levels of plasma gelsolin
Time frame: At baseline, during and after exposure, and afterward at 240 minutes, at 24 hours, and at day 14
anti-pGSN antibodies
Blood levels of anti-plasma gelsolin antibodies
Time frame: Baseline, and at day 14
Plan to share: No
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This study is active, not recruiting, as verified in Oct 2025. You cannot join it, but the record below documents what was studied.
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BioAegis Therapeutics Inc.