ページを選択

Transgenic Tau Mouse Models Transgenic PS19 Mouse Model

前臨床研究で最も広く用いられているマウスモデルの1つを活用し、タウ病変を標的とする化合物の有効性を評価してください

Characteristics of the transgenic PS19 mouse model of primary and secondary Tauopathies

The transgenic PS19 line is the most widely used  (around 30% of tau-targeting therapeutics have utilized this model) mouse model and widely available mouse model used to perform preclinical  therapeutic testing of candidate drugs targeting primary tauopathies (Pick’s disease, corticobasal degeneration, progressive supranuclear palsy etc.,) as well as secondary tauopathies like Alzheimer’s disease (Langness et al., 2025). Transgenic mice in the PS19 line express, under the direction of the mouse prion protein promoter (Prnp), mutant form of human MAPT encoding the disease associated P301s mutation (4R/1N).  

The P301S mutation is a disease-causing MAPT variant that strongly accelerates tau misfolding, aggregation, in turn leading to development of tau pathology in preclinical mouse models. 

Although similar pathological features are observed across other widely established and used transgenic MAPT mouse models of tauopathy such as InnoSer’s Tau[P301S] line, important differences in disease pathophysiology, phenotype and study timelines exist between commonly used models and such as the PS19 line InnoSer’s proprietary Tau[P301S] line, which we’ve explained in our FAQs here. 

Looking for more details about our preclinical services using InnoSer’s Tau[P301S] mouse model services?
Tau[P301S]_(PS19) mice display significant and robust tau pathology in hippocampus, cortex and spinal cord from 8 months of age  
The tau pathology in the PS19 line is associated with astrogliosis (GFAP+) and microgliosis (Iba1+)
The tau pathology in the PS19 line is associated with neurodegeneration (increase in ventricle volume) and loss in neurons (NeUN+) in the CA1 and CA3 regions of the hippocampus

Although the behavior has been reported to be variable in this model, InnoSer’s team observed reproducible behavioral deficits in the automated-home cages PhenoTyperTM across multiple behavioral parameters (spontaneous behavior tracking)

22q11.2欠失症候群のモデル概要図染色体の簡易図解

Take advantage of InnoSer’s expertise, flexibility, and collaborative approach for your research. We support you in identifying new drug candidates, characterizing their pharmacological properties, and conducting rigorous safety and efficacy studies with state-of-the-art behavioral, bioanalytical, and histopathological readouts.

あなたのアルツハイマー病研究はここから始まります

当社の専門的に厳選したマウスモデル比較情報をご活用いただき、データに基づいた迅速な意思決定を実現してください。各種マウスモデルにおける検証データセットを掲載した研究スケジュール例、推奨される測定項目、およびサンプルデータをご覧ください。

ALSサンプルデータリーフレットダウンロードALSの非臨床マウスモデル

Example data featuring the Ps19 mouse model of Tauopathies

Key readouts in the transgenic PS19 model of Tauopathies

Behavioural Tests


Test the efficacy of your treatments 
  • Clasping Score
  • ロータロッド
  • Open field
  • Grip strength
  • Catwalk
  • モリス水迷路

Biomarker analyses


Test the efficacy of your treatments
  • Plasma Tau (total vs phosphorylated Tau) in CSF/plasma
  • Plasma Neurofilament light chain (NfL)

Histopathological Analysis


  • Tau phosphorylation (validatedacross multiple antibodies)
  • Astrocytosis(GFAP),microgliosis (CD45), neuronal loss (NeuN) 

あなたの研究を支える人々

ソフィー・カーマンス博士

ソフィー・カーマンス博士

主任神経科学研究員

トーマス・フォーゲルス博士

トーマス・フォーゲルス博士

主任神経科学研究員

よくあるご質問

How does the PS19 line of Tau[P301S] mouse model differ from InnoSer’s Tau[P301S] line?

Although both InnoSer’s mouse model Tau[P301S] line (referred to as the h.TauP301S model across scientific literature) and the widely available Tau[P301S] PS19 line are single-transgenic tauopathy models expressing the P301S mutant form of human MAPT, important differences exist across model construct, phenotype, and study timelines. 

At the construct level, PS19 mice express mutant human tau under the prion protein (PrP) promoter, which drives high neuronal expression and results in a rapidly progressing tauopathy. In contrast, InnoSer’s Tau[P301S] mice express human tau under the mouse Thy1 promoter, leading to a more controlled and regionally relevant neuronal tau expression profile. 

With respect to disease development, although tau pathology has been reported at earlier ages in PS19 mice (ca 6 months of age), robust and reproducible tau pathology is most reliably observed at approximately 8–9 months of age. However, an extensive study comparing PS19 and Tau[P301S] phenotypes has highlighted variability in pathology at 8 months of age in the PS19 line, reporting that some mice had 3-fold more tau prions compared to others (Woerman et al., 2017). In turn, this variability may have important implications for study design, choice of endpoints readouts, statistical power, and interpretation of efficacy outcomes.  

Efficacy studies in PS19 mice are typically initiated around 6 months of age and run until 9 months of age. In contrast to the Tau PS19 line, InnoSer’s Tau[P301S] mice rapidly develop tau-associated pathology and can be used for preclinical efficacy studies from approximately 2.5 to 5 months of age, enabling faster study initiation due to minimal waiting time for animals to reach the appropriate disease stage. In agreement, the relative frequency of mouse models and treatment start ages are also illustrated in Figure 3 of a recent, comprehensive 20-year tauopathy mouse model review written by Langness and colleagues (2025).  

Despite known limitations, the PS19 line remains the most widely used Tau[P301S] line to evaluate novel Tau-targeting therapeutics, accounting for approximately 30% of preclinical tauopathy studies, compared with roughly 8% for Tau[P301S], as highlighted in the review of Langness et al., 2025. The continued popularity of the Tau PS19 line across preclinical efficacy studies can be owed to its historical adoption, as well as the model being one of the earliest established models of human tauopathy. Many researchers continue to choose to work with this model to maintain continuity with prior studies and/or internal benchmarks.  

While InnoSer’s Tau[P301S] line offers less variability and faster study timelines, we also routinely carry out preclinical efficacy studies in the PS19 line when scientific objectives, translational strategy, or legacy data require it.  

Our team works closely with you to select the most appropriate Tau mouse model based on the specific disease mechanisms, endpoints, and patient populations of interest. 

Reach out to our expert team to inquire which Tau mouse model is the most suitable for your research.  

At what ages does tau pathology develop in the PS19 mouse model?

In the PS19 mouse model, tau pathology develops in a progressive and age-dependent manner. Indeed, InnoSer’s internal data have demonstrated that hyperphosphorylated tau species (AT8+) are typically detectable from approximately 5–6 months of age, with more robust and reproducible neurofibrillary tangle–like pathology observed at approximately 8–9 months of age, detected in total hippocampus as well as individual hippocamal subregions and across the somatomotor cortex. 

The model expresses human MAPT carrying the P301S mutation under the murine prion protein (PrP) promoter, which drives high neuronal expression and ultimately leads to widespread tau aggregation and neurodegeneration. However, variability in pathology burden at intermediate ages has been reported, which should be considered when powering studies or selecting treatment start ages. Indeed, an extensive study comparing PS19 and Tau[P301S] phenotypes has highlighted variability in pathology at even 8 months of age in the PS19 line, reporting that some mice had 3-fold more tau prions compared to others (Woerman et al., 2017). 

For programs requiring earlier and more tightly controlled onset of tau pathology, in turn enabling shorter preclinical efficacy timelines, InnoSer’s Tau[P301S] mouse model may offer strategic advantages due to its accelerated and reproducible phenotype. 

Read more about the Tau[P301S] mouse model, its applicability for your therapeutic program as well as study timelines, readouts and example data here.

Does the PS19 model develop amyloid-β plaques?

No, the PS19 model is a pure tauopathy model and does not develop amyloid-β plaques. Similar to other single transgenic mouse models featuring human disease-associated mutations in the MAPT gene, these models do not carry APP or PSEN mutations, lacking amyloid-driven pathology. This makes the PS19 line particularly suitable for preclinical efficacy studies aiming to evaluate programs of tau-targeted therapeutics in isolation, including anti-tau antibodies, aggregation inhibitors, microtubule stabilizers, and tau-directed gene therapies.  

However, Alzheimer’s disease is biologically defined by the interaction between amyloid and tau pathology. If you are developing programs targeting upstream amyloid mechanisms — such as BACE1 inhibition, γ-secretase modulation, or anti-Aβ antibodies, your preclinical pipeline may benefit from amyloid-driven models such as the APP[V717I] mouse model and/or the APP[V717I]xPS1[A246E] mouse model. For combined amyloid–tau interaction studies, model selection should align with the therapeutic mechanism of action and intended clinical positioning.

Does the PS19 mouse model show Alzheimer’s disease-associated behavioral and/or cognitive deficits?

Yes, cognitive and behavioural deficits have been reported in the PS19 mouse model, although findings depend on age, as well as the background strain. PS19 mice on mixed background were shown to have impairments in learning and memory in Morris Water Maze test at 6 months of age (Takeuchi et al., 2011) and 7.5 months of age (Lasagna-Reevers et al., 2016). However, motor impairments (Sun et al., 2020) that emerge with disease progression in this mouse model may interfere with swimming performance, potentially confounding cognitive readouts in this task. This is an important consideration when selecting behavioral endpoints for tauopathy studies in PS19 mice. 

At InnoSer, we therefore place strong emphasis on spontaneous and home-cage–like behavioral assessments using automated systems such as the PhenoTyper. We’ve demonstrated that across longitudinal studies, PS19 mice displayed alterations in spontaneous behavior at later stages (e.g., ~33 weeks of age), including increased overall activity and shorter arrest durations compared to non-transgenic controls.  

Overall, although PS19 mice exhibit measurable behavioral alterations, particularly in spontaneous activity paradigms, cognitive readouts can be influenced by motor phenotypes and inter-animal variability.  

Careful selection of behavioral endpoints is therefore critical when designing preclinical efficacy studies in this model.

Our experts are happy to advise on the most appropriate behavioral strategy for your Tau-targeting program – reach out to us now.

Does the PS19 model show neuroinflammation and associated neurodegeneration?

Yes, internal validation experiments carried out at InnoSer have demonstrated that the PS19 mouse model develops progressive neuroinflammation as well neurodegeneration, including neuronal loss and brain atrophy at later disease stages observed from 8 months of age. In this mouse model, tau pathology (AT8+ areas) is associated with mild neuroinflammatory phenotype marked by astrogliosis (GFAP+) and microgliosis (Iba+, MHC-II+ and CD11b+) beginning at 5.5 months of age, which becomes more pronounced from 8 months of age.  

In line, InnoSer’s internal validation experiments, we have confirmed that the neurodegeneration phenotype in the PS19 mice is marked by significant increase of ventricle volume, accompanied by loss of neuronal cells (detected via IHC using markers such as NeuN) across the CA1 and CA3 regions of the hippocampus, with a larger extent in the CA3 region.  This phenotype enhances its translational relevance for evaluating disease-modifying therapies aimed at preventing neurodegeneration rather than solely reducing tau aggregates. 

Reach out to InnoSer’s study team to obtain full PS19 mouse model validation data.

Is the PS19 mouse model suitable for studying tau seeding and spreading studies?

The PS19 mouse model is a suitable background transgenic mouse model of tau pathology that can be used to study the seeding and spreading of tau using recombinant and/or patient-derived tau seeds and/or brain extracts, respectively. The presence of mutant human P301S tau makes the model highly responsive to intracerebral injection of pathological tau seeds, accelerating aggregation and enabling mechanistic studies of tau transmission. 

In traditionally used transgenic models such as the PS19, pathology arises cell-autonomously in many neurons at the same time, in turn making it difficult to distinguish between intracellular development of tau pathology from true prion-like spreading of tau pathology across connected brain regions.   

In mouse models of tau seeding and spreading, tau aggregates are injected into the hippocampus of transgenic tau mouse models. Tau aggregates are injected into transgenic tau mice at young ages whereby the mice show minimal or no tau aggregation pathology. In this way, endogenous (non-aggregated) tau in transgenic mice is used as a background, allowing controlled recruitment of tau aggregation and pathological propagation of the injected tau aggregates.   

However, baseline variability in endogenous tau pathology levels at certain ages may influence experimental outcomes and should be accounted for in study design. 

For programs requiring highly standardized baseline pathology prior to seeding or therapeutic intervention, InnoSer’s Tau[P301S] mouse model may provide improved reproducibility and controlled study initiation windows. 

Learn more about InnoSer’s expertise in performing efficacy studies in tau seeding and spreading mouse models here.  

InnoSerが提供するアルツハイマー病モデルの種類

アミロイド(APP/AB)トランスジェニックマウスモデル

InnoSerは、アルツハイマー病(AD)のプラーク病理を再現する複数の異なるトランスジェニックアミロイドモデルを用いた前臨床研究サービスを提供しています。

アルツハイマー病の表紙画像(欧州神経学CRO提供)

トランスジェニックタウマウスモデル

InnoSerは、複数の異なるトランスジェニックタウモデルを用いた独自の研究サービスを提供しており、これらはアルツハイマー病(AD)のタウ神経原線維変化病理を再現します。

欧州拠点の非臨床CROが提供するMPTP - パーキンソン病マウスモデル(医薬品開発向け)

タウタンパク質の導入および拡散を伴うマウスモデル

InnoSerはAD脳抽出物注入モデルを採用し、タウ病理の播種と拡散を再現するトランスレーショナルモデルによる独自の非臨床サービスを提供します。

インビトロ神経学アッセイ

リード候補化合物をスクリーニングするには InnoSerの in vitro神経学アッセイを用いてリード候補化合物をスクリーニングし、確信を持って前臨床段階のin vivo研究へ進める

InnoSer社の利用可能なアルツハイマー病マウスモデル

PS19トランスジェニックマウスモデル

PS19トランスジェニックマウスモデル

前臨床研究で最も広く用いられているマウスモデルの1つを活用し、タウ病変を標的とする化合物の有効性を評価してください

APP[V717I]マウスモデル

APP[V717I]マウスモデル

早期発症アミロイドーシスを病理的特徴とするトランスジェニックアルツハイマー病モデルにおいて、ABの蓄積、神経炎症、および認知機能障害を標的とする治療法の有効性を検証する
Tau P301S マウスモデル

Tau[P301S]マウスモデル

再現性が高く、進行性のタウ病理を示すInnoSer独自のTau[P301S]マウスモデルを活用し、迅速かつ意思決定主導型の非臨床有効性試験を実施する

APP[V717I] × PS1[A246E] マウスモデル

APP[V717I] × PS1[A246E] マウスモデル

早期発症型アミロイドーシスを呈するトランスジェニックAPPxPS1アルツハイマー病モデルを用いて、アミロイドβの蓄積、神経炎症、および認知機能障害を標的とする治療法の有効性を検証する

Tau[P301L]マウスモデル

Tau[P301L]マウスモデル

進行性で、病理学的特徴が十分に解明されているInnoSer社のTau[P301L]マウスモデルを活用し、メカニズム主導型の非臨床有効性試験を実施する

トランスジェニックAPP×PS1 ARTE10マウスモデル

トランスジェニックAPP×PS1 ARTE10マウスモデル

ARTE10マウスモデルに見られる広範なアミロイドβ病変を活用し、確固たる前臨床有効性試験を実施することで、アミロイド低減治療プログラムを推進する

APP[V717I] × Tau[P301S] マウスモデル、欧州神経学分野のCRO専門家

APP[V717I] × Tau[P301S] マウスモデル

E多標的治療薬の評価を InnoSerの 複合 APPxTau  疾患 モデル

InnoSerの最新研究を発見する

Cognitive profiling in the APP[V717I]xTau[P301S] mouse model

Cognitive profiling in the APP[V717I]xTau[P301S] mouse model

In this month's update, we revisit the APP[V717I]xTau[P301S] model with newly in-house generated Morris Water Maze (MWM) data, reconfirming the spatial memory deficits previously described for this model and reinforcing the translational value of the model.The...

アルツハイマー病マウスモデルにおける包括的な有効性研究のための臨床的に意義のあるバイオマーカーパネル

アルツハイマー病マウスモデルにおける包括的な有効性研究のための臨床的に意義のあるバイオマーカーパネル

InnoSer社の検証済みアルツハイマー病(AD)マウスモデルには、トランスレーショナル研究に関連するバイオマーカー測定パネルが備わっています。これには、アミロイドベータ(Aβ)種、リン酸化タウアイソフォーム、そして神経変性の早期かつ高感度の指標であるニューロフィラメント軽鎖などが含まれます...

AAALAC認定

InnoSerはAAALAC認証を取得し、責任ある動物ケアと利用への取り組みを実証しています。AAALAC Internationalは、自主的な認証および評価プログラムを通じて科学における動物の適切な扱いを推進する非営利組織です。InnoSerのオランダおよびベルギー施設は、それぞれ2016年および2020年よりAAALAC認証を取得しています。AAALAC認証プログラムの詳細はこちらをご覧ください。

AAALACロゴ

動物福祉

3R原則は、政策や規制の変更から新技術・手法の開発と普及に至るまで、あらゆる分野に影響を及ぼします。このためInnoSerは、これらのプロセスに対する継続的な取り組みと監視を実施しています。当社が実践する手順は、動物実験の代替・削減・改善を最大限に実現し、研究および医薬品開発におけるこれらの原則への取り組みを促進します。

義務なし – 今すぐ始めよう

info@innoserlaboratories.com