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Comprehensive Assessment System for Fallopian Tube Function and Clinical Study on Individualized Treatment Strategies

2026年9月4日 更新者:Yu xiaoming、Peking University People's Hospital

This clinical study aims to develop a comprehensive system to evaluate tubal function and to optimize individualized treatment strategies for patients with tubal factor infertility (caused by hydrosalpinx, obstruction, or adhesions). It will also assess whether integrating novel diagnostic tools, surgical techniques, and anti-adhesion materials can improve pregnancy outcomes.

The main questions it aims to answer are:

Can a new multi-dimensional evaluation system (combining imaging, ultrasound biomarkers, and surgical scoring) more accurately diagnose tubal damage compared to traditional hysterosalpingography (HSG) alone?

Does the combination of improved surgical techniques (laparoscopic recanalization) with a novel anti-adhesion material (chitosan hydrogel) increase the 12-month natural pregnancy rate after surgery compared to historical conventional surgery?

Can a prediction model using machine learning accurately predict natural pregnancy within 12 months after tubal surgery and help determine the optimal timing for transitioning to assisted reproductive technology (IVF/ICSI)?

Researchers will compare the new evaluation system against the traditional HSG approach, and the optimized surgical procedure with anti-adhesion material against historical data from conventional surgery.

Participants in this study will:

Undergo pre-operative imaging (HSG, 3D vascular ultrasound) and provide blood samples for biomarker testing (Part 1, n=120)

Receive either the new comprehensive tubal function assessment (combining HSG, ultrasound, intraoperative scoring, and biomarkers) or traditional HSG evaluation during the same hospital stay (Part 1)

Undergo the optimized laparoscopic tubal surgery with anti-adhesion material application (Part 2, n=120) and be followed up for 12 months to record natural pregnancy

Have their clinical data, imaging, and surgical findings used to develop and validate a predictive model for post-surgery natural pregnancy (Part 3, retrospective cohort of ~650 patients and prospective validation of ~200 patients)

Complete follow-up visits at 12 months post-surgery to confirm pregnancy status via ultrasound or medical records

研究概览

详细说明

  1. . Background and Rationale Tubal factor infertility (TFI) accounts for approximately 25%-35% of female infertility cases worldwide, predominantly caused by hydrosalpinx, tubal obstruction, peritubal adhesions, and structural abnormalities. Although assisted reproductive technologies (ART) have advanced considerably, tubal pathology-particularly hydrosalpinx-compromises IVF outcomes through embryotoxic fluid backflow and reduced endometrial receptivity. Concurrently, shifting demographic trends and fertility policy changes have increased patient demand for surgical restoration of natural fertility as an alternative to ART.

    Recent innovations in reproductive surgery, including refined four-step fimbrioplasty and modified tubotubal anastomosis, have improved pregnancy rates. However, two major challenges persist: (1) high postoperative recurrence of adhesions and hydrosalpinx, and (2) significant ectopic pregnancy risk. More critically, the lack of a standardized, objective, and comprehensive system for evaluating tubal functional reserve severely limits appropriate surgical candidate selection and outcome prediction. Current clinical practice relies heavily on hysterosalpingography (HSG), which provides only anatomical patency information without assessing mucosal health, peritubal environment, or functional integrity.

    This study addresses these gaps by proposing a multi-dimensional, multi-temporal assessment framework integrating imaging, molecular biomarkers, and intraoperative findings. It further aims to optimize surgical techniques using a novel anti-adhesion biomaterial and to develop machine learning-based predictive models to guide individualized treatment decisions for TFI patients.

  2. Study Design Overview

    The investigation comprises three integrated components:

    Component 1 (Diagnostic Accuracy Study) : A prospective, single-center diagnostic trial enrolling 120 TFI patients. Each participant serves as their own control, undergoing both the novel multi-dimensional assessment strategy (Strategy A) and conventional HSG-only strategy (Strategy B), with intraoperative laparoscopy with chromopertubation as the reference standard.

    Component 2 (Interventional Trial with Historical Control) : A single-arm interventional trial with historical controls, enrolling 120 patients receiving optimized laparoscopic surgery with chitosan hydrogel application (experimental group), compared with 120 historical controls who underwent conventional surgery without the novel anti-adhesion intervention. The primary endpoint is the 12-month natural pregnancy rate.

    Component 3 (Prediction Model Study) : A bidirectional cohort study comprising a retrospective development cohort (~650 patients, 2010-2024) and a prospective validation cohort (~200 patients, 2026-2028), developing and validating logistic regression and XGBoost machine learning models for predicting 12-month natural pregnancy following tubal surgery.

  3. Component 1: Tubal Function Assessment System-Technical Details 3.1 Preoperative Multi-Modal Imaging and Biomarkers

    Quantitative HSG Scoring: All participants undergo standardized oil-based contrast HSG (Lipiodol). Beyond patency assessment, systematic scoring includes: (a) fimbrial morphology (mucosal bridges, accessory ostia); (b) ampullary morphology (diverticula, dilatation, strictures); and (c) contrast spillage pattern (uniform vs. localized peritoneal dispersion) as an indirect adhesion indicator. A 0-3 graded scoring system is applied, incorporating hydrosalpinx diameter, tubal wall rigidity, and adhesion extent.

    Three-Dimensional Vascular Ultrasound: Transvaginal 3D power Doppler ultrasound quantifies tubal vascularization and perfusion. Color Doppler flow imaging parameters-peak systolic velocity (PSV), end-diastolic velocity (EDV), resistance index (RI), and pulsatility index (PI)-are measured at the tubal wall and fimbrial regions. Fimbrial blood flow is semi-quantitatively graded as Grade 0 (no flow), Grade 1 (sparse punctate), or Grade 2 (abundant linear/reticular).

    Molecular Biomarkers: Fasting venous blood samples are collected preoperatively. Serum CA125, VEGF, and IL-6 levels are measured using standardized ELISA protocols, selected for their established roles in peritoneal inflammation, angiogenesis, and endometriosis-associated tubal pathology.

    3.2 Intraoperative Reference Standard and Integrated Scoring

    Laparoscopic Evaluation: Systematic pelvic inspection is performed, with pelvic adhesions quantified using the revised American Fertility Society (r-AFS) classification. Tubal assessment includes serosal status, morphology (dilatation, tortuosity, hydrosalpinx degree), and fimbrial architecture. Chromopertubation with methylene blue classifies fimbrial efflux patterns as free flow, impaired flow, or no flow.

    Hysteroscopic and Salpingoscopic Evaluation: Diagnostic hysteroscopy assesses uterine cavity and tubal ostia. For tubes with abnormal chromopertubation, fiberoptic salpingoscopy evaluates mucosal fold architecture, intraluminal adhesions, polyps, vasculature, and staining patterns, generating an intraluminal pathology score.

    Integrated Composite Score: All quantitative data (HSG score, ultrasound PI/RI/flow grade, biomarkers, r-AFS score, salpingoscopy score) are entered into a unified electronic case report form. A weighted composite tubal function score is derived via exploratory factor analysis, categorizing dysfunction into Grades I-V (mild to severe), with diagnostic performance evaluated against intraoperative laparoscopy as the reference standard.

  4. Component 2: Surgical Technique Optimization-Technical Details 4.1 Anti-Adhesion Biomaterial: Chitosan Hydrogel

    The investigational device is medical-grade chitosan hydrogel (NMPA Class III-approved). Its multi-mechanistic action includes:

    Physical Barrier: Forms a transparent, flexible gel film over surgical surfaces, mechanically isolating traumatized tissue planes to prevent fibrin deposition.

    Mild Hemostasis: Positively charged chitosan interacts with negatively charged erythrocyte membranes, promoting platelet aggregation and reducing hematoma formation-a key adhesion initiator.

    Biological Modulation: Selectively promotes epithelial and endothelial cell proliferation while inhibiting fibroblast overgrowth via downregulation of TGF-β1 and other pro-fibrotic cytokines, reducing pathological scar formation.

    Mucosal Regeneration: Degradation products (N-acetylglucosamine and glucosamine) serve as substrates for normal tissue growth, promoting tubal mucosal epithelial repair.

    4.2 Optimized Surgical Procedure (Experimental Group)

    The procedure is performed under combined laparoscopic and hysteroscopic guidance, with the following key modifications:

    Pelvic Adhesiolysis: Precise adhesiolysis using electrosurgery or cold scissors restores normal tubo-ovarian anatomy, with meticulous hemostasis.

    Fimbrioplasty/Salpingostomy: A modified "four-step" fimbrioplasty is performed for hydrosalpinx, with chromopertubation confirming patency.

    Combined Laparoscopic-Hysteroscopic Recanalization: Under hysteroscopic guidance, a hydrophilic-coated guidewire is advanced through the tubal lumen under direct laparoscopic visualization until the tip is visible at the fimbrial end. Critical modification: Prior to insertion, chitosan hydrogel is uniformly applied to the distal 10-15 cm of the guidewire, enabling direct intraluminal deposition of the anti-adhesion agent during recanalization.

    Comprehensive Anti-Adhesion Application: (a) 3-5 mL of injectable chitosan hydrogel is infused through the guiding catheter to fully distend the tubal lumen; (b) chitosan hydrogel is uniformly sprayed over the reconstructed fimbrial end, the entire tubal serosal surface, and all other pelvic surgical surfaces (ovaries, uterine wall, pelvic sidewall).

    4.3 Control Group Procedure (Historical)

    Control patients underwent conventional tubal surgery (salpingostomy or recanalization) without the guidewire-mediated intraluminal chitosan application. Anti-adhesion material, if used, was applied only to the peritoneal cavity and peri-tubal surfaces, without targeted intraluminal instillation.

  5. Component 3: Prediction Model Development and Validation 5.1 Candidate Predictors

    Candidate predictors are selected based on biological plausibility and clinical relevance, encompassing five domains:

    ① Demographic and baseline characteristics (age, BMI, infertility type and duration);

    ② Ovarian reserve (baseline AMH);

    ③ Tubal pathology characteristics (preoperative HSG score, 3D ultrasound parameters [PI, RI, flow grade], intraoperative composite tubal function score, r-AFS pelvic adhesion score);

    ④ Molecular biomarkers (serum VEGF, IL-6, CA125);

    ⑤ Surgical factors (procedure type: salpingostomy vs. recanalization vs. combined).

    5.2 Model Development and Validation Strategy

    Model Development: The development cohort (n=650) is randomly partitioned into training (70%) and internal test (30%) sets.

    Logistic Regression: Variable selection proceeds via univariate analysis (P<0.1 for entry) followed by LASSO regression with 10-fold cross-validation to select the optimal penalty parameter (λ), yielding the most parsimonious model.

    XGBoost Machine Learning Model: Implemented using all candidate variables, with grid search and cross-validation for hyperparameter tuning, and built-in feature importance ranking.

    Model Validation:

    Internal Validation: Bootstrap resampling (1,000 iterations) is performed on the training set to correct for optimism and assess stability.

    External Validation: Temporal validation using the prospective single-center cohort (n=200) and spatial validation using multi-center prospective data assess generalizability across time and institutions.

    Performance Evaluation: Discrimination is assessed by AUC with 95% CIs, along with accuracy, sensitivity, specificity, and predictive values at the optimal Youden-index threshold. Calibration is evaluated via calibration plots with loess smoothing and the Hosmer-Lemeshow test. Clinical utility is quantified using decision curve analysis (DCA) across a range of threshold probabilities.

研究类型

介入性

注册 (估计的)

240

阶段

  • 不适用

联系人和位置

本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。

学习联系方式

学习地点

    • Beijing Municipality
      • Beijing、Beijing Municipality、中国
        • 招聘中
        • Peking University People's Hospital
        • 接触:

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

  • 成人

接受健康志愿者

不

描述

Inclusion Criteria:

  • Age 20-40 years Duration of infertility ≥1 year
  • Hysterosalpingography (HSG) indicating unilateral or bilateral hydrosalpinx, obstruction, or adhesion of the fallopian tubes
  • Scheduled for combined hysteroscopic and laparoscopic surgery Signed informed consent

Exclusion Criteria:

  • Coexisting other definite causes of infertility (e.g., severe male factor, ovarian reserve failure)
  • History of previous fallopian tube surgery
  • Severe concurrent medical or surgical conditions precluding surgery
  • Inability or unwillingness to comply with follow-up procedures
  • Non-natural conception (e.g., use of assisted reproductive technology) following surgery (applies to specific study arms, e.g., Study Part 2)

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

  • 主要用途:治疗
  • 分配:非随机化
  • 介入模型:并行分配
  • 屏蔽:无(打开标签)

武器和干预

参与者组/臂
干预/治疗
实验性的:Intervention Group (Trial Group)
Interventional Recanalization + Anti-adhesion Material
Comprehensive application of interventional recanalization and of anti-adhesion materials
无干预:Control Group (Retrospective Group)
Traditional Salpingostomy

研究衡量的是什么?

主要结果指标

结果测量
大体时间
Pregnancy Rate
大体时间:12 months post-surgery
12 months post-surgery

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

出版物和有用的链接

负责输入研究信息的人员自愿提供这些出版物。这些可能与研究有关。

一般刊物

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始 (实际的)

2026年8月1日

初级完成 (估计的)

2028年12月31日

研究完成 (估计的)

2028年12月31日

研究注册日期

首次提交

2026年8月25日

首先提交符合 QC 标准的

2026年9月4日

首次发布 (实际的)

2026年9月8日

研究记录更新

最后更新发布 (实际的)

2026年9月8日

上次提交的符合 QC 标准的更新

2026年9月4日

最后验证

2026年9月1日

更多信息

与本研究相关的术语

关键字

其他研究编号

  • 2025PHB423-001

计划个人参与者数据 (IPD)

计划共享个人参与者数据 (IPD)?

未定

药物和器械信息、研究文件

研究美国 FDA 监管的药品

不

研究美国 FDA 监管的设备产品

不

此信息直接从 clinicaltrials.gov 网站检索,没有任何更改。如果您有任何更改、删除或更新研究详细信息的请求,请联系 register@clinicaltrials.gov. clinicaltrials.gov 上实施更改,我们的网站上也会自动更新.

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