Files
deep_research/projects/dual-target-rnai-pipeline-2026/phase1/initial-scan-index.md
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kai 333b7bb8d5 v0.5.1: disable apply_patch in agents prone to append-mode failures
Root cause: apply_patch finds anchor lines in read-cached file state,
but file may have been modified between read and patch, causing stalls.

Changes:
- dr-verifier: disable apply_patch AND edit; force read-then-write protocol for evidence file appends
- dr-analyst: document write-preferred protocol for sources.jsonl appends
- dr-polisher: disable apply_patch; keep edit for small string replacements
- dr-editor-in-chief / dr-translator: disable apply_patch

Recovery procedure documented in dr-verifier for write failures.
2026-04-21 14:44:03 +08:00

19 KiB
Raw Blame History

Phase 1 初扫信源完整索引 · dual-target-rnai-pipeline-2026

用途Phase 2 的 dr-pm / dr-analyst / dr-verifier 直接按本索引 pickup 信源;新增信源续编 src_E01+(或跨组沿用原编号)。 规则:本索引是 Phase 1 阶段的权威起点;若信源在 Phase 2 证伪,必须在 evidence 文件中注明"retracted from src_xxx",不得无记录删除。 共 63 条Group A 15 + Group B 18 + Group C 15 + Group D 15


图例

  • Tier:1 = 一手(期刊原文 / 监管 / 临床试验 / 专利 / SEC),2 = 权威二手(咨询报告 / 系统综述 / 专业媒体 / 协会)
  • Score:0-10 信源质量得分(权威性 × 时效性 × 一手性 × 可验证性 × 利益冲突调整)
  • Recommended Use (Chapter):建议的核心引用章节,非排他
  • Topic Tag:用于交叉检索的主题标签

Group A — Dual-target siRNA Molecular Design & Pipeline Landscape15 条)

ID Title Venue Year Tier Score Recommended Use Topic Tag URL / DOI
src_A01 RNAi-based drug design: considerations and future directions Nat Rev Drug Discov 2024 1 9.2 Ch 1, Ch 2 (anchor review) design-review https://www.nature.com/articles/s41573-024-00912-9
src_A02 Application of improved GalNAc conjugation for cost-effective dual-target siRNA (ANGPTL3+Lp(a)) Mol Ther Nucl Acids 2024 1 9.0 Ch 2.2, Ch 5.1 multivalent-GalNAc, dual-target-design https://pubmed.ncbi.nlm.nih.gov/38204163
src_A03 Refined Design and Liquid-Phase Assembly of GalNAc-siRNA Conjugates (PCSK9) Molecules (MDPI) 2026 1 8.8 Ch 4.2, Ch 5.1 LPOS, GalNAc-conjugation https://pubmed.ncbi.nlm.nih.gov/41683454
src_A04 Ribofuranose-Based GalNAc-siRNA — enhanced liver-targeted delivery Mol Ther Nucl Acids 2025 1 9.1 Ch 2.2, Ch 5.1 next-gen-GalNAc https://www.cell.com/molecular-therapy-family/nucleic-acids/fulltext/S2162-2531(25)00355-5
src_A05 siRNA in Dyslipidemia: Systematic Review (20 studies, 6,651 participants) Pharmaceuticals (MDPI) 2025 2 8.5 Ch 3.1 (pipeline counting) systematic-review https://pubmed.ncbi.nlm.nih.gov/40453040/
src_A06 A Programmable Dual-Targeting Di-valent siRNA Scaffold (MSH3+HTT, CNS) Nucleic Acids Res 2024 1 9.3 Ch 2.3 (di-valent anchor) di-siRNA, Khvorova https://pubmed.ncbi.nlm.nih.gov/38187561
src_A07 Targeting Triglycerides: APOC3 + ANGPTL3 Inhibitors landscape Curr Cardiol Rev 2024 2 8.4 Ch 3.2 (target combination) cardiometabolic https://pubmed.ncbi.nlm.nih.gov/40652105/
src_A08 US Patent 9187746B2 — Alnylam Dual-targeting siRNA (expires 2031) USPTO 2015 1 8.7 Ch 2.1 (covalent-linker anchor) IP, disulfide-linker https://patents.google.com/patent/US9187746B2/en
src_A09 Branched Dual Gene-Targeted Multi-siRNA (GP73+hTERT, liver cancer) Pharmaceuticals 2025 2 8.3 Ch 2.3 (branched dendritic) branched-siRNA, Chinese-academic https://pmc.ncbi.nlm.nih.gov/articles/PMC12736085/
src_A10 Diamine-Scaffold GalNAc-siRNA Conjugate (novel scaffold synthesis) RSC Advances 2024 1 8.6 Ch 2.2, Ch 5.2 scaffold-chemistry https://pubs.rsc.org/en/content/articlehtml/2024/ra/d4ra03023k
src_A11 ARO-ANG3 Phase 1 Basket Trial (Arrowhead ANGPTL3 siRNA) Circulation 2023 1 9.0 Ch 3.1 (first-in-human pipeline) Arrowhead, clinical https://pubmed.ncbi.nlm.nih.gov/37626170/
src_A12 Sirnaomics GalAhead™ muRNA Dual-Target Programs — OPT 2024 Sirnaomics PR (HKEX 2257) 2024 2 7.9 Ch 2.4 (cocktail/muRNA anchor) Sirnaomics, muRNA https://www.sirnaomics.com/en/news-room/press-release/2024-3-12-sirnaomics-will-present-its-innovative-dual-targeted-galnac-murna-programs-in-2024-opt-conference/
src_A13 Solbinsiran Phase 2 Randomized Trial (ANGPTL3, 41 sites, 7 countries) The Lancet 2024 1 9.2 Ch 3.1, Ch 3.2 clinical, ANGPTL3 https://bookcafe.yuntsg.com/ueditor/jsp/upload/file/20250604/1749020847637022625.pdf
src_A14 BEBT-701: Dual-target siRNA (AGT+PCSK9) — KPMG China Biotech 50 KPMG 2025 2 8.1 Ch 3.3 (Chinese pipeline) 必贝特, dual-target https://assets.kpmg.com/content/dam/kpmgsites/cn/pdf/zh/2025/10/kpmg-china-biotech50-3rd-edition.pdf
src_A15 小核酸突围:GalNAc偶联递送与肝外拓展 CXO行业系列报告 国信证券 2026 2 7.8 Ch 3.3 (Chinese platforms) 中国管线, 券商研报 https://pdf.dfcfw.com/pdf/H3_AP202602011819100533_1.pdf

Group B — Oligonucleotide Synthesis Process Landscape18 条)

ID Title Venue Year Tier Score Recommended Use Topic Tag URL / DOI
src_B01 Liquid-Phase Oligonucleotide Synthesis: Past, Present, and Future OPR&D (Wiley) 2019 1 8.5 Ch 4.2 (LPOS foundational) LPOS https://pubmed.ncbi.nlm.nih.gov/30920171
src_B02 From LPOS to chemical ligation — comprehensive review Chem Rev equiv. 2024 1 8.8 Ch 4.2, Ch 4.3 LPOS, ligation https://pubmed.ncbi.nlm.nih.gov/41189059
src_B03 Reaction pathways and technologies of in vitro DNA synthesis Cell Rep Phys Sci 2025 1 8.6 Ch 4.4 IVT, enzymatic-synthesis https://www.sciencedirect.com/science/article/pii/S2666386425003765
src_B04 Refined Design and Liquid-Phase Assembly GalNAc-siRNA (PCSK9) PMC 2024 2 7.8 Ch 4.2, Ch 5.1 LPOS, GalNAc https://pubmed.ncbi.nlm.nih.gov/41683454
src_B05 ALE phosphoramidite platform — long RNA (100-215 nt) at >99% / 2-4 min coupling PMC 2024 1 8.3 Ch 4.1, Ch 4.4 solid-phase, long-RNA https://pubmed.ncbi.nlm.nih.gov/41548876
src_B06 Enzymatic de novo oligonucleotide synthesis (comprehensive 2025 review) Biotechnol Adv (Elsevier) 2025 1 8.7 Ch 4.3, Ch 4.4, Ch 7.3 enzymatic-synthesis https://www.sciencedirect.com/science/article/pii/S0734975025000904
src_B07 Enzymatic DNA Synthesis Market 2025-2030 Mordor Intelligence 2025 2 7.5 Ch 4.4 (market context) market https://www.mordorintelligence.com/industry-reports/enzymatic-dna-synthesis-market
src_B08 EDS — 1.5-7 kb complex sequences (DNA Script review) Drug Disc World 2025 2 7.9 Ch 4.4 TdT, DNA-Script https://www.ddw-online.com/enzymatic-dna-synthesis-moving-beyond-limits-36071-202508/
src_B09 Multi-enzymatic bulk DNA synthesis from text file Nature npj Vaccines 2025 1 8.4 Ch 4.4 bulk-enzymatic https://www.nature.com/articles/s41541-025-01329-0
src_B10 TdT variants overcoming dATP coupling bottleneck Cell Rep Methods 2025 1 8.1 Ch 4.4, Ch 7.3 TdT-engineering https://pmc.ncbi.nlm.nih.gov/articles/PMC11747941/
src_B11 Codexis ECO Synthesis — 3 kg clinical siRNA batch (2025) Codexis 2025 2 7.6 Ch 4.3, Ch 6, Ch 8.3 Codexis, enzymatic-ligation https://www.codexis.com/blogs/the-enzymatic-advantage-scaling-rna-manufacturing-for-the-next-wave-of-therapeutics/
src_B12 Codexis-Bachem enzymatic ligation demonstration LinkedIn / Bachem 2025 2 7.7 Ch 4.3, Ch 7.3 Codexis, Bachem https://www.linkedin.com/posts/bachem_bachem-oligonucleotides-enzymaticligation-activity-7379024782182391808-3K66/
src_B13 GreenLight Biosciences cell-free RNA — <$1/g at 2 k L Axial / corp 2023-25 2 7.8 Ch 4.4 cell-free-IVT https://medium.com/@axialxyz/greenlight-biosciences-bdf393326138
src_B14 Ajinomoto AJIPHASE® LPOS for PMO / applicable to siRNA Ajinomoto 2025 2 7.9 Ch 4.2 Ajinomoto, LPOS https://ajibio-pharma.ajinomoto.com/news/2510221/
src_B15 Codexis-Nitto Denko Avecia enzymatic siRNA collaboration Manuf Chemist 2025 2 7.5 Ch 4.3, Ch 6 Codexis-Nitto https://manufacturingchemist.com/codexis-nitto-denko-avecia-enzymatic-manufacturing-sirna
src_B16 Shanghai Hongene 兆维 chemoenzymatic ligation (>95% purity) 医药魔方 / 网易号 2025 2 7.6 Ch 4.3, Ch 8.1 Hongene, chemoenzymatic https://www.163.com/dy/article/KKOQIDFB0532CO9S.html
src_B17 Peptide & Oligonucleotide CDMO Market (GMP 60.8%, fill-finish 14% CAGR) Mordor Intel 2025 2 7.4 Ch 8 (market backdrop) CDMO-market https://www.mordorintelligence.com/industry-reports/peptide-and-oligonucleotide-cdmo-market
src_B18 NMPA/CDE 化学合成寡核苷酸药物技术指导原则(2026 draft) NMPA CDE 2026 1 8.2 Ch 9.1 (anchor) NMPA-guidance, chemoenzymatic https://pharmwyp.com/posts/56814/

Group C — GalNAc Conjugation Chemistry & Immobilized Enzyme Catalysis15 条)

ID Title Venue Year Tier Score Recommended Use Topic Tag URL / DOI
src_C01 Liquid-phase assembly of GalNAc-siRNA (systematic comparison vs. solid-phase) PubMed 2024 1 9.2 Ch 4.2, Ch 5.1 LPOS, GalNAc https://pubmed.ncbi.nlm.nih.gov/41683454/
src_C02 Ribofuranose-based GalNAc — kilogram-scale CPG synthesis (PCSK9/AGT) Nat Biotechnol 2024 1 9.0 Ch 5.1 (kg-scale anchor) GalNAc, CPG https://pubmed.ncbi.nlm.nih.gov/41810141/
src_C03 Expansion of Conjugate Space: 3 ligand position optimization J Med Chem (ACS) 2024 1 8.8 Ch 5.4 (linker design) linker, 3'-ligand https://pubs.acs.org/doi/10.1021/acs.jmedchem.4c02250
src_C04 Advancement of GalNAc Drugs in ASGPR-Targeted Hepatocyte Delivery Biomed Pharmacother 2025 1 8.9 Ch 1, Ch 5.1 (comprehensive review) GalNAc-review, ASGPR https://pubmed.ncbi.nlm.nih.gov/40068307/
src_C05 SUGAR-TARGET — Immobilized Enzyme Cascade for Targeted Glycosylation Nat Chem Biol 2023 1 9.3 Ch 6.1 (anchor) immobilized-GT, cascade https://www.nature.com/articles/s41589-023-01539-4
src_C06 Model-Assisted Trivalent Ligand-siRNA Conjugates via CuAAC ACS Omega 2024 2 8.5 Ch 5.3 (CuAAC optimization) CuAAC, trivalent https://pubs.acs.org/doi/10.1021/acsomega.5c09358
src_C07 Practical Synthesis of Triantennary GalNAc (multi-gram scalable) OPR&D (ACS) 2024 1 8.7 Ch 5.1 GalNAc-synthesis https://pubs.acs.org/doi/10.1021/acs.oprd.5c00122
src_C08 Enzyme Immobilization in Biocatalysis: Why, What and How (tutorial) Chem Rev 2023 1 8.4 Ch 6 (methods anchor) immobilization-review https://pubmed.ncbi.nlm.nih.gov/23532151/
src_C09 Comprehensive Guide to Enzyme Immobilization + Bio-Orthogonal Chemistry Green Chem (RSC) 2024 1 8.6 Ch 6 (methods) CLEA, bio-orthogonal https://pubmed.ncbi.nlm.nih.gov/40005249/
src_C10 Lipase CLEA in Deep Eutectic Solvents for continuous processes J Biotechnol 2020 2 7.9 Ch 6.2 (lipase desymmetrization) CLEA, lipase https://www.sciencedirect.com/science/article/abs/pii/S0168165620300304
src_C11 Automated Solid-Phase Click Synthesis of Oligonucleotide Conjugates Bioconjug Chem 2017 1 8.3 Ch 5.3 (CuAAC process) CuAAC, solid-phase https://pubs.acs.org/doi/10.1021/acs.bioconjchem.7b00462
src_C12 A Hitchhiker's Guide to Click Chemistry with Nucleic Acids Chem Rev 2020 1 8.8 Ch 5.3 (click foundational) click, CuAAC, SPAAC https://pubs.acs.org/doi/10.1021/acs.chemrev.0c00928
src_C13 Microgels with Immobilized Glycosyltransferases (droplet microfluidics) Biomacromolecules 2024 2 8.1 Ch 6.3 (flow reactor) microgel, GT-encapsulation https://pubs.acs.org/doi/10.1021/acs.biomac.4c00409
src_C14 Technologies for RNA Degradation & Induced RNA Decay (QC enzymes) Chem Rev 2024 1 8.5 Ch 7.1 (QC anchor) RNase-T1, P1, QC-enzymes https://pubs.acs.org/doi/10.1021/acs.chemrev.4c00472
src_C15 Sustainability Challenges in Oligonucleotide Manufacturing J Org Chem 2021 2 7.8 Ch 5.4, Ch 9.3 green-chemistry, CMC https://pubs.acs.org/doi/10.1021/acs.joc.0c02291

Group D — Upstream Supply Chain & Domestic Substitution15 条)

ID Title Venue Year Tier Score Recommended Use Topic Tag URL / DOI
src_D01 Evaluate Pharma CDMO Intelligence (7.29% CAGR 2023-28) Evaluate Pharma 2023-26 2 7.2 Ch 1, Ch 8 (market backdrop) CDMO-market https://www.evaluate.com/thought-leadership/cdmo-buzzword-or-paradigm-change
src_D02 Synthesis of GalNAc-Oligonucleotide Conjugates (PNAS primary protocol) PNAS 2021 1 8.4 Ch 5.1, Ch 8.1 GalNAc-monomer, CPG https://pubmed.ncbi.nlm.nih.gov/33928572
src_D03 Bioconjugated Oligonucleotides: phosphoramidite chemistries & suppliers Semin Cell Dev Biol 2019 1 8.1 Ch 8.1 (supplier map) phosphoramidite, 2'-F, 2'-OMe https://pubmed.ncbi.nlm.nih.gov/30608140
src_D04 Prime Synthesis CPG (LGC Biosearch, dual US+Germany footprint) LGC 2024 2 7.3 Ch 8.2 (CPG gold standard) CPG, LGC https://www.biosearchtech.com/prime-synthesis-cpg
src_D05 NittoPhase HL high-load polymeric support (350-400 µmol/g, 40% cost cut) Kinovate/Nitto 2025 2 7.1 Ch 8.2 (polymeric disruptor) polymeric-support, Nitto https://kinovate.com/kinovate-life-sciences-inc-and-nitto-denko-corporation-announce-launch-of-nittophasehl-high-loaded-solid-support-for-oligonucleotide-synthesis/
src_D06 Codexis ECO Synthesis RNA Manufacturing (>75% yield, >90% purity) Codexis 2024-25 2 7.5 Ch 4.3, Ch 6, Ch 8.3 Codexis-ECO https://www.codexis.com/expert-solutions/rna-manufacturing-services/
src_D07 Takara Bio RNase H / DNase I / T7 RNAP GMP-grade (Kusatsu) Takara 2024 2 6.8 Ch 7.1, Ch 8.4 QC-enzyme, T7-RNAP https://www.takarabio.com/products/cloning/modifying-enzymes/nucleases/ribonuclease-h-(rnase-h)
src_D08 Codexis T7 RNA polymerase & ligation services Codexis 2025 2 6.9 Ch 4.3, Ch 7, Ch 8.3 Codexis, T7-RNAP https://www.codexis.com/blogs/the-enzymatic-advantage-scaling-rna-manufacturing-for-the-next-wave-of-therapeutics/
src_D09 兆维 Hongene Shanghai Fengxian (98% purity, 48 lines, 1 kg/batch, NMPA+FDA+EMA) 医药魔方 2025 2 7.4 Ch 8.1 (Chinese leader) Hongene, 国产替代 https://bydrug.pharmcube.com/news/detail/3596dfdc566d9b7b94af726020cedee7
src_D10 GenScript 金斯瑞 2025 results ($959.5M, +61.4% YoY, CRDMO expansion) HK.1548 filing 2026 2 7.2 Ch 8.1 (CRDMO scale) GenScript, CRDMO https://www.genscript.com.cn/genscript-biotech-announces-2025-results.html
src_D11 KPMG China Biotech 50 (3rd) — Hongene/KaiLai/WuXi oligo roadmap KPMG 2025 2 7.3 Ch 3.3, Ch 8 KPMG, Chinese-CDMO https://assets.kpmg.com/content/dam/kpmgsites/cn/pdf/zh/2025/10/kpmg-china-biotech50-3rd-edition.pdf.coredownload.inline.pdf
src_D12 Smartanalyst China Oligo CDMO 2025-2030 (兆维 / 凯莱英 / 博腾 / 锐博) 医药魔方 via 腾讯 2025 2 6.9 Ch 3.3, Ch 8 Chinese-CDMO-map https://news.qq.com/rain/a/20251217A01YBJ00
src_D13 Advanced siRNA Design: 2'-F/2'-OMe monomer optimization Nat Biotechnol 2019 1 8.2 Ch 8.1 modified-monomer https://pubmed.ncbi.nlm.nih.gov/29456020
src_D14 BIOSECURE Act signed 2025 NDAA §851 (context only, NOT Ch 9 anchor) Arnold & Porter 2025 1 7.8 Ch 9.4 (geopolitical context, one-line mention) BIOSECURE, geopolitics https://www.arnoldporter.com/en/perspectives/advisories/2025/12/the-biosecure-act-becomes-law-in-the-united-states
src_D15 Phosphoramidite Market 2024-2030 (NA 40%, APAC 7.43% CAGR) Mordor Intel 2024 2 7.0 Ch 8.1 phosphoramidite-market https://www.mordorintelligence.com/zh-CN/industry-reports/phosphoramidite-market

交叉引用矩阵 / Cross-Reference Matrix

Chapter Anchor Sources Support Sources Count
Ch 1 Introduction src_A01, src_C04 src_A05, src_A07, src_B02, src_C01, src_D01 7
Ch 2 Design Paradigms src_A01, src_A08 src_A02, src_A06, src_A09, src_A10, src_A12, src_C03, src_C06 9
Ch 3 Pipeline Landscape src_A11, src_A13 src_A05, src_A07, src_A14, src_A15, src_D11, src_D12 8
Ch 4 Synthesis Modalities src_B02, src_B06, src_B11 src_B01, src_B03, src_B05, src_B08, src_B09, src_B10, src_B12, src_B14, src_B16, src_B18 13
Ch 5 GalNAc Cluster Chemistry src_C02, src_C12 src_A02, src_A04, src_A10, src_C01, src_C03, src_C04, src_C06, src_C07, src_C11, src_C15, src_D02 13
Ch 6 Immobilized Biocatalysis src_C05 src_C08, src_C09, src_C10, src_C13, src_B11, src_B15 7
Ch 7 QC Enzymes src_C14 src_D07, src_D08, src_B06, src_B10, src_B16 6
Ch 8 Four Choke Points — (synthesis chapter) src_D02, src_D03, src_D04, src_D05, src_D06, src_D07, src_D08, src_D09, src_D10, src_D11, src_D13, src_D15, + Ch 4-7 findings 12
Ch 9 Regulatory Vectors src_B18 src_D14 (one-line only); Phase 2 must补 FDA/ICH guidances 2 (+ Phase 2 gap)
Ch 10 Conclusions — (synthesis chapter) all chapters

锚源(Anchor:该章核心论点的第一顺位证据;支撑源(Support:二级证据或具体数据来源。


Topic Tag Index / 主题标签索引(便于跨章交叉检索)

  • design-paradigm → src_A01, A06, A08, A10, A12
  • multivalent-GalNAc → src_A02, A04, A10, C02, C04, C07
  • Chinese-pipeline → src_A14, A15, D09, D11, D12
  • LPOS → src_B01, B02, B04, B14, C01, A03
  • enzymatic-ligation → src_B06, B09, B10, B11, B12, B15, B16, B18
  • cell-free-IVT → src_B13, B03
  • CuAAC / click → src_C06, C11, C12
  • immobilized-enzyme → src_C05, C08, C09, C10, C13
  • QC-enzymes → src_C14, D07, D08
  • phosphoramidite-monomer → src_D02, D03, D13, D15
  • solid-support-CPG → src_D04, D05, D02
  • Chinese-CDMO → src_D09, D10, D11, D12, B16
  • regulatory → src_B18, D14
  • market-data → src_B07, B17, D01, D15

Phase 2 检索缺口(dr-analyst 需补)

硬缺口(Phase 2 必补)

  1. FDA 寡核苷酸 CMC 指导原则 — 目前未命中具体文件,Ch 9.2 需专项搜索 FDA CDER 公开指南 + ICH Q11 Q&A
  2. ICH Q3D 对 Cu 残留的具体 PDE 数值 — 需从 ICH 官方文件直接引用,不能用二次来源
  3. ICH Q13 continuous manufacturing 对寡核苷酸酶法合成的适用性 — 需搜索 ICH Q13 Q&A 或 FDA ICH Q13 实施公告
  4. Chinese QC-enzyme 国产化数据 — Vazyme (诺唯赞)、Yeasen (翌圣)、Sangon (生工) 在 RNase T1 / nuclease P1 / T4 PNK / CIP 的产品线与 GMP 认证状态 — 需 A 股年报 + 电商价盘反推

软缺口(可用但需加强)

  1. 各家双靶点管线的专利说明书工艺细节 — 尤其是瑞博 / 舶望 / 圣因 / 必贝特的 CNIPA 专利 — 建议 dr-pm 专派 1 名懂中文的 dr-analyst
  2. TIDES 2024-2025 会议摘要 — 对 Codexis ECO、Nitto CPOS、Hongene 等工艺披露密度最高
  3. GreenLight Biosciences 破产后资产归属 — src_B13 数据来源 2023-25,需核实当前状态(若破产则用其他 IVT 玩家替代)

质量基线

  • Tier 1 占比:27 条 / 63(42.9%)— 合规(目标 ≥30%)
  • Score ≥ 8.0 占比:34 条 / 63(54.0%)— 合规(目标 ≥40%)
  • 发表年份 2023 年后:49 条 / 63(77.8%)— 合规(目标 ≥70%)
  • 语种分布:英文 54 条 + 中英混合 9 条(含 NMPA / 医药魔方 / 国信证券)— 符合双语要求

本索引由 Phase 1 /dr-frame 完成时冻结,Phase 2 dr-pm 分发任务时按 Topic Tag + Recommended Use 分配。Phase 2 新增信源续编 src_E01+。